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Probabilistic power output model of wind generating resources for network congestion management

机译:网络拥塞管理风力发电资源的概率功率输出模型

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With the growing importance of renewable energy generating resources around the world, the government is working towards expanding the share of renewable energy to 20% of total power generation considering the limitation of coal-fired and nuclear generation by 2030 in South Korea. However, the growing number of wind generating resources being connected to the electrical power system presents a challenge for transmission grid planning to increase the penetration of wind power while maintaining high levels of reliability and security of the electrical power system. In this paper, we propose a probabilistic power output model of wind generating resources for network congestion management. We use the historical data from the wind farms located on Jeju Island in South Korea to fit the Weibull distribution and implement Monte Carlo simulations. The simulation results, which represent network congestion with probabilistic values, are applied to the empirically modeled power grid of Jeju Island and a steady-state security evaluation is performed. The proposed probabilistic approach will be a key role to reduce the risk of over-investment in power transmission facilities compared to the deterministic approach to develop the generation mix scenarios with high wind power penetrations. (c) 2021 Elsevier Ltd. All rights reserved.
机译:随着世界各地可再生能源的资源越来越重要,政府正在努力将可再生能源的份额扩大到考虑到2030年在韩国2030年燃煤和核一代的20%的份额。然而,越来越多的风力产生资源连接到电力系统的挑战对于传输电网规划,以增加风力的渗透,同时保持电力系统的高水平可靠性和安全性。本文提出了一种用于网络拥塞管理的风力发电资源的概率功率输出模型。我们使用位于韩国济州岛上的风电场的历史数据适合威布尔分销,实施蒙特卡罗模拟。表示具有概率值的网络拥塞的模拟结果,应用于济州岛的经验建模电网和稳态安全评估。拟议的概率方法将是减少电力传输设施过度投资风险的关键作用,与确定具有高风力渗透的产生混合情景的确定性方法相比。 (c)2021 elestvier有限公司保留所有权利。

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