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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/4843
Title: Optimisation and sensitivity analysis of GPS receiver tracking loops in dynamic environments
Authors: Dah-Jing Jwo 
Keywords: covariance analysis;Kalman filters;sensitivity analysis;radio receivers;optimisation;Global Positioning System;error analysis;tracking filters
Issue Date: Aug-2001
Publisher: IEE
Journal Volume: 148
Journal Issue: 4
Start page/Pages: 241 – 250
Source: Iee Proceedings-Radar Sonar and Navigation
Abstract: 
For a GPS receiver, decreasing the receiver tracking loop bandwidth reduces the probability of loss of lock if there are no vehicle dynamics. However, reduced bandwidth increases tracking errors due to dynamics. Beyond a certain limit it causes a serious degradation in the dynamic tracking performance. Therefore, there is involvement of a tradeoff between two opposing considerations: narrow tracking loop bandwidths are desired for filtering noise due to thermal effects, but wide tracking loop bandwidths are desired to permit tracking of vehicle dynamics. Optimal tracking loop bandwidths, which yield the minimum errors in a certain dynamics environment, are first investigated. The linear Kalman filter is employed as the optimal estimator. The covariance for the arbitrary gain model is solved and applied to the sensitivity analysis for investigating error growth due to incorrect noise level estimate. Theoretical results are verified by numerical simulation, and results from both approaches are in very good agreement.
URI: http://scholars.ntou.edu.tw/handle/123456789/4843
ISSN: 1350-2395
DOI: ://WOS:000170552400007
://WOS:000170552400007
://WOS:000170552400007
://WOS:000170552400007
10.1049/ip-rsn:20010429
://WOS:000170552400007
://WOS:000170552400007
Appears in Collections:通訊與導航工程學系

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