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Designing Waveform Sets with Good Correlation and Stopband Properties for MIMO Radar via the Gradient-Based Method

机译:通过基于梯度的方法设计具有良好相关性和阻带特性的MIMO雷达波形集

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摘要

Waveform sets with good correlation and/or stopband properties have received extensive attention and been widely used in multiple-input multiple-output (MIMO) radar. In this paper, we aim at designing unimodular waveform sets with good correlation and stopband properties. To formulate the problem, we construct two criteria to measure the correlation and stopband properties and then establish an unconstrained problem in the frequency domain. After deducing the phase gradient and the step size, an efficient gradient-based algorithm with monotonicity is proposed to minimize the objective function directly. For the design problem without considering the correlation weights, we develop a simplified algorithm, which only requires a few fast Fourier transform (FFT) operations and is more efficient. Because both of the algorithms can be implemented via the FFT operations and the Hadamard product, they are computationally efficient and can be used to design waveform sets with a large waveform number and waveform length. Numerical experiments show that the proposed algorithms can provide better performance than the state-of-the-art algorithms in terms of the computational complexity.
机译:具有良好相关性和/或阻带特性的波形集已受到广泛关注,并已广泛用于多输入多输出(MIMO)雷达中。在本文中,我们旨在设计具有良好相关性和阻带特性的单模波形集。为了解决这个问题,我们构造了两个标准来测量相关性和阻带特性,然后在频域中建立一个不受约束的问题。在推导了相位梯度和步长之后,提出了一种有效的基于梯度的单调性算法,以直接最小化目标函数。对于不考虑相关权重的设计问题,我们开发了一种简化的算法,该算法仅需要执行一些快速傅立叶变换(FFT)操作,并且效率更高。由于这两种算法都可以通过FFT运算和Hadamard乘积实现,因此它们的计算效率很高,可以用于设计具有较大波形数和较大波形长度的波形集。数值实验表明,所提出的算法在计算复杂度方面可以提供比最新算法更好的性能。

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