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Design and Test of a 35-kJ/s High-Voltage Capacitor Charger Based on a Delta-Connected Three-Phase Resonant Converter

机译:基于三角形连接的三相谐振变换器的35kJ / s高压电容器充电器的设计和测试

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This paper describes the design, implementation, and analysis of a 35 kJ/s high-voltage capacitor charger based on a delta-connected three-phase series resonant converter that provides a constant charging current with high efficiency and high-power density. In order to obtain the maximum output power for various charging voltages, each high-voltage transformer supplied by a delta-connected resonant inverter is designed with two secondary windings and voltage-doubled rectifiers. This configuration allows not only a flexible output current and voltage with fixed output power but also a high power factor on the input side. On the basis of the analysis of the series-loaded resonant converter operating at a discontinuous conduction mode, the details of the design procedure for the resonant inverter are provided. Furthermore, the implementation of the high-voltage transformers and rectifiers is also explained while considering insulation and compactness. Experiments were carried out on the developed charger with different types of capacitors, depending on their applications, and the results are discussed. In addition, malfunctioning tests were conducted for the open, short, and misfiring during charging conditions. Finally, the developed high-voltage capacitor charger was shown to be very reliable, even under faulty operating conditions in the system.
机译:本文介绍了一种基于三角形连接的三相串联谐振转换器的35 kJ / s高压电容器充电器的设计,实现和分析,该转换器可提供恒定的充电电流,并具有高效率和高功率密度。为了在各种充电电压下获得最大输出功率,由三角形连接的谐振逆变器供电的每个高压变压器都设计有两个次级绕组和倍压整流器。这种配置不仅可以在输出功率固定的情况下提供灵活的输出电流和电压,还可以在输入侧提供较高的功率因数。基于对在不连续导通模式下工作的串联负载谐振转换器的分析,提供了谐振逆变器设计程序的详细信息。此外,在考虑绝缘和紧凑性的同时,还解释了高压变压器和整流器的实现。在开发的具有不同类型电容器的充电器上进行了实验,具体取决于其应用,并对结果进行了讨论。此外,还对充电条件下的开路,短路和失火进行了故障测试。最后,即使在系统中出现故障的情况下,开发的高压电容器充电器也被证明是非常可靠的。

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