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Design of Radar Receive Filters Optimized According to $L_{p}$-Norm Based Criteria

机译:根据 $ L_ {p} $ -基于范数的准则进行优化的雷达接收滤波器的设计

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This correspondence deals with the design of radar receive filters for pulse compression which optimize either the $L_{p}$-norm of the vector containing the filter sidelobe energies or the inverse signal-to-noise power ratio (ISNR) under an upper-bound constraint on the previously mentioned $L_{p}$-norm. In both the cases, we prove that the filter design can be formulated as a convex optimization second-order cone programming (SOCP) problem which can be efficiently solved with a polynomial time computational complexity resorting to interior point methods. At the analysis stage, we assess the performance of the receive filters in correspondence of different values of the parameter $p$ highlighting the performance compromises between the integrated sidelobe level (ISL), the peak sidelobe level (PSL), and the ISNR. Finally, we study the effects of the filter length on the performance as well as the Doppler tolerance of the devised filters. The results show that the proposed technique leads to satisfactory performance levels and good Doppler tolerances.
机译:这种对应关系涉及用于脉冲压缩的雷达接收滤波器的设计,该滤波器优化了 $ L_ {p} $ -范数在前面提到的 $ L_ {p的上限约束下,包含滤波器旁瓣能量或逆信噪功率比(ISNR)的向量} $ -范数。在这两种情况下,我们证明滤波器设计可以表述为凸优化二阶锥规划(SOCP)问题,该问题可以通过采用内点法的多项式时间计算复杂度来有效解决。在分析阶段,我们根据参数 $ p $ 的不同值来评​​估接收过滤器的性能。集成旁瓣电平(ISL),峰值旁瓣电平(PSL)和ISNR之间的性能折衷。最后,我们研究了滤波器长度对所设计滤波器的性能以及多普勒容限的影响。结果表明,所提出的技术导致令人满意的性能水平和良好的多普勒公差。

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