利用电磁超表面的高效无线电力接收技术进展

Shuai Liu, Han Xiong, Huaiqing Zhang
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引用次数: 0

摘要

微波无线电力传输(MWPT)是应对未来能源挑战的一种有前景的解决方案,在天基太阳能发电站、无人机续航力扩展以及为物联网(IoT)设备供电方面显示出强大的潜力。然而,传统的微波功率接收器存在效率低、结构复杂、极化敏感等问题。电磁超表面具有精确操纵电磁波的能力,为克服这些瓶颈提供了新的方向。本文主要综述了课程组在基于电磁超表面的高效无线功率接收领域取得的一系列研究成果。介绍了关键的创新,包括梯度指数超表面,反射相位梯度超表面,双匹配策略,偏振不敏感设计,近场接收结构和直接馈电架构。这些方法可以有效地将入射波转换为面波,并精确地集中能量,显著提高了平面波到面波的转换效率和rf到dc的转换效率。同时,大大简化了系统架构,为MWPT系统的实际应用提供了坚实的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advances in high-efficiency wireless power reception using electromagnetic metasurfaces
Microwave wireless power transmission (MWPT) is a promising solution to future energy challenges, exhibiting strong potential in space-based solar power stations, unmanned aerial vehicle endurance extension, and powering Internet of Things (IoT) devices. However, conventional microwave power receivers (MPRs) suffer from issues such as low efficiency, structural complexity, and polarization sensitivity. Electromagnetic metasurfaces, with their ability to precisely manipulate electromagnetic waves, provide a new direction for overcoming these bottlenecks. This paper is a review that focuses on the series of research achievements made by our research team in the area of high-efficiency wireless power reception based on electromagnetic metasurfaces. Key innovations are introduced, including gradient-index metasurfaces, reflective phase-gradient metasurfaces, dual-matching strategies, polarization-insensitive designs, near-field reception structures, and direct-feed architectures. These methods enable effective conversion of incident waves into surface waves with precise energy concentration, significantly improving conversion efficiency from plane waves to surface waves, as well as RF-to-DC conversion efficiency. Meanwhile, the system architecture is greatly simplified, providing a robust foundation for the practical application of MWPT systems.
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