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Design and Experimental Realization of a New Pulsed Power Supply Based on the Energy Transfer Between Two Capacitors and an HTS Air-Core Pulsed Transformer

机译:基于两个电容器和HTS空芯脉冲变压器之间的能量传递的新型脉冲电源的设计和实验实现

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The application of pulsed power technology in the industrial and military fields requires a pulsed power supply as the large current generator. Based on theoretical analysis, it can be found that the traditional capacitor-based pulsed power supply may generate a large residual current during the discharging phase, which results in an adverse influence on the output current and energy transfer efficiency. To obtain higher energy transfer efficiency by eliminating the residual current, a new pulsed power supply based on the energy transfer between two capacitors and a high temperature superconducting (HTS) air-core pulsed transformer is proposed and a small-scale experiment is carried out under the different initial conditions. The experimental results show that a large pulsed current of 3.79 kA within 5 ms can be realized with the initial voltage 1.3 kV, whose energy transfer efficiency exceeds 65%. Finally, the feasibility of this new pulsed power supply is verified and it provides some guidance for future work.
机译:脉冲功率技术在工业和军事领域的应用需要脉冲电源作为大电流发生器。根据理论分析,可以发现传统的基于电容器的脉冲电源在放电阶段可能会产生较大的剩余电流,从而对输出电流和能量传输效率产生不利影响。为了通过消除残留电流获得更高的能量传输效率,提出了一种基于两个电容器之间的能量传输和高温超导(HTS)空心脉冲变压器的新型脉冲电源,并在此条件下进行了小规模实验不同的初始条件。实验结果表明,在初始电压为1.3 kV的情况下,可以在5 ms内实现3.79 kA的大脉冲电流,其能量传递效率超过65%。最后,验证了这种新型脉冲电源的可行性,并为将来的工作提供了一些指导。

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