PLS-CADD: Google Earth Integration Tips · Google Earth is an invaluable tool when working with...

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Copyright © Power Line Systems 2020 1 5400 King James Way, Suite 300 Madison, WI 53719, U.S.A. Phone: (608) 238-2171, Fax: (608) 238-9241 Email: [email protected] URL: http://www.powline.com PLS-CADD: Google Earth Integration Tips Google Earth is an invaluable tool when working with linear infrastructure such as overhead power lines. The benefits of using Google Earth go beyond simply visualizing the line in 3-Dimensions and give the following possibilities: Route / Corridor Selection and site access planning:

Transcript of PLS-CADD: Google Earth Integration Tips · Google Earth is an invaluable tool when working with...

  • Copyright © Power Line Systems 2020 1

    5400 King James Way, Suite 300 Madison, WI 53719, U.S.A. Phone: (608) 238-2171, Fax: (608) 238-9241 Email: [email protected] URL: http://www.powline.com

    PLS-CADD: Google Earth Integration Tips

    Google Earth is an invaluable tool when working with linear infrastructure such as overhead power lines. The benefits of using Google Earth go beyond simply visualizing the line in 3-Dimensions and give the following possibilities:

    Route / Corridor Selection and site access planning:

    mailto:[email protected]://www.powline.com/https://www.google.com/earth/

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    “Virtual” Site visits – using Street View functionality

    Public approval / Visual impact studies for Environmental and Permitting Applications – and this really helps landowners visualize the type and scale of infrastructure planned to be placed on their property, especially when coupled with the 3D imagery that Google is rolling out (made using photogrammetry):

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    Google Earth is beneficial for use because it is free software (the standard version of the desktop program is now Google Earth Pro - since July 2017), thus anyone can open and view the KML or KMZ files.

    Coupling PLS-CADD with Google Earth allows the design outputs from Power Line Systems’ powerful and industry leading structural, spatial, and electrical design features to be visualized by anyone, in an immersive and realistic way on any device.

    This technote discusses how to:

    • Export the 3D model of the line to Google Earth o Hints and tips to get the best output experience are offered

    • Create various design outputs and reports that can be exported directly to Google Earth. • Import data (such as line routes) into PLS-CADD from a KML or KMZ file.

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    Export your project to a KML/KMZ

    It has been possible to visualize your models in Google Earth since Version 8 of PLS-CADD. With the release of version 16.50 these capabilities have been significantly improved and allow for more project information being visible within Google Earth.

    Create the KML/KMZ

    To create a KML/KMZ file of your project, here are the step by step instructions and some tips for making best use of this feature:

    • Use Version 5 or newer of Google Earth: Everything demonstrated below uses Version 16.50 of PLS-CADD and Version 7.3.3.7721 of Google Earth. You can download Google Earth here.

    • Open your project in PLS-CADD

    Note:

    o Best results come from exporting the 3D view, as typically what is visible on the screen in the current active window will be exported, so if you export from the Plan view you will see the alignment & right-of-way lines and PI Symbols.

    o Some features don’t transition well from PLS-CADD to the KML/KMZ file. For a pleasant aesthetic in the KML/KMZ it is a good reminder that typically what is visible in the active view will be exported. This includes Cable Attachment Points symbols, TIN surfaces and Markers.

    http://earth.google.com/download-earth.html

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    • Ensure that the project coordinate system is defined - This is controlled under Terrain/ Coordinate System/ Define

    o If you do not know what coordinate system to use, we advise that you contact the supplier of your survey data. Unfortunately XYZ point data does not have the coordinate system information built into it, so it is not possible for PLS-CADD to automatically detect and assign a coordinate system definition.

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    • Export a KMZ - The Google Earth model is called a "KMZ" file and can be exported from PLS-CADD using the File/ Export/ KMZ (Google Earth) command.

    • Name your KMZ - Enter a name for your KMZ and select a folder to save it in.

    o If the Cable attachments are currently displayed, then you might receive a KML Aesthetics Warning indicating less than desirable aesthetics of the KML/KMZ file. To turn off the display of Cable Attachments you should deselect this option under the Drafting/ Show Cable Attachment Points menu.

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    • Select KMZ Export Options

    o The Structure Location Settings have inputs for Range to view structure from and the Tilt. We suggest you leave these values at the default settings. These settings control how Google Earth views a structure when you jump to it from the Structure Locations list.

    o You can choose the offset distance for the left and right structure tours (which you will see later in Google Earth). We recommend that you set this slightly larger than your maximum conductor offset (to simulate a helicopter flying as close to the line as possible).

    o In some cases, the vertical datum used on your project may not be the same as what is used by Google Earth. The Elevation shift between PLS-CADD model and Google Earth input allows you to account for this. If your structures appear to be "floating" when you go to Google Earth, you can put a negative number in here to lower the entire line. Of course, the opposite is true if your line is buried. There is also an option to save the elevation shift with the project and apply it to reports exported to KML as well. If selected the elevation shift will be saved with the model and used for KML exports of reports and exports of the geometry.

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    o There is an option that allows you to define the Z coordinates in PLS-CADD are relative to mean sea level, not datum ellipsoid. If selected the elevations in the KMZ will be equal to the Z value in PLS-CADD plus and elevation shift entered above.

    o There is an option to Draw lattice towers as Line, Wireframe or Render structures. Rendered structures can slow down Google Earth loading, but the performance has improved in recent versions (if the KMZ file is slow to load then you should investigate using Wireframe or Line type lattice structures).

    o If selected the option Include insulator sheds in export will show the insulator sheds within the KMZ. It will also increase the size of the KMZ. If this option is not selected the insulators will be shown as a cylinder.

    o The option to Draw cables with actual thickness (small cables will effectively be invisible) that when selected will use the actual cable width and cables may be difficult to see in Google Earth.

    o There is an option to Color structures by usage when possible. This option will show the structures by % usage instead of the material. To activate this option, you will first need to run a structure usage report and then select this option when exporting the KMZ.

    o You can opt to Include any raster attachments displayed in the plan view in the export you may have attached to your PLS-CADD project for use in Google Earth. Unfortunately, Google Earth does not handle detailed imagery as well as PLS-CADD does, so you may need to uncheck this option if navigating your model in Google Earth is slow.

    o You can select to Include vector (DXF/SHP) attachments displayed in the 3d view in the export.

    o You can also Automatically open in Google Earth after export and zoom directly to your line by leaving the last option checked.

    *Please Note: This is an example project, and while located in the same space as existing facilities it isnot an exact representation of the actual facilities or their capabilities

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    View the KML/KMZ

    Once you click the OK button above (assuming you have left the Automatically open Google Earth after export option selected), you will be taken directly to your line in Google Earth.

    • The KMZ file will load by default in Temporary Places in the Places tree control.

    • The KMZ file contains:

    o Structure Tours (Centerline, Left Offset, Right Offset and an Alignment Tour).

    o Structure Locations:

    This shows a hyperlink to each structure position.

    If Method 1 or stick structures are used, then PLS-CADD will add a small icon at the baseof the structure.

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    Double clicking on the structure number takes you directly to that structure in themodel.

    o PLS-CADD Model, which comprises of:

    Structures:

    • A folder for each structure in the model with the graphical elements indicated,which can be switched on or off independently.

    Sections:

    • A folder for each section of wire on the line, which can be switched on or offindependently.

    A PLS-CADD overlay image to appear in the Top Left corner of the Google Earth screen.

    • It is possible to Export Multiple Lines:o You can load (File / Open) multiple KMZ files into Google Earth, so that you can see multiple

    models at one time. Note that each project will now appear on the Temporary Places tree onthe left.

    • Remember that, to see rendered structures in Google Earth, you must have used PLS-POLE and/orTOWER to model your structures in PLS-CADD first. Otherwise, you will just see stick structures andwires.

