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Loss reduction in a probabilistic approach for optimal planning of renewable resources

机译:可再生资源最优规划的概率方法损失减少

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Clean and sustainable renewable energy technology is going to take responsibility of energy supply in electrical power systems. Using renewable sources improve the environment and reduce dependence on oil and other fossil fuels. In distribution power system, utilizing of wind and solar DGs comprises some advantages; consist of loss and emission reduction, and also improvement of voltage profile. So, in expansion planning of distributed generations, improvement of each of these parameters can be the objective of planner. In this paper, a mathematical model for sizing and placement of wind and solar DGs is proposed. The formulation is based on a probabilistic load-generation model. The stochastic nature of the wind and solar resources are considered in the proposed scenario-based model. This mathematical framework is used to minimize total annual loss as an objective function. All the network constraints in different operational conditions are regarded. The model is applied on a typical rural distribution network using GAMS software which illustrated the effectiveness of the model.
机译:清洁和可持续的可再生能源技术将负责电力系统的能源供应。使用可再生源改善环境,减少对油和其他化石燃料的依赖。在分销电力系统中,利用风和太阳能DGS包括一些优点;由损耗和减排组成,以及电压曲线的改进。因此,在分布式代代的扩展规划中,这些参数中的每一个的改进都可以是计划者的目标。本文提出了一种用于风和太阳能DGS的尺寸和放置的数学模型。该制剂基于概率负载产生模型。在所提出的基于场景的模型中考虑了风和太阳能资源的随机性质。该数学框架用于将总年度损失最小化为客观函数。所有网络约束都被认为是不同的操作条件。使用Gams软件在典型的农村分销网络上应用模型,该软件说明了模型的有效性。

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