基于Lambda-Gamma迭代和粒子群优化的短期机组投用水热风协调

Akshay Anantharaman, Sarang Sharan, K. Naveen, M. P. Selvan
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引用次数: 1

摘要

电力系统经济学是研究电力系统优化问题的学科。机组承诺处理基于运行成本、启动时间和成本以及停机时间的机组选择。经济调度是机组承诺下的子问题,它关注的是各发电机组之间的负荷分担,以找到总运行成本最低的最佳组合。火电机组发电的经济调度问题已得到很好的表述。就研究而言,多个热电机组和水力发电机组之间的协调以及风力发电场的整合还处于萌芽阶段。最近,对可再生能源的关注有所增加。因此,扩展经济调度概念以适应非常规资源已变得至关重要。本文给出了一种鲁棒的水热风协调算法,并给出了MATLAB编程实现结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydro-Thermal-Wind Coordination for Short Term Unit Commitment Using Lambda-Gamma Iteration and Particle Swarm Optimization
Power system economics is the field that deals with optimization problems in power systems. Unit commitment deals with selection of units based on operation cost, start-up time and cost, and shut-down time. Economic dispatch, which is a subproblem under unit commitment, is concerned with the sharing of loads between generators in order to find the best combination that yields the lowest total operation cost. The economic dispatch problem has been well formulated for power generation by thermal units. Coordination between multiple units of thermal and hydel units along with wind farm integration is at an embryonic level in terms of research. Of late, focus on renewable energy has increased. Thus, it has become essential to extend the economic dispatch concept to accommodate unconventional sources. This paper presents robust algorithms for hydro-thermal-wind coordination with results from implementation on MATLAB programming.
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