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The established mega watt linear programming-based optimal power flow model applied to the real power 56-bus system in eastern province of Saudi Arabia

机译:建立的基于兆瓦线性规划的最优潮流模型应用于沙特阿拉伯东部省的有功功率56总线系统

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摘要

A current trend in electric power industries is the deregulation around the world. One of the questions arise during any deregulation process is: where will be the future generation expansion? In the present paper, the study is concentrated on the wheeling computational method as a part of mega watt (MW) linear programming-based optimal power flow (LP-based OPF) method. To observe the effects of power wheeling on the power system operations, the paper uses linear interactive & discrete optimizer (LINDO) optimizer software as a powerful tool for solving linear programming problems to evaluate the influence of the power wheeling. As well, the paper uses the optimization tool to solve the economic generation dispatch and transmission management problems. The transmission line flow was taken in consideration with some constraints discussed in this paper. The complete linear model of the MW LP-based OPF, which is used to know the future generation potential areas in any utility is proposed. The paper also explains the available economic load dispatch (ELD) as the basic optimization tool to dispatch the power system. It can be concluded in the present study that accuracy is expensive in terms of money and time and in the competitive market enough accuracy is needed without paying much.
机译:电力行业的当前趋势是全球范围内的放松管制。在任何放松管制的过程中都会出现的问题之一是:下一代的扩展将在哪里?在本文中,该研究集中于作为基于兆瓦(MW)线性规划的最优潮流(LP-based OPF)方法的一部分的滚轮计算方法。为了观察动力轮对电力系统运行的影响,本文使用线性交互式和离散优化器(LINDO)优化器软件作为解决线性规划问题以评估动力轮影响的强大工具。同样,本文使用优化工具来解决经济发电调度和输电管理问题。考虑了传输线流量,并在本文中讨论了一些约束。提出了基于MW LP的OPF的完整线性模型,该模型用于了解任何公用事业的未来发电潜力领域。本文还解释了可用的经济负荷分配(ELD)作为分配电力系统的基本优化工具。在本研究中可以得出结论,就金钱和时间而言,准确性是昂贵的,并且在竞争激烈的市场中,需要足够的准确性而无需付出太多。

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