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Dynamic Voltage Decoupling Control of Power System Based on Wide Area Measurement Information

机译:基于广域测量信息的电力系统动态电压解耦控制

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摘要

Wide area measurement system is an important step to realize online closed-loop control for power system. Focused on the disadvantages of existed dynamic voltage control, a novel dynamic voltage decoupling control model and its implementation approach based on wide area measurement information are proposed. Applying the wide area measurement information, a dynamic voltage decoupling control model is established. According to the relation of predictive voltage and current control variables derived by the method of quick single-step nonlinear predictive control, the problem of dynamic voltage control is converted to a standard quadratic programming problem in a finite horizon, which is solved to obtain optimal control strategy. Thus, the online closed-loop voltage control is implemented by the processes of predicting future voltage values, rolling optimization and real-time control. The simulation results of IEEE 11-bus system verify the feasibility and effectiveness of the proposed scheme.
机译:广域测量系统是实现电力系统在线闭环控制的重要步骤。针对动态电压控制存在的弊端,提出了一种基于广域测量信息的动态电压去耦控制模型及其实现方法。应用广域测量信息,建立了动态​​电压去耦控制模型。根据快速单步非线性预测控制方法推导的预测电压与电流控制变量之间的关系,将动态电压控制问题转化为有限范围内的标准二次规划问题,求解得到最优控制战略。因此,通过预测未来电压值,滚动优化和实时控制的过程来实现在线闭环电压控制。 IEEE 11总线系统的仿真结果证明了该方案的可行性和有效性。

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