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The application of GHz band charge pump rectifier and rectenna array for satellite internal wireless system

机译:GHz频段电荷泵整流器和整流天线阵列在卫星内部无线系统中的应用

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An internal wireless system (IWS) for satellites was proposed in a previous study to reduce the weight of satellites. It is a system that uses wireless communication modules to communicate between the satellite's subsystems. We proposed a complete IWS that employs microwave wireless power transmission technology, and we proposed a design of GHz band high efficiency rectifier based charge pump rectifiers with a class-f filter called class-f charge pump rectifiers. We theoretically compare the diode losses in a charge pump and single shunt rectifier, and experimentally verify the results. Apart from this, we consider that the class-f charge pump rectifiers will be used for a rectenna array. In order to know the direct current (DC) load change of class-f charge pump circuits is connected as a rectenna array, we measured the conversion efficiencies of a 2 by 2 rectenna array, connected in series and in parallel. The results of the experiment indicate that the optimum load of the rectifier changes to four times DC load when connected in series, and to 1/4 the DC load when connected in parallel.
机译:在先前的研究中,提出了一种用于卫星的内部无线系统(IWS),以减轻卫星的重量。它是一个使用无线通信模块在卫星子系统之间进行通信的系统。我们提出了一个采用微波无线电力传输技术的完整IWS,并提出了基于GHz频段高效整流器的电荷泵整流器的设计,该电荷泵整流器具有称为f类电荷泵整流器的f类滤波器。我们从理论上比较电荷泵和单并联整流器中的二极管损耗,并通过实验验证了结果。除此之外,我们认为F类电荷泵整流器将用于整流天线阵列。为了知道f类电荷泵电路的直流(DC)负载变化是作为整流天线阵列连接的,我们测量了串联和并联的2 x 2整流天线阵列的转换效率。实验结果表明,串联连接时,整流器的最佳负载变为直流负载的四倍,而并联时变为1/4。

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