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Confirmation of quasi-static approximation in SAR evaluation for a wireless power transfer system

机译:无线功率传输系统SAR评估中的准静态逼近的确认

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The present study discusses the applicability of the magneto-quasi-static approximation to the calculation of the specific absorption rate (SAR) in a cylindrical model for a wireless power transfer system. Resonant coils with different parameters were considered in the 10 MHz band. A two-step quasi-static method that is comprised of the method of moments and the scalar-potential finite-difference methods is applied, which can consider the effects of electric and magnetic fields on the induced SAR separately. From our computational results, the SARs obtained from our quasi-static method are found to be in good agreement with full-wave analysis for different positions of the cylindrical model relative to the wireless power transfer system, confirming the applicability of the quasi-static approximation in the 10 MHz band. The SAR induced by the external electric field is found to be marginal as compared to that induced by the magnetic field. Thus, the dosimetry for the external magnetic field, which may be marginally perturbed by the presence of biological tissue, is confirmed to be essential for SAR compliance in the 10 MHz band or lower. This confirmation also suggests that the current in the coil rather than the transferred power is essential for SAR compliance.
机译:本研究讨论了磁-准静态近似在计算无线电力传输系统的圆柱模型中的比吸收率(SAR)时的适用性。在10 MHz频带中考虑了具有不同参数的谐振线圈。应用了由矩量法和标量势有限差分法组成的两步​​准静态方法,该方法可以分别考虑电场和磁场对感应SAR的影响。从我们的计算结果中发现,通过准静态方法获得的SAR与圆柱波模型相对于无线电力传输系统的不同位置的全波分析非常吻合,从而证实了准静态逼近的适用性在10 MHz频段。发现由外部电场感应的SAR与由磁场感应的SAR相比是微不足道的。因此,证实了外部磁场的剂量测定法可能会因生物组织的存在而受到微扰,这对于10 MHz或更低频段中的SAR适应性至关重要。该确认还表明,线圈电流而不是传递的功率对于SAR兼容性至关重要。

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