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Simultaneous operation of wind and pumped storage hydropower plants in a linearized security-constrained unit commitment model for high wind energy penetration

机译:线性化安全约束单位承诺模型中风能和抽水蓄能电站的同时运行,以实现高风能渗透

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The operation of pumped storage hydropower plants (PSHPs) in the security-constrained unit commitment (SCUC) problem with the consideration of high wind energy penetration has become a practical issue for power systems. In this paper, first, a comparison is made between the operation of fixed-speed and adjustable speed PSHPs in the proposed linearized SCUC model based on the calculation of added values in the market. Then, for the participation of wind power plants (WPPs) and considering their uncertain production, a scenario-based method using real data and the Weibull distribution function is proposed. Also, considering WPPs may have a surplus energy in comparison to the network load in the condition of high wind energy penetration, which will be lost without use, in the modeling of WPPs, a mathematical variable as the curtailed wind energy is considered. With the simultaneous security-based coordination of adjustable speed PSHP units and WPPs in the unit commitment problem, the use of WPPs has become more effective. Also, the WPPs can participate in the market with higher capacity than the separate operation. The various numerical studies with increasing WPPs penetration factor are presented to demonstrate the effectiveness of the adjustable speed PSHP units for the IEEE 24-bus test system.
机译:在考虑到高风能渗透的情况下,安全受限的机组承诺(SCUC)问题中的抽水蓄能电站(PSHP)的运行已成为电力系统的实际问题。本文首先基于市场增加值的计算,对所提出的线性化SCUC模型中定速和可调速PSHP的运行进行了比较。然后,为参与风力发电厂(WPPs)并考虑其不确定的生产,提出了一种使用真实数据和威布尔分布函数的基于情景的方法。此外,考虑到WPP在高风能渗透情况下与网络负载相比可能具有过剩能量,如果不使用,WPF将会失去,在WPP的建模中,考虑了减少风能的数学变量。通过在机组承诺问题中同时对可调速PSHP机组和WPP进行基于安全的协调,WPP的使用变得更加有效。此外,与单独运营相比,WPP可以以更高的容量参与市场。提出了各种增加WPP穿透因子的数值研究,以证明可调速PSHP单元对于IEEE 24-bus测试系统的有效性。

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