Control of active front-end rectifier of the solid-state transformer with improved dynamic performance during precharging

Hossein Dehghani Tafti, Cao Shuyu, K. R. Kishore, G. Farivar, Howe Li Yeo, V. Sriram, J. Pou, Anshuman Tripathi
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引用次数: 8

Abstract

The control of the active front-end rectifier of the three-stage solid-state transformer (SST) system is addressed in this paper. A comprehensive precharging sequence is introduced for the active front-end rectifier of the SST to limit the inrush current during the start-up process to its nominal current. The proposed precharging algorithm consists of two phases, passive and active precharging. The precharging resistor limits the current during the passive precharging, while a ramp increase of the voltage reference is used in the controller during the active precharging to prevent large inrush currents. Additionally, a feedforward voltage compensator is added to the voltage reference of the controller to improve the dynamic response at the beginning of the active precharging. The proposed algorithm is detailed and simulation results on a 4-kW active front-end converter are presented to validate its performance. The simulation results under various operation conditions show the ability of the proposed algorithm to limit the converter current to its nominal value during the precharging as well as to control the dc-link voltage under different load changes.
固态变压器主动前端整流器在预充过程中动态性能改善的控制
研究了三相固态变压器(SST)有源前端整流器的控制问题。对SST的有源前端整流器引入了全面的预充电顺序,以限制启动过程中的涌流到其标称电流。本文提出的预充电算法分为被动预充电和主动预充电两阶段。在被动预充电时,预充电电阻对电流进行限制,而在主动预充电时,控制器采用基准电压的斜坡增加来防止大的涌流。此外,在控制器的基准电压中加入前馈电压补偿器,以改善主动预充电开始时的动态响应。详细介绍了该算法,并给出了一个4kw有源前端变换器的仿真结果来验证其性能。各种运行条件下的仿真结果表明,该算法能够在预充电过程中将变换器电流限制在标称值内,并能在不同负载变化情况下控制直流电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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