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High-Voltage Charging Power Supply Based on an LCC-Type Resonant Converter Operating at Continuous Conduction Mode

机译:基于在连续导通模式下运行的LCC型谐振转换器的高压充电电源

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This article describes the design, implementation, and testing of a 2.0-kW high-voltage rep-rate charging power supply based on an non-isolated inductor-capacitor-capacitor (LCC)-type resonant converter operating at continuous conduction mode, which provides a constant charging current with high control accuracy & x002F;efficiency. The design of the proposed capacitor charging power supply (CCPS) has been carried out in such a way that to be a low cost, simpler, compact, and efficient driver for the miniature pulsed plasma sources (PF-3J: 10 kV, 84 nF, 48 nH, and PF-225: 15 kV, 2 & x03BC;F, 50 nH), operating at repetitive discharges with the following specifications: 20 kV, 2.0 kW, and maximum pulse repetition rate up to 50 Hz. In order to understand the required conditions of such a power converter toward the functional stability, a detailed theoretical study of, and the design considerations along with the simplified design equations taken for, the proposed converter are discussed from a practical viewpoint. Due to the use of a fast complex programmable logic device (CPLD) controller, the synchronization of the start of the leg switching voltage with the moment of zero-current detection was observed at the switching frequency of 125 kHz. The functional stability of the CCPS at repetitive discharge mode was verified via operation at low and high frequencies. The results of diagnostics successfully confirmed the accurate performance of the control and sampling circuits for the moderate repetition rate of 0.5 Hz with the repeatability of about 0.1 & x0025;. Finally, the developed rep-rate high-voltage charging power supply was shown to be very reliable, even under faulty operating conditions in the system.
机译:本文介绍了基于在连续导通模式下运行的非隔离电感电容器 - 电容(LCC)型谐振转换器的2.0千瓦高压速率充电电源的设计,实现和测试,提供具有高控制精度和X002F的恒定充电电流;效率。所提出的电容器充电电源(CCPS)的设计已经以这样的方式进行,使微型脉冲等离子体源的低成本,更简单,紧凑,高效的驱动器(PF-3J:10kV,84 NF ,48 NH和PF-225:15 kV,2&x03bc; f,50 nh),在重复放电操作,下列规格:20 kV,2.0 kW,最大脉冲重复率高达50 hz。为了理解这种功率转换器的所需条件朝向功能稳定性,从实际观点讨论了所提出的转换器的简化设计方程的详细理论考虑和设计考虑。由于使用快速复杂的可编程逻辑器件(CPLD)控制器,在125kHz的开关频率下观察到腿部开关电压的开始与零电流检测的时刻同步。通过低频和高频的操作验证了在重复放电模式下CCP的功能稳定性。诊断结果成功证实了控制和采样电路的准确性能,用于中等重复率为0.5 Hz,重复性约为0.1&x0025;最后,即使在系统中有故障的操作条件下,也显示出开发的Rep-Rate高压充电电源非常可靠。

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