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Constant-Modulus-Waveform Design for Multiple-Target Detection in Colocated MIMO Radar

机译:并置MIMO雷达中用于多目标检测的恒模波形设计

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摘要

For improving the performance of multiple-target detection in a colocated multiple-input multiple-output (MIMO) radar system, a constant-modulus-waveform design method is presented in this paper. The proposed method consists of two steps: simultaneous multiple-transmit-beam design and constant-modulus-waveform design. In the first step, each transmit beam is controlled by an ideal orthogonal waveform and a weight vector. We optimized the weight vectors to maximize the detection probabilities of all targets or minimize the transmit power for the purpose of low intercept probability in the case of predefined worst detection probabilities. Various targets’ radar cross-section (RCS) fluctuation models were also considered in two optimization problems. Then, the optimal weight vectors multiplied by ideal orthogonal waveforms were a set of transmitted waveforms. However, those transmitted waveforms were not constant-modulus waveforms. In the second step, the transmitted waveforms obtained in the first step were mapped to constant-modulus waveforms by cyclic algorithm. Numerical examples are provided to show that the proposed constant-waveform design method could effectively achieve the desired transmit-beam pattern, and that the transmit-beam pattern could be adaptively adjusted according to prior information.
机译:为了提高共置多输入多输出(MIMO)雷达系统中多目标检测的性能,提出了一种恒定模量波形设计方法。所提出的方法包括两个步骤:同时多发射束设计和恒定模波形设计。第一步,通过理想的正交波形和权重矢量控制每个发射波束。在预定义的最坏检测概率的情况下,出于低拦截概率的目的,我们优化了权重向量以最大化所有目标的检测概率或最小化发射功率。在两个优化问题中还考虑了各种目标的雷达横截面(RCS)波动模型。然后,乘以理想正交波形的最佳权向量是一组发射波形。但是,那些传输的波形不是恒定模数波形。在第二步骤中,通过循环算法将在第一步骤中获得的发射波形映射为恒定模数波形。数值算例表明,所提出的恒定波形设计方法可以有效地实现所需的发射波束方向图,并且可以根据先验信息自适应地调整发射波束方向图。

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