Dynamic economic Emission Dispatch with consideration of time of use

G. Aghajani, N. Yousefi
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Abstract

Currently, the electrical smart grids are very effective in solving the problems of traditional electrical networks. The smart implementation of Demand Response Programs (DRPs) has significant impact on the decreased costs and increased network reliability. In this paper, the integrated model of time of use demand response program and issue of Dynamic Economic Emission Dispatch (DEED) is presented. In the integrated model, the production cost and emission are minimized and the optimal price rate is determined at different periods at the same time. Considering the various non-linear conditions such as point-valve effect, prohibited operating zones and spinning reserve, the problem become completely nonlinear and complex, which is solved using Random Drift Particle Swarm Optimization (RDPSO) algorithm. The final model is applied to a ten-unit system and proves the results of final model implementation advantages.
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考虑使用时间的动态经济排放调度
目前,智能电网非常有效地解决了传统电网存在的问题。需求响应计划(DRPs)的智能实施对降低成本和提高网络可靠性具有重要影响。本文提出了利用时段需求响应方案与动态经济排放调度(DEED)问题的集成模型。该模型以生产成本和排放最小为目标,在不同时期同时确定最优价格。考虑到点阀效应、禁止操作区域和旋转储备等各种非线性条件,问题变得完全非线性和复杂,采用随机漂移粒子群优化(RDPSO)算法求解。将最终模型应用于一个十单元系统,并验证了最终模型的实现结果的优越性。
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