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Optimum Feed-Forward Control for UPFC Converters in Large-Scale Non-Grid-Connected Wind Power Applications

机译:大型非网格连接风电应用中的UPFC转换器的最佳前馈控制

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The three-phase PWM rectifier is one of the core techniques applied in large scale wind power system. DC-bus voltage usually fluctuates as the variation of load and ac voltage, which may hurt the safety and reliability of the system. In order to restrain dc-bus voltage fluctuation and improve system dynamic response, a direct current control and dual close loop control structure in d-q synchronous reference frame are employed. By analyzing the factors which influence the fast transient response, an optimum feed-forward control strategy is proposed based on the power balance relationship between the input and output of rectifier. With this control, the dc-bus voltage is immunized from not only variation of load but also variation of grid voltage, and the capacitance of the dc link capacitors can be reduced at same transient response demand of system. Simulation results show that the proposed control scheme has satisfactory steady-state characteristics and fast transient response.
机译:三相PWM整流器是大规模风电系统中应用的核心技术之一。直流母线电压通常波动作为负载和交流电压的变化,这可能会损害系统的安全性和可靠性。为了限制直流母线电压波动并改善系统动态响应,采用D-Q同步参考帧中的直流控制和双闭环控制结构。通过分析影响快速瞬态响应的因素,基于整流器的输入和输出之间的功率平衡关系提出了最佳前馈控制策略。通过该控制,DC总线电压不仅可以从负载的变化而且电网电压的变化,以及DC链路电容器的电容可以在相同的系统的瞬态响应需求中降低。仿真结果表明,该控制方案具有令人满意的稳态特性和快速瞬态响应。

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