辐射近场多目标微波功率传输天线阵优化设计

Kunpeng Liu, Xun Li, Shuo Chen, Longfei Liu, Chunhuai Xue
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引用次数: 0

摘要

提出了一种在辐射近场区域具有多个接收目标的微波功率传输系统的波束收集效率(BCE)最大化方法。利用叠加原理计算了发射阵的电场和磁场。通过理论推导,将BCE最大化问题简化为求两个实数二次型的最大比值问题。基于矩阵理论,通过寻找最大特征值及其相关特征向量,确定发射阵列的最优BCE及其对应的激励。在实际中,多个接收目标所需的功率可能不同。为满足这一要求,考虑各接收目标可分配功率问题的约束,建立了BCE优化模型。采用混合灰狼优化器和Nelder-Mead单纯形法来解决优化问题。为了验证该方法的有效性,首先进行了将辐射功率聚焦到两个平行接收目标上的数值实验。然后,采用两个旋转接收目标来说明其通用性。最后,采用3个和4个接收目标来进一步评估所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal design of antenna arrays for microwave power transmission with multiple receiving targets in the radiative near-field
This study proposes a method for maximizing the beam collection efficiency (BCE) for a microwave power transmission system with multiple receiving targets in the radiative near-field region. The electric and magnetic fields of the transmitting array are calculated via the superposition principle. Through theoretical derivation, the BCE maximization problem is simplified into finding the maximum ratio of two real quadratic forms. Based on the theory of matrices, the optimal BCE and its corresponding excitations of the transmitting array can be determined by finding the largest characteristic value and its associated characteristic vector. In practice, the required power for multiple receiving targets may be different. To meet this requirement, a BCE optimization model is established, considering the constraints of the problem of allocable power for each receiving target. A hybrid grey wolf optimizer and Nelder–Mead simplex method is adopted to address the optimization problem. To verify the effectiveness of the proposed method, numerical experiments on focusing the power radiated on two parallel receiving targets are conducted first. Then, two rotating receiving targets are employed to show its universality. Finally, three and four receiving targets are adopted to further evaluate the validity of the proposed method.
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