    • If you don't have a project handy and want to immediately try this feature out, download this sampleKMZ file.

    *Please Note: This is an example project, and while located in the same space as existing facilities it isnot an exact representation of the actual facilities or their capabilities

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    Google Earth Settings

    To ensure the best possible experience in Google Earth when viewing the line model and to leverage the ability to launch PLS-CADD, PLS-POLE and TOWER direct from the KMZ the following settings are recommended. These are primarily accessed under Tools/ Options.

    But also make sure that Terrain and 3D Buildings are checked in the Layers tree control in the lower left corner of Google Earth so that you are viewing the KMZ file in the full 3D receiving environment.

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    3D View tab:

    The Elevation Exaggeration should be set to 1 to get an undistorted view of your structures and sags.

    To make Google Earth's terrain model a better match for your PLS-CADD model, select the option to Use high quality terrain.

    Also select the option to Use 3D Imagery this will use the newer photogrammetry generated 3D surface. If you disable this setting you will use the legacy 3D buildings where available).

    You can select the Units of Measurement and the format for coordinates and a few other options.

    Touring tab:

    You can set the Camera Tilt Angle, Camera Range and Speed as well as other options.

    Camera Tilt Angle of 75 to 80-degree tilts appear to work best for most lines.

    Camera Range is a variable, depending on the size of your structures and their spacing.

    Also note that when a Tour is recorded you can prioritize a Smaller File or Higher Fidelity for the video captured. There are other options that you may want to investigate, such as the cache settings under the Cache tab. You can cache the imagery from a whole project for demonstrations later where you may not have Internet access rather than saving a video file of the Tour.

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    General tab:

    Important setting here to allow the hyperlinks to open the PLS-CADD .xyz model and the PLS-POLE or TOWER files are:

    • To enable the option to Show web results in external browser.• To Allow access to local files and personal data.• To Allow cross-origin requests for local content.

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    Tour the line

    • Double-click on one of the "tours" on the left-hand side of the screen under the line you want to tour. You will be taken to the first structure on your line, hovering and ready to fly.

    • To start the Tour, click the "Play Tour" button to start the tour (highlighted in the image below).

    • You can make a movie/recording of your tour as well using the Tools/ Movie Maker capability built into Google Earth Pro. However, note that the quality isn't anywhere near as good as it is "live" in Google Earth.

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    Structure and Section Attributes

    To get information or attributes of a structure or a wire section the following steps should be followed:

    Structure Attributes

    There are two simple methods to get structure attributes:

    Firstly, you can navigate to the lines KMZ file in the Places tree control and expand the Structure locations tree by clicking on the " " in front of that line.

    Now simply find the structure number in the expanded tree and click on it. Google Earth will then display the attributes of the structure.

    If you double click the structure number, Google Earth will navigate you to the structure.

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    The second technique to get the structure attributes is to simply click on any part of the rendered structure (for

    3D structures) or on the Structure Icon at the structure base for Method 1 (stick) structures.

    The details displayed for structures are:

    • A hyperlink to open the .xyz project in PLS-CADD. • A hyperlink to open the structure model in the appropriate structure program (PLS-POLE or TOWER). • All the subsequent data/attributes are those selected in PLS-CADD under Drafting/ Structure and

    Section Labeling/ Sheet Profile View. Note that the Bill of Materials is one of those options. These are described in the PLS-CADD user manual in Section 5.4.5. In the example, the data selected is:

    o Structure Number o Structure Description o Station o Line Angle (if nonzero) o Longitude and Latitude o Embedment length o Material List – New items

    This is a great way to share rich detail to other parties and field crews.

    Section Attributes

    Similarly, the Section Attributes can be displayed in two ways.

    In the first technique, you can navigate to the lines KMZ file in the Places tree control and expand the PLS-CADD Model tree by clicking on the " " in front of that line.

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    Now simply find the Section that you are interested in within the expanded tree and click on it. Google Earth will then display the attributes of the section.

    The second technique, much like the Structure Attributes, involves clicking directly on any part of the section in the model which will display the attributes.

    The details displayed for sections are:

    • Voltage • Cable file • From structure • To Structure • Display Condition • Circuit Label, and • Sagging data

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    PLS-CADD reports exportable to KML/KMZ

    Many reports can now be exported to KML, this includes:

    • P.I. Report• Structure Coordinates Report• Construction Staking Report• Leg and Guy Extension Report• Terrain Clearances by Span Report• Thermal Rating Report• Danger Tree Locator Report• 2D EMF reports• Line Summary Report:

    o Structure List Reporto Structure Coordinates Reporto Structure Attachment Coordinates

    A general rule is that any report which contains georeferenced coordinates can typically be exported to a KML file. This ability can greatly enhance any text-based or tabular report to illustrate visually the design outputs. The process to export the files is rather straight-forward.

    When in the body of a report within PLS-CADD right click the mouse, then select KML export and choose the report in question. It will then prompt you to save the file. After naming the file and selecting Save the program will prompt you to see if you would like to view the report in the default system KML viewer which can be set to Google Earth. This will then automatically launch the Google Earth Viewer and display the selected report.

    This is demonstrated for Lines/ Reports/ Construction Staking Report below:

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    Save the KMZ/KML to the desired location and then open the file in Google Earth (File / Open). Once loaded, you can click on any of the Placemarks/markers and see the attributes associated with the Construction Staking Report listed. You will see many data points but also a hyperlink to open the structure file in either PLS-POLE or TOWER.

    Notice below that not only are the geographical coordinates of the staking location given, but the pole class, pole length, base diameter, and structure weight are listed as well.

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    Below is an example of the KML created by right clicking from the Lines/ Reports/ Thermal Rating Report.

    Note that if markers are displayed in the 3D view in PLS-CADD, they will be exported with the PLS-CADD model KML export as well (File/ Export/KMZ (Google Earth)).

    This marker is the red line indicating the clearance available when the phase conductor is at 78°F in the image

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    Below is an example of the vegetation violations grouped into work sites and exported to a KMZ/KML file, as discussed in the Wildfire Risk Assessment Using PLS-CADD technote and the PLS-CADD Vegetation Work Sites video, using the Lines/ Reports/ Danger Tree Locator functionality in PLS-CADD to detect Grow-In and Falling Tree clearance violations. This typically requires vegetation survey points to have been collected (typically by LIDAR survey).

    By using these Google Earth export functions in PLS-CADD, information from your PLS-CADD model can be shared with others for informational, construction and vegetation management purposes quickly and easily.

    https://www.powline.com/technotes/Wildfire_Risk_Assessment_Using_PLS-CADD.pdfhttps://youtu.be/bH1X7xhEMYs

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    Import data from KML/KMZ

    Importing terrain data from a KML/KMZ file is a straightforward process and is briefly described in Appendix D.9 of the PLS-CADD Manual. PLS-CADD will create a survey point at each Placemark and at each “point” or “bend” along any Path (LineString) elements in the file. The points along a path can be visualized as the red dots when you edit a Path by right clicking on it in the Places tree and select "Properties".

    It is good practice to keep your KML/KMZ files containing only the information you wish to bring into PLS-CADD.

    Once you have started creating your project you should ideally have:

    • Loaded a FEA file (Terrain/ Feature Code Data/ Load FEA) • Defined the Project Coordinate System (Terrain/ Coordinate System/ Define)

    At this point you are able to accurately import the KML/KMZ file. To do so, use the Terrain/ Edit/ Merge Points from External File/ Merge Points from KML/KMZ files… command.

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    After finding and selecting the KML/KMZ file you wish to use, the Select Feature Code for New Points dialog box will display.

    In this dialog you can select the feature code that you would like for the imported points from the picklist. You can choose whether to use the point filter upon import of the points and /or create an alignment based on each LineString entity in the file. The third tick box (selected in the figure) will place the contents of any name and/or description entities in the Plan Comments for the xyz points created. The bottom option will use the elevation from the TIN as the Z value for points created from the KMZ file.

