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Potential and Efficient Computation of Corrective Power Flow Control in Cost vs. Risk Trade-Off

机译:成本与风险权衡之间的校正潮流控制的潜力和高效计算

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Increased levels of variable renewable generation lead to increased variations in power flows. If the required transmission capacity is provided by a grid with no or little controllability as in today's power system, the consequence is a significant under-utilization of the transmission assets most of the time. In this paper, corrective power flow control is used to improve the utilization of the existing transmission capabilities and adjust the grid to the varying needs of generation and demand. In lieu of the traditional N-1 security formulation, a risk based approach is employed. The resulting risk constrained economic dispatch is solved efficiently by decomposing it into a two stage process by using newly defined locational security impact factors (LSIF). In addition, these LSIFs provide information on the most effective, location-dependent measures to reduce system risk. Simulations provide insights into the effectiveness of the proposed approach and the potential of corrective power flow control to reduce cost of dispatched generation and to decrease system risk.
机译:可变可再生能源发电量的增加导致潮流的变化增加。如果像今天的电力系统那样,由电网提供所需的传输容量而几乎没有可控性,则结果是大多数时候传输资产的利用率很低。在本文中,纠正性潮流控制用于提高现有输电能力的利用率,并根据发电和需求的变化需求调整电网。代替传统的N-1安全性提法,采用了基于风险的方法。通过使用新定义的位置安全影响因子(LSIF)将其分解为两个阶段的过程,可以有效地解决由此产生的受限于风险的经济调度问题。此外,这些LSIF还提供有关最有效的,与位置有关的措施的信息,以降低系统风险。仿真提供了对所提出方法的有效性以及纠正性潮流控制的潜力的见解,以降低调度发电成本并降低系统风险。

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