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Wideband Metamaterial Electromagnetic Energy Harvester With High Capture Efficiency and Wide Incident Angle

机译:高捕获效率和宽入射角的宽带超材料电磁能量采集器

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This letter presents a wideband metamaterial electromagnetic (EM) energy harvester with high capture efficiency and wide incident angle. It is an array of novel resonators comprising metallic mirrored split rings and hollow cylinders. The impedance of the harvester is engineered to match with free space, so that the incident EM energy is captured with minimum reflection, and then channeled maximally to the ports through optimally positioned vias. The hollow cylinder works equivalently as a shunt capacitance in series with an inductance to lower the resonator's quality factor, which significantly enhances the bandwidth. The power harvesting mechanism is analyzed using both the transmission line model and full-wave simulation. A metamaterial harvester of 10 × 10 unit cells is designed, manufactured, and measured, achieving a capture efficiency of up to 97.3% at 2.45 GHz. A wide relative bandwidth of 16% with efficiencies above 90% is observed from 2.3 to 2.7 GHz. Within a wide incident angle range (92° onnEn-plane and 44° onnHn-plane), the harvester manages to capture more than half of the incident energy.
机译:这封信提出了一种具有高捕获效率和宽入射角的宽带超材料电磁(EM)能量收集器。它是一系列新颖的谐振器,包括金属镜面的裂环和空心圆柱体。收割机的阻抗经过设计以与自由空间匹配,从而以最小的反射捕获入射的EM能量,然后通过最佳定位的通孔最大程度地将其引导到端口。中空圆柱体等效地用作与电感串联的并联电容,以降低谐振器的品质因数,从而显着提高带宽。使用传输线模型和全波仿真来分析功率收集机制。设计,制造和测量10×10晶胞的超材料收集器,在2.45 GHz时实现高达97.3%的捕获效率。在2.3至2.7 GHz的频率范围内观察到16%的相对带宽,效率超过90%。在宽入射角范围内(92°onn <斜体xmlns:mml =“ http://www.w3.org/1998/Math/MathML” xmlns:xlink =“ http://www.w3.org/1999/ xlink“> E n平面和n°<斜体xmlns:mml =” http://www.w3.org/1998/Math/MathML“的xmlns:xlink =” http://www.w3 .org / 1999 / xlink“> H平面),收割机设法捕获了一半以上的入射能量。

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