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    Once the points have been created, a range of other PLS-CADD features will very quickly provide you with a usable alignment and terrain data for making design determinations.

    For example:

    • Terrain/ Alignment/ Automatic Alignment • Terrain/ Edit/ Merge Points from External File/ Merge Points from Internet (See video here Download

    XYZ Point Data From Internet) • Terrain/ TIN/ Create TIN and Terrain/ TIN/ Create Interpolated Points • Attaching aerial imagery from online sources (See video for PLS-CADD Web Mapping Services)

    https://www.powerlinesystems.com/videos-1/2019/4/18/download-xyz-point-data-from-internet-1https://www.powerlinesystems.com/videos-1/2019/4/18/download-xyz-point-data-from-internet-1https://www.powerlinesystems.com/videos-1/2018/10/22/pls-cadd-web-mapping-services-1

    PLS-CADD: Google Earth Integration TipsExport your project to a KML/KMZCreate the KML/KMZView the KML/KMZ

    Google Earth SettingsTour the lineStructure and Section AttributesStructure AttributesSection Attributes

    PLS-CADD reports exportable to KML/KMZImport data from KML/KMZ

    doc.kml

    Example Project 1 example PLS-CADD Project 18Open Project 'example.xyz'Open Structure '18'TP-69Gsta=4697.77embed len=9.00Long=-89.53186940

    Lat= 42.97248086

    1 TP-69G1 TM-4A3 TM-3B-691 1-70 54Open Project 'example.xyz'Open Structure '54'VC1.11sta=13405.67embed len=6.00line angle=-23.61Long=-89.52654586

    Lat= 42.97520272

    1 VC1.111 1-401 3-45 Section #17Voltage: 0kV
    Cable: 'slack_partridge_acsr_ga2_gcc'
    From Str.: 35 Set 27
    To Str.: 36 Set 29
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Neutral

    Sagging data: Catenary (ft) 1387.43, Horiz. Tension (lbs) 507.799, Condition 'Initial RS', Temperature (deg F) 60

    56Open Project 'example.xyz'Open Structure '56'VC1.11sta=13832.84embed len=6.00line angle=-4.95Long=-89.52725407

    Lat= 42.97625221

    1 VC1.111 1-40 Section #21Voltage: 24.1kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 57 Set 31
    To Str.: 50 Set 21
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 1

    Sagging data: Catenary (ft) 2561.2, Horiz. Tension (lbs) 937.399, Condition 'Initial RS', Temperature (deg F) 60

    21Open Project 'example.xyz'Open Structure '21'TP-69GB2sta=5539.79embed len=11.00line angle=-20.50Long=-89.53496418

    Lat= 42.97273049

    1 TP-69GB22 TG-21A1 TM-4A3 TM-3B-691 1-90 59Open Project 'example.xyz'Open Structure '59'VC6.21sta=14692.33embed len=6.50line angle=1.26Long=-89.52730727

    Lat= 42.97688960

    1 VC6.211 3-45 Section #6Voltage: 69kV
    Cable: 'drake_acsr_ga2_gcc'
    From Str.: 28 Set 15
    To Str.: 34 Set 15
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: 69kV Circuit 1

    Sagging data: Catenary (ft) 3333.27, Horiz. Tension (lbs) 3636.6, Condition 'Initial RS', Temperature (deg F) 60

    61Open Project 'example.xyz'Open Structure '61'VC5.21sta=14820.11embed len=6.50Long=-89.52688629

    Lat= 42.97705479

    1 VC5.211 TG-31A1 3-45 41Open Project 'example.xyz'Open Structure '41'VC1.11sta=10310.12embed len=6.50line angle=-0.56Long=-89.51821489

    Lat= 42.97230631

    1 VC1.111 3-451 VC1.41P 38Open Project 'example.xyz'Open Structure '38'VC1.11sta=9761.55embed len=6.50Long=-89.51616894

    Lat= 42.97222756

    1 VC1.111 3-451 VC1.41P 67Open Project 'example.xyz'Open Structure '67'VA5.1sta=17545.19embed len=5.00Long=-89.52708061

    Lat= 42.97716392

    1 VA5.11 4-30 30Open Project 'example.xyz'Open Structure '30'TS-4Gsta=7861.31embed len=9.50line angle=-37.58Long=-89.54317664

    Lat= 42.97284616

    1 TS-4G4 TG-21A1 TM-4A3 TM-1C-691 1-75 3Open Project 'example.xyz'Open Structure '3'TP-69GCsta=138.61embed len=11.00line angle=-17.97Long=-89.51484529

    Lat= 42.97269191

    Open 'IMG_4151.JPG'Open 'IMG_4152.JPG'1 TP-69GC1 TM-4A3 TM-3B-69 62Open Project 'example.xyz'Open Structure '62'sta=15232.54embed len=5.00Long=-89.52750351

    Lat= 42.97700391

    1 4-30 64Open Project 'example.xyz'Open Structure '64'VC1.11sta=15992.23embed len=6.00line angle=3.03Long=-89.52363711

    Lat= 42.97117023

    1 VC1.111 1-40 33Open Project 'example.xyz'Open Structure '33'TP-69Gsta=8722.64embed len=9.00Long=-89.54639424

    Lat= 42.97289737

    1 TP-69G1 TM-4A3 TM-3B-691 1-70 66Open Project 'example.xyz'Open Structure '66'VC5.21sta=17174.93embed len=6.50Long=-89.51447994

    Lat= 42.97221505

    1 VC5.211 TG-31A1 3-45 27Open Project 'example.xyz'Open Structure '27'TP-69Gsta=7150.76embed len=9.00Long=-89.54091810

    Lat= 42.97213938

    1 TP-69G1 TM-4A3 TM-3B-691 1-70 37Open Project 'example.xyz'Open Structure '37'VC1.11sta=9557.98embed len=6.50Long=-89.51540831

    Lat= 42.97222430

    1 VC1.111 3-451 VC1.41P 70Open Project 'example.xyz'Open Structure '70'VC1.11sta=13278.66Long=-89.52641969

    Lat= 42.97486755

    1 VC1.11 Section #5Voltage: 69kV
    Cable: 'drake_acsr_ga2_gcc'
    From Str.: 2 Set 15
    To Str.: 28 Set 5
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: 69kV Circuit 1

    Sagging data: Catenary (ft) 3242.8, Horiz. Tension (lbs) 3537.89, Condition 'Initial RS', Temperature (deg F) 60

    Section #30Voltage: 0.2kV
    Cable: 'collie_poly_duplex'
    From Str.: 60 Set 51 'Service Drop'
    To Str.: 67 Set 21
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Service Drop

    Sagging data: Catenary (ft) 781.25, Horiz. Tension (lbs) 50, Condition 'Initial RS', Temperature (deg F) 60

    Section #24Voltage: 0kV
    Cable: '1-2_in_CATV_Lashed_Cable'
    From Str.: 58 Set 50 'Communication'
    To Str.: 57 Set 52 'Communication'
    Disp. Condition: 60 Deg F 'Initial RS'
    Circuit Label: CATV

    Sagging data: Catenary (ft) 1166.67, Horiz. Tension (lbs) 700.002, Condition 'Initial RS', Temperature (deg F) 60

    42Open Project 'example.xyz'Open Structure '42'VC1.11sta=10511.27embed len=6.50Long=-89.51896468

    Lat= 42.97234468

    1 VC1.111 2-451 VC1.41P 55Open Project 'example.xyz'Open Structure '55'VC1.11sta=13602.19embed len=6.00line angle=-4.75Long=-89.52684511

    Lat= 42.97569513

    1 VC1.111 1-40 Section #29Voltage: 0kV
    Cable: '1-2_in_CATV_Lashed_Cable'
    From Str.: 57 Set 51 'Communication'
    To Str.: 50 Set 50 'Communication'
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: CATV

