Excitation system by contactless power transfer system with the primary series capacitor method

Excitation system by contactless power transfer system with the primary series capacitor method
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DOI:
10.1109/ipec.2014.6869726
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发表时间:
2014-05
期刊:
2014 International Power Electronics Conference (IPEC-Hiroshima 2014 - ECCE ASIA)
影响因子:
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通讯作者:
Ryo Nozawa;Ryota Kobayashi;Hikaru Tanifuji;Y. Kaneko;S. Abe
Ryo Nozawa;Ryota Kobayashi;Hikaru Tanifuji;Y. Kaneko;S. Abe
中科院分区:
其他
文献类型:
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作者:
Ryo Nozawa;Ryota Kobayashi;Hikaru Tanifuji;Y. Kaneko;S. Abe

文献摘要

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针对励磁型同步电动机转子回路的功率传输问题,提出了一种非接触式功率传输系统,该系统采用初级串联电容(S拓扑)补偿漏抗。该系统不包含次级谐振和平滑电容器,并且可以减少转子电路中的元件数量。初级谐振电容器的值被确定为使得输入功率因数对于操作频率被设置为1。转子的旋转轴用铝片覆盖,以减少由于漏磁通引起的损失。进行了功率传输测试。当功率被传递到同步电动机的转子电路时,实现了91.8%的高效率。
For power transfer to the rotor circuit of excitation-type synchronous motors, we propose a contactless power transfer system with a primary series capacitor (S topology) to compensate for the leakage reactance. This system does not contain secondary resonant and smoothing capacitors and can reduce the number of components in the rotor circuit. The value of the primary resonant capacitor is determined such that the input power factor is set to one for the operating frequency. The rotating shaft of the rotor is covered with an aluminum sheet to reduce the loss due to the leakage flux. Power transfer tests were performed. A high efficiency of 91.8% was achieved when power was transferred to the rotor circuit of the synchronous motor.