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Low-Ripple and High-Precision High-Voltage DC Power Supply for Pulsed Power Applications

机译:用于脉动电源应用的低纹波和高精度高压直流电源

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This paper describes the design and implementation of a three-phase resonant converter with low ripple and high control accuracy. Based on a three-phase LCC-type resonant converter—which has advantages of low ripple, high-efficiency, and high-power density compared with a single-phase converter—a high-voltage power supply with low ripple (<0.1%) was designed. In addition to the general merits of an LCC-type resonant converter operating at continuous conduction mode—including soft switching, low conduction loss, and current source characteristics—the proposed scheme uses only one phase under a light-load condition by having different leg designs of the gate drive circuit and snubber parameters. This allows the design to overcome the operational constraints of the general LCC-type resonant converter. The distinctive design of the three-phase converter structure provides high efficiency and low ripple not only during rated operation, but also under light-load conditions. In order to analyze the high performance of the proposed scheme from no load to rated load, a PSPICE simulation was carried out. Comparison results with a conventional LCC-type resonant converter based on a single-phase structure are analyzed from the viewpoints of output ripple, losses, and operable load range. Using the proposed converter, a 20-kV, 20-kW high-voltage dc power supply design and implementation was presented with a superior gate drive circuit. Finally, the superiority of the proposed converter was verified through a simulation and experimental results. It was experimentally confirmed that the developed power supply achieves high performance in terms of efficiency (98%), operable load range (0.5–20 kV), and low ripple (0.05%), with a high power density.
机译:本文介绍了一种具有低纹波和高控制精度的三相谐振转换器的设计和实现。基于三相LCC型谐振转换器(与单相转换器相比具有低纹波,高效率和高功率密度的优势)-低纹波(<0.1%)的高压电源被设计。除了以连续导通模式工作的LCC型谐振转换器的一般优点(包括软开关,低导通损耗和电流源特性)外,该方案通过采用不同的支脚设计,在轻载条件下仅使用一个相栅极驱动电路和缓冲参数。这使设计可以克服普通LCC型谐振转换器的工作限制。三相转换器结构的独特设计不仅在额定运行期间而且在轻载条件下也提供了高效率和低纹波。为了分析所提出方案从空载到额定负荷的高性能,进行了PSPICE仿真。从输出纹波,损耗和可操作负载范围的角度分析了与基于单相结构的传统LCC型谐振转换器的比较结果。使用提出的转换器,提出了具有出色栅极驱动电路的20kV,20kW高压直流电源设计和实现。最后,通过仿真和实验结果验证了所提出转换器的优越性。实验证明,开发的电源在效率(98%),可操作负载范围(0.5–20 kV)和低纹波(0.05%)方面具有较高的功率密度。

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