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Optimization of emission/economic dispatch using euclidean affine flower pollination algorithm (eFPA) and binary FPA (BFPA) in solar photo voltaic generation

机译:使用欧几里得仿射花授粉算法(eFPA)和二进制FPA(BFPA)优化太阳能光伏发电中的排放/经济调度

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摘要

Economic dispatch is the optimal output for a number of electricity generating units, to meet the system load, at the lowest possible cost, subject to transmission and operational constraints. The different Economic Dispatch (ED) methods have been developed in order to deal with the challenge of continuous and sustainable power at an improved cost. The increase in cost depletion of non-renewable sources has forced us to use the renewable energy resource as an alternative energy source. For optimizing the Economic Dispatch problem, a new algorithm is proposed based on Combined Emission Economic Dispatch (CEED) for Photo Voltaic (PV) plants and thermal power generation units. In CEED approach for improvising the Economic Dispatch Euclidean Affine Flower Pollination Algorithm (eFPA) and Binary Flower Pollination Algorithm (BFPA) has been used for solving the optimization problem for twenty PV and five thermal generators are done with full solar radiations and with reduced solar radiation. Power demand data has been taken from India in the district of Tuticorin Thermal Power Station (TIPS). Simulation results are tested with IEEE 30 bus and IEEE 57 bus systems and the comparison has been made with existing algorithm to provide better results. (C) 2017 Elsevier Ltd. All rights reserved.
机译:经济调度是许多发电机组的最佳输出,以最低的成本满足系统负载,但要受传输和操作约束的影响。已经开发了不同的经济调度(ED)方法,以应对成本不断提高的持续和可持续电力的挑战。不可再生资源成本的增加迫使我们不得不将可再生能源用作替代能源。为了优化经济调度问题,针对光伏电站和火力发电单元,提出了一种基于联合排放经济调度(CEED)的新算法。在CEED中,用于改进经济调度的欧几里得仿射花授粉算法(eFPA)和二值花授粉算法(BFPA)已用于解决20个PV的优化问题,并且在完全太阳辐射且太阳辐射减少的情况下完成了5台热发电机。电力需求数据已从印度的图蒂科林热电站(TIPS)区域获取。仿真结果在IEEE 30总线和IEEE 57总线系统上进行了测试,并与现有算法进行了比较以提供更好的结果。 (C)2017 Elsevier Ltd.保留所有权利。

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