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Stochastic reactive power market with volatility of wind power considering voltage security

机译:考虑电压安全性的风电波动性随机无功市场

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While wind power generation is growing rapidly around the globe; its stochastic nature affects the system operation in many different aspects. In this paper, the impact of wind power volatility on the reactive power market is taken into account. The paper presents a novel stochastic method for optimal reactive power market clearing considering voltage security and volatile nature of the wind. The proposed optimization algorithm uses a multiobjective nonlinear programming technique to minimize market payment and simultaneously maximize voltage security margin. Considering a set of probable wind speeds, in the first stage, the proposed algorithm seeks to minimize expected system payment which is summation of reactive power payment and transmission loss cost. The object of the second stage is maximization of expected voltage security margin to increase the system loadability and security. Finally, in the last stage, a multiobjective function is presented to schedule the stochastic reactive power market using results of two previous stages. The proposed algorithm is applied to IEEE 14-bus test system. As a benchmark, Monte Carlo Simulation method is utilized to simulate the actual market of given period of time to evaluate results of the proposed algorithm, and satisfactory results are achieved.
机译:风力发电在全球范围内发展迅速;它的随机性会在许多不同方面影响系统的运行。本文考虑了风电波动对无功市场的影响。本文提出了一种新的随机方法,该方法考虑了电压安全性和风的波动性,可以优化无功市场。所提出的优化算法使用多目标非线性规划技术来最小化市场支付,同时最大化电压安全裕度。考虑到一组可能的风速,在第一阶段,所提出的算法试图使期望的系统费用最小化,该期望的系统费用是无功费用和传输损耗成本之和。第二阶段的目的是使期望的电压安全裕度最大化,以增加系统的负载能力和安全性。最后,在最后一个阶段中,使用前两个阶段的结果,提出了一个多目标函数来调度随机无功市场。该算法被应用于IEEE 14总线测试系统。作为基准,利用蒙特卡罗模拟方法对给定时间段内的实际市场进行仿真,以评估该算法的效果,取得满意的效果。

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