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Modeling for operational strategy of flexible ramping capacity in deregulated power system considering EV aggregators participation

机译:考虑电动汽车聚合商参与的非管制电力系统中灵活匝道容量的运营策略建模

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The increasing deployment of renewable energy, such as wind, affects the flexibility of electric power system operating due to its inherent variability and uncertainty. To mitigate it, more flexible resources offering auxiliary services are needed for power systems. This paper investigates the potential for electric vehicle (EV) to provide flexible ramping capacity in the real-time market. The proposed model for the strategy of offering ramping products for electric vehicle aggregators is formulated as a bi-level optimization problem. At the upper level, the profit of an EV aggregator is maximized. The economic dispatch model is presented at the lower level, which considers both the energy balance and flexible ramping requirement in context of real-time market. The Karush-Kuhn-Tucker (KKT) optimality condition is used to transform the bi-level programming problem into a single objective optimization model. The CPLEX software is used to obtain the optimal solution in the dispatching period. Case studies indicate that the mechanism that electric vehicle aggregators participate in the ramping market can effectively improve economic benefits of power systems.
机译:可再生能源(例如风)的部署不断增加,由于其固有的可变性和不确定性,影响了电力系统运行的灵活性。为了减轻这种情况,电力系统需要提供辅助服务的更灵活的资源。本文研究了电动汽车(EV)在实时市场中提供灵活的斜升能力的潜力。提出的为电动汽车聚合器提供坡道产品策略的模型被表述为双层优化问题。在较高的层次上,EV聚合器的利润最大化。在较低的层次上介绍了经济调度模型,该模型同时考虑了实时市场情况下的能量平衡和灵活的坡道需求。 Karush-Kuhn-Tucker(KKT)最优性条件用于将双层规划问题转换为单个目标优化模型。 CPLEX软件用于在调度期间获得最佳解决方案。案例研究表明,电动汽车聚合器参与不断增长的市场的机制可以有效提高电力系统的经济效益。

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