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Security-constrained optimal scheduling and operation of island microgrids considering demand response and electric vehicles

机译:考虑需求响应和电动车辆的安全约束最佳调度和岛微电网的运行

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摘要

As an independent unit, microgrid operator (MGO) should respond to the energy demand of customers with an optimal provision cost. Apart from the ability to guarantee the security of microgrid (MG) operation, the MGO should consider the greenhouse emission effects as well. This paper investigates a novel energy management system for an islanded MG. In the proposed strategy, two efficient methodologies are used to maximize the profit and security of the MG: (a) the optimal operation of electric vehicles (EVs) in vehicle-to-grid (V2G) mode and (b) the use of demand response (DR) program. Besides, a hierarchical control structure is proposed to manage frequency and voltage uncertainties in a permissible range. Improving the reliability of the MG is another goal of the proposed strategy, which is pursued by the studied controlling framework. The proposed approach is evaluated through a set of simulation and GAMS tests. Results indicate that the frequency deviation of the MG is damped through the proposed management strategy and place the spotlight on the effectiveness of the approach.
机译:作为独立单元,微电网运营商(MGO)应以最佳的规定成本响应客户的能源需求。除了能够保证微电网的安全性(MG)操作的能力外,MgO还应考虑温室排放效果。本文调查了一个岛屿MG的新型能源管理系统。在拟议的策略中,两种有效的方法用于最大限度地提高MG的利润和安全性:(a)车辆到网格(V2G)模式的电动车(EV)的最佳运行和(B)使用需求响应(DR)计划。此外,提出了一种分层控制结构来管理允许范围内的频率和电压不确定性。提高MG的可靠性是所提出的策略的另一个目标,该策略是由学习的控制框架追求的。通过一组模拟和GAMS测试来评估所提出的方法。结果表明,MG的频率偏差通过所提出的管理策略阻尼,并将聚焦对方法的有效性。

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