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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/4847
Title: GPS navigation solutions by analogue neural network least-squares processors
Authors: Dah-Jing Jwo 
Keywords: GPS;Real-time Neurocomputing;Neural Networks;Analogue Processors
Issue Date: Jan-2005
Publisher: Cambridge University Press
Journal Volume: 58
Journal Issue: 1
Start page/Pages: 105 - 118
Source: Journal of Navigation
Abstract: 
The solution for the receiver's position and clock bias using four or more GPS pseudorange measurements involve nonlinear quadratic equations. One of the popular techniques attempts to linearise the equations and solve them by the least-squares (LS) scheme based on an iterative gradient approach. For real-time applications when the solution is to be obtained within a time of the order of a hundred nanoseconds, a digital computer often cannot comply with the desired computation time, or its use is too expensive. In this paper, two ordinary differential equation formulation schemes and corresponding circuits of neuron-like analog processors will be employed for GPS navigation processing. The circuits of simple neuron-like analog processors are employed essentially for solving systems of linear equations based on the criterion of mean square error minimization, which is commonly utilized for determining positioning solutions in the GPS receivers. Experiments on single epoch and thereafter dynamic positioning will be conducted by computer simulation to validate the usefulness of the proposed scheme. The solutions will be assessed and compared to those provided by the conventional method in which pseudo-inverse matrix calculation by digital computer is involved.
URI: http://scholars.ntou.edu.tw/handle/123456789/4847
ISSN: 0373-4633
DOI: ://WOS:000228383600008
://WOS:000228383600008
10.1017/s0373463304003017
://WOS:000228383600008
://WOS:000228383600008
Appears in Collections:通訊與導航工程學系

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