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Multi objective dynamic economic emission dispatch with renewable energy and emissions

机译:具有可再生能源和排放的多目标动态经济排放调度

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In this paper, a fully-constrained five objective multi objective dynamic economic emission dispatch (MODEED) problem with thermal, wind, solar, line losses and emissions is considered. More accurate cubic cost functions for thermal, losses and emissions objectives and high potential renewable energy (RE) have been used. Modified Firefly Algorithm with Levy Flights and Derived Mutation (MFA-LF-DM) illustrates the optimization of MODEED on IEEE 6-unit system. MATLAB simulation results reveal that MODEED distributes thermal and renewable power production to optimize fuel cost and pollutants simultaneously. Wind power led to the best reduced emissions, solar resulted in the best reduced cost but RE-mix resulted in optimal cost and emission.
机译:在本文中,考虑了一个具有热,风,太阳能,线损和排放的完全约束的五目标多目标动态经济排放调度(MODED)问题。已针对热,损耗和排放目标以及高潜力可再生能源(RE)使用了更准确的立方成本函数。修改后的带有飞行和衍生突变的萤火虫算法(MFA-LF-DM)说明了在IEEE 6单元系统上对MODEED的优化。 MATLAB仿真结果表明,MODEED可分配火力发电和可再生能源发电,以同时优化燃料成本和污染物。风能可以最大程度地减少排放,太阳能可以最大程度地降低成本,而可再生能源可以降低成本和排放量。

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