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Analyzing and validating the economic efficiency of managing a cluster of energy hubs in multi-carrier energy systems

机译:分析和验证在多载波能源系统中管理能源枢纽集群的经济效率

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The interdependency across natural gas, power and heating systems is increasingly tightened due to the wide development of cogeneration plants and electrified heating facilities. Multi-energy integration is a prevalent trend and the energy hub, which acts as an intermediary agent between providers and consumers, is expected to play a central role in allocating energy resources more efficiently. However, uncertainties originating from multiple kinds of energy demands challenge the operation of energy hubs and may compromise system efficiency. Energy trading and sharing among individual hubs offer a unique opportunity to increase system flexibility and reduce the cost under demand uncertainty. In this paper, three quintessential schemes for organizing a cluster of energy hubs at demand side, i.e., individual, sharing market, and aggregation, are studied under a stochastic framework with probabilistic load forecasts. First, we perform theoretical analysis and compare their economic efficiencies from a maximum-utility (or minimum-cost) perspective. Utility curves of respective schemes are given, and several important phenomena are revealed from the economic analysis. Then we discuss the concrete decision-making models of energy hubs under the three schemes, taking into account the change of electricity price in response to the total demand, which give rise to bilevel optimization problems and are technically transformed into mixed-integer linear programs. Finally, we conduct numerical experiments, which validate the theoretical outcomes, and reveal that the sharing scheme can achieve nearly optimal efficiency without a central organizer, and hence appears to be a promising direction for future multi-energy systems.
机译:由于热电联产电厂和电气化供热设施的广泛发展,天然气,电力和供热系统之间的相互依赖性日益严格。多能源整合是一个普遍的趋势,作为供应者和消费者之间的中介的能源枢纽,有望在更有效地分配能源方面发挥核心作用。但是,源自多种能源需求的不确定性挑战了能源枢纽的运行,并可能损害系统效率。各个枢纽之间的能源交易和共享提供了独特的机会,可以在需求不确定的情况下提高系统灵活性并降低成本。本文在具有概率负荷预测的随机框架下研究了三种在需求方组织能源枢纽集群的典型方案,即个人,共享市场和聚集。首先,我们进行理论分析,并从最大效用(或最小成本)的角度比较它们的经济效率。给出了各个方案的效用曲线,并从经济分析中揭示了一些重要现象。然后,我们讨论了三种方案下能源枢纽的具体决策模型,其中考虑了电价随总需求的变化,这引起了双层优化问题,并在技术上转化为混合整数线性程序。最后,我们进行了数值实验,验证了理论结果,并揭示了共享方案在没有中央组织者的情况下几乎可以达到最佳效率,因此对于未来的多能源系统似乎是一个有希望的方向。

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