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A Novel High-Performance Energy Harvester Based on Nonlinear Resonance for Scavenging Power-Frequency Magnetic Energy

机译:基于非线性共振的新型高性能能量采集器,用于扫除工频磁能

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摘要

Self-powered wireless sensor networks based on autonomous wireless sensor nodes have been increasingly attractive due to the outstanding merits of maintenance-free and self-sustainability. In spite of the explosive growth of the wireless sensor network techniques, the corresponding power supply methods with miniaturized, low-cost, flexible, reliable, and efficient designs are still limited. In this paper, a novel magnetic energy harvester based on nonlinear resonance is presented, which has been verified to be capable of scavenging energy from the power-frequency (50 or 60 Hz) magnetic field distributed around the transmission line. We have theoretically and experimentally demonstrated the greatly enhanced harvesting properties in both power density and enlarged bandwidth, which provides great robustness to frequency fluctuations of magnetic field. A prototype of this brand new design is fabricated and tested. Experimental results show that the prototype is capable of harvesting a power as high as 13.5 mW at merely 2.4 Oe (RMS) power-frequency AC magnetic field. The high power density (0.5625 mW/cm3 at 2.4 Oe) and the wide working bandwidth (2.6 Hz) promise its application prospects as a sufficient and reliable power supply for sensors in the smart grid.
机译:由于具有免维护和自我可持续性的突出优点,基于自主无线传感器节点的自供电无线传感器网络变得越来越有吸引力。尽管无线传感器网络技术迅猛发展,但具有微型化,低成本,灵活,可靠和高效设计的相应电源方法仍然受到限制。在本文中,提出了一种基于非线性共振的新型磁能收集器,该收集器已被证实能够从分布在传输线周围的功率频率(50或60 Hz)磁场中清除能量。我们已经在理论上和实验上证明了在功率密度和扩大的带宽上都大大增强了收获性能,这为磁场频率波动提供了强大的鲁棒性。此全新设计的原型已制造并经过测试。实验结果表明,该原型机仅在2.4 Oe(RMS)的工频交流磁场下就能够收集高达13.5 mW的功率。高功率密度(2.4 Oe时为0.5625 mW / cm3)和宽工作带宽(2.6 Hz)保证了其作为智能电网中传感器的足够,可靠的电源的应用前景。

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