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研究生:蔡佳璇
研究生(外文):Chia-Hsuan Tsai
論文名稱:GPS與UWB整合式定位系統之研析
論文名稱(外文):Analysis of an Integrated GPS and UWB Positioning System
指導教授:莊智清莊智清引用關係
指導教授(外文):J. C. Juang
學位類別:碩士
校院名稱:國立成功大學
系所名稱:電機工程學系碩博士班
學門:工程學門
學類:電資工程學類
論文種類:學術論文
論文出版年:2003
畢業學年度:91
語文別:英文
論文頁數:71
中文關鍵詞:全球定位系統超寬頻
外文關鍵詞:UWBGPS
相關次數:
  • 被引用被引用:5
  • 點閱點閱:443
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  • 下載下載:82
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超寬頻是一種新興的無線通信技術,它能解決現有頻寬不足的問題,並能建構出成本低廉的定位系統,不論在室內或室外皆可完成定位。而全球衛星定位系統是現今最普及的定位系統,但是卻面臨無法在室內繼續運作的問題。本論文針對這兩種定位系統作說明,並討論當此兩種系統結合後對於定位精度中的幾何精度因子的影響。除此之外,將使用完全最小平方餘量法來監測系統的整體性,對全球衛星定位系統的接收器與超寬頻定位系統收發器分別故障的狀況下做分析。
UWB (Ultra Wide Band) is a novel wireless communication technique. Because it is hard to find frequency bands under the crowded spectrum for new service, UWB is identified as a possible solution to a wide range of RF applications, including positioning services. GPS (Global Positioning System) is the most popular positioning system. It can provide a level of precision about 30 meters. However the performance of GPS is limited in an obstructed or indoor environment. In the thesis, the two positioning systems are briefly reviewed. An integrated GPS and UWB positioning system is analyzed to seek for accuracy improvement. Besides, the total least squares residuals method is investigated to monitor the integrated GPS and UWB system in the presence of failures in the GPS system or the UWB transponder.
摘要I
AbstractII
ContentsIII
List of FiguresV
List of TablesVII
NomenclatureVIII
Chapter 1 Introduction1
1.1 Background1
1.2 Organization2

Chapter 2 UWB system3
2.1 History of UWB3
2.2 Definition of UWB3
2.3 Characteristics4
2.4 Modulation and Code6
2.5 UWB Applications10
2.6 UWB Based Geolocation System11

Chapter 3 Geolocation Systems and Techniques15
3.1 GPS and DGPS15
3.2 Geolocation Technology18
3.3 Error Analysis24

Chapter 4 Integrated GPS and UWB System27
4.1 GPS Case28
4.2 DGPS Case30
4.3 UWB Case31
4.4 UWB+GPS Case34
4.5 UWB+DGPS Case38
4.6 Simulation Results41

Chapter 5 Integrity Monitoring of Integrated GPS and UWB System56
5.1 Total Least Squares Residuals Method56
5.2 Maximum Separation Solutions60
5.3 Simulation Results60

Chapter 6 Conclusion69

References70
[1] T. W .Barrett, “History of UltraWideBand (UWB) Radar & Communications: Pioneers and Innovators,” in Proc. of Progress in Electromagnetics Symposium 2000, Cambridge, MA, pp.50-53 July 2000.
[2] J. D. Tylor, Ultra-wideband Radar Systems, CRC Press, Inc., 1995.
[3] R.I. Reza, “Analysis of UWB (Ultra Wideband ) for Indoor Geolocation,” Master Thesis, Chalmers University of Technology, 2000.
[4] Flrming et.al, “Spread Spectrum Localizers,” U.S. Patent #006400754B2, 2000.
[5] R. I. Reza, “Data Fusion for Improved TOA/TDOA Position Determination in Wireless Systems.” Master Thesis, Virginia Polytechnic Institute and State University, 2000.
[6] K. Yao, C. Reed and R. E. Hudson “Beamforming Performance of A Randomly Distributed Sensor Array System,” in Proc. IECON, pp. 438-447,1997.
[7] G. R. Opshaug and P. Enge, “Integrated GPS and UWB Navigation System,” in Conf. of IEEE UWB Science and Technology, pp.123-127, 2002.
[8] B. W. Parkinson and P. Axelrad, “Autonomous GPS integrity monitoring using the pseudorange residual,” in Navigation: Journal of the Institute of Navigation, pp.255-274, 1988.
[9] B. W. Parkinson and J. J. Spilker, Jr., Global Positioning System: Theory and Applications, AIAA, Inc.,1996.
[10] R. Loh and J. Fernow, “Integrity Monitoring Requirements for FAA’s GPS Wide Aera Augmentation System (WAAS),” in IEEE PLANS, pp.629-636 1994.
[11] J. C. Juang, “On GPS Positioning and Integrity Monitoring,” IEEE Transactions on Aerospace and Electronic Systems, Vol.36, pp.327-336, Jan. 2000.
[12] R. Fontana,“Precision Geolocation Systems,” U.S. Patent #006054950, 2000.
[13] G. F. Ross, “Transmission and Reception System for Generating and Receiving Base-band Duration Pulse Signals for Short Base-band Pulse Communication System,” U.S. Patent #003768632, 1973.
[14] J. H. Li, “Investigation of Mobile Positioning Techniques”, Project Report of National Science Council, 2002.
[15] 莊智清, 黃國興, 電子導航, 全華科技圖書, 2000.
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