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Inductive power transfer technology for mobile battery charger

机译:移动电池充电器的感应功率传输技术

摘要

Inductive power transfer (IPT) is an application of electromagnetic induction principle. Since electromagnetic induction phenomena is directly proportional to the operating frequency, so as we increase the operating frequency, amount of energy transfer from one coil to another coil will also increase. As our power supply frequency is 50Hz so at this frequency, amount of energy transfer from one coil to another coil will be very less. In this thesis it is shown that, to transfer maximum amount of energy from one coil to another coil, it is necessary to use IPT at high frequency. At high frequency skin effect is more pronounced but there is a resonant frequency where overall efficiency is more in spite skin effect. To increase the power factor of IPT circuit compensated capacitor has used. There are four types of compensated topology but to use the IPT circuit in mobile battery charger primary-series-secondary-parallel (P-S-S-P) is more useful.
机译:感应功率传输(IPT)是电磁感应原理的一种应用。由于电磁感应现象与工作频率成正比,因此当我们增加工作频率时,从一个线圈到另一线圈的能量转移量也会增加。由于我们的电源频率为50Hz,因此在此频率下,从一个线圈传输到另一线圈的能量将非常少。本论文表明,为了将最大量的能量从一个线圈转移到另一线圈,有必要在高频下使用IPT。在高频下,趋肤效应更为明显,但尽管存在趋肤效应,但存在一个共振频率,在该频率下总体效率更高。为了增加IPT电路的功率因数,使用了补偿电容器。补偿拓扑有四种类型,但是在移动电池充电器的初级串联-次级并联(P-S-S-P)中使用IPT电路更为有用。

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    Roushan Satish;

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  • 年度 2014
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