指向性
涟漪
块(置换群论)
航程(航空)
投影(关系代数)
最大化
计算机科学
算法
坐标下降
数学优化
主瓣
梁(结构)
平面的
数学
天线(收音机)
物理
光学
电信
几何学
工程类
计算机图形学(图像)
航空航天工程
电压
量子力学
作者
Hui Zeng,Zhenhai Xu,Shengbin Luo Wang,Wei Dong,Shunping Xiao
标识
DOI:10.1109/tap.2024.3523636
摘要
The main-lobe directivity maximization problem for shaped beams of linear and planar arrays are addressed based on the framework of alternating direction method of multipliers (ADMM). First, the optimization model with three constraints including the predefined mainlobe ripple loss (MRL), sidelobe level (SLL) and dynamic range ratio (DRR) is established. This model is nonconvex due to the constraints of directivity and excitations. To deal with the nonconvexity, several auxiliary variables and augmented Lagrangian method are introduced to transform the original problem into two-block problem. Then, the block coordinate descent method is adapted to update the coupled variables in the first block and projection strategy is used to update the irrelevant variables in the second block. Following above steps, satisfactory array excitations of lower DRR and higher directivity could be obtained with a shorter CPU time when comparing with the state-of-the-art methods. The effectiveness of the proposed method is verified via numerical and full-wave experiments.
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