数学优化
计算机科学
解算器
稳健性(进化)
启发式
算法
正多边形
迭代法
凸优化
二进制数
数学
几何学
生物化学
化学
算术
基因
作者
Wei Dong,Zhenhai Xu,Xinghua Liu,Shengbin Luo Wang,Shunping Xiao
标识
DOI:10.1109/tap.2019.2955070
摘要
The design of irregular subarrayed planar phased arrays composed of modular tiles is a research area of increasing interest. In this article, a heuristic iterative convex relaxation programming (H-ICRP) framework is proposed. By formulating the tiling of irregular subarray as a binary programming problem, this framework is suitable for arbitrary array aperture and subarray structure. To achieve exact aperture cover, the nonconvex binary constraint is relaxed to a convex approximation and solved through multiple iterations. Furthermore, for better performance of the scanning radiation pattern, the multitask Bayesian compressive sensing (MT-BCS) solver is adopted to find a heuristic initial iteration point instead of randomizing, such that the robustness and effectiveness can be improved remarkably. Good performance and potentialities of the proposed method are verified by comparing with existing approaches in various numerical examples.
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