Combined Emission Economic Dispatch of Power System in Presence of Solar and Wind Using Flower Pollination Algorithm

Anum Abid, T. Malik, M. M. Ashraf
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引用次数: 1

Abstract

ED (Economic Dispatch) problem is one of the vital step in operational planning. It is a nonconvex constrained optimization problem. However, it is solved as convex problem by approximation of machine input/output characteristics, thus resulting in an inaccurate result. Reliable, secure and cheapest supply of electrical energy to the consumers is the prime objective in power system operational planning. Increase in fuel cost, reduction in fossil-fuel assets and ecological concerns have forced to integrate renewable energy resources in the generation mix. However, the instability of wind and solar power output affects the power network. For solution of such solar and wind integrated economic dispatch problems, evolutionary approaches are considered potential solution methodologies. These approaches are considered as potential solution methodologies for nonconvex ED problem. This paper presents CEED (Combined Emission Economic Dispatch) of a power system comprising of multiple solar, wind and thermal units using continuous and binary FPA (Flower Pollination Algorithm). Proposed algorithm is applied on 5, 6, 15, 26 and 40 thermal generators by integrating several solar and wind plants, for both convex and non-convex ED problems. Proposed algorithm is simulated in MATLAB 2014b. Results of simulations, when compared with other approaches, show promise of the approach.
基于花授粉算法的太阳能和风能联合发电系统排放经济调度
经济调度问题是企业运营规划的重要环节之一。这是一个非凸约束优化问题。然而,它是通过逼近机器输入/输出特性来求解凸问题,从而导致结果不准确。向用户提供可靠、安全、廉价的电能是电力系统运行规划的首要目标。燃料成本的增加、化石燃料资产的减少以及对生态的关注迫使可再生能源在发电组合中得到整合。然而,风电和太阳能输出的不稳定性影响着电网。对于此类太阳能和风能综合经济调度问题的解决,演化方法被认为是潜在的解决方法。这些方法被认为是非凸ED问题的潜在求解方法。本文提出了采用连续和二进制FPA(花授粉算法)的太阳能、风能和热能多机组电力系统的联合排放经济调度(CEED)。将该算法应用于5、6、15、26和40个热电厂,将多个太阳能和风力发电厂整合在一起,求解凸和非凸ED问题。在MATLAB 2014b中对该算法进行了仿真。仿真结果表明,该方法具有良好的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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