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A case study on combined economic emission and load dispatch using biogeography based optimisation technique

机译:基于生物地理学优化技术的案例研究综合经济排放和负载派遣

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摘要

Economic load dispatch (ELD) is economic scheduling of all generating units for variable load conditions of power system. At the same time, emission of pollutants from conventional thermal power plants need to be controlled for reducing air pollution. Therefore, optimisation of operating cost and emission of pollutants is required for the economic and safe power generation. This paper proposes optimisation of load scheduling for combined economic emission and load dispatch (CEELD) problems. Biogeography based optimisation (BBO) technique is employed to provide the lowest fuel cost at minimum emission of pollutants of all the generating units for a given load. The CEELD solution is obtained by applying BBO technique on a standard IEEE 30 bus - 6 generator system. All the parameters are evaluated in MATLAB for 50 and 100 population size at a given load. The results are compared with the existing methods to prove the efficacy of the proposed technique.
机译:经济负载调度(ELD)是电力系统可变负载条件的所有发电机的经济调度。 同时,需要控制来自传统火力发电机的污染物的排放以降低空气污染。 因此,经济和安全发电需要优化运营成本和污染物排放。 本文建议优化经济排放组合和负荷调度(CELED)问题的负荷调度。 基于生物地产地基的优化(BBO)技术用于在给定负荷的所有发电机单元的最小排放时提供最低燃料成本。 CELED解决方案是通过在标准IEEE 30总线 - 6发电机系统上应用BBO技术而获得的。 所有参数在Matlab中在给定负载中在MATLAB中进行50和100个群体尺寸。 将结果与现有方法进行比较,以证明提出的技术的功效。

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