    Sagging data: Catenary (ft) 1166.67, Horiz. Tension (lbs) 700.002, Condition 'Initial RS', Temperature (deg F) 60

    14Open Project 'example.xyz'Open Structure '14'TP-69Gsta=3435.30embed len=9.00Long=-89.52715811

    Lat= 42.97259741

    1 TP-69G1 TM-4A3 TM-3B-691 1-70 Section #7Voltage: 24.1kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 11 Set 21
    To Str.: 13 Set 31
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 1

    Sagging data: Catenary (ft) 2334.15, Horiz. Tension (lbs) 854.299, Condition 'Initial RS', Temperature (deg F) 60

    25Open Project 'example.xyz'Open Structure '25'TP-69Gsta=6723.82embed len=9.50Long=-89.53935997

    Lat= 42.97236362

    1 TP-69G1 TM-4A3 TM-3B-691 1-75 6Open Project 'example.xyz'Open Structure '6'TP-69Gsta=927.63embed len=7.50Long=-89.51779081

    Lat= 42.97264833

    1 TP-69G1 TM-4A3 TM-3B-691 1-55 58Open Project 'example.xyz'Open Structure '58'VC5.21sta=14278.08embed len=6.50Long=-89.52833834

    Lat= 42.97716298

    1 VC5.211 TG-31A1 3-45 Section #12Voltage: 24.1kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 61 Set 21
    To Str.: 59 Set 21
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 1

    Sagging data: Catenary (ft) 3856.83, Horiz. Tension (lbs) 1411.6, Condition 'Initial RS', Temperature (deg F) 60

    23Open Project 'example.xyz'Open Structure '23'TH-MJGXsta=6223.03embed len=9.00Long=-89.53750078

    Lat= 42.97251881

    1 TH-MJGX1 TM-4A3 TM-1B-691 1-601 1-701 3-40 36Open Project 'example.xyz'Open Structure '36'VC1.11sta=9361.06embed len=7.00line angle=98.77Long=-89.51467254

    Lat= 42.97222120

    1 VC1.111 1-501 VC5.71L-8ft 46Open Project 'example.xyz'Open Structure '46'VC1.11sta=11318.85embed len=6.50Long=-89.52198134

    Lat= 42.97237815

    1 VC1.111 3-451 VC1.41P Section #18Voltage: 0kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 48 Set 29 'Neutral'
    To Str.: 65 Set 27
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Neutral

    Sagging data: Catenary (ft) 1370.22, Horiz. Tension (lbs) 501.501, Condition 'Initial RS', Temperature (deg F) 60

    Section #2Voltage: 69kV
    Cable: 'drake_acsr_ga2_gcc'
    From Str.: 1 Set 5
    To Str.: 2 Set 5
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: 69kV Circuit 1

    Sagging data: Catenary (ft) 3374.61, Horiz. Tension (lbs) 3681.7, Condition 'Initial RS', Temperature (deg F) 60

    45Open Project 'example.xyz'Open Structure '45'VC1.11sta=11108.73embed len=6.50Long=-89.52119644

    Lat= 42.97236549

    1 VC1.111 3-451 VC1.41P 15Open Project 'example.xyz'Open Structure '15'TP-69Gsta=3793.24embed len=9.00Long=-89.52849542

    Lat= 42.97258462

    1 TP-69G1 TM-4A3 TM-3B-691 1-70 Section #15Voltage: 24kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 48 Set 22
    To Str.: 65 Set 21
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 2

    Sagging data: Catenary (ft) 1370.22, Horiz. Tension (lbs) 501.501, Condition 'Initial RS', Temperature (deg F) 60

    Section #25Voltage: 0.2kV
    Cable: 'collie_poly_duplex'
    From Str.: 60 Set 50 'Service Drop'
    To Str.: 62 Set 50 'Service Drop'
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Service Drop

    Sagging data: Catenary (ft) 781.25, Horiz. Tension (lbs) 50, Condition 'Initial RS', Temperature (deg F) 60

    52Open Project 'example.xyz'Open Structure '52'VC1.11sta=13190.00embed len=6.50line angle=18.46Long=-89.52646604

    Lat= 42.97461494

    1 VC1.111 H1-45 Section #10Voltage: 24.1kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 48 Set 21
    To Str.: 11 Set 31
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 1

    Sagging data: Catenary (ft) 2774.32, Horiz. Tension (lbs) 1015.4, Condition 'Initial RS', Temperature (deg F) 60

    29Open Project 'example.xyz'Open Structure '29'TP-69Gsta=7596.06embed len=9.50Long=-89.54236541

    Lat= 42.97242806

    1 TP-69G1 TM-4A3 TM-3B-691 1-75 2Open Project 'example.xyz'Open Structure '2'TS-5Gsta=47.77embed len=8.50line angle=114.07Long=-89.51451532

    Lat= 42.97263943

    1 TS-5G8 TG-31A2 TM-4E6 TM-1D-691 2-65 Section #4Voltage: 0kV
    Cable: '7no_8_alumoweld'
    From Str.: 28 Set 11
    To Str.: 34 Set 11
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Overhead Ground Wires

    Sagging data: Catenary (ft) 10000.8, Horiz. Tension (lbs) 2618.21, Condition 'Initial RS', Temperature (deg F) 60

    11Open Project 'example.xyz'Open Structure '11'TH-MJGXsta=2588.36embed len=9.00line angle=-1.99Long=-89.52399513

    Lat= 42.97266465

    1 TH-MJGX1 TM-4A3 TM-1B-691 H1-601 1-701 3-401 VC6.21 Section #22Voltage: 0kV
    Cable: 'ADSS_Example'
    From Str.: 36 Set 50 'Communication'
    To Str.: 48 Set 50 'Communication'
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: ADSS

    Sagging data: Catenary (ft) 1666.67, Horiz. Tension (lbs) 200, Condition 'Initial RS', Temperature (deg F) 60

    63Open Project 'example.xyz'Open Structure '63'VC1.11sta=15738.22embed len=6.00line angle=-7.73Long=-89.52355972

    Lat= 42.97186484

    1 VC1.111 1-40 4Open Project 'example.xyz'Open Structure '4'TP-69Gsta=399.96embed len=7.00Long=-89.51581979

    Lat= 42.97268477

    1 TP-69G1 TM-4A3 TM-3B-691 1-50 Section #11Voltage: 24.1kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 58 Set 21
    To Str.: 57 Set 21
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 1

    Sagging data: Catenary (ft) 2441.53, Horiz. Tension (lbs) 893.6, Condition 'Initial RS', Temperature (deg F) 60

    57Open Project 'example.xyz'Open Structure '57'VC6.21sta=14045.83embed len=6.50line angle=-17.84Long=-89.52768499

    Lat= 42.97674353

    1 VC6.211 3-45 Section #3Voltage: 0kV
    Cable: '7no_8_alumoweld'
    From Str.: 2 Set 11
    To Str.: 28 Set 1
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Overhead Ground Wires

    Sagging data: Catenary (ft) 2291.83, Horiz. Tension (lbs) 600.001, Condition 'Initial RS', Temperature (deg F) 60

    26Open Project 'example.xyz'Open Structure '26'TP-69GB2sta=6976.92embed len=9.50line angle=-12.57Long=-89.54029963

    Lat= 42.97228517

    1 TP-69GB22 TG-21A1 TM-4A3 TM-3B-691 1-75 47Open Project 'example.xyz'Open Structure '47'VC1.11sta=11519.71embed len=6.50Long=-89.52273170

    Lat= 42.97238919

    1 VC1.111 2-451 VC1.41P 71Open Project 'example.xyz'Open Structure '71'VC1.11sta=3269.59Long=-89.52653765

    Lat= 42.97252759

    1 VC1.11 Section #9Voltage: 24kV
    Cable: 'slack_partridge_acsr_ga2_gcc'
    From Str.: 35 Set 21
    To Str.: 36 Set 23
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 2

