可重构电磁表面的最新进展:工程设计、全波分析和大规模优化

Incheol Jung;Zhen Peng;Yahya Rahmat-Samii
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摘要

本文全面回顾了可重构电磁(EM)表面的最新进展。讨论围绕可重构电磁表面的三个关键方面展开:单元工程设计、全波数值分析和大规模优化技术。本书还提供了大量参考文献,以方便读者进一步探讨这一引人注目且适时的课题。针对上述三个关键方面,我们对可重构设备中元表面的设计过程进行了广泛的研究。这包括评估单元单元的设计方法、为高度复杂结构量身定制的电磁仿真技术,以及适用于变量众多情况的创新优化方法。在以可重新配置为特点的场景中,为满足新兴通信环境对电磁波的实时操控要求,优化成本函数由多个变量定义,在设计空间中表现出错综复杂的行为。因此,需要一种能够处理高维函数而不会陷入局部极小值的优化方法。此外,元表面器件的复杂几何形状排除了分析解决方案,因此需要高性能的全波求解器,以最小的计算成本提供高精度的模拟。本文以统一的方式介绍了与上述设计阶段相关的关键概念和细节,并列举了具有代表性的示例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Advances in Reconfigurable Electromagnetic Surfaces: Engineering Design, Full-Wave Analysis, and Large-Scale Optimization
This paper presents a comprehensive review of recent advances in reconfigurable electromagnetic (EM) surfaces. The discussion is organized around three key aspects of reconfigurable EM surfaces: unit cell engineering design, full-wave numerical analysis, and large-scale optimization techniques. Numerous references are provided to facilitate further exploration of this compelling and timely subject. To address the above three key aspects, we conduct an extensive examination of the design process for metasurfaces in reconfigurable devices. This involves evaluating the design methodology of unit cells, EM simulation techniques tailored for highly complex structures, and innovative optimization methods suitable for scenarios with numerous variables. In scenarios featuring reconfigurability for real-time manipulation of EM waves to meet the requirements of emerging communication environments, the optimization cost function is defined with multiple variables, exhibiting intricate behavior in the design space. Consequently, it necessitates an optimization methodology capable of handling high-dimensional functions without getting trapped in local minima. Moreover, the intricate geometries of metasurface devices preclude analytical solutions, necessitating high-performance full-wave solvers capable of providing highly accurate simulations with minimal computational expense. Key concepts and details pertaining to the aforementioned design stages are presented in a unified manner, along with representative examples.
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