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首页> 外文期刊>Energies >Design and Optimization of an Inductively Coupled Power Transfer System for the Underwater Sensors of Ocean Buoys
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Design and Optimization of an Inductively Coupled Power Transfer System for the Underwater Sensors of Ocean Buoys

机译:海洋浮标水下传感器感应耦合功率传输系统的设计与优化

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摘要

Batteries are commonly used as the power source of present underwater sensors of ocean buoys. However, batteries need to be frequently replaced, which is costly. To implement the real-time power supply for a buoy’s underwater sensor, a new inductively coupled power transfer (ICPT) system that consists of two couplers and a closed cable is proposed in this paper. The special closed cable, which is the both mooring cable and transmission media, is designed to diminish the influence of changes on impedance. A model of the particular ICPT system is established. Optimization of system parameters are carried out based on the model and verified by means of the simulations. Resonant compensation is used to improve the power transfer performance. Finally, many experiments are implemented to compare with the original prototype. It is confirmed that this system can help solve the difficulty of the energy limit to a buoy’s underwater sensor.
机译:电池通常用作当前海洋浮标水下传感器的电源。然而,电池需要经常更换,这是昂贵的。为了实现浮标水下传感器的实时电源,本文提出了一种新的感应耦合功率传输(ICPT)系统,该系统由两个耦合器和一条闭合电缆组成。专用的封闭式电缆既是系泊电缆又是传输介质,旨在减少阻抗变化的影响。建立了特定ICPT系统的模型。系统参数的优化是基于模型进行的,并通过仿真进行了验证。谐振补偿用于改善功率传输性能。最后,实施了许多实验以与原始原型进行比较。可以肯定的是,该系统可以帮助解决浮标水下传感器的能量限制难题。

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