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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Reply to “Comments on Waveform Optimization for Transmit Beamforming With MIMO Radar Antenna Array”
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Reply to “Comments on Waveform Optimization for Transmit Beamforming With MIMO Radar Antenna Array”

机译:回复“关于使用MIMO雷达天线阵列进行发射波束成形的波形优化的评论”

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摘要

First of all, we want to thank the authors of[1]for their interest in our work[2]. In[2], the waveform design was carried out in the space domain only (coding the phases for different elements at the same moment) to form a desired transmit beam pattern at a given moment. However, if the MIMO radar waveforms are designed to satisfy the requirements in transmit beamforming (i.e., generating radiation nulls in specific directions) as well as the orthogonality between the waveforms transmitted from different elements, they must be coded simultaneously in space-time domains[3]. It turns out that the space-time coded waveforms cannot be exactly orthogonal in time domain. More specifically, to form a beam pattern with radiation null on a preselected direction, the waveforms can be optimized to be near-orthogonal with their cross correlation levels of about 1/$N$with$N $being the coding length. In[1], the authors questioned if the radiation energy in the preselected target direction could really be reduced or minimized based on (2). Since the cross correlations of the designed waveforms are nontrivial for a reasonable coding length, (2) does not hold true for the designed waveforms, and thus, cannot refute the conclusions obtained in[2]. In addition, the evaluation of (2), which is similar to the result of matched filtering, requires the full knowledge of the transmitted waveforms and cannot be done by a noncooperative target. Therefore, the designed MIMO radar waveforms in[2]and[3]would generate near-zero or very weak radiation (defocused beam) in the intended direction and are theoretically undetectable by noncooperative targets in the same direction.1However, for MIMO radar itself with full knowledge of transmit waveforms, target detection can be performed with the maximum gain through refocusing transmit-receive beam via space-time matched filtering processing at the radar receiver.
机译:首先,我们要感谢 n [1] n对我们的工作感兴趣 n [2] n。在 n [2],波形设计仅在空间域中进行(同时编码不同元素的相位)在给定时刻形成所需的发射波束方向图。但是,如果将MIMO雷达波形设计为满足发射波束成形的要求(即在特定方向上生成辐射零点)以及从不同元素发射的波形之间的正交性,则必须在空时域中同时对它们进行编码 n [3]。事实证明,时空编码波形不能在时域中完全正交。更具体地,为了形成在预选方向上具有零辐射的光束图案,可以将波形优化为近似正交,其互相关水平为约1 / n,线性公式为: /www.w3.org/1998/Math/MathML “ xmlns:xlink = ” http://www.w3.org/1999/xlink “> $ N $ nwith n $ N $ n是编码长度。在 n [1]的基础上,作者质疑是否可以根据(2)真正降低或最小化目标方向的辐射能。由于设计波形的互相关对于合理的编码长度而言是不平凡的,因此(2)对于设计波形不成立,因此无法反驳在 n [2] n。此外,与匹配滤波的结果相似,对(2)的评估需要完全了解已发射的波形,并且无法由非合作目标完成。因此,设计的MIMO雷达波形为 n [2] nand n [3] n会在预期的方向上产生接近零的辐射或非常弱的辐射(散焦光束),并且从理论上讲是同一方向上的非合作目标无法检测到的。 n < sup> 1 n但是,对于完全了解发射波形的MIMO雷达本身,可以通过在雷达上进行时空匹配滤波处理将发射-接收波束重新聚焦,从而以最大增益执行目标检测接收器。

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