DocumentCode :
1437637
Title :
Comments on "Discrete-time observability and estimability analysis for bearings-only target motion analysis"
Author :
Koteswara Rao, S.
Author_Institution :
Naval Sci. & Technol. Lab., Visakhapatnam, India
Volume :
34
Issue :
4
fYear :
1998
Firstpage :
1361
Lastpage :
1367
Abstract :
Discusses the extensive mathematical analysis carried out by the authors of the original paper [see ibid., vol. 33, no. 1, p. 178-201, 1997] and submits the following points. The authors used pseudo measurements for recasting the observability problem into a linear framework. They treated the bearings-only passive target tracking system as a deterministic system. It is already established that for deterministic systems, the pseudo measurements are linear functions of the states of the system, though the coefficient matrix is a nonlinear function of the original measurements, By using the pseudo measurements in a linear observer, global stability can be shown. However, if the pseudo measurement observer, for which the analysis is mostly carried out by the authors, is used in a noisy environment as a pseudo measurement filter (PMF), biased estimates are arrived at. Hence, though the approach of authors is quite direct and provides insights about the algebraic structure of the BOT problem, as pseudo measurements are used throughout the analysis is not of much use to the TMA community, as the nonlinear measurement equation along with measurement noise are required to be considered in the BOT problem to obtain unbiased results.
Keywords :
deterministic algorithms; direction-of-arrival estimation; discrete time systems; observability; stability; target tracking; BOT problem; bearings-only target motion analysis; deterministic systems; discrete-time observability; estimability analysis; global stability; linear framework; measurement noise; noisy environment; nonlinear measurement equation; pseudo measurement filter; pseudo measurements; Filters; Linear antenna arrays; Maximum likelihood estimation; Motion analysis; Observability; Performance analysis; Phased arrays; Radar antennas; Radio frequency; State estimation;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/7.722722
Filename :
722722
Link To Document :
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