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Model Predictive Control for Three-Level Cascaded H-bridge D-STATCOM

机译:三级联H桥D-STATCOM的模型预测控制

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摘要

In this paper, a model predictive control (MPC) is investigated for a three-level H-bridge D-STATCOM. To predict the future behavior, a discrete-time model of the D-STATCOM is used. Here in the MPC, a single objective cost function is used to avoid the weighted factors in a multivariable objective function, which in turn leads to complex optimization problem. A single objective cost function controls the error in the reference and actual current. A separate proportional integral controller and a capacitor balancing algorithm are used to self-support the DC capacitor voltage under load variation. The reference current for D-STATCOM is generated by using d-q control strategy for the compensation of reactive power and current harmonics. The switching state which minimizes the current error and the corresponding redundant switching state which meets for the DC capacitor voltage balancing are applied at the next sampling instant. The performance of the investigated MPC control scheme is developed in MATLAB-SIMULINK model and steady-state performance is experimentally verified for non-linear load.
机译:在本文中,对三级H桥D-STATCOM的模型预测控制(MPC)进行了研究。为了预测未来的行为,使用了D-STATCOM的离散时间模型。在MPC中,使用单个目标成本函数来避免多变量目标函数中的加权因子,从而导致复杂的优化问题。单个目标成本函数控制参考电流和实际电流中的误差。单独的比例积分控制器和电容器平衡算法用于在负载变化时自支撑直流电容器电压。 D-STATCOM的参考电流是使用d-q控制策略生成的,用于补偿无功功率和电流谐波。在下一个采样时刻施加使电流误差最小的开关状态和满足直流电容器电压平衡的相应冗余开关状态。在MATLAB-SIMULINK模型中开发了所研究的MPC控制方案的性能,并通过实验验证了非线性负载的稳态性能。

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