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Target Velocity Estimation and Antenna Placement for MIMO Radar With Widely Separated Antennas

机译:天线高度分离的MIMO雷达目标速度估计和天线放置

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This paper studies the velocity estimation performance for multiple-input multiple-output (MIMO) radar with widely spaced antennas. We derive the Cramer–Rao bound (CRB) for velocity estimation and study the optimized system/configuration design based on CRB. General results are presented for an extended target with reflectivity varying with look angle. Then detailed analysis is provided for a simplified case, assuming an isotropic scatterer. For given transmitted signals, optimal antenna placement is analyzed in the sense of minimizing the CRB of the velocity estimation error. We show that when all antennas are located at approximately the same distance from the target, symmetrical placement is optimal and the relative position of transmitters and receivers can be arbitrary under the orthogonal received signal assumption. In this case, it is also shown that for MIMO radar with optimal placement, velocity estimation accuracy can be improved by increasing either the signal time duration or the product of the number of transmit and receive antennas.
机译:本文研究了宽间隔天线的多输入多输出(MIMO)雷达的速度估计性能。我们推导了Cramer-Rao边界(CRB)用于速度估计,并研究了基于CRB的优化系统/配置设计。给出了反射率随视角变化的扩展目标的一般结果。然后,假设为各向同性散射体,则为简化的情况提供了详细的分析。对于给定的发射信号,在最小化速度估计误差的CRB的意义上分析了最佳天线放置。我们表明,当所有天线都距目标大约相同距离时,对称放置是最佳的,并且在正交接收信号假设下,发射器和接收器的相对位置可以是任意的。在这种情况下,还表明,对于具有最佳放置的MIMO雷达,可以通过增加信号持续时间或增加发射和接收天线数的乘积来提高速度估计的准确性。

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