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Signaling Strategies for the Hybrid MIMO Phased-Array Radar

机译:混合MIMO相控阵雷达的信令策略

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The Hybrid MIMO Phased Array Radar (HMPAR) is a notional concept for a multisensor radar architecture that combines elements of traditional phased-array radar with the emerging technology of multiple-input multiple output (MIMO) radar. A HMPAR comprises a large number, $MP$, of T/R elements, organized into $M$ subarrays of $P$ elements each. Within each subarray, passive element-level phase shifting is used to steer transmit and receive beams in some desired fashion. Each of the $M$ subarrays are in turn driven by independently amplified phase-coded signals which could be quasi-orthogonal, phase-coherent, or partially correlated. Such a radar system could be used in an airborne platform for concurrent search, detect, and track missions. This paper considers various signaling strategies which could be employed in the notional HMPAR architecture to achieve various objectives quantified by transmit beampatterns and space–time ambiguity functions. First, we propose a method to generate multiple correlated signals for uniform linear and rectangular arrays that achieve arbitrary rectangular transmit beampatterns in one and two dimensions, while maintaining desirable temporal properties. Examples of the range of transmit beampatterns possible with this technique are illustrated for an array of $MP=900$ elements, arranged using different values of $M$ and $P$. Then the space–time, or MIMO, ambiguity function that is appropriate for the HMPAR radar system is derived. Examples of ambiguity funct-nions for our signals using a one-dimensional HMPAR architecture are given, demonstrating that one can achieve phased-array-like resolution on receive, for arbitrary transmit beampatterns.
机译:混合MIMO相控阵雷达(HMPAR)是多传感器雷达体系结构的概念概念,将传统相控阵雷达的要素与新兴的多输入多输出(MIMO)雷达技术相结合。 HMPAR包含大量的$ MP $ T / R元素,这些元素被组织成每个$ P $元素的$ M $子数组。在每个子阵列中,无源元件级相移用于以某种所需的方式控制发射和接收光束。每个$ M $子阵列依次由独立放大的相位编码信号驱动,这些信号可以是准正交,相干或部分相关的。这种雷达系统可以在机载平台上用于同时搜索,检测和跟踪任务。本文考虑了可以在概念HMPAR体系结构中采用的各种信令策略,以实现通过发射波束模式和时空歧义函数量化的各种目标。首先,我们提出一种为均匀的线性和矩形阵列生成多个相关信号的方法,该阵列可以在一维和二维上实现任意矩形发射波束图,同时保持所需的时间特性。对于使用$ M $和$ P $的不同值排列的$ MP = 900 $个元素的阵列,说明了此技术可能的发射波束模式范围的示例。然后得出适用于HMPAR雷达系统的时空或MIMO模糊度函数。给出了使用一维HMPAR架构为我们的信号提供歧义函数的示例,证明了对于任意发射波束模式,它可以在接收时实现类似相控阵的分辨率。

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