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New Generalized Multi-Structured MIMO Radar Configuration With Increased Degrees of Freedom

机译:具有增加的自由度的新型广义多结构MIMO雷达配置

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摘要

Unlike traditional phased-array-radar, multiple-input multiple-output (MIMO) radar is capable of achieving more degrees-of-freedom (DOF) and larger virtual aperture (VA) for the direction-of-arrival (DOA) estimation. In this letter, a new universal antenna array approach employing a one-level transmitter (Tx) and generalized receiver (Rx) is presented for MIMO radar to enhance the DOA estimation performance. The proposed configuration significantly improves the DOF capacity and expands VA by utilizing difference co-array of sum co-array method. The first-level of the Rx and a Tx with increased inter-element spacing is constructed using the nested-coprime array with displaced sub-arrays structure. The proposed Rx is transformable, generic, and easier to realize. It exploits symmetrical array geometry, such that once the initial-level is designed, the remaining stages will be known. The Rx also reveals an inbuilt Tx. Moreover, it achieves increased DOF and enlarged VA, reflecting the multifaceted advantages of the new Rx approach. The configuration is also benefited with closed-form expressions for VA, sensor locations, and DOF. Simulation results demonstrate the superiority of the proposed MIMO radar.
机译:与传统相控阵 - 雷达不同,多输入多输出(MIMO)雷达能够实现更多的自由度(DOF)和更大的虚拟孔径(VA),用于到达方向(DOA)估计。在这封信中,提出了一种采用单级发射机(Tx)和广义接收器(Rx)的新的通用天线阵列方法,以增强DOA估计性能。所提出的配置通过利用总和共阵方法的差异共计阵列显着提高了DOF容量并扩展了VA。使用具有位移的子阵列结构的嵌套 - COPRIME阵列构造具有增加的元素间距的RX和Tx的第一级。所提出的RX是可转换的,通用的,更容易实现。它利用对称阵列几何体,使得一旦设计了初始级别,就会知道剩余的阶段。 RX还揭示了内置的Tx。此外,它达到了增加的DOF和增大VA,反映了新RX方法的多方面优点。配置也受益于VA,传感器位置和DOF的闭合表达式。仿真结果表明了所提出的MIMO雷达的优越性。

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