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Integrating supply and demand-side management in renewable-based energy systems

机译:集成基于可再生能源系统的供需侧管理

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Demand-Response (DR) has emerged as a valuable resource option for balancing electricity supply and demand. However, traditional power system models have neglected to include DR within long-term expansion problems. We can summarize our scientific contributions in the following aspects: (i) design of a new integrated co-optimization planning model for supply and demand coordination; (ii) assessment of the technical and economic impact of DR for systems with a high share of Renewable Energy Sources (RES) and (iii) proposal of the 'opportunity cost' concept for computing the price of not meeting the demand. Findings of this research support the hypothesis that DR scenarios reveal a high potential for delaying future investments in power capacity compared to scenario BAU (Business as Usual). However, it was found a limited potential of DR to integrate additional renewable plants. This research has provided further evidence concerning the potential of DR to decrease the levels of CO2 emissions that is strictly related to the reduced need for fossil fuel thermal power plants. Given the high RES share, uncertainties related to future weather conditions must be however highlighted. This study concludes on the importance of DR for power systems planning and lays the groundwork for future research. (C) 2021 Elsevier Ltd. All rights reserved.
机译:需求 - 反应(DR)已成为平衡电力供需的有价值的资源选择。然而,传统的电力系统模型忽略了长期扩张问题中的DR。我们可以在以下几个方面总结我们的科学贡献:(i)设计新的综合共同优化规划模型供需协调; (ii)评估具有高可再生能源(RES)和(iii)提案的系统博士的技术和经济影响,为计算不符合需求的价格的“机遇成本”概念。该研究的调查结果支持博士情景揭示了延迟未来电力能力投资的高潜力(以及常规的业务)。然而,发现DR的有限潜力集成了额外的可再生植物。该研究提供了有关DR降低CO 2排放水平的进一步证据,这些排放量严格符合化石燃料热电厂的需求。考虑到高分辨率分享,然而,必须突出与未来天气条件相关的不确定性。本研究结论了电力系统规划博士的重要性,并为未来研究奠定了基础。 (c)2021 elestvier有限公司保留所有权利。

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