首页> 外文会议>2017 IEEE Manchester PowerTech >Corrective control to handle forecast uncertainty: A chance constrained optimal power flow
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Corrective control to handle forecast uncertainty: A chance constrained optimal power flow

机译:纠正控制以处理预测的不确定性:机会限制了最佳潮流

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Higher shares of electricity generation from renewable energy sources and market liberalization is increasing uncertainty in power systems operation. At the same time, operation is becoming more flexible with improved control systems and new technology such as phase shifting transformers (PSTs) and high voltage direct current connections (HVDC). Previous studies have shown that the use of corrective control in response to outages contributes to a reduction in operating cost, while maintaining N-1 security. In this work, we propose a method to extend the use of corrective control of PSTs and HVDCs to react to uncertainty. We characterize the uncertainty as continuous random variables, and define the corrective control actions through affine control policies. This allows us to efficiently model control reactions to a large number of uncertainty sources. The control policies are then included in a chance constrained optimal power flow formulation, which guarantees that the system constraints are enforced with a desired probability. By applying an analytical reformulation of the chance constraints, we obtain a second-order cone problem for which we develop an efficient solution algorithm. In a case study for the IEEE 118 bus system, we show that corrective control for uncertainty leads to a decrease in operational cost, while maintaining system security. Further, we demonstrate the scalability of the method by solving the problem for the IEEE 300 bus and the Polish system test cases.
机译:来自可再生能源和市场自由化的较高发电份额正在增加电力系统运行的不确定性。同时,通过改进的控制系统和新技术(例如移相变压器(PST)和高压直流电连接(HVDC)),操作变得更加灵活。先前的研究表明,对故障进行纠正控制的使用有助于降低运营成本,同时保持N-1的安全性。在这项工作中,我们提出了一种方法来扩展对PST和HVDC的校正控制的使用,以应对不确定性。我们将不确定性描述为连续随机变量,并通过仿射控制策略定义纠正控制措施。这使我们能够对大量不确定性源的控制反应进行有效建模。然后,将控制策略包括在机会受限的最佳潮流公式中,该公式可确保以期望的​​概率强制实施系统约束。通过应用机会约束的解析重新公式化,我们获得了二阶锥问题,为此我们开发了一种有效的求解算法。在针对IEEE 118总线系统的案例研究中,我们证明了针对不确定性的纠正控制可在保持系统安全性的同时降低运营成本。此外,我们通过解决IEEE 300总线和波兰语系统测试用例的问题,证明了该方法的可扩展性。

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