基于串联负载谐振变换器的脉冲电源FFT分析

R. Jadeja, S. Kanitkar, A. Shyam
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引用次数: 0

摘要

为了给高频变压器的初级电源供电,设计了一种脉冲电源,进行了仿真和测试。脉冲电源系统在等离子体中得到了广泛的应用。脉冲电源系统的工作原理是输入源的能量通过dc-dc变换器存储在电容器组器件中。然后,当给出放电信号时,存储的能量释放给负载。新系列的ZCS转换器适用于使用绝缘栅双极晶体管(igbt)的大功率应用。功率变换器借助高频变压器实现零开关。该装置能够将0.1 μ F的电容器充电至5kv,充电功率为5kj /s。该控制算法充分考虑了脉冲电源的非线性控制特性。所需的充电电压,加上充电时间的限制,转换为所需的最大功率,从最初的10kw减少到5kw。在高压侧可靠地控制这种功率的困难实际上禁止任何具有或多或少稳定的直流高压的方法,通过整流从传统的50 Hz变压器产生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FFT Analysis of a Series Loaded Resonant Converter-Based Power Supply for Pulsed Power Applications
An impulse power supply has been designed, simulated, and tested in order to feed the primary of a high-frequency transformer. Pulse power system has been widely used for plasma applications. The operational principle of the pulse power system is that the energy from the input source is stored in the capacitor bank device through a dc-dc converter. Then, when a discharging signal is given, the stored energy is released to the load. The new family of ZCS converters is suitable for high-power applications using insulated gate bipolar transistors (IGBTs). The power converter can achieve zero switching with the aid of high-frequency transformer. The device is capable of charging a 0.1  μ F capacitor up to 5 kV which accounts for a charging power of 5 kJ/s. The novel control algorithm is achieved which eminently considers the nonlinear control characteristics of impulse power supply. The required charging voltage, together with the constraint on the charging time, translates into a required maximum power of 10 kW reduced in this initial version to 5 kW. The difficulty to reliably control such a power at the high-voltage side practically forbids any approach featuring a more or less stabilized DC high-voltage to be generated from a conventional 50 Hz transformer through rectification.
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