Multi-Fuel Power Dispatch in an Interconnected Power System using Ant Lion Optimizer: Multi-Fuel Dispatch Considering Tie-Line Limits

P. Balachandar, S. Ganesan, N. Jayakumar, S. Subramanian
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引用次数: 8

Abstract

The electrical power generation from fossil fuel releases several contaminants into the air and this become excrescent if the generating unit is fed by Multiple Fuel Sources MFS.The ever more stringent environmental regulations have forced the power producers to produce electricity not only at the cheapest price but also at the minimum level of pollutant emissions. Inclusion of this issue in the operational task is a welcome perspective. The cost effective and environmental responsive power system operations in the presence of MFS can be recognized as a multi-objective constrained optimization problem with conflicting operational objectives. The modern meta-heuristic algorithm namely, Ant Lion Optimizer ALO has been applied for the first time to obtain the feasible solution. The fuzzy decision-making mechanism has been integrated to determine the Best Compromise Solution BCS in the multi-objective framework. The intended algorithm is implemented on the standard test systems considering valve-point effects, CO2 emission and tie-line limits.
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基于蚁狮优化器的互联电力系统多燃料调度:考虑联络线限制的多燃料调度
化石燃料发电会向空气中释放几种污染物,如果发电机组由多种燃料源MFS供电,这种污染物就会变得多余。日益严格的环境法规迫使电力生产商不仅要以最便宜的价格发电,而且要以最低的污染物排放水平发电。将这个问题纳入操作任务是一个受欢迎的观点。存在MFS的电力系统的经济高效和环境响应运行可以看作是一个运行目标相互冲突的多目标约束优化问题。本文首次应用现代元启发式算法蚂蚁狮优化器ALO求解问题的可行解。利用模糊决策机制确定多目标框架下的最佳妥协方案。在考虑阀点效应、二氧化碳排放和联络线限制的标准测试系统上实现了预期算法。
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