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Optimal Power Flow with conventional and non-conventional generating resources in modern grids considering environmental impacts

机译:考虑环境影响的现代电网中常规和非常规发电资源的最优潮流

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Optimal Power Flow (OPF) is a non-convex and highly constrained optimisation study which is used to find the most economical power export allocation from different generating resources. Policies to produce green electricity have led to the integration of non-conventional generating resources into the networks. However, non-conventional generators, like solar and wind, have intermittent power export due to their stochastic nature. This paper presents an OPF approach for modern grids integrated with conventional and non-conventional generating resources considering environmental impacts. Different loading and generation scenarios are considered for solving the probabilistic OPF using MATPOWER for an IEEE 30-bus transmission network. The results highlight the most economical mix of different generators thereby reducing the overall operational cost of the system.
机译:最优潮流(OPF)是一项非凸面且高度受限的优化研究,用于从不同的发电资源中找到最经济的电力出口分配。生产绿色电力的政策已导致将非常规发电资源整合到网络中。但是,非常规发电机(例如太阳能和风能)由于其随机性而具有间歇性的电力输出。本文提出了一种考虑到环境影响的,与常规和非常规发电资源集成的现代电网的OPF方法。为了在IEEE 30总线传输网络中使用MATPOWER解决概率OPF,考虑了不同的加载和生成方案。结果突出显示了不同发电机的最经济的组合,从而降低了系统的总体运行成本。

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