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Operating reserve requirements in a power system with dispersed wind generation

机译:风力发电分散的电力系统中的运行储备要求

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Operation of the power systems with high wind penetration is significantly influenced by wind variability and uncertainty. This paper examines the potential impact of distributed wind generation on operating reserve requirements in the IEEE 24-bus system. Wind and load are stochastically modeled using actual data from a balancing authority. Probabilistic optimal power flow based on the two point estimate method is used to determine the reserve required to compensate for the variable wind power output. The proposed method considers stochastic factors and their affects on the dispatch results. Different scenarios are studied to evaluate dispersed wind generation and its potential to reduce the reserve requirement and transmission congestion cost. Correlation between the power outputs of different wind farms and wind penetration level are considered as determining factors when choosing wind sites for distributed generation. The effect of this factor on the operating reserve requirement is assessed in this paper. A brief study is also carried out regarding the transmission congestion cost and the potential reduction of this cost due to dispersed wind generation.
机译:高风速渗透的电力系统的运行受风的可变性和不确定性的影响很大。本文研究了分布式风力发电对IEEE 24-bus系统中运行储备要求的潜在影响。使用来自平衡机构的实际数据对风和负荷进行随机建模。基于两点估计方法的概率最优潮流用于确定补偿可变风能输出所需的储备量。该方法考虑了随机因素及其对调度结果的影响。研究了不同的方案,以评估分散的风力发电及其潜力,以减少备用需求和输电拥堵成本。选择分布式发电的风场时,不同风电场的功率输出与风的渗透水平之间的相关性被视为决定因素。本文评估了此因素对业务准备金要求的影响。还对传输拥塞成本以及由于分散的风力发电而可能降低的成本进行了简短的研究。

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