A carrier magnitude varying modulation for distributed static series compensator to achieve a maximum reactive power generating capability

Yunting Liu, F. Peng
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Abstract

Conventional single-phase H-bridge applications have second-order harmonic ripple power on the dc bus. However, in applications like a voltage source inverter (VSI) module of a Distributed Static Series Compensator (DSSC), a larger dc bus voltage fluctuation is acceptable since the dc bus connects to no load. This paper releases the constraints on dc bus voltage ripples so that the dc-bus capacitor can be fully utilized. Based on this idea, a carrier magnitude varying modulation is proposed, in which the VSI can generate ten times the reactive power of a conventional SPWM based VSI. The system reactive power generating capability is assessed to compare with the conventional SPWM based VSI and the constant duty cycle control based VSI. A PI controller is applied to the system to regulate the ac current. The analysis and design are validated by simulation and experiments.
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一种用于分布式静态串联补偿器的载波变幅调制,以达到最大的无功发电能力
传统的单相h桥应用在直流母线上具有二阶谐波纹波功率。然而,在分布式静态串联补偿器(DSSC)的电压源逆变器(VSI)模块等应用中,由于直流母线连接到空载,因此较大的直流母线电压波动是可以接受的。本文解除了直流母线电压波动的约束,使直流母线电容得到充分利用。在此基础上,提出了一种载波幅度变调制方法,该方法使VSI产生的无功功率是传统基于SPWM的VSI的10倍。对系统的无功发电能力进行了评估,并与传统的基于SPWM的VSI和基于恒占空比控制的VSI进行了比较。系统采用PI控制器对交流电流进行调节。仿真和实验验证了分析和设计的正确性。
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