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Multi-polarisation electromagnetic energy harvesting with high efficiency

机译:高效多极化电磁能量收集

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This study presents a polarisation-independent metasurface harvester composed of an ensemble of novel electric-field-coupled inductive-capacitive (ELC) resonators. The ELC resonator has full symmetry in a way that its behaviour is highly insensitive to the polarisation of the incident wave. Loading the resonators with resistors (which model the input impedance of a power combining circuit in a harvesting system), it is shown that the metasurface absorbs the incident electromagnetic wave energy, with nearly unity harvesting efficiency, irrespective of its polarisation while simultaneously delivering the absorbed power to the loads. As a proof of concept, a metasurface harvester composed of a 9 × 9 resonator array working at 2.45 GHz was fabricated. Near-unity harvesting efficiency of the metasurface was demonstrated using full-wave numerical simulation for a wide range of polarisation angles. Laboratory tests showed strong agreement between the simulation results and the measurements.
机译:这项研究提出了一种与极化无关的超表面收集器,该收集器由一组新型的电场耦合感应电容(ELC)谐振器组成。 ELC谐振器完全对称,其行为对入射波的极化高度不敏感。向谐振器加载电阻器(可模拟采集系统中功率组合电路的输入阻抗),结果表明,超表面吸收入射的电磁波能量,几乎具有统一的采集效率,而不论其极化如何,同时传递吸收的电磁波。给负载供电。作为概念的证明,制造了由工作在2.45 GHz的9×9谐振器阵列组成的超表面收集器。使用全波数值模拟对偏光角的宽范围进行了研究,证明了超表面的近统一采集效率。实验室测试表明,仿真结果与测量结果之间具有很强的一致性。

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