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Simulation and Experimental Investigation of an Inductive Pulsed Power Supply Based on the Head-to-Tail Series Model of an HTS Air-Core Pulsed Transformer

机译:基于HTS空芯脉冲变压器头对尾串联模型的感应脉冲电源仿真与实验研究

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摘要

The inductive energy storage for pulsed power supplies is considered to have a greater potential for high energy density than that of capacitive one. Therefore, it has practical applications in the industrial and military fields. Associating with the superconducting technology, this paper proposes an inductive pulsed power supply based on the head-to-tail series model of high-temperature superconducting air-core pulsed transformer. First, designed structure and working processes are analyzed in detail. Then, the simulated circuit model is built to illustrate the principles and characteristics using the software SIMPLORER. For verifying the feasibility of this pulsed power supply and gaining some experience in practical operation, a small-scale experiment is carried out with different delay times between two controlled switches. The experimental results show that large pulsed current with high energy transfer efficiency can be achieved by this model, which provides some guidance for future work.
机译:脉冲电源的电感储能被认为比电容性储能具有更高的高能量密度潜力。因此,它在工业和军事领域具有实际应用。结合超导技术,提出了一种基于高温超导空心脉冲变压器头对尾串联模型的感应脉冲电源。首先,详细分析设计的结构和工作过程。然后,使用软件SIMPLORER建立仿真电路模型以说明原理和特性。为了验证这种脉冲电源的可行性并获得一些实际操作经验,在两个受控开关之间进行了具有不同延迟时间的小规模实验。实验结果表明,该模型可以实现高能量传递效率的大脉冲电流,为今后的工作提供了指导。

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