Walsall E0301 Manual Call Point with Break Glass - Hazardous Area Zone 1 & Zone 2
Glass Break Detection System Midterm Presentation October 7, 2010.
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Transcript of Glass Break Detection System Midterm Presentation October 7, 2010.
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Glass Break Detection System
Midterm PresentationOctober 7, 2010
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Team Members
Dennis NarcisseSynapse Programming and troubleshooting
Matthew Marsh Hardware Design, Signal Processing
Christian East Synapse Wireless Comm.
Mark Lynn Hardware Implementation , Signal Processing
Dr. WintonAdvisor
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Overview
Introduction Problem Statement Solution
Constraints Technical Practical
Hardware Diagram Technical Tradeoffs Progress Timeline
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Introduction
Glass Break Detection System (GBDS) is an alarm system that detects the frequency of breaking glass
Consist of a central unit and multiple detection units
System communicates wirelessly among all units
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Problem
Current glass break alarms operate: as stand alone units hardwired to a central unit
High cost for complicated designs
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Solution
Use low power wireless technology
Central unit communicates to all detection units
Simplified design to lower overall cost
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System Overview
Central Unit
Detection Unit
Detection Unit
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Technical Design Constraints
Name Description
Range The detection unit must detect glass breaking up to 25 feet.
Accuracy The detection unit must detect the noise frequency emitted by the breaking of glass to prevent false alarms from normal household sounds.
Supply Voltage The detection units must be battery powered. The central unit must be wall powered.
Transmission Distance Central and detection units must be able to wirelessly communicate within a 33 to 246-ft range.
Display The central unit must have a display screen that is easily read.
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Practical Constraints
Economic The GDBS must be less than $200
Viso
nic
GE
Line
ar S
ecur
ity
GDBS0
100
200
300
400
Glass Break Prices
Glass Break Prices
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Practical Constraints
Manufacturability The GBDS must be simple in its design
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Hardware Diagram
Sensing Block MCU Wireless
Comm.
Display MCU Wireless Comm.
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Sensing Block Diagram
Microphone Op amp Op amp
MCU
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Technical Tradeoffs
WirelessZigbeeSynapseTexas Instruments
Signal ProcessingHardware Software
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Zigbee
XBee Pro Data Rate: 250 kbps Indoor Range: 300 ft Frequency Band: 2.4 GHz
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Synapse
RF100PC6 Data Rate: 250 kbps Indoor Range: 1000 ft Frequency Band: 2.4 GHz
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Texas Instruments
CC2500 Data Rate: 250 kbps Indoor Range: 260 ft Frequency Band: 2.4 GHz
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Wireless
Manufacturer
Model Resources
Range
Price
Choice
Zigbee XBee Pro No 300’ $32
Synapse RF100PC6
Yes 1000’ $35
TI CC2500 No 240’ $5
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Signal Processing
Hardware Op amp
Software Mathematically
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Hardware
Op amp Adsf Asdf asdf
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Software
Mathematically Adsf Adsfa asdfas
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Signal Processing
Part Speed
Accuracy
Difficulty
Choice
Opamp Faster Less Less
Mathematically
Slower
More More
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Progress
Central and detection unit’s hardware completed
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Progress
Beginning to program microprocessor, wireless network, and display
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Timeline
August September October November
Research
Hardware
Software
Testing
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References
[1] Abel, W.E., Marman, D.H., “Glass Break Detector,” U.S. Patent no. 4837558, Jun. 1989. [2] Texas Instruments, “Glass Break Detector”. http://focus.ti.com/docs/solution/folders/print/489.html [3] ZigBee Alliance, “FAQ”. http://www.zigbee.org/About/FAQ.aspx [4] Home Security Store. Glass Break Detectors. 2010. http://www.homesecuritystore.com/c-76-glass-break-detectors.aspx
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Questions?