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Adaptive beamforming for MIMO radar with sidelobe control based on second order cone programming

机译:基于二阶锥规划的带旁瓣控制的MIMO雷达自适应波束形成

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The beampattern of the traditional MVDR beamformer for MIMO radar always has unacceptably high sidelobe levels, especially when the transmit antennas are located more than a half wavelength apart from each other. To overcome this shortcoming, we proposed a new adaptive beamforming algorithm with sidelobe control for MIMO radar. Our method minimizes the power of interferences and noise, while maintaining distortionless response in the direction of target of interest and keeping the sidelobe levels lower than some prescribed threshold value. The second order cone (SOC) formulation of our proposed beamformer is derived which can be easily solved using the well-established interior point method. Simulation results show that our proposed beamformer has substantially lower sidelobe levels than the traditional MVDR one. Both theoretical analyses and simulation results validate the effectiveness of the proposed algorithm.
机译:传统的用于MIMO雷达的MVDR波束形成器的波束图总是具有不可接受的高旁瓣电平,尤其是当发射天线彼此之间的距离超过半个波长时。为了克服这个缺点,我们提出了一种新的带有旁瓣控制的自适应波束成形算法,用于MIMO雷达。我们的方法最大程度地降低了干扰和噪声的影响,同时保持了对目标目标的无失真响应,并使旁瓣电平低于某些规定的阈值。推导了我们提出的波束形成器的二阶圆锥(SOC)公式,可以使用公认的内点法轻松解决。仿真结果表明,我们提出的波束形成器的旁瓣水平比传统的MVDR更低。理论分析和仿真结果均验证了该算法的有效性。

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