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Design and Testing of a Novel Inductive Pulsed Power Supply Consisting of HTS Pulse Power Transformer and ZnO-Based Nonlinear Resistor

机译:一种由HTS脉冲功率变压器和基于ZnO的非线性电阻组成的新型感应脉冲电源的设计和测试

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摘要

Higher energy density makes inductive energy storage more promising than capacitive storage for pulsed power supplies in industrial and military fields. To realize high amplitude of pulsed current and relieve stress of opening switch, this paper proposes a novel inductive pulsed power supply consisting of high-temperature superconducting pulse power transformer and ZnO-based nonlinear resistor. First, working processes and laboratory setup are described in detail. Then, simulation using the software SIMPLORER is built to show major pulse characteristics and comparisons of two different nonlinear resistors. For verifying the feasibility of this mode, high-current testing is carried out and the results show that large amplitude of pulsed current 3 kA with energy transfer efficiency 60% is achieved, and the ZnO-based nonlinear resistor can help to limit the voltage of the opening switch to a small constant below its clamping value as current is interrupted.
机译:在工业和军事领域,较高的能量密度使电感式能量存储比脉冲式电源的电容性存储更有希望。为了实现脉冲电流的高幅值化并减轻开路开关的应力,本文提出了一种新型的电感式脉冲电源,它由高温超导脉冲电源变压器和基于ZnO的非线性电阻组成。首先,详细描述工作过程和实验室设置。然后,使用SIMPLORER软件进行仿真以显示主要脉冲特性以及两个不同非线性电阻器的比较。为了验证这种模式的可行性,进行了大电流测试,结果表明,实现了3 kA的大脉冲电流,能量转换效率为60%,并且基于ZnO的非线性电阻器可以帮助限制该电压。当电流中断时,打开开关将保持一个低于其钳位值的常数。

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