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首页> 外文期刊>Journal of power electronics >Selection of high transfer stability and optimal power-efficiency tradeoff with respect to distance region for underground wireless power transfer systems
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Selection of high transfer stability and optimal power-efficiency tradeoff with respect to distance region for underground wireless power transfer systems

机译:关于地下无线电力传输系统的距离区域的高转移稳定性和最佳功率效率的选择

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摘要

Magnetic resonant wireless power transfer (MR-WPT) has become a significant method for powering the measurement units in landslide monitoring boreholes. This paper focuses on the effects of quality factor, coupling distance and load on the power transfer stability, sensitivity and performance of an MR-WPT system. Firstly, through a numerical model of an MR-WPT, the effect of quality factor and coupling distance on the output power, transfer efficiency and frequency splitting phenomenon of MR-WPT systems have been comparatively analyzed. The relationship between the load and the coupling distance region corresponding to optimal transfer performance has been studied. Results show that improving the quality factor of the coils is beneficial for the transfer performance and stability of WPT system. Furthermore, through the selection of the load, a coupling distance region with high transfer stability and an optimal tradeoff between power and efficiency can be obtained. Finally, the above theoretical simulation results have been verified by experimental results.
机译:磁谐振无线电力传输(MR-WPT)已成为向山体内监测钻孔中的测量单元供电的重要方法。本文重点介绍了质量因数,耦合距离和负荷对MR-WPT系统的敏感性稳定性,灵敏度和性能的影响。首先,通过MR-WPT的数值模型,对MR-WPT系统的输出功率,转移效率和频率分裂现象的质量因子和耦合距离的效果相对较为分析。已经研究了对应于最佳传递性能的负载与耦合距离区域之间的关系。结果表明,提高线圈的质量因子有利于WPT系统的转移性能和稳定性。此外,通过选择负载,可以获得具有高传输稳定性和功率和效率之间的最佳折衷的耦合距离区域。最后,通过实验结果验证了上述理论模拟结果。

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