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Adaptive waveform and Cartesian estimate selection for multistatic target tracking

机译:用于多目标跟踪的自适应波形和笛卡尔估计选择

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摘要

This paper considers the problem of target tracking by a multistatic radar system. In order to use linear Kalman filtering for tracking, the time delay, Doppler shift and arrival angle measurements from multiple receivers are transformed into target position and velocity estimates in Cartesian coordinates before being processed by the Kalman filter. A new multistatic tracking algorithm is proposed with the novel feature of joint adaptive selection of transmitted waveform and Cartesian estimate to minimize the mean-square error of the tracking estimate. Cramer-Rao lower bounds (CRLBs) of Cartesian estimates are derived and exploited in the development of the joint adaptive selection scheme. Three main performance advantages of the proposed algorithm are (ⅰ) reduction of bandwidth and power consumption in transmitter-receiver communication links by utilizing a single Cartesian estimate in tracking process, (ⅱ) optimization of the tracking performance by jointly selecting waveform and Cartesian estimate, and (ⅲ) the inherent benefits of linear estimation from use of the linear Kalman filter including stability. Simulation examples demonstrate the dependence of the CRLBs of the Cartesian estimates on the transmitted waveform, target position and velocity, radar geometry, and particular elliptic-to-Cartesian transformation. Simulations also highlight the superior performance of our proposed algorithm over existing techniques.
机译:本文考虑了多静态雷达系统的目标跟踪问题。为了使用线性卡尔曼滤波进行跟踪,在被卡尔曼滤波器处理之前,将来自多个接收器的时间延迟,多普勒频移和到达角测量值转换为笛卡尔坐标系中的目标位置和速度估计值。提出了一种新的多静态跟踪算法,该算法具有自适应自适应选择发射波形和直角坐标估计的新特征,以最小化跟踪估计的均方误差。笛卡尔估计的Cramer-Rao下界(CRLB)可以在联合自适应选择方案的开发中得到利用。所提出算法的三个主要性能优势是(by)通过在跟踪过程中利用单个笛卡尔估计来减少发射机-接收机通信链路中的带宽和功耗,(ⅱ)通过共同选择波形和笛卡尔估计来优化跟踪性能, (ⅲ)线性卡尔曼滤波器的使用带来的线性估计的固有优势,包括稳定性。仿真示例说明了笛卡尔估计的CRLB对所传输的波形,目标位置和速度,雷达几何形状以及特定的椭圆到笛卡尔变换的依赖性。仿真还强调了我们提出的算法优于现有技术的性能。

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