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Pattern Synthesis of Time-Modulated Sparse Array by an OPM-CVX Algorithm

机译:基于OPM-CVX算法的时调制稀疏阵列模式合成

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摘要

This paper addresses the constrained multiobjective optimization problem of time-modulated sparse arrays. The synthesis objective is to find an optimal element arrangement and associated excitation strategy of sparse arrays, which realize the balance of radiation power and sideband suppression performance with minimum number of elements, and suppress side lobe level simultaneously. A novel hybrid algorithm based on orthogonal perturbation method and convex optimization (OPM-CVX) for the synthesis of time-modulated sparse antenna array is presented in this paper. In order to satisfy the main lobe beamforming and side lobe suppression of sparse arrays, the proposed method optimizes element positions with minimum array numbers by orthogonal perturbation method and optimizes excitations of array element with dynamic range ratio constraint by convex optimization. Furthermore, a trapezoidal pulse time-modulated switching function is proposed to find the balance of radiation power and sideband suppression performance. The numerical results indicate that the proposed algorithm can be an effective approach for synthesis problems of time-modulated sparse arrays.
机译:该文解决了时间调制稀疏阵列的约束多目标优化问题。该综合目标是找到稀疏阵列的最优元素排列和相关激励策略,以最少的元素数量实现辐射功率和边带抑制性能的平衡,同时抑制旁瓣电平。该文提出了一种基于正交扰动法和凸优化(OPM-CVX)的混合算法,用于合成时间调制稀疏天线阵列。为了满足稀疏阵列的主瓣波束成形和旁瓣抑制问题,该方法采用正交扰动法优化阵列数最小的单元位置,并通过凸优化动态距离比约束的阵列单元激励。此外,该文还提出了一种梯形脉冲时间调制开关函数,以求出辐射功率和边带抑制性能的平衡点。数值结果表明,所提算法可以有效解决时间调制稀疏阵列的合成问题。

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