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A Splitting Frequencies-Based Wireless Power and Information Simultaneous Transfer Method

机译:基于分裂频率的无线电力和信息同时传输方法

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摘要

A splitting frequencies-based wireless power and information simultaneous transfer (SF-WPIT) method is proposed, and its power and information transfer performances are investigated theoretically and experimentally. First, the power and information transfer characteristics, including transmitting power, power efficiency, frequency bandwidth, and effective operating range, are investigated theoretically on the splitting frequencies of strongly coupled region in symmetric series-series resonant inductive link. The investigation result shows that the splitting frequencies have a good potential of realizing a high-performance power and information transfer. Second, the SF-WPIT system is configured and the factors that influence on the performance of this system are investigated theoretically. A method of tracing two splitting frequencies is presented. A response time calculation method of splitting frequencies is presented, and the influence of response times on the performance of the SF-WPIT system is clarified. Finally, an experimental prototype is constructed with a pair of planar coils of 75-mm mean radius, and the proposed theory and system performance are verified by experimental results. This prototype exhibits a 15 kb/s of data rate and a stable power transfer irrespective of distance change in its operating range of 0-120 mm.
机译:提出了一种基于分频的无线电力和信息同时传输(SF-WPIT)方法,并对其理论和实验性能进行了研究。首先,从理论上研究了对称串联-串联谐振感应链路中强耦合区的分裂频率,包括发射功率,功率效率,频率带宽和有效工作范围。研究结果表明,分裂频率具有实现高性能功率和信息传递的良好潜力。其次,配置了SF-WPIT系统,并从理论上研究了影响该系统性能的因素。提出了一种跟踪两个分裂频率的方法。提出了分裂频率的响应时间计算方法,阐明了响应时间对SF-WPIT系统性能的影响。最后,用一对平均半径为75mm的平面线圈构造了一个实验原型,并通过实验结果验证了所提出的理论和系统性能。该原型机展现出15 kb / s的数据速率和稳定的功率传输,而不论其工作范围为0-120 mm的距离如何变化。

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