相邻vp之间的合作建模:跨区域双边交易

Morteza Shabanzadeh, M. Sheikh‐El‐Eslami, M. Haghifam
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摘要

本文从相邻虚拟电厂的跨区域合作到其潜在的交易利益,对虚拟电厂的概念进行了深思熟虑的分析。对于一个智能电力系统,我们认识到系统中可以存在多个VPP,因此从单个VPP的角度来看,与所有物理连接的相邻VPP的合作将是管理利润变化风险并实现高利润的绝佳机会。为此,提出了一个以双边合约和交易池两个不同交易大厅之间进行套利为目标的个人VPP中期自调度决策框架。此外,采用基于二阶随机优势约束(SOSDCs)概念的有效风险管理方法,实现了不同不确定性水平下的明智决策。以一种易于理解的方式清楚地讨论了这种方法。最后,通过详细的案例分析,对所提模型的有效性进行了分析,得出了相关结论。
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Modeling the cooperation between neighboring VPPs: Cross-regional bilateral transactions
This paper provides a well thought view of the virtual power plant (VPP) concept from the cross-regional cooperation of neighboring VPPs to its potential trading benefits. For a smart power system, it is recognized that multiple VPPs can exist in a system, hence from an individual VPP' viewpoint, the cooperation with all physically-connected neighboring VPPs would be a golden opportunity for managing the risk of profit variability as well as achieving high profits. To this end, a decision making framework for medium-term self-scheduling of an individual VPP with the aim of exercising arbitrage between two different trading floors, bilateral contracts and the pool, is proposed. Moreover, an efficient risk management approach based on the concept of second-order stochastic dominance constraints (SOSDCs) is used to enable informed decision making under different levels of uncertainty. This method is clearly discussed in an easy to follow way. Finally, the efficiency of the proposed model is analyzed through a detailed case study, and thereby relevant conclusions are drawn.
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