    Sagging data: Catenary (ft) 1387.43, Horiz. Tension (lbs) 507.799, Condition 'Initial RS', Temperature (deg F) 60

    Section #16Voltage: 24.1kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 57 Set 22
    To Str.: 59 Set 31
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 1

    Sagging data: Catenary (ft) 2185.79, Horiz. Tension (lbs) 799.999, Condition 'Initial RS', Temperature (deg F) 60

    22Open Project 'example.xyz'Open Structure '22'TP-69Gsta=5837.44embed len=11.00Long=-89.53606924

    Lat= 42.97263828

    1 TP-69G1 TM-4A3 TM-3B-691 1-90 40Open Project 'example.xyz'Open Structure '40'VC1.11sta=10115.93embed len=7.00Long=-89.51749155

    Lat= 42.97226460

    1 VC1.111 3-501 VC1.41P 31Open Project 'example.xyz'Open Structure '31'TP-69Gsta=8145.73embed len=8.50Long=-89.54423914

    Lat= 42.97286308

    1 TP-69G1 TM-4A3 TM-3B-691 1-65 Section #23Voltage: 0kV
    Cable: '1-2_in_CATV_Lashed_Cable'
    From Str.: 57 Set 50 'Communication'
    To Str.: 59 Set 51 'Communication'
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: CATV

    Sagging data: Catenary (ft) 1166.67, Horiz. Tension (lbs) 700.002, Condition 'Initial RS', Temperature (deg F) 60

    60Open Project 'example.xyz'Open Structure '60'VC1.11sta=14758.64embed len=6.50line angle=-3.43Long=-89.52708577

    Lat= 42.97697117

    1 VC1.111 1-45 35Open Project 'example.xyz'Open Structure '35'VC5.21sta=9234.61embed len=6.00Long=-89.51466067

    Lat= 42.97256803

    1 VC5.213 TG-21A1 2-40 43Open Project 'example.xyz'Open Structure '43'VC1.11sta=10711.76embed len=6.50Long=-89.51971358

    Lat= 42.97235862

    1 VC1.111 2-451 VC1.41P 53Open Project 'example.xyz'Open Structure '53'VC1.11sta=13280.38embed len=6.00line angle=7.68Long=-89.52652299

    Lat= 42.97485936

    1 VC1.111 1-40 16Open Project 'example.xyz'Open Structure '16'TP-69Gsta=4089.45embed len=9.50Long=-89.52960214

    Lat= 42.97257403

    1 TP-69G1 TM-4A3 TM-3B-691 1-75 34Open Project 'example.xyz'Open Structure '34'TS-5Gsta=8934.61embed len=9.00Long=-89.54718610

    Lat= 42.97290995

    1 TS-5G8 TG-31A2 TM-4E6 TM-1D-691 1-70 68Open Project 'example.xyz'Open Structure '68'sta=11784.30embed len=5.00Long=-89.52372657

    Lat= 42.97246404

    1 4-30 8Open Project 'example.xyz'Open Structure '8'TP-69Gsta=1500.90embed len=9.00Long=-89.51993230

    Lat= 42.97264443

    1 TP-69G1 TM-4A3 TM-3B-691 1-70 Section #14Voltage: 24kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 36 Set 22
    To Str.: 48 Set 23
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 2

    Sagging data: Catenary (ft) 1377.32, Horiz. Tension (lbs) 504.099, Condition 'Initial RS', Temperature (deg F) 60

    24Open Project 'example.xyz'Open Structure '24'TP-69Gsta=6486.62embed len=9.50Long=-89.53847938

    Lat= 42.97243713

    1 TP-69G1 TM-4A3 TM-3B-691 1-75 39Open Project 'example.xyz'Open Structure '39'VC1.11sta=9952.59embed len=6.50Long=-89.51688268

    Lat= 42.97223366

    1 VC1.111 1-451 VC1.41P Section #27Voltage: 0.2kV
    Cable: 'collie_poly_duplex'
    From Str.: 48 Set 51 'Service Drop'
    To Str.: 68 Set 50 'Service Drop'
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Service Drop

    Sagging data: Catenary (ft) 781.25, Horiz. Tension (lbs) 50, Condition 'Initial RS', Temperature (deg F) 60

    12Open Project 'example.xyz'Open Structure '12'TP-69Gsta=2864.82embed len=9.00Long=-89.52502729

    Lat= 42.97263437

    1 TP-69G1 TM-4A3 TM-3B-691 H2-701 VC2.52 Section #26Voltage: 0kV
    Cable: '1-2_in_CATV_Lashed_Cable'
    From Str.: 61 Set 50 'Communication'
    To Str.: 59 Set 50 'Communication'
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: CATV

    Sagging data: Catenary (ft) 1166.67, Horiz. Tension (lbs) 700.002, Condition 'Initial RS', Temperature (deg F) 60

    5Open Project 'example.xyz'Open Structure '5'TP-69Gsta=662.73embed len=8.00Long=-89.51680130

    Lat= 42.97266663

    1 TP-69G1 TM-4A3 TM-3B-691 1-60 9Open Project 'example.xyz'Open Structure '9'TP-69Gsta=1796.56embed len=8.00Long=-89.52103683

    Lat= 42.97265971

    1 TP-69G1 TM-4A3 TM-3B-691 H1-60 20Open Project 'example.xyz'Open Structure '20'TP-69Gsta=5198.72embed len=8.50Long=-89.53371745

    Lat= 42.97253650

    1 TP-69G1 TM-4A3 TM-3B-691 1-65 Section #1Voltage: 0kV
    Cable: '7no_8_alumoweld'
    From Str.: 1 Set 2
    To Str.: 2 Set 1
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Overhead Ground Wires

    Sagging data: Catenary (ft) 11052.3, Horiz. Tension (lbs) 2893.49, Condition 'Initial RS', Temperature (deg F) 60

    Section #20Voltage: 24.1kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 50 Set 31
    To Str.: 49 Set 21
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 1

    Sagging data: Catenary (ft) 3358.47, Horiz. Tension (lbs) 1229.2, Condition 'Initial RS', Temperature (deg F) 60

    65Open Project 'example.xyz'Open Structure '65'VC5.21sta=16212.95embed len=6.50line angle=-0.32Long=-89.52374343

    Lat= 42.97056967

    1 VC5.211 TG-31A1 3-45 Section #13Voltage: 24.1kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 66 Set 21
    To Str.: 48 Set 31
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 1

    Sagging data: Catenary (ft) 2642.62, Horiz. Tension (lbs) 967.199, Condition 'Initial RS', Temperature (deg F) 60

    48Open Project 'example.xyz'Open Structure '48'VC6.21sta=11700.12embed len=6.50line angle=27.00Long=-89.52340470

    Lat= 42.97241760

    1 VC6.212 TG-31A1 3-452 VC5.71L-8ft Section #28Voltage: 0kV
    Cable: '1-2_in_CATV_Lashed_Cable'
    From Str.: 50 Set 51 'Communication'
    To Str.: 49 Set 50 'Communication'
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: CATV

    Sagging data: Catenary (ft) 833.333, Horiz. Tension (lbs) 500, Condition 'Initial RS', Temperature (deg F) 60

    10Open Project 'example.xyz'Open Structure '10'TH-10V4Xsta=2112.21embed len=9.00line angle=-1.75Long=-89.52221606

    Lat= 42.97267601

    1 TH-10V4X2 TM-4A3 TM-1B-1382 2-70 1Open Project 'example.xyz'Open Structure '1'Substationsta=0.00embed len=32.81Long=-89.51450888

