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首页> 外文期刊>IEEE Transactions on Signal Processing >MIMO Radar Transmit Beampattern Design With Ripple and Transition Band Control
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MIMO Radar Transmit Beampattern Design With Ripple and Transition Band Control

机译:具有纹波和过渡带控制的MIMO雷达发射波束图设计

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摘要

The waveform diversity of multiple-input-multiple-output (MIMO) radar systems offers many advantages in comparison to the phased-array counterpart. One of the advantages is that it allows one to design MIMO radar with flexible transmit beampatterns, which has several useful applications. Many researchers have proposed solutions to this problem in the recent decade. However, these designs pay little attention to certain aspects of the performance such as the ripples within the energy focusing section, the attenuation of the sidelobes, the width of the transition band, the angle step-size, and the required number of transmit antennas. In this paper, we first propose several methods that can indirectly or directly control the ripple levels within the energy focusing section and the transition bandwidth. These methods are based on existing problem formulations. More importantly, we reformulate the design as a feasibility problem (FP). Such a formulation enables a more flexible and efficient design that achieves the most preferable beampatterns with the least system cost. Using this formulation, an empirical MIMO radar beampattern formula is obtained. This MIMO radar beampattern formula is similar to Kaiser's formula in conventional finite-impulse-response (FIR) filter design. The performances of the proposed methods and formulations are evaluated via numerical examples.
机译:与相控阵雷达相比,多输入多输出(MIMO)雷达系统的波形分集具有许多优势。优点之一是它允许设计具有灵活发射波束模式的MIMO雷达,它具有多种有用的应用。近十年来,许多研究人员提出了解决该问题的方案。但是,这些设计很少关注性能的某些方面,例如能量聚焦部分内的波纹,旁瓣的衰减,过渡带的宽度,角度步长以及所需的发射天线数量。在本文中,我们首先提出几种可以间接或直接控制能量聚焦部分和过渡带宽内的纹波电平的方法。这些方法基于现有的问题表述。更重要的是,我们将设计重新定义为可行性问题(FP)。这样的公式化使得能够以最少的系统成本实现最优选的光束图案的更加灵活和有效的设计。使用该公式,可以获得经验MIMO雷达波束图案公式。该MIMO雷达波束图公式与传统的有限冲激响应(FIR)滤波器设计中的Kaiser公式相似。通过数值实例评估了所提出的方法和配方的性能。

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