基于粒子群算法和烟花算法的射频能量收集超表面吸收器优化设计

IF 2.1 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Na Chen;Shiyou Yang;Siguang An
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引用次数: 0

摘要

为了解决射频(RF)能量收集超表面吸收器优化设计中固有的非线性、多模态和计算密集型挑战,我们提出了一种结合粒子群优化(PSO)和烟花算法(FWA)的创新混合算法。该混合算法有以下几个改进:1)利用电磁器件的频率响应随物理参数的缩放而变化的启发,建立了一种准缩放机制,以平衡勘探和开采搜索;2)引入自适应惯性权值,提高收敛速度;3)采用精英保护策略,确保全局收敛。通过求解第一个数学测试函数,验证了该算法的有效性和优越性;然后,给出了两个实际案例:多波段吸收器(1.8-3 GHz, 5.85 GHz)和宽带吸收器(8-15 GHz),其中采用了新的双极化超表面吸收器拓扑。这两种情况都得到了有效的优化,在目标波段内显示出较高的吸收效率,并通过模拟和测量结果进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Hybrid Algorithm Based on PSO and Fireworks Algorithm for Optimal Design of Metasurface Absorber in RF Energy Harvesting
To address the nonlinear, multimodal, and computationally intensive challenges inherent in the optimal design of metasurface absorbers for radio frequency (RF) energy harvesting, we propose an innovative hybrid algorithm that combines particle swarm optimization (PSO) and fireworks algorithm (FWA). The proposed hybrid algorithm features several enhancements: 1) a quasi-scaling (Q.S.) mechanism, inspired by the frequency response of electromagnetic (EM) devices shifting with the scaling of physical parameters, is developed to balance the exploration and exploitation searches; 2) a self-adaptive inertia weight is introduced to enhance the convergence speed; and 3) an elite-preservation strategy is employed to ensure a global convergence. The effectiveness and merits of the proposed algorithm are validated by solving first mathematical test functions; then, two practical cases: a multi-band absorber (1.8–3 GHz, 5.85 GHz) and a broadband absorber (8–15 GHz), where a new dual-polarized metasurface absorber topology is employed. Both cases are efficiently optimized, demonstrating high absorption efficiencies within the targeted bands, and validated by both simulated and measured results.
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来源期刊
IEEE Transactions on Magnetics
IEEE Transactions on Magnetics 工程技术-工程:电子与电气
CiteScore
4.00
自引率
14.30%
发文量
565
审稿时长
4.1 months
期刊介绍: Science and technology related to the basic physics and engineering of magnetism, magnetic materials, applied magnetics, magnetic devices, and magnetic data storage. The IEEE Transactions on Magnetics publishes scholarly articles of archival value as well as tutorial expositions and critical reviews of classical subjects and topics of current interest.
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