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Comparative studies between KVL and BPFT in magnetically-coupled resonant wireless power transfer

机译:磁耦合谐振无线电力传输中KVL和BPFT的比较研究

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Kirchhoff's voltage law (KVL) and band-pass filter theory (BPFT) have been utilised for estimating the power transfer efficiency (PTE) and power delivered to the load (PDL) of magnetically-coupled resonant wireless power transfer (WPT). By using the two approaches, three aspects for in-depth understanding of power transfer characteristics and designing a high-efficiency WPT system are illuminated in this research. First, by introducing generalised mistuning factor and using diagram discriminance method in KVL, the effect conditions of source- and load-loaded quality factors on PTE and PDL are analysed. Then, by applying frequency and element transformations in BPFT, the restraints of Butterworth and Chebyshev type filter for WPT application are revealed. Third, it is verified that BPFT is a special case of KVL, and the former simplifies the design and analysis under the derived restraints than the latter. The maximal PDL at original frequency and the transfer characteristics in frequency splitting region can be easily achieved by Butterworth and Chebyshev type, respectively. The PTE and PDL versus frequency and coupling coefficient can be analysed in detail by KVL. Finally, the calculated results of the design examples are verified through experimental measurements.
机译:Kirchhoff的电压定律(KVL)和带通滤波器理论(BPFT)已用于估算磁耦合谐振无线功率传输(WPT)的功率传输效率(PTE)和传输到负载(PDL)的功率。通过使用这两种方法,本研究阐明了三个方面,它们可用于深入了解功率传输特性并设计高效的WPT系统。首先,通过引入广义的模糊因子并在KVL中使用图判别方法,分析了源和负载质量因子对PTE和PDL的影响条件。然后,通过在BPFT中应用频率和元素变换,揭示了Butterworth和Chebyshev型滤波器在WPT应用中的局限性。第三,验证了BPFT是KVL的特例,并且前者在得出的约束条件下比后者简化了设计和分析。分别通过Butterworth和Chebyshev类型可以轻松实现原始频率下的最大PDL和分频区域内的传输特性。可以通过KVL详细分析PTE和PDL与频率和耦合系数的关系。最后,通过实验测量验证了设计实例的计算结果。

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