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A Doppler Robust Design of Transmit Sequence and Receive Filter in the Presence of Signal-Dependent Interference

机译:存在信号相关干扰的发射序列和接收滤波器的多普勒鲁棒设计

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In this paper, we study the joint design of Doppler robust transmit sequence and receive filter to improve the performance of an active sensing system dealing with signal-dependent interference. The signal-to-noise-plus-interference (SINR) of the filter output is considered as the performance measure of the system. The design problem is cast as a max-min optimization problem to robustify the system SINR with respect to the unknown Doppler shifts of the targets. To tackle the design problem, which belongs to a class of NP-hard problems, we devise a novel method (which we call DESIDE) to obtain optimized pairs of transmit sequence and receive filter sharing the desired robustness property. The proposed method is based on a cyclic maximization of SINR expressions with relaxed rank-one constraints, and is followed by a novel synthesis stage. We devise synthesis algorithms to obtain high quality pairs of transmit sequence and receive filter that well approximate the behavior of the optimal SINR (of the relaxed problem) with respect to target Doppler shift. Several numerical examples are provided to analyze the performance obtained by DESIDE.
机译:在本文中,我们研究了多普勒鲁棒发射序列和接收滤波器的联合设计,以提高主动传感系统应对信号相关干扰的性能。滤波器输出的信噪比(SINR)被视为系统的性能指标。设计问题被视为最大-最小优化问题,以针对目标的未知多普勒频移增强系统SINR。为了解决属于一类NP难题的设计问题,我们设计了一种新颖的方法(称为DESIDE)来获取优化的发射序列对,并接收共享所需鲁棒性的滤波器。所提出的方法是基于具有松弛秩一约束的SINR表达式的循环最大化,随后是一个新颖的合成阶段。我们设计合成算法以获得高质量的发射序列对和接收滤波器,这些滤波器可以很好地近似最佳SINR(松弛问题的)相对于目标多普勒频移的行为。提供了几个数值示例来分析DESIDE获得的性能。

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