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首页> 外文期刊>IEEE Transactions on Power Systems >Estimating the Spinning Reserve Requirements in Systems With Significant Wind Power Generation Penetration
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Estimating the Spinning Reserve Requirements in Systems With Significant Wind Power Generation Penetration

机译:估算风力发电渗透率很高的系统中的旋转备用容量需求

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摘要

Spinning reserve (SR) allows system operators to compensate for unpredictable imbalances between load and generation caused by sudden outages of generating units, errors in load forecasting or unexpected deviations by generating units from their production schedules. As the proportion of power produced by wind farms increases, it becomes more difficult to predict accurately the total amount of power injected by all generators into the power system. This added uncertainty must be taken into account when setting the requirement for SR. This paper proposes a technique to calculate the optimal amount of SR that the system operator should provide to be able to respond not only to generation outages but also to errors in the forecasts for load and wind power production. Using a Monte Carlo simulation, the proposed technique for setting the SR requirements is then compared with the traditional deterministic criterion (i.e., the capacity of the largest online infeed), an approach to cope with wind imbalances and an approach that combines the traditional criterion with the approach to cope with wind imbalances. The results show that, contrary to what is commonly believed, an increased wind power penetration does not necessarily require larger amounts of SR.
机译:旋转储备(SR)使系统操作员可以补偿由于发电机组突然中断,负载预测错误或发电机组与生产计划表之间的意外偏差所导致的负载与发电之间的不可预测的不平衡。随着风电场发电功率比例的增加,准确预测所有发电机注入电力系统的总功率变得更加困难。在设置SR的要求时,必须考虑到这种增加的不确定性。本文提出了一种计算系统操作员应提供的最佳SR数量的技术,该SR不仅能够响应发电中断,而且能够响应负荷和风力发电预测的误差。然后使用蒙特卡洛模拟,将拟定的SR要求技术与传统的确定性标准(即最大在线馈电能力),应对风不平衡的方法以及将传统标准与应对风不平衡的方法。结果表明,与通常认为的相反,增加的风电渗透不一定需要大量的SR。

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