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Optimized dispatch of wind farms with power control capability for power system restoration

机译:电力系统恢复功率控制能力优化的风电场调度

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As the power control technology of wind farms develops, the output power of wind farms can be constant, which makes it possible for wind farms to participate in power system restoration. However, due to the uncertainty of wind energy, the actual output power can't reach a constant dispatch power in all time intervals, resulting in uncertain power sags which may induce the frequency of the system being restored to go outside the security limits. Therefore, it is necessary to optimize the dispatch of wind farms participating in power system restoration. Considering that the probability distribution function (PDF) of transient power sags is hard to obtain, a robust optimization model is proposed in this paper, which can maximize the output power of wind farms participating in power system restoration. Simulation results demonstrate that the security constraints of the restored system can be kept within security limits when wind farm dispatch is optimized by the proposed method.
机译:随着风电场的电力控制技术的发展,风电场的输出功率可能是恒定的,这使得风电场可以参与电力系统恢复。然而,由于风能的不确定度,实际输出功率不能以所有时间间隔达到恒定的调度功率,导致不确定的功率凹陷,这可能会诱导恢复系统的频率以超出安全限制。因此,有必要优化参与电力系统恢复的风电场的调度。考虑到难以获得瞬态功率凹陷的概率分布函数(PDF),本文提出了一种稳健的优化模型,可以最大化参与电力系统恢复的风电场的输出功率。仿真结果表明,当通过所提出的方法优化风电场调度时,恢复系统的安全约束可以保留在安全限制内。

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