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Optimal scheduling of distributed energy resources as a virtual power plant in a transactive energy framework

机译:交互式能源框架中作为虚拟电厂的分布式能源的优化调度

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摘要

A transactive energy framework can provide an integral management scheme that facilitates power delivery with high efficiency and reliability. To close the gap between wholesale and retail markets, this study presents a two-stage optimal scheduling model for distributed energy resources in the form of a virtual power plant (VPP) participating in the day-ahead (DA) and real-time (RT) markets. In the first stage, the hourly scheduling strategy of the VPP is optimised, in order to maximise the total profit in the DA market. In the second stage, the outputs of the VPP are optimally adjusted, in order to minimise the imbalance cost in the RT market. The conditional-value-at-risk is used to assess the risk of profit variability due to the presence of uncertainties. Furthermore, formulated two-stage models are solved by the enhanced particle swarm optimisation algorithm and a commercial solver. Case study results show that the proposed approach can identify optimal and accurate scheduling results, and is a useful decision-making tool.
机译:交互式能源框架可以提供一种集成管理方案,该方案可以高效且可靠地促进电力传输。为了缩小批发和零售市场之间的差距,本研究针对分布式能源以虚拟电厂(VPP)形式参与提前(DA)和实时(RT)提出了两阶段的最优调度模型。 )市场。在第一阶段,VPP的每小时计划策略被优化,以最大化DA市场的总利润。在第二阶段,对VPP的输出进行最佳调整,以最大程度地减少RT市场中的不平衡成本。风险条件值用于评估由于存在不确定性而导致利润变动的风险。此外,通过增强的粒子群优化算法和商用求解器来求解制定的两阶段模型。案例研究结果表明,该方法可以识别最优,准确的调度结果,是一种有用的决策工具。

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