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Optimal dynamic load dispatching with the coordination of wind farm and AGC units

机译:在风电场和AGC机组的配合下优化动态负荷分配

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Due to the intermittent and uncertainty of wind power, power system net-load become more dynamic and unpredictive as the ramping events increase seriously with wind power penetration growing continuously. The change of net-load may deviate from the basis points of AGC, and more reserve capacity needed to be invoked to maintain the power balance, which will increase the operating cost of power system. To solve the problem, an dynamic load dispatching model and optimal strategy base on the AGC reserve capacity and marginal cost is proposed for the coordination dispatching of wind farm and AGC units. Within one minute time scale, the wind farm and AGC units adjust the operation set points according to the dynamic load dispatching results with the last updated wind power and load predication information. The participation factors of each AGC units and wind farm are optimized according to their marginal costs to cope with the net-load variation. From the results of New-England 39 bus test system, the dynamic net load can be tracked accurately and the operating cost can also be decreased at the same time.
机译:由于风力发电的间歇性和不确定性,随着随着风力发电的持续增长,斜坡事件严重增加,电力系统的净负载变得更加动态和不可预测。净负载的变化可能会偏离AGC的基点,需要调用更多的备用容量来保持功率平衡,这将增加电力系统的运行成本。针对这一问题,提出了一种基于AGC备用容量和边际成本的动态负荷调度模型和最优策略,用于风电场与AGC机组的协调调度。在一分钟的时间范围内,风电场和AGC单元会根据动态负荷分配结果以及最新更新的风能和负荷预测信息来调整运行设定点。每个AGC单位和风电场的参与因子均根据其边际成本进行了优化,以应对净负荷变化。根据New-England 39总线测试系统的结果,可以准确跟踪动态净负载,同时也可以降低运营成本。

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