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Cramér–Rao Lower Bounds Comparison for 2D Hybrid–MIMO and MIMO Radar

机译:2D Hybrid-MIMO和MIMO雷达的Cramér-Rao下界比较

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摘要

The Hybrid MIMO Phased Array Radar (HMPAR) is a multisensor radar architecture that merges the concepts of a traditional phased array radar with the colocated multiple-input multiple-output (MIMO) radar. This radar system is composed of a large number of T/R elements, MP, organized into M subarrays of P elements each. The subarrays can be electronically steered in different directions and driven by separate transmit waveforms. Previous publications focused attention on the transmit signaling strategies and transmit beampatterns. Here, we provide the analytical Cramér–Rao lower bounds (CRLB) on the target location for a planar HMPAR. Fixing the total number of T/R elements, we create two scenarios, in order to compare the CRLB values of different HMPAR configurations to the MIMO CRLB. Moreover, we assume that the radar systems employ transmit signals that follow the intrapulse beamscan concept, namely signals that rapidly scan the field of view. Depending on the scenario, results show that the HMPAR is able to achieve lower CRLB values than the MIMO.
机译:混合MIMO相控阵雷达(HMPAR)是一种多传感器雷达体系结构,将传统相控阵雷达的概念与并置的多输入多输出(MIMO)雷达融合在一起。该雷达系统由大量的T / R元素MP组成,每个M / P元素组成M个子阵列。子阵列可以在不同方向上进行电子控制,并由单独的发射波形驱动。先前的出版物将注意力集中在发射信令策略和发射波束图上。在这里,我们为平面HMPAR提供了目标位置上的解析Cramér-Rao下界(CRLB)。固定T / R元素的总数,我们创建两个方案,以便将不同HMPAR配置的CRLB值与MIMO CRLB进行比较。此外,我们假设雷达系统采用遵循脉冲内束扫描概念的发射信号,即快速扫描视场的信号。根据情况,结果表明,HMPAR能够实现比MIMO更低的CRLB值。

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