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Optimization of Simultaneous Wireless Power and Data Transmission System with Single Coil

机译:单线圈的同步无线电力和数据传输系统的优化

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A simultaneous wireless power and data transfer system for UAV based on double-sided LCC compensation structure was presented in this paper. To achieve the efficient power transmission and stable data transmission, the data transmission gain is firstly set to be promoted through the analysis on data transfer channel. The double-sided LCC topology with band-stop trapper is used to reduce the interference of power channel to data transfer channel. The coupling relationships between each circuits are taken into consideration and a matching method of resonance parameters to increase the data transmission gain is presented. Based on the relationship between transmission gain and interference of power channel, an optimization design method focused on data transfer channel parameters for improving the signal to noise ratio is presented. Finally, the simulation and experimental results could verify that the proposed optimization of simultaneous wireless power and data transfer system has promoted the SNR and kept stable power transmission.
机译:本文提出了一种基于双面LCC补偿结构的UV的同时无线电力和数据传输系统。为了实现高效的电力传输和稳定的数据传输,首先通过数据传输信道的分析来促进数据传输增益。具有带式停止疏水阀的双面LCC拓扑用于降低电源通道的干扰到数据传输通道。提出了每个电路之间的耦合关系,并且呈现了增加数据传输增益的谐振参数的匹配方法。基于电力通道的传输增益与干扰之间的关系,呈现了一种优化设计方法,其集中在用于提高信号到噪声比的数据传输信道参数。最后,模拟和实验结果可以验证建议的同步无线电力和数据传输系统的优化促进了SNR并保持稳定的电力传输。

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