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Colocated MIMO radar transmit beamforming using orthogonal waveforms

机译:使用正交波形的共置MIMO雷达发射波束成形

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Multiple-input-multiple-output (MIMO) radar transmit beamforming mainly relies on designing transmitted signals with an appropriate covariance matrix. The signals can be designed using a two-step method which first optimizes the covariance matrix and then searches for the signals accordingly. A more efficient way is to synthesize transmitted signals by designing a weight matrix given a set of orthogonal waveforms, which makes use of both MIMO waveform diversity and phased-array transmit gain. In this paper, we propose a method to design the transmit beampattern by solving a semidefinite programming (SDP) problem. Then the eigen-decomposition of the optimal covariance matrix yields the weight matrix. Therefore it is called the SDP-EIG method. As a result, the overall transmitted waveforms are obtained more simply and efficiently, and the number of orthogonal signals required to form a desired beam reaches its minimum.
机译:多输入多输出(MIMO)雷达发射波束成形主要依赖于设计具有适当协方差矩阵的发射信号。可以使用两步法设计信号,该方法首先优化协方差矩阵,然后相应地搜索信号。一种更有效的方法是通过设计给定一组正交波形的权重矩阵来合成发射信号,该方法同时利用了MIMO波形分集和相控阵发射增益。在本文中,我们提出了一种通过解决半定规划(SDP)问题来设计发射波束方向图的方法。然后,最优协方差矩阵的特征分解得到权重矩阵。因此,它被称为SDP-EIG方法。结果,更简单和有效地获得了总的发射波形,并且形成期望光束所需的正交信号的数量达到其最小值。

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