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Optimization of a stand-alone photovoltaic-wind-diesel-battery system with multi-layered demand scheduling

机译:具有多层需求调度的独立光伏-风-柴油-电池系统的优化

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Operational and financial optimization of a renewable energy-based stand-alone electricity micro-grid is described. Due to the large problem size in time-series models, we construct the model using mixed integer linear programming (MILP). As the constraints required in this model generally have modest complexity, we were able to perform piece-wise linearization on any non-linear variable relationship. Additionally, controls have also be applied on the demand side. Here, a two stage MILP model has been developed to minimize the overall levelized electricity cost for a micro-grid containing a photovoltaic power source, wind turbine, diesel generator, and an energy storage system. The model aimed to converge on a balance of decision accuracy and computational efficiency. Model outputs were capable of defining both the optimal system sizing and scheduling for each system component, with additional demand management control levers on the loss of power supply probability and load deferring allowance. We believe that this model is one of the first to explore the possibilities of the influences of potential demand management strategies in overall system cost reduction, while presenting a relatively efficient first-pass component sizing for stand-alone micro-grids. (C) 2018 Elsevier Ltd. All rights reserved.
机译:描述了基于可再生能源的独立电力微电网的运营和财务优化。由于时间序列模型中的问题规模较大,我们使用混合整数线性规划(MILP)构造模型。由于此模型中所需的约束通常具有适度的复杂性,因此我们能够对任何非线性变量关系执行分段线性化。另外,控制也已应用于需求侧。在这里,已经开发了一个两阶段的MILP模型,以使包含光伏电源,风力涡轮机,柴油发电机和储能系统的微电网的总水平电费最小化。该模型旨在收敛决策准确性和计算效率之间的平衡。模型输出能够为每个系统组件定义最佳的系统规模和调度,并具有额外的需求管理控制杠杆,以降低电源供应概率和延迟负载的能力。我们认为,该模型是第一个探索潜在需求管理策略对降低整体系统成本的可能性的模型,同时为独立微电网提供了相对有效的首过组件尺寸。 (C)2018 Elsevier Ltd.保留所有权利。

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