    Lat= 42.97277042

    2 TM-4E3 TM-1D-69 Section #19Voltage: 0kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 36 Set 30 'Neutral'
    To Str.: 48 Set 28
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Neutral

    Sagging data: Catenary (ft) 2642.62, Horiz. Tension (lbs) 967.199, Condition 'Initial RS', Temperature (deg F) 60

    69Open Project 'example.xyz'Open Structure '69'VC1.11sta=13309.53Long=-89.52507081

    Lat= 42.97499157

    1 VC1.11 19Open Project 'example.xyz'Open Structure '19'TP-69GB2sta=4969.42embed len=9.00line angle=19.69Long=-89.53287929

    Lat= 42.97240608

    1 TP-69GB22 TG-21A1 TM-4A3 TM-3B-691 1-70 17Open Project 'example.xyz'Open Structure '17'TP-69GB2sta=4399.63embed len=9.50line angle=-5.57Long=-89.53076100

    Lat= 42.97256292

    1 TP-69GB22 TG-21A1 TM-4A3 TM-3B-691 1-75 49Open Project 'example.xyz'Open Structure '49'VC6.21sta=12626.10embed len=6.50line angle=36.04Long=-89.52587616

    Lat= 42.97328660

    1 VC6.212 TG-21A1 3-45 7Open Project 'example.xyz'Open Structure '7'TP-69Gsta=1205.26embed len=9.00line angle=2.80Long=-89.51882782

    Lat= 42.97262914

    1 TP-69G2 TG-21A1 TM-4A3 TM-3B-691 1-701 2-20 51Open Project 'example.xyz'Open Structure '51'VC1.11sta=12975.40embed len=6.00line angle=8.70Long=-89.52611044

    Lat= 42.97408718

    1 VC1.111 1-40 Section #8Voltage: 24.1kV
    Cable: 'partridge_acsr_ga2_gcc'
    From Str.: 13 Set 21
    To Str.: 49 Set 31
    Disp. Condition: 60 Deg F 'Creep FE'
    Circuit Label: Distrib 24kV Circuit 1

    Sagging data: Catenary (ft) 2377.6, Horiz. Tension (lbs) 870.202, Condition 'Initial RS', Temperature (deg F) 60

    44Open Project 'example.xyz'Open Structure '44'VC1.11sta=10894.29embed len=6.50line angle=2.86Long=-89.52039548

    Lat= 42.97234962

    1 VC1.111 2-451 VC1.41P 32Open Project 'example.xyz'Open Structure '32'TP-69Gsta=8433.07embed len=9.00Long=-89.54531252

    Lat= 42.97288016

    1 TP-69G1 TM-4A3 TM-3B-691 1-70 13Open Project 'example.xyz'Open Structure '13'TP-69Gsta=3089.51embed len=9.00line angle=1.72Long=-89.52586617

    Lat= 42.97260975

    1 TP-69G1 TM-4A3 TM-3B-691 H1-701 VC6.91G 50Open Project 'example.xyz'Open Structure '50'VC6.21sta=12748.65embed len=6.50line angle=-73.30Long=-89.52563476

    Lat= 42.97357232

    1 VC6.212 TG-31A1 3-45 28Open Project 'example.xyz'Open Structure '28'TS-5Gsta=7321.88embed len=9.00line angle=58.74Long=-89.54152688

    Lat= 42.97199586

    1 TS-5G8 TG-31A2 TM-4E6 TM-1D-691 1-70 Structure Centerline Tour 0 -89.51450887825268 42.97277042093695 10 181.73 80 76.2 relativeToGround relativeToGround -89.51450887830001,42.9727704209,10.671 -89.514515315,42.9726394256,17.2212 -89.5148452894,42.9726919123,18.5928 -89.51581979389999,42.972684773,13.1064 -89.516801304,42.972666629,15.8496 -89.5177908071,42.9726483287,14.478 -89.51882782,42.9726291405,18.5928 -89.5199322955,42.9726444303,18.5928 -89.5210368286,42.9726597101,15.8496 -89.52221606169999,42.9726760115,18.5928 -89.5239951301,42.9726646534,18.5928 -89.5250272877,42.97263437,18.5928 -89.5258661725,42.9726097503,18.5928 -89.5271581117,42.972597411,18.5928 -89.5284954238,42.9725846229,18.5928 -89.5296021425,42.9725740279,19.9644 -89.5307610039,42.9725629222,19.9644 -89.53186939530001,42.9724808604,18.5928 -89.5328792927,42.9724060813,18.5928 -89.5337174508,42.9725365047,17.2212 -89.53496417780001,42.9727304919,24.0792 -89.5360692448,42.9726382798,24.0792 -89.537500776,42.9725188096,18.5928 -89.5384793825,42.9724371281,19.9644 -89.53935997470001,42.9723636202,19.9644 -89.54029962910001,42.9722851743,19.9644 -89.54091810360001,42.9721393786,18.5928 -89.5415268821,42.9719958646,18.5928 -89.54236541109999,42.9724280555,19.9644 -89.5431766368,42.972846162,19.9644 -89.5442391376,42.9728630805,17.2212 -89.5453125196,42.9728801622,18.5928 -89.5463942364,42.9728973662,18.5928 -89.5471860981,42.9729099537,18.5928 -89.51466066899999,42.9725680326,10.3632 -89.5146725354,42.9722211986,13.4366 -89.5154083148,42.9722243035,12.065 -89.5161689354,42.972227556,12.065 -89.5168826821,42.9722336604,12.065 -89.5174915522,42.9722646043,13.4366 -89.5182148917,42.97230631,12.065 -89.5189646785,42.9723446792,12.065 -89.5197135781,42.9723586249,12.065 -89.5203954846,42.9723496173,12.065 -89.5211964424,42.9723654938,12.065 -89.52198134,42.9723781487,12.065 -89.5227316989,42.9723891937,12.065 -89.5234046976,42.9724175993,11.7348 -89.5258761602,42.9732866048,11.7348 -89.52563476020001,42.9735723209,11.7348 -89.52611043970001,42.9740871799,10.6934 -89.52646604020001,42.9746149383,12.065 -89.5265229915,42.9748593647,10.6934 -89.5265458574,42.9752027175,10.6934 -89.5268451093,42.9756951319,10.6934 -89.5272540701,42.9762522078,10.6934 -89.52768498890001,42.9767435303,11.7348 -89.52833833770001,42.977162982,11.7348 -89.5273072665,42.9768895957,11.7348 -89.5270857732,42.9769711688,12.065 -89.52688628510001,42.9770547907,11.7348 -89.5275035065,42.9770039115,7.62 -89.5235597225,42.9718648362,10.6934 -89.5236371062,42.9711702311,10.6934 -89.52374343380001,42.9705696741,11.7348 -89.51447993950001,42.9722150493,11.7348 -89.52708061,42.9771639245,7.62 -89.5237265666,42.9724640403,7.62 -89.5250708096,42.9749915725,61.75549999999999 -89.5264196935,42.9748675523,8.077199999999999 -89.52653765479999,42.9725275939,9.4488 Structure Left Offset Tour 0 -89.51426616343699 42.97276398968075 10 181.73 80 76.2 relativeToGround relativeToGround -89.51426616339999,42.9727639897,10.671 -89.514370509,42.9724962464,17.2212 -89.5148733987,42.972514765,18.5928 -89.51581368319999,42.9725064837,13.1064 -89.5167951904,42.9724883398,15.8496 -89.5177846907,42.9724700395,14.478 -89.5188270498,42.9724507956,18.5928 -89.5199368717,42.9724661162,18.5928 -89.5210414016,42.972481396,15.8496 -89.5222172922,42.972497668,18.5928 -89.52398922499999,42.9724863604,18.5928 -89.5250175899,42.9724561665,18.5928 -89.52585974350001,42.972431467,18.5928 -89.5271549511,42.9724190803,18.5928 -89.5284922594,42.9724062922,18.5928 -89.5295989748,42.9723956973,19.9644 -89.5307472242,42.9723848637,19.9644 -89.5318450301,42.9723034144,18.5928 -89.5328924401,42.972227997,18.5928 -89.5337677975,42.972362033,17.2212 -89.5349757892,42.9725523501,24.0792 -89.53604182079999,42.9724610746,24.0792 -89.5374733479,42.9723416047,18.5928 -89.5384519517,42.9722599235,19.9644 -89.5393325413,42.9721864158,19.9644 -89.5402485451,42.9721108182,19.9644 -89.5408438676,42.9719695684,18.5928 -89.54156333909999,42.9718195396,18.5928 -89.54250493959999,42.9722820781,19.9644 -89.5432523059,42.9726766931,19.9644 -89.54424440139999,42.9726847767,17.2212 -89.54531778019999,42.9727018583,18.5928 -89.5463994939,42.9727190622,18.5928 -89.54719135329999,42.9727316497,18.5928 -89.5144178736,42.9725635531,10.3632 -89.5145034713,42.9720931576,13.4366 -89.5154097094,42.9720459606,12.065 -89.5161703486,42.9720492132,12.065 -89.51689944269999,42.9720557398,12.065 -89.51751056419999,42.9720868058,13.4366 -89.5182328395,42.9721284519,12.065 -89.5189815616,42.9721667648,12.065 -89.5197092109,42.972180308,12.065 -89.5203965793,42.9721712733,12.065 -89.52120177480001,42.972187191,12.065 -89.52198667019999,42.9721998458,12.065 -89.5227365642,42.9722108837,12.065 -89.52346938159999,42.972245695,11.7348 -89.52611009109999,42.973334558,11.7348 -89.5258775856,42.9735686826,11.7348 -89.52632026880001,42.9739973625,10.6934 -89.52669701080001,42.9745597766,12.065 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    Lat= 42.97252759

