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Study on the Current Analysis of a Transmission System with Wind Power Penetration Using Stochastic Power Flow Calculations

机译:使用随机电流计算的风力渗透输电系统电流分析研究

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Wind generated power is one of the most promising forms of renewable energy and its penetration into power grids is expected to increase in future. For the large-scale penetration of wind farms, it is important to build transmission networks dedicated to wind power generation at low costs and assess the impacts of wind power on the existing transmission networks. For solving these challenges, it is necessary to determine the appropriate capacities of the power lines to be built, and to estimate the additional power flow in the existing lines. In this paper, we propose a current flow analysis method using stochastic power flow calculations and we apply this method to a model system that simulates the power system of Tohoku (the northeast region of Japan). First, we calculate the stochastic maximum current values of the transmission lines of the model system using this method. Next, we calculate the actual current values of the transmission lines of the model system using the measured data of the wind farms in Tohoku. Additionally, we evaluate the effectiveness of the proposed method by comparing the stochastic maximum current values with the actual current values.
机译:风力产生的力量是最有希望的可再生能源形式之一,其渗透到电网将未来增加。对于风电场的大规模渗透,建立以低成本为致力于风力发电的传输网络,并评估风电对现有传输网络的影响。为了解决这些挑战,有必要确定要构建的电源线的适当能力,并估计现有线路中的额外功率流动。在本文中,我们提出了一种流动分析方法,使用随机功率流量计算,我们将这种方法应用于模拟模拟系统,模拟往北(日本东北地区)的电力系统。首先,我们使用此方法计算模型系统的传输线的随机最大电流值。接下来,我们使用Tohoku中的风电场的测量数据计算模型系统的传输线的实际电流值。此外,我们通过将随机最大电流值与实际电流值进行比较来评估所提出的方法的有效性。

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