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New current control algorithm incorporating multilevel SHE-PWM approach for STATCOM operation under unbalanced condition

机译:在不平衡条件下掺入多级She-PWM方法的新电流控制算法

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This paper presents a new decoupling current control algorithm for Static Synchronous Compensator (STATCOM) system operating under unbalanced condition. The STATCOM is constructed using multilevel cascaded H-bridge inverter (CHI) employing new multilevel selective harmonic elimination pulse width modulation (MSHE-PWM) technique. The MSHE-PWM is based on variable DC voltage levels, which enables elimination of more harmonics as well as provides constant switching angles and linear pattern of DC voltage levels over the modulation index range. This further eases the implementation of the technique for dynamic systems such as STATCOM. For simplicity, the DC-DC buck converter is considered to provide the variable DC voltage levels. Current vector controllers based synchronous reference frame (SRF) are proposed in this work to separately regulate the required positive- and negative-sequence variables for correcting the power factor and balancing the three-phase source currents at the point of common coupling (PCC), respectively. The effectiveness and the theoretical analysis of the proposed approach are demonstrated and verified via various simulation studies using MATLAB/SIMULINK for both the dynamic and transient conditions.
机译:本文介绍了一种新的解耦电流控制算法,用于在不平衡条件下运行的静态同步补偿器(Statcom)系统。 STATCOM使用采用新的多级选择性谐波消除脉冲宽度调制(MSHE-PWM)技术进行多级级联H桥式逆变器(CHI)。 MSHE-PWM基于可变直流电压电平,这使得能够消除更多的谐波以及在调制指数范围内提供恒定的切换角和直流电压电平的线性图案。这进一步简化了用于动态系统(如Statcom)的技术的实现。为简单起见,DC-DC降压转换器被认为提供可变直流电压电平。基于当前的基于同步参考帧(SRF)的同步参考帧(SRF)在这项工作中提出了分别调节所需的正序和负序列变量,用于校正功率因数并在公共耦合点(PCC)下平衡三相源电流,分别。通过使用MATLAB / SIMULINK的各种模拟研究对动态和瞬态条件进行了各种仿真研究来证明和验证所提出的方法的有效性和理论分析。

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