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A novel energy scheduling framework for reliable and economic operation of islanded and grid-connected microgrids

机译:孤岛和并网微电网可靠,经济运行的新型能源调度框架

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摘要

This paper proposes a novel energy management framework by combining proactive and reactive approaches to efficiently address the uncertainties associated with generation and demand in islanded and interconnected operation of residential microgrid (MG). The MG considers renewable energy sources (RESs), a diesel generator (DG), and a storage device with the possibility of power exchanges with the grid. The proposed formulation is cast as stochastic mixed-integer linear programming (MILP) model with 24-hour rolling horizon, simulated periodically by updating input data and advancing on an hourly basis for a one year scheduling period. The objective is to minimize the total MG cost while preserving comfort priorities of individual households. The energy balance is potentiated by smart central management system of heating, ventilation and air-conditioning and electric water heater loads in conjunction with exploiting the building thermal inertia of well-insulated buildings. Random outages of MG components are modeled via a two-state Markov chain process, which is considered in the reactive approach. Extensive numerical results are presented to reveal the benefits obtained by coordinating the demand response and supply sources for a practical case of Helsinki, Finland. Finally, the impact of various system parameters on the optimal expected MG cost and risk indices is investigated.
机译:本文提出了一种新颖的能源管理框架,该方法通过结合前摄性和反应性方法来有效解决与居民微电网(MG)的孤岛化和互连运行有关的发电和需求相关的不确定性。 MG考虑了可再生能源(RESs),柴油发电机(DG)和存储设备,并可能与电网进行电力交换。拟议的公式被转换为具有24小时滚动范围的随机混合整数线性规划(MILP)模型,通过更新输入数据并在一年的调度期内按小时推进来进行定期仿真。目的是在保持各个家庭舒适度优先的同时,最大程度地降低MG的总成本。结合采暖,通风和空调的智能中央管理系统以及电热水器负荷,并充分利用隔热良好的建筑物的热惯性,可增强能量平衡。 MG组件的随机中断是通过两态马尔可夫链过程建模的,这在反应方法中被考虑。提出了广泛的数值结果,以揭示通过协调芬兰赫尔辛基的实际案例的需求响应和供应来源所获得的好处。最后,研究了各种系统参数对最佳预期MG成本和风险指数的影响。

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