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Adaptive distributed waveform selection for target tracking by a multistatic radar system

机译:多基地雷达系统用于目标跟踪的自适应分布式波形选择

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We propose an algorithm that performs joint target tracking and adaptive waveform selection at all the receivers of a multistatic radar system in a collaborative and fully distributed manner. The receivers track the target cooperatively utilizing an extended version of the recently-proposed diffusion Kalman filter and perform adaptive waveform selection by minimizing the mean-square tracking error. The centralized adaptive waveform-selection algorithms for multi-static radar systems require collection of the data measured by all the receivers in the system using possibly long receiver-transmitter communication links. On the other hand, the proposed algorithm solely relies on the local communications among the neighboring receivers to disseminate the information across the system. Moreover, all the receivers perform the same tasks of target tracking and optimal waveform selection and roughly converge to the same estimated values. Thus, the information of the best waveform to be transmitted as well as the target's track can be passed to the transmitter from any receiver. Simulation results show that the proposed algorithm outperforms the conventional fixed-waveform algorithms and performs close to the centralized adaptive waveform-selection algorithm.
机译:我们提出一种算法,以协作和完全分布式的方式在多基地雷达系统的所有接收器上执行联合目标跟踪和自适应波形选择。接收器利用最近提出的扩散卡尔曼滤波器的扩展版本来协同跟踪目标,并通过最小化均方跟踪误差来执行自适应波形选择。用于多静态雷达系统的集中式自适应波形选择算法需要使用可能较长的接收器-发射器通信链路来收集系统中所有接收器测量的数据。另一方面,所提出的算法仅依赖于相邻接收机之间的本地通信来在整个系统上传播信息。此外,所有接收器执行目标跟踪和最佳波形选择的相同任务,并大致收敛到相同的估计值。因此,可以从任何接收器将要发射的最佳波形信息以及目标的轨迹传送到发射器。仿真结果表明,该算法优于传统的固定波形算法,性能接近集中式自适应波形选择算法。

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