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Matrix Converter-Based Unified Power-Flow Controllers: Advanced Direct Power Control Method

机译:基于矩阵转换器的统一潮流控制器:高级直接功率控制方法

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摘要

This paper presents a direct power control (DPC) for three-phase matrix converters operating as unified power flow controllers (UPFCs). Matrix converters (MCs) allow the direct ac/ac power conversion without dc energy storage links; therefore, the MC-based UPFC (MC-UPFC) has reduced volume and cost, reduced capacitor power losses, together with higher reliability. Theoretical principles of direct power control (DPC) based on sliding mode control techniques are established for an MC-UPFC dynamic model including the input filter. As a result, line active and reactive power, together with ac supply reactive power, can be directly controlled by selecting an appropriate matrix converter switching state guaranteeing good steady-state and dynamic responses. Experimental results of DPC controllers for MC-UPFC show decoupled active and reactive power control, zero steady-state tracking error, and fast response times. Compared to an MC-UPFC using active and reactive power linear controllers based on a modified Venturini high-frequency PWM modulator, the experimental results of the advanced DPC-MC guarantee faster responses without overshoot and no steady-state error, presenting no cross-coupling in dynamic and steady-state responses.
机译:本文提出了一种用于作为统一功率流控制器(UPFC)的三相矩阵转换器的直接功率控制(DPC)。矩阵转换器(MC)允许直接进行AC / AC电源转换,而无需直流能量存储链路。因此,基于MC的UPFC(MC-UPFC)减少了体积和成本,减少了电容器的功率损耗,并具有更高的可靠性。针对包含输入滤波器的MC-UPFC动态模型,建立了基于滑模控制技术的直接功率控制(DPC)的理论原理。结果,可以通过选择适当的矩阵转换器开关状态来直接控制线路有功功率和无功功率,以及交流电源无功功率,从而保证良好的稳态和动态响应。用于MC-UPFC的DPC控制器的实验结果表明,解耦的有功和无功功率控制,零稳态跟踪误差以及快速的响应时间。与使用基于改进的Venturini高频PWM调制器的使用有功和无功功率线性控制器的MC-UPFC相比,先进DPC-MC的实验结果可确保更快的响应,而不会出现过冲和稳态误差,不会出现交叉耦合在动态和稳态响应中。

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