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Research on Short-term Multi-objective Optimization Scheduling oriented Peak Regulation of Power Network

机译:面向短期多目标优化调度的电网调峰研究

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With the succession of river basins and inter-basin hydropower stations, the joint optimal operation of cascade hydropower stations in the river basin has large-scale, nonlinear, strong coupling, and multi-target characteristics, and must consider the effects of hydrometeorology, water demand, and power grid security. Focusing on the preparation of short-term power generation plans for cascade hydropower stations on the Qingjiang River, a comprehensive multi-objetive power generation planning model with the largest total power generation and the least load variance on the power grid is established. Based on the constraint processing method of multi-objective optimization scheduling in long-term, the optimal flow distribution technology is adopted to improve the accuracy of power generation planning. The above model is solved by using SMPSO. The results show that the improved algorithm can effectively overcome the shortcomings of slow convergence speed and easy convergence to local optimum. It can improve the power generation efficiency of the whole cascade while responding to the peaking demand of the power grid and provide a new solution to the short-term power generation planning ideas.
机译:随着流域和跨流域水电站的接连,流域梯级水电站的联合优化运行具有规模大,非线性,耦合性强,多目标的特点,必须考虑水文,水的影响。需求和电网安全。针对清江梯级水电站短期发电计划的编制,建立了总发电量最大,电网负荷变化最小的综合多目标发电计划模型。基于长期多目标优化调度的约束处理方法,采用最优潮流分配技术,提高了发电计划的准确性。通过使用SMPSO解决了以上模型。结果表明,改进算法能有效克服收敛速度慢,易于收敛到局部最优的缺点。它可以在响应电网高峰需求的同时提高整个梯级的发电效率,并为短期发电规划思路提供新的解决方案。

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