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A framework for transmission network planning

机译:传输网络规划框架

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As the penetration of wind power into the power system increases, the ability to assess the reliability impact of such interaction becomes more important. The composite reliability evaluations involving wind energy provide ample opportunities for assessing the benefits of different wind farm connection points. A connection to the weak area of the transmission network will require network reinforcement for absorbing the additional wind energy. Traditionally, the reinforcements are performed by constructing new transmission corridors. However, a new state-of-art technology such as the dynamic thermal rating (DTR) system, provides new reinforcement strategy and this requires new reliability assessment method. This paper demonstrates a methodology for assessing the cost and the reliability of a network reinforcement strategy by considering the DTR systems when large scale wind farms are connected to existing power network. Sequential Monte Carlo simulations were performed and all DTRs and wind speed were simulated using the auto-regressive moving average (ArMA) models.
机译:随着风力对电力系统的渗透率的提高,评估这种相互作用对可靠性的影响的能力变得越来越重要。涉及风能的综合可靠性评估为评估不同风电场连接点的收益提供了充足的机会。与输电网络薄弱区域的连接将需要加强网络以吸收额外的风能。传统上,通过建造新的传输通道来进行加固。但是,诸如动态热额定值(DTR)系统之类的最新技术提供了新的加固策略,这需要新的可靠性评估方法。本文演示了一种在大型风电场连接到现有电网时,通过考虑DTR系统来评估网络加固策略的成本和可靠性的方法。进行了顺序蒙特卡洛模拟,并使用自回归移动平均值(ArMA)模型对所有DTR和风速进行了模拟。

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