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Design and Control Method of Passive Energy Harvesting for Hydropower Unit Sensors in Complex Electromagnetic
Xiaobo Long1,2, Zhijun Zhou1,2, Zhidi Chen3
1China Yangtze Power Co., Ltd., Yichang 430014, China.
Abstract:
With the advancement of digital hydropower stations, the requirements of real-time, high-precision industrial soft measurement of key power equipment operating status are attracting more and more attention. However, it is difficult to transfer energy to the monitoring sensor in strong electromagnetic environments. In this paper, a high-efficiency, high-power-density magnetic field energy harvester is proposed for monitoring sensors in hydropower stations, which captures the energy from the magnetic flux leakage of a hydroelectric generating set. Efficient magnetic energy capture is achieved by modeling material properties and optimizing the receiver's magnetic core parameters via a Genetic Algorithm. The theoretical analysis of charging characteristics is given, and a Maximum Power Point Tracking (MPPT) control circuit is proposed, realizing high-efficiency energy conversion. Finally, an experimental planet is built. Under 70-130 Gs power-frequency magnetic fields, the system delivers 2.8-5.1 V open-circuit voltage, 66 mW maximum load power, and 6.5 mW/cm3 power density.
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