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Start Add jpg. data KML to layer
Add control point Updategeoreferencing
Add data lot
Create new shapefile.
boundary,line andpoint
Geoprocessing Clip
!ditingConstructpoint, copy parallel
and "erge
Selection.
Select bylocation !nd
1. Introduction.
G#S application widely used on $ariable area of technical proble"s, with different "ethod application
pro$ided by G#S software, G#S application able to gi$e accurate result of wor%. #nfor"ation in this report,
show how area fro" different coordinate syste" con$ert to coordinate syste" needed and identify area
which in$ol$ed with location of &'( &ower.
2. Objective.
). Co$ert original coordinate of "ap into coordinate syste" needed.*. +eter"ine and identify how "any towers, how "any location in$ol$e and costing.
3. Methodology.
lowchart of "ethodology.
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3.1 KML to layer.
KML is an -ML based file for"at used to represent geographic features in application such as ArcG#S
!plore and Google !arth. KML allow to draw points, lines, and polygons on "aps and globes and share
the" with others. Using KML you can also designate tet, pictures, "o$ies, or lin%s to other G#S ser$ice
that appear when the user clic%s the feature.
3.2 New shape ile.
igure /.*
* point, * polyline and ) polygon new shapefile created. 0oint shapefile represented for &'( tower,
polyline shapefile represented &'( &rans"ission Line and polygon represented boundary area.
3.3 !elect by location eatures.
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&he select by location function to select
features based on their location relati$ely to
other features. or this tas%, # ai"ed to want to
%now about how "any lot cadastral were
in$ol$ed with &'( tower trans"ission line
area.
igure /./ Select (y Location.
". #esult
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A. Kelantan
igure 1A) Kelantan &'( &rans"ission Line )*2%$
#. &otal of 'u"ber Lot.
3 42 Lot.
5&ower.
##. Cost in$ol$ed, ) cadastral lot 3 677.
3 42 778 2 9*:6
###. &otal Cost &'( &ower, ) &ower 3 )*76.
3 )* )*78 ) 2/46
#;. &otal cost )*2%$ construction.
3 29*: < )2/48 9 *246
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;. 'o. Lot in$ol$ed.
igure 1A);#8 L=& in$ol$ed
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igure 1A*
&'( &rans"ission Line *92 %$
#. &otal of 'u"ber Lot.
3 )49 Lot.
##. &otal &'( &ower 'eeded.
3)/ &ower.
###. Cost in$ol$ed, ) cadastral lot 3 677.
3 )49 778 )1 4>46
#;. &otal Cost &'( &ower, ) &ower 3 )*76.
3 )/ )*78 ) 4416
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;. &otal cost )*2%$ construction.
3 )14>4< )4418 )4 /4:6
;#. 'o. Lot in$ol$ed.
igure 1A*;#8 L=&
in$ol$ed.
$. %erangganu.
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igure 1( &'( &rans"ission Line )*2%$
#. &otal of 'u"ber Lot.3 >) Lot.
##. &otal &'( &ower 'eeded.37 &ower.
###. Cost in$ol$ed, ) cadastral lot 3 677.3 >) 778 7 ::76
#;. &otal Cost &'( &ower, ) &ower 3 )*76.3 7 )*78 ) :*16
;. &otal cost )*2%$ construction.3 7 ::7< ) :*18 > :/*6
;#. 'o. Lot in$ol$ed.
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igure 1(;#8 L=& in$ol$ed.
igure 1() &'( &rans"ission Line *92%$
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#. &otal of 'u"ber Lot.3 >2 Lot.
##. &otal &'( &ower 'eeded.3> &ower.
###. Cost in$ol$ed, ) cadastral lot 3 677.3 >2 778 7 /4:6
#;. &otal Cost &'( &ower, ) &ower 3 )*76.3 > )*78 ) )2*6
;. &otal cost )*2%$ construction.3 7 /4:< ) )2*8 > 2)*6
;#. 'o. Lot in$ol$ed.
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Figure 4BVI: LOT involved.
&. 'ohor.
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igure 1C &'( &rans"ission Line )*2%$#. &otal of 'u"ber Lot.
3 )** Lot.
##. &otal &'( &ower 'eeded.3/9 &ower.
###. Cost in$ol$ed, ) cadastral lot 3 677.3 )** 778 ): 9/46
#;. &otal Cost &'( &ower, ) &ower 3 )*76.3 /9 )*78 1 9/46
;. &otal cost )*2%$ construction.3 ): 9/4
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Figure
4CVI: LOT
involved.
(igure "&1 %N$ %rans)ission Line 2*+,v
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#. &otal of 'u"ber Lot.3 1* Lot.
##. &otal &'( &ower 'eeded.3/7 &ower.
###. Cost in$ol$ed, ) cadastral lot 3 677.3 1* 778 / 4>46
#;. &otal Cost &'( &ower, ) &ower 3 )*76.3 /7 )*78 1 4716
;. &otal cost )*2%$ construction.3 / 4>4
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igure
1C);#8 L=&
in$ol$ed.
2. +iscussion.
&hrough process selection by location, the lot cadastral which in$ol$ed with &'( &rans"ission
Line )*2%$ ? *92%$ are deter"ained. &he lot cadastral which blue highlight show that the area
of &rans"isson line and tower, thus the nu"ber lot can indentify by open the attribute table and
already selected in the attribute table. Costing for trans"isson line area and tower area are
calculate for reparation to owner of lot. &hus, the nu"ber lot which in$ol$ed are recorded. As
well as Kelantan for )*2%$ is 9 *24 6 and *92%$ is )4/2:6, &erangganu for )*2%$ is > :/*6 and
*92%$ is > 2)*6, and @ohor, )*2%$ the cost is )) 19*6 and *92%$ is )2 )476. &he highest
reparation is Kelantan *92%$ with )4 /4:6, this is because the "any lot cadastral in$ol$e with
tower construction and trans"ission line.
or other application, by this process, we also can "anage and analy5e the suitable location for
&'( tower and &rans"ission Line if the cost of reparation too high or if the location on the lot
with not suitable soil, such as soft soil.
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4. Conclusion.
(ased the wor% has be done, G#S application can analy5e until to s"all lot of area without change
any original infor"ation. &hat "eans, the result is accurate. &hus, we can detect each lot cadastralwhich in$ol$ed with the project for reparation process, and we can "a%e a sur$ey on the land
which in$ol$ed with project, to in$estigate either that point is suitable for construction &'(
tower and trans"ission line, or not. urther, any job can be done with accurate on G#S
Application and can sa$e "oney for field wor%.
9. eference.
pro.arcgis.co"
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