An energy acquisition model for an aggregator considering demand responses

Linna Ni, F. Wen, Md. Abdus Salam, S. Ang
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Abstract

An aggregator undertakes multiple tasks in smart distribution network such as energy trading, grouping and providing market access to demand response (DR) resources, coordinating EV charging, efficiently controlling smart appliances of consumers and communicating with the distribution system operator (DSO). In this context, a bi-level linear programming model is established for an aggregator of day-ahead energy acquisition in a smart distribution system with DR into consideration. The outer-level simulates the decision-making process of an aggregator who endeavors to maximize its profit by optimal energy acquisition and flexible energy consumption strategy. The decision-maker of the innerlevel is DSO, who takes the responsibility for the economic dispatch of the distribution system and determines load interruptions systematically. A highly efficient commercial solver CPLEX is utilized in the MATLAB environment to solve the developed model. Finally, a modified IEEE 33-bus distribution system is employed to demonstrate the essential features of the developed model and method.
考虑需求响应的集热器能量获取模型
在智能配电网中,聚合器承担着能源交易、分组和提供市场接入需求响应(DR)资源、协调电动汽车充电、有效控制消费者智能设备以及与配电网运营商(DSO)通信等多项任务。在此背景下,建立了考虑灾备的智能配电系统日前电量采集聚合器的双层线性规划模型。外部层模拟了集成商通过最优能源获取和灵活的能源消耗策略实现利润最大化的决策过程。内层的决策者是DSO,负责配电系统的经济调度,系统地确定负荷中断。在MATLAB环境下,利用高效的商用求解器CPLEX对所建立的模型进行求解。最后,以一个改进的IEEE 33总线配电系统为例,验证了所开发模型和方法的基本特征。
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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