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Active power economic dispatch of wind farm cluster based on integer linear programming

机译:基于整数线性规划的风电场群有功经济调度

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The existing active power control methods which take single wind farm as a unit and regulate it independently cannot satisfy the complex control demand of large-scale wind power base. Therefore, wind farms are unitized as wind farm cluster (WFC) as a whole in this paper. An active power economic dispatch model of WFC considering short-term wind power prediction is proposed, which aims at maximizing the active power output of WFC while minimizing tie line power loss. As this dispatch model is a complicated integer programming problem with nonlinear constraints, it is transferred to the integer linear programming (ILP) problem and solved by commercial MILP solvers under the general algebraic modeling system (GAMS). Simulation results of an actual WFC in Northeast China proved the method to be effective and feasible.
机译:现有的以单个风电场为单位进行独立调节的有功功率控制方法不能满足大型风电基地复杂的控制需求。因此,本文将风电场整体统一为风电场集群(WFC)。提出了一种考虑短期风电预测的WFC有功经济调度模型,旨在最大化WFC的有功输出,同时最大程度地降低联络线功率损耗。由于此调度模型是具有非线性约束的复杂整数规划问题,因此将其转换为整数线性规划(ILP)问题,并在通用代数建模系统(GAMS)下由商业MILP求解器进行求解。东北某实际WFC的仿真结果证明了该方法的有效性和可行性。

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