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Real Time Congestion Management in Power Systems Considering Quasi-Dynamic Thermal Rating and Congestion Clearing Time

机译:考虑准动态热额定值和拥塞清除时间的电力系统实时拥塞管理

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摘要

In a smart power system, smart measurement infrastructure brings so many advantages in monitoring and control of the power system. This paper proposes an optimal real time transmission congestion management algorithm in a competitive electricity market based on real time measurements in a smart power system. Instead of static and fix thermal rates, quasi-dynamic thermal rates of transmission lines are calculated and used to solve the real time congestion management optimization problem. The optimization problem includes an optimal generation rescheduling and load shedding scheme to minimize the congestion management costs in a specific time interval. This time interval is introduced and defined as congestion clearing time in this paper. Furthermore, in the proposed algorithm, the congestion clearing time is divided into few subsequent subintervals aimed at considering loads and power system variations during rescheduling procedure. The proposed method could be used by system operators (SOs) to adapt the real time congestion management procedure with regard to the power system loads and generations, or system configuration variations during rescheduling and load shedding process. Numerical results obtained from running the algorithm on the modified IEEE 30-bus test system and the transmission network of Esfahan Regional Power Network (ERPN), as a real size power system, demonstrate convincingly the ability of the proposed algorithm in the congestion management cost and load shedding reduction, while it increases the power system security margin in intensive congestion cases significantly.
机译:在智能电源系统中,智能测量基础架构在监视和控制电源系统方面带来了许多优势。基于智能电力系统中的实时测量,本文提出了一种在竞争激烈的电力市场中的最优实时传输拥塞管理算法。代替静态和固定热率,计算传输线的准动态热率,并将其用于解决实时拥塞管理优化问题。优化问题包括最佳发电重新调度和减载方案,以最大程度地减少特定时间间隔内的拥塞管理成本。引入此时间间隔并将其定义为拥塞清除时间。此外,在提出的算法中,拥塞清除时间被分为几个随后的子间隔,旨在考虑在重新调度过程中的负载和电力系统的变化。系统运营商(SO)可以使用所提出的方法来调整实时拥塞管理程序,以适应电力系统的负荷和发电量,或者在重新调度和减负荷过程中系统配置的变化。通过在改进的IEEE 30总线测试系统和作为大型电力系统的Esfahan区域电网(ERPN)的传输网络上运行该算法获得的数值结果令人信服地证明了该算法在拥塞管理成本和成本方面的能力。减少负载减少,同时在严重的拥塞情况下显着提高电力系统的安全裕度。

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