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Wide input voltage range high power density high efficiency 10 kW three-phase three-level unity power factor PWM rectifier

机译:宽输入电压范围高功率密度高效10 kW三相三电平单位功率因数PWM整流器

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In this paper the current stresses on the power components of a direct three-phase boost-type unity power factor rectifier are analysed in order to provide a basis for a system design under restriction of the height to 2-U. The conduction losses of the power semiconductors are calculated using analytical approximations of the average and RMS values of the component currents. The switching losses are taken from experimental investigations where a novel turn-on snubber has been employed. Based on this data an overview of the estimated power losses is given for a rectifier system of 10.5 kW/800 VDC output for 320 V/400 V/480 V/530 V (RMS, line-to-line) mains voltage. Corresponding efficiency figures are calculated and the improvement achieved by the turn-on snubber as compared to hard switching is determined. The snubber topology and operating principle is discussed in detail. Finally, the theoretical results are verified by experimental investigation of a system prototype.
机译:本文分析了直接三相升压型单位功率因数整流器的功率分量上的电流应力,以便为将系统高度限制为2-U时的系统设计提供基础。功率半导体的传导损耗是使用分量电流的平均值和RMS值的解析近似值来计算的。开关损耗来自采用了新型导通缓冲器的实验研究。基于此数据,给出了在电源电压为320 V / 400 V / 480 V / 530 V(RMS,线对线)的情况下,输出功率为10.5 kW / 800 VDC的整流器系统的估计功率损耗的概况。计算出相应的效率数据,并确定与硬开关相比,导通缓冲器所实现的改进。详细讨论了缓冲器的拓扑结构和工作原理。最后,通过对系统原型的实验研究验证了理论结果。

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