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1062 |
Redesigning the G-NAF National Address Database |
LLG1 |
Image Processing |
AGD47 |
Open Source GPS Receiver |
AGD33 |
Radio Environment Effects on WiFi Positioning |
AGD28 |
Simulink GPS Receiver |
AGD35 |
Positioning Using WiFi and Zigbee |
AGD39 |
Combining WiFi and Mobile Phone Measurements for Outdoor Location |
AGD38 |
Using WiFi to Provide Aided AGPS |
AGD32 |
Comparison of Integrated GPS/Inertial Platforms |
AGD21 |
GPS for Bistatic Radar |
AGD18 |
Indoor GPS Clock |
AGD46 |
Low-level Analysis of ISM-based Signals for Locata Interoperability |
AGD47 |
Object Idnetification for an Autonomous Electric Car |
AGD45 |
Implementation of an Automated Navigation of Electric Car |
Staff of the School of Surveying & Spatial Information Systems supervise undergraduate Electrical Engineering & Telecommunications (EET) and Computer Science & Engineering (CSE) students undertaking a range of final year thesis projects:
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CR11
|
Using Symbian for GPS-Related Projects |
|
CR47a
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Developing a 3D Virtual Information Desk (3D-VID) for the UNSW |
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CR47b
|
GPS/WiFi/RFID Integration |
|
CR46
|
Hacking Google Earth |
|
CR37 |
Galileo Correlator Design |
|
AGD10
|
Study of Strobe Correlators for Dealing with GPS Multipath |
|
AGD31
|
Study of Interference in GPS |
|
AGD20
|
FFT-based Correlation for New GPS Signals |
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AGD30
|
Open-loop GPS Receiver Design |
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AGD22
|
USB GPS Receiver Data Logger |
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AGD26
|
New GPS Signal Tracking |
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AGD19
|
RF Front End Circuit for the New GPS L2C Signal |
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AGD21
|
Using GPS for Bistatic Radar |
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AGD27
|
Tracking and Guidance of Emergency Services Using GPS |
|
CR01
|
Development Framework for Location-Based Games |
|
CR41
|
Location-Based Searching Service on Mobile Phone with GPS Integration |
|
CR42
|
Online Database for Post-Processed Data from GPS Receiver Networks |
|
CR46EE
|
GPS/INS Integration for Personal Navigation |
|
AGD08 |
FPGA Correlator Design for New GPS Signals |
|
AGD24 |
Effects of Interference on GPS Timing Receivers in CDMA Networks |
|
AGD18
|
Indoor GPS Clock |
|
CR01
|
Location-Based Gaming |
|
CR03
|
Comparative Study of GNSS |
|
CR04
|
GPS & the Orientation of a Satellite Dish |
|
CR05 |
Monitoring of Personnel or Objects Using Bluetooth Technology |
|
CR08
|
GPS Tracking & Sports Training Application |
|
CR09 |
Public Transport Monitoring System |
|
CR10
|
The Golf Assistant |
|
CR11
|
Using Symbian for GPS-Related Projects |
|
CR18
|
Designing an Integrated Mobile Consumer Device |
|
CR19 |
Development of a GRAS Network Receiver |
|
CR20 |
Hybrid Radiolocation System for GSM Network in Urban Area |
|
CR03 |
GPS Receiver for the BLUESAT Microsatellite |
|
CR04 |
Improvements to the Control Algorithms of a Robotic Electric Car |
|
CR05 |
GASP: GPS for Australian Soaring Project |
|
CR06 |
Build an Adhoc Network for GPS Field Applications Using 802.11b |
|
CR07 |
A Real-Time Kinematic System via the Internet |
|
CR08 |
Intelligent Speed Adaptation |
|
CR09 |
A GPS-Based Sports Training & Evaluation System |
|
CR10 |
BioGPS for Team Sport Applications |
|
CR11 |
Precise GPS Datalogger for Sports Applications |
|
CR12 |
Building a Bluetooth Network for GPS |
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Page created 15/6/2002 |
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