首页> 外文期刊>American Journal of Electrical Power and Energy Systems >Multi-point Analysis of Economic, Environmental, Static and Dynamic Dispatching of an Energy Mix in the Presence of STATCOM by the U-NSGA-III Genetic Algorithm
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Multi-point Analysis of Economic, Environmental, Static and Dynamic Dispatching of an Energy Mix in the Presence of STATCOM by the U-NSGA-III Genetic Algorithm

机译:U-NSGA-III遗传算法在STATCOM存在下能量混合经济,环境,静态和动态调度的多点分析

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In an energy environment with multiple production sources, operators are generally confronted with the optimal choice of sources which minimizes polluting gas emissions, losses and marginal production costs while meeting the contractual requirements for maintaining voltage in the ranges required. The present work consisted of optimizing an energy mix in the presence of multi-STATCOM in an interconnected network. Indeed, the (DEE) is a concrete real time problem in electrical energy production systems. This paper shows the impact of STATCOM on static DEE (DEES) and on dynamic DEE (DEED) using the modern genetic algorithm of type U-NSGA-III, which is based on non-dominance sorting. The optimal positioning of two STATCOMs in the application network associated with dynamic dispatching has contributed to the reduction of the total production cost, toxic gas emissions, active losses and then to the improvement of the voltage profiles and the transit of power in the branches. It is observed that the combination of DEED with the optimal positioning of FACTS in an interconnected network constitutes an efficient technico-ecological means to act in the direction of reduction on the triplet consisting of (gas emissions, losses, production cost). The relevance of the results obtained compared to the real case of operating the CEB's interconnected network, justifies the performance of the algorithmic tools developed in the context of this work.
机译:在具有多种生产源的能源环境中,运营商通常面临最佳的来源,可使污染的气体排放,损失和边际生产成本最大限度地,同时满足维持所需范围内的电压的合同要求。本工作包括在互联网络中的多算法中优化能量混合。实际上,(Dee)是电能生产系统中的具体实时问题。本文展示了STATCOM在型U-NSGA-III的现代遗传算法基于非优势分类的现代遗传算法对静态DEE(DEES)和动态DEE(DEED)的影响。与动态调度相关联的应用网络中的两个STATCOM的最佳定位有助于降低总生产成本,有毒气体排放,主动损失,然后改善分支中的电力分布和电力的运输。观察到互联网中的事实的最佳定位的契约组合构成了一种有效的技术 - 生态手段,以在由(气体排放,损失,生产成本)组成的三联体的减少方向上。与操作CEB互连网络的实际情况相比,获得的结果的相关性证明了在本工作的上下文中开发的算法工具的性能。

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