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http://www.powline.com/icons/transmission.png -89.52688628510001,42.9770547907,0 62 -89.52750350650327 42.97700391148685 0 275.77 80 76.2 #structInfo10 00ffffff 0.5 http://www.powline.com/icons/transmission.png -89.5275035065,42.9770039115,0 63 -89.52355972250629 42.97186483615802 0 184.35 80 76.2 #structInfo32 00ffffff 0.5 http://www.powline.com/icons/transmission.png -89.5235597225,42.9718648362,0 64 -89.5236371062276 42.9711702310904 0 187.08 80 76.2 #structInfo11 00ffffff 0.5 http://www.powline.com/icons/transmission.png -89.5236371062,42.9711702311,0 65 -89.52374343376162 42.97056967407246 0 186.79 80 76.2 #structInfo55 00ffffff 0.5 http://www.powline.com/icons/transmission.png -89.52374343380001,42.9705696741,0 66 -89.51447993949536 42.97221504931425 0 92.16 80 76.2 #structInfo13 00ffffff 0.5 http://www.powline.com/icons/transmission.png -89.51447993950001,42.9722150493,0 67 -89.52708060997425 42.97716392453766 0 0.8 80 76.2 #structInfo7 00ffffff 0.5 http://www.powline.com/icons/transmission.png -89.52708061,42.9771639245,0 68 -89.52372656658717 42.97246404029966 0 280.79 80 76.2 #structInfo47 00ffffff 0.5 http://www.powline.com/icons/transmission.png -89.5237265666,42.9724640403,0 69 -89.52507080961 42.97499157249452 0 0 80 76.2 #structInfo59 00ffffff 0.5 http://www.powline.com/icons/transmission.png -89.5250708096,42.9749915725,0 70 -89.52641969347596 42.97486755231776 0 0 80 76.2 #structInfo16 00ffffff 0.5 http://www.powline.com/icons/transmission.png -89.5264196935,42.9748675523,0 71 -89.5265376548211 42.97252759391034 0 0 80 76.2 #structInfo37 00ffffff 0.5 http://www.powline.com/icons/transmission.png -89.52653765479999,42.9725275939,0 PLS-CADD Model ff0000ff absolute -89.51450887830001,42.9727704209,320.2632 -89.51450887830001,42.9727704209,330.9343 Structure '2' #structInfo37 ff525a85 ff525a85 1 0 absolute -89.5145141254,42.9726391138,337.3153 -89.5145143785,42.9726388032,337.3153 -89.5145136073,42.9726382905,320.0941 -89.51451314569999,42.972638857,320.0941 -89.5145141254,42.9726391138,337.3153 absolute -89.51451405340001,42.9726394717,337.3153 -89.5145141254,42.9726391138,337.3153 -89.51451314569999,42.972638857,320.0941 -89.51451301439999,42.9726395096,320.0941 -89.51451405340001,42.9726394717,337.3153 absolute -89.5145141735,42.9726398228,337.3153 -89.51451405340001,42.9726394717,337.3153 -89.51451301439999,42.9726395096,320.0941 -89.5145132334,42.9726401499,320.0941 -89.5145141735,42.9726398228,337.3153 absolute -89.5145144673,42.9726401133,337.3153 -89.5145141735,42.9726398228,337.3153 -89.5145132334,42.9726401499,320.0941 -89.51451376919999,42.9726406797,320.0941 -89.5145144673,42.9726401133,337.3153 absolute -89.51451489030001,42.9726402992,337.3153 -89.5145144673,42.9726401133,337.3153 -89.51451376919999,42.9726406797,320.0941 -89.5145145406,42.9726410186,320.0941 -89.51451489030001,42.9726402992,337.3153 absolute -89.5145153778,42.9726403521,337.3153 -89.51451489030001,42.9726402992,337.3153 -89.5145145406,42.9726410186,320.0941 -89.51451542940001,42.972641115,320.0941 -89.5145153778,42.9726403521,337.3153 absolute -89.5145158559,42.9726402639,337.3153 -89.5145153778,42.9726403521,337.3153 -89.51451542940001,42.972641115,320.0941 -89.51451630130001,42.9726409543,320.0941 -89.5145158559,42.9726402639,337.3153 absolute -89.5145162515,42.9726400481,337.3153 -89.5145158559,42.9726402639,337.3153 -89.51451630130001,42.9726409543,320.0941 -89.51451702280001,42.9726405608,320.0941 -89.5145162515,42.9726400481,337.3153 absolute -89.5145165047,42.9726397375,337.3153 -89.5145162515,42.9726400481,337.3153 -89.51451702280001,42.9726405608,320.0941 -89.5145174844,42.9726399943,320.0941 -89.5145165047,42.9726397375,337.3153 absolute -89.5145165766,42.9726393796,337.3153 -89.5145165047,42.9726397375,337.3153 -89.5145174844,42.9726399943,320.0941 -89.5145176156,42.9726393417,320.0941 -89.5145165766,42.9726393796,337.3153 absolute -89.51451645660001,42.9726390285,337.3153 -89.5145165766,42.9726393796,337.3153 -89.5145176156,42.9726393417,320.0941 -89.5145173967,42.9726387014,320.0941 -89.51451645660001,42.9726390285,337.3153 absolute -89.5145161627,42.9726387379,337.3153 -89.51451645660001,42.9726390285,337.3153 -89.5145173967,42.9726387014,320.0941 -89.5145168609,42.9726381716,320.0941 -89.5145161627,42.9726387379,337.3153 absolute -89.5145157397,42.9726385521,337.3153 -89.5145161627,42.9726387379,337.3153 -89.5145168609,42.9726381716,320.0941 -89.51451608950001,42.9726378326,320.0941 -89.5145157397,42.9726385521,337.3153 absolute -89.5145152523,42.9726384992,337.3153 -89.5145157397,42.9726385521,337.3153 -89.51451608950001,42.9726378326,320.0941 -89.5145152007,42.9726377363,320.0941 -89.5145152523,42.9726384992,337.3153 absolute -89.51451477419999,42.9726385874,337.3153 -89.5145152523,42.9726384992,337.3153 -89.5145152007,42.9726377363,320.0941 -89.5145143288,42.972637897,320.0941 -89.51451477419999,42.9726385874,337.3153 absolute -89.5145143785,42.9726388032,337.3153 -89.51451477419999,42.9726385874,337.3153 -89.5145143288,42.972637897,320.0941 -89.5145136073,42.9726382905,320.0941 -89.5145143785,42.9726388032,337.3153 absolute -89.5145143785,42.9726388032,337.3153 -89.51451477419999,42.9726385874,337.3153 -89.5145152523,42.9726384992,337.3153 -89.5145157397,42.9726385521,337.3153 -89.5145161627,42.9726387379,337.3153 -89.51451645660001,42.9726390285,337.3153 -89.5145165766,42.9726393796,337.3153 -89.5145165047,42.9726397375,337.3153 -89.5145162515,42.9726400481,337.3153 -89.5145158559,42.9726402639,337.3153 -89.5145153778,42.9726403521,337.3153 -89.51451489030001,42.9726402992,337.3153 -89.5145144673,42.9726401133,337.3153 -89.5145141735,42.9726398228,337.3153 -89.51451405340001,42.9726394717,337.3153 -89.5145141254,42.9726391138,337.3153 -89.5145143785,42.9726388032,337.3153 absolute -89.5145136073,42.9726382905,320.0941 -89.5145143288,42.972637897,320.0941 -89.5145152007,42.9726377363,320.0941 -89.51451608950001,42.9726378326,320.0941 -89.5145168609,42.9726381716,320.0941 -89.5145173967,42.9726387014,320.0941 -89.5145176156,42.9726393417,320.0941 -89.5145174844,42.9726399943,320.0941 -89.51451702280001,42.9726405608,320.0941 -89.51451630130001,42.9726409543,320.0941 -89.51451542940001,42.972641115,320.0941 -89.5145145406,42.9726410186,320.0941 -89.51451376919999,42.9726406797,320.0941 -89.5145132334,42.9726401499,320.0941 -89.51451301439999,42.9726395096,320.0941 -89.51451314569999,42.972638857,320.0941 -89.5145136073,42.9726382905,320.0941 #structInfo37 ffb5b5b5 absolute -89.5145154973,42.9726385191,337.1629 -89.5145170257,42.9726309189,336.2644 -89.51451855409999,42.9726233187,335.3706 -89.5145200824,42.9726157186,334.4817 -89.5145216108,42.9726081184,333.5976 -89.51452313910001,42.9726005182,332.7183 -89.5145246675,42.9725929181,331.8437 -89.5145261958,42.9725853179,330.9739 -89.51452772419999,42.9725777177,330.1089 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-89.5145350208,42.9725414332,321.9476 -89.514536167,42.9725357331,321.3272 absolute -89.514536167,42.9725357331,321.3272 -89.5145384596,42.9725243329,320.0941 absolute -89.5145138125,42.9726392627,332.5909 -89.5145062349,42.972638441,331.9421 -89.51449865719999,42.9726376193,331.2959 -89.51449107960001,42.9726367977,330.6522 -89.5144835019,42.972635976,330.0111 -89.5144759243,42.9726351543,329.3724 -89.5144683466,42.9726343326,328.7364 -89.514460769,42.9726335109,328.1028 -89.51445319130001,42.9726326892,327.4718 -89.5144456137,42.9726318675,326.8432 -89.5144380361,42.9726310458,326.2172 -89.5144304584,42.9726302241,325.5937 -89.5144228808,42.9726294025,324.9727 -89.51441530309999,42.9726285808,324.3542 -89.51440772550001,42.9726277591,323.7382 -89.5144001478,42.9726269374,323.1247 -89.5143925702,42.9726261157,322.5136 -89.5143849926,42.972625294,321.905 -89.5143774149,42.9726244723,321.2989 absolute -89.5143774149,42.9726244723,321.2989 -89.51436225960001,42.9726228289,320.0941 absolute -89.5145155158,42.9726384272,335.0293 -89.51451685310001,42.9726317771,334.2481999999999 -89.5145181904,42.9726251269,333.4707 -89.5145195277,42.9726184768,332.6969 -89.51452086499999,42.9726118266,331.9267 -89.5145222024,42.9726051765,331.1602 -89.51452353969999,42.9725985263,330.3974 -89.514524877,42.9725918762,329.6381 -89.51452621430001,42.9725852261,328.8825 -89.5145275516,42.9725785759,328.1305 -89.5145288889,42.9725719258,327.382 -89.51453022619999,42.9725652756,326.6372 -89.5145315635,42.9725586255,325.896 -89.51453290080001,42.9725519753,325.1583 -89.5145342381,42.9725453252,324.4242 -89.5145355754,42.972538675,323.6937 -89.5145369127,42.9725320249,322.9667 -89.5145382501,42.9725253747,322.2433 -89.51453958739999,42.9725187246,321.5234 absolute -89.51453958739999,42.9725187246,321.5234 -89.51454226200001,42.9725054243,320.0941 absolute -89.5145139376,42.9726392763,334.7245 -89.51450882650001,42.9726387221,334.2841 #structInfo37 fff0eaf0 fff0eaf0 1 0 absolute -89.5145089138,42.9726389274,334.2741 -89.5145088252,42.972638953,334.2806 -89.5145011457,42.9726381203,333.6209 -89.5145012343,42.9726380947,333.6145 -89.5145089138,42.9726389274,334.2741 absolute -89.51450898909999,42.9726388706,334.2692 -89.5145089138,42.9726389274,334.2741 -89.5145012343,42.9726380947,333.6145 -89.51450130960001,42.9726380379,333.6095 -89.51450898909999,42.9726388706,334.2692 absolute -89.5145090397,42.9726387911,334.2665 -89.51450898909999,42.9726388706,334.2692 -89.51450130960001,42.9726380379,333.6095 -89.5145013602,42.9726379584,333.6068 -89.5145090397,42.9726387911,334.2665 absolute -89.5145090578,42.9726387012,334.2665 -89.5145090397,42.9726387911,334.2665 -89.5145013602,42.9726379584,333.6068 -89.5145013783,42.9726378684,333.6068 -89.5145090578,42.9726387012,334.2665 absolute -89.51450904070001,42.9726386143,334.2692 -89.5145090578,42.9726387012,334.2665 -89.5145013783,42.9726378684,333.6068 -89.5145013611,42.9726377816,333.6095 -89.51450904070001,42.9726386143,334.2692 absolute -89.514508991,42.972638544,334.2741 -89.51450904070001,42.9726386143,334.2692 -89.5145013611,42.9726377816,333.6095 -89.5145013114,42.9726377112,333.6145 -89.514508991,42.972638544,334.2741 absolute -89.5145089162,42.9726385006,334.2806 -89.514508991,42.972638544,334.2741 -89.5145013114,42.9726377112,333.6145 -89.5145012367,42.9726376679,333.6209 -89.5145089162,42.9726385006,334.2806 absolute -89.5145088278,42.9726384911,334.2876 -89.5145089162,42.9726385006,334.2806 -89.5145012367,42.9726376679,333.6209 -89.5145011483,42.9726376583,333.6279 -89.5145088278,42.9726384911,334.2876 absolute -89.5145087392,42.9726385167,334.2941 -89.5145088278,42.9726384911,334.2876 -89.5145011483,42.9726376583,333.6279 -89.5145010597,42.9726376839,333.6344 -89.5145087392,42.9726385167,334.2941 absolute -89.5145086639,42.9726385735,334.299 -89.5145087392,42.9726385167,334.2941 -89.5145010597,42.9726376839,333.6344 -89.5145009844,42.9726377408,333.6394 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