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Ultracompact Monostatic MIMO Radar With Nonredundant Aperture

机译:Ultracpact单体MIMO雷达,具有NOREDULS孔径

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Monostaticmultiple-input-multiple-output (MIMO) radar configurations using the same antenna array for transmission and reception inherently lead to redundant virtual antenna positions within the virtual MIMO aperture. This article presents a new method for designing monostatic MIMO radars where this disadvantage may be overcome and nonredundant virtual arrays are yielded by exploiting biomimetic antenna arrays (BMAAs). The new concept of biomimetic MIMO is introduced and thoroughly investigated in this article. Its working principle is compared with conventional monostatic MIMO and verified by radar measurements. The new approach is intended to improve the angle estimation capability of, in particular, small radar systems. Therefore, the concept is applied to an ultracompact twochannel radar monolithic microwave integrated circuit (MMIC) with fully integrated antennas for range and angle measurements in the 150-GHz range. The chip features two monostatic transmit-receive (TRX) channels with an antenna spacing of lambda/4 and occupies less than 3 mm2 of space. By applying biomimetic MIMO, a virtual aperture consisting of four unique antenna positions and an equivalent total size of around 1.5 lambda is achieved.
机译:MontrativeMulliple-input-多输出(MIMO)使用相同的天线阵列进行传输和接收的雷达配置固有地导致虚拟MIMO孔径内的冗余虚拟天线位置。本文介绍了设计单声道MIMO雷达的新方法,其中可以通过利用生物摩托的天线阵列(BMAA)来克服该缺点并且产生非还虚拟阵列。在本文中介绍并彻底研究了生物摩麦细胞的新概念。将其工作原理与传统的单体MIMO进行比较,并通过雷达测量验证。新方法旨在提高尤其是小雷达系统的角度估计能力。因此,该概念应用于Ultrachopact二通道雷达整体微波集成电路(MMIC),其具有完全集成的天线,用于150GHz范围内的范围和角度测量。该芯片具有两个单体传输接收(TRX)通道,其天线间距为λ/ 4,占用小于3mm2的空间。通过施加生物摩擦模床,实现了由四个独特的天线位置和等效总尺寸的虚拟孔径。

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