Abstract

Power Hardware in the Loop (PHIL) systems are used to test a power system with the help of combined software and hardware. Generally, to construct a PHIL system, a switched-mode power amplifier that has a stable performance is used, because of their large, linear signal control-to-output characteristics. However, the fundamental limitations of a switch-mode power amplifier (PA) are the dynamic performance and output bandwidth. In this paper, a compound controller has been used for the rectifier part of a PA, which can ensure the stability of a PA under transient or fault operating conditions. Moreover, a compound controller, which involves a feed-forward controller, a proportional controller and a repetitive controller, is proposed in the inverter part of a PA, and it can be used for PHIL applications. Experimental results are obtained under various operating conditions, such as transient responses under load step change, and output voltage bandwidth testing for a PHIL system, it is concluded that a proposed switched-mode power amplifier is useful for the PHIL system.

Highlights

  • A SArttaicleble and Fast-Transient PerformanceJianjun Sun 1, Chenxu Yin 2,*, Jinwu Gong 1, Yewei Chen 1, Zhiqiang Liao 1 and Xiaoming Zha 1

  • Systeamm,pitliifsiecroins culsuedfueldfothr athteaPpHroILposyssetdemsw. itched-mode power amplifier is useful for the PHIL system

  • In a PHIL system, the reference signal is obtained from the real time simulator (RTS) part, and it is applied to theEnteerrgimes i2n01a7l,s10o, f15t6h9;edHoi:U10.T339th0/reon1u01g0h15t6h9 e PI to establish a virtual exchangwewwo.fmpdopiw.coemr/jbouertnwale/eennergtihese RTS and HUT

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Summary

A SArttaicleble and Fast-Transient Performance

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Controller for the Rectifier of a PA
10 Without FC
Compound Controller
Experimental
Findings
Conclusions
Full Text
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