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Model predictive control of VSC-HVDC transmission system for power supply to passive networks

机译:用于无源网络电源的VSC-HVDC输电系统的模型预测控制

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In the traditional double closed-loop control strategy for VSC-HVDC transmission system that supply power to passive networks, the control structure is complex, the PI parameters are more difficult, the tuning is slow, and the response speed is slow. Rectifier-side direct power control based on model prediction and direct AC voltage control strategy on inverter side are proposed. Based on the discrete mathematical model of the converter, the system output under all switching function combinations is calculated by the ergodic method, and the switching function that minimizes the objective function is selected to act on the inverter. The utility model has the advantages of simple structure, no complicated PI parameter setting, fast dynamic response, high voltage quality electric energy to the passive network, good steady state performance and dynamic performance. The simulation results verify the feasibility and effectiveness of the proposed control strategy.
机译:在传统的用于无源网络供电的VSC-HVDC输电系统的双闭环控制策略中,控制结构复杂,PI参数难度较大,调整速度较慢,响应速度较慢。提出了基于模型预测的整流器侧直接功率控制和逆变器侧直接交流电压控制策略。基于转换器的离散数学模型,通过遍历方法计算所有开关功能组合下的系统输出,并选择使目标函数最小的开关功能以作用于逆变器。本实用新型的优点是结构简单,不需要复杂的PI参数设置,动态响应快,无源网络电能质量高,稳态性能和动态性能好。仿真结果验证了该控制策略的可行性和有效性。

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