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Discontinuous spectra Orthogonal Discrete Frequency-Coding Waveform Set Design for MIMO Sky-wave Radar

机译:MIMO天波雷达的不连续光谱正交离散频率编码波形设计设计

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摘要

In this paper, a discontinuous spectra orthogonal discrete frequency-coding waveform (DFCW) set design method for MIMO sky-wave radar is proposed. The usable discontinuous spectra is divided to a discrete frequency coding according to suitable sub-pulse bandwidth, Taking minimum of weighted sum of the sidelobe peaks of autocorrelation function (ACF), the peaks of cross-correlation function (CCF) and resolutions for DFCW as objective function, the frequency firing combination and order as variables to be optimized, a mathematical model for discontinuous spectra DFCW design is established. The problem is solved by quantum-behaved particle swarm optimization (QPSO) algorithm. Numerical simulation verified the effectiveness of the method of the design of DFCWs.
机译:本文提出了一种不连续的光谱正交离散频率编码波形(DFCW)设定用于MIMO天波雷达的设计方法。可用的不连续光谱被划分为根据合适的子脉冲带宽的离散频率编码,从而最小的自相关函数(ACF)的Sidelobe峰值的加权和,互相关函数(CCF)的峰值和DFCW的分辨率目标函数,频率触发组合和顺序作为变量优化,建立了不连续光谱DFCW设计的数学模型。问题由量子行为粒子群优化(QPSO)算法解决。数值模拟验证了DFCWS设计方法的有效性。

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