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Measurement of energy transmission efficiency of transcutaneous energy transformer in NaCl solution for ventricular assist devices by reducing common-mode current in the range of 200–1500 kHz

机译:通过减少200–1500 kHz范围内的共模电流来测量心室辅助设备的NaCl溶液中的经皮能量转换器的能量传输效率

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The air-core transcutaneous energy transmission system (TETS) uses magnetic fields to transfer energy wirelessly to a ventricular assist device; the energy is transferred from a coil placed on the surface of the body (primary coil) to one inside the body. Accurate measurement of efficiency of the TETS is difficult because of the large common-mode (CM) current which flows through the ground line and the low sampling rate of the measurement equipment. In this study, a CM choke coil and a floating type measurement equipment were used to reduce the CM current flowing through the ground. Furthermore, the value of the efficiency obtained from measurements made using a floating oscilloscope with a high sampling rate was compared with the theoretical estimate of the efficiency when the transformer was kept immersed in NaCl solution to imitate the human biological tissue. In the range of 200-1500 kHz, it was possible to effectively suppress the CM current in the NaCl solution; the ratio of the primary current I1 to the CM current Icmobtained in the improved method was 21% less compared to the corresponding ratio in the conventional method. At the frequency of 500 kHz, in the NaCl solution, the maximum measured value of efficiency was 91.82%, whereas the theoretical estimate was 93.50%. The measured efficiency in the improved measurement method is in good agreement with the theoretical efficiency.
机译:空心经皮能量传输系统(TETS)使用磁场将能量无线传输到心室辅助设备。能量从放置在人体表面的一个线圈(初级线圈)传递到人体内部的一个线圈。由于流经接地线的大共模(CM)电流和测量设备的采样率较低,因此难以精确测量TETS的效率。在这项研究中,使用了一个CM扼流圈和一个浮动式测量设备来减少流过地面的CM电流。此外,将使用高采样率的浮动示波器进行测量获得的效率值与将变压器浸入NaCl溶液中以模仿人体生物组织时的效率理论估算值进行了比较。在200-1500 kHz的范围内,可以有效地抑制NaCl溶液中的CM电流。初级电流I1与CM电流I之比 cm 与传统方法中的相应比例相比,改进方法中获得的比例减少了21%。在500 kHz频率下,在NaCl溶液中,效率的最大测量值为91.82 \%,而理论估计值为93.50 \%。改进的测量方法中的测量效率与理论效率非常吻合。

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