Optimization of the observer motion for bearings-only target motion analysis

J. Cadre, H. Gauvrit
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引用次数: 23

Abstract

This paper deals with the optimization of the receiver trajectory for target motion analysis. The observations are made of estimated bearings. The problem consists of determining the sequence of controls (e.g. the receiver headings), which maximizes the cost functional. This cost functional is generally a functional of the Fisher information matrix (FIM). The determinant of the FIM matrix has all the desirable properties, except the monotonicity property. The analysis is very complicated. A large part of this paper is centered around approximations of the FIM determinants. Using them, it is shown that, under the long-range and bounded controls hypotheses, the sequence of controls lies in the general class of bang-bang controls. These results demonstrate the interest of manoeuvre diversity. More generally, they provide a general framework for optimizing the observer trajectory.
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面向纯方位目标运动分析的观测器运动优化
本文研究了目标运动分析中接收机弹道的优化问题。观测结果是由估计的方位作出的。这个问题包括确定控制的顺序(例如接收者的标题),从而使成本函数最大化。这个成本泛函通常是费雪信息矩阵(FIM)的泛函。FIM矩阵的行列式除单调性外,具有所有需要的性质。分析非常复杂。本文的很大一部分是围绕着FIM行列式的近似。利用它们,证明了在远距离和有界控制假设下,控制序列属于一般类的bang-bang控制。这些结果表明了机动多样性的重要性。更一般地说,它们为优化观测器轨迹提供了一个通用框架。
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Optimization of the observer motion for bearings-only target motion analysis Data fusion by optimal sensor switching Measures of effectiveness for multiple ROTHR track data fusion (MRTDF) Multiple source clustering: a probabilistic reasoning approach Object detection in traffic scenes by a colour video and radar data fusion approach
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