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Basic Study of Solar Battery Powered Wireless Power Transfer System with MPPT Mode and DC Bus Stabilization for Lunar Rover

机译:具有MPPT模式和直流母线稳定功能的月球车太阳能供电无线电源传输系统的基础研究

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Due to the extremely low temperature of Moon surface at lunar night, lunar rover has suffered from heat leakage along the wire connection between solar battery and rover body. In this paper, a wireless power transfer system has been proposed to transfer energy from solar battery to rover body in order to aovid the heat leakage at lunar night. The solar battery is controlled by a buck converter to be switched between the Maximum Power Point Tracking (MPPT) mode and buck mode to output appropriate amount energy to load and battery in rover body through the wireless power transfer system. The load and battery is connected to the DC bus which is controlled by a DC-DC converter to stabilize the voltage. Based on the experiment results, the whole system efficiency is about 48.7% at 22 W. It has been demonstrated the system efficiency is closely related with system power level due to the power electronics wasted power, and the efficiency can be improved to 62.1% with higher system power at 48.6 W.
机译:由于月球夜在月球表面的温度极低,月球车沿太阳能电池与流浪者身体之间的电线连接遭受了热泄漏。在本文中,已经提出了一种无线电力传输系统,以将能量从太阳能电池传输到流动站主体,从而避免月夜的热泄漏。太阳能电池由降压转换器控制,以在最大功率点跟踪(MPPT)模式和降压模式之间切换,以通过无线电力传输系统将适当量的能量输出到流动站内的负载和电池。负载和电池连接到DC总线,该DC总线由DC-DC转换器控制以稳定电压。根据实验结果,在22 W功率下,整个系统效率约为48.7%。由于功率电子器件的浪费,已证明系统效率与系统功率水平密切相关,而效率可提高到62.1%。更高的系统功率,为48.6W。

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