Unlocking Flexibility: Integrated Optimization and Control of Multienergy Systems

Unlocking Flexibility: Integrated Optimization and Control of Multienergy Systems
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DOI:
10.1109/mpe.2016.2625218
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发表时间:
2017
影响因子:
2.8
通讯作者:
E. Dall’Anese;P. Mancarella;A. Monti
E. Dall’Anese;P. Mancarella;A. Monti
中科院分区:
工程技术4区
文献类型:
--
作者:
E. Dall’Anese;P. Mancarella;A. Monti

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电力、天然气、水和分布式供暖/制冷系统主要是独立规划和运行的。然而,人们越来越认识到,在多个时空尺度上对这类系统进行综合优化和控制可以带来显著的社会经济、运营效率和环境效益。因此,多能源系统的概念正受到相当大的关注,其首要目标是:1)揭示从多个系统的综合运行中产生的基本收益(和潜在的缺点),2)开发整体但在计算上负担得起的优化和控制方法,以最大限度地提高运营效益,同时3)承认每个供应商的内在相互依存关系和服务质量要求。
Electricity, natural gas, water, and dis trict heating/cooling systems are predominantly planned and operated independently. However, it is increasingly recognized that integrated optimization and control of such systems at multiple spatiotemporal scales can bring significant socioeconomic, operational efficiency, and environmental benefits. Accordingly, the concept of the multi-energy system is gaining considerable attention, with the overarching objectives of 1) uncovering fundamental gains (and potential drawbacks) that emerge from the integrated operation of multiple systems and 2) developing holistic yet computationally affordable optimization and control methods that maximize operational benefits, while 3) acknowledging intrinsic interdependencies and quality-of-service requirements for each provider.