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The Effect of Demand Response in the Minimum Available Reserve of Energy Management

机译:需求响应在能源管理最低可用储备中的影响

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This paper presents a multi-objective energy scheduling for the daily operation of, a Smart Grid (SG) considering maximization of the minimum available reserve in addition to the cost minimization, to take into account the reliability requirements of critical and vulnerable loads. A Virtual Power Player (VPP) manages the day-ahead energy resource scheduling in the smart grid, considering Distributed Generation (DG) and Vehicle-To-Grid (V2G), while maintaining a highly reliable power for the critical loads. This work considers high penetration of critical loads, e.g. industrial processes that require high power quality, high reliability and few interruptions. A mathematical formulation is described and a deterministic technique based on Mixed-Integer Linear Programming (MILP) is used to solve the multi-objective problem. The effect of some customers with DR in this context is analyzed to assess the benefits in the energy scheduling problem. A case study using a 180-bus Portuguese distribution network with 90 load points, several DG units and a large fleet of Electric Vehicles (EVs) with V2G is used to illustrate the performance of the proposed method.
机译:本文介绍了一种多目标能源调度,用于考虑最小可用储备的最大值,考虑到危急和脆弱负载的可靠性要求,考虑最大可用储备的最大可用储备的最大化的多目标能源调度。虚拟动力播放器(VPP)管理在智能电网中的一天前方能源资源调度,考虑分布式生成(DG)和车辆到网格(V2G),同时保持临界负载的高可靠性。这项工作考虑了临界负荷的高渗透,例如,工业过程需要高功率质量,高可靠性和中断少数。描述了数学制剂,并且基于混合整数线性编程(MILP)的确定性技术用于解决多目标问题。分析了某些客户在这种情况下与DR的影响,以评估能量调度问题中的益处。使用具有90个装载点的180辆公交葡萄牙分配网络的案例研究,使用具有V2G的几个DG单位和电动汽车(EVS)的大队(EVS)来说明所提出的方法的性能。

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