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Impact of electric vehicles flexibility on generation expansion planning

机译:电动汽车灵活性对发电扩展计划的影响

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Demand flexibility and its smart coordination with system objectives attract significant interest due to the increasing penetration of uncontrollable renewable generation into the system and the envisaged electrification of transport and heat sectors. Developed generation expansion planning models have ignored so far technology-specific inter-temporal constraints of flexible demand. Electric vehicles constitute one of the most representative technologies and exhibit a particularly important penetration and flexibility potential. This paper proposes a novel generation expansion planning modelling and optimization framework, in which the operational flexibility and constraints of electric vehicles, as well as the generation side's scheduling constraints are explicitly incorporated. The computational burden is tackled through the use of integer instead of binary generation investment and commitment decision variables. Case studies in the context of UK demonstrate the potential impact of electric vehicles' flexibility on the optimal generation mix, and its significant economic and environmental value.
机译:需求的灵活性及其与系统目标的巧妙协调,由于不可控制的可再生能源越来越多地渗透到系统中,并且运输和热能部门实现了电气化,因此引起了人们的极大兴趣。到目前为止,已开发的发电扩展计划模型已经忽略了灵活需求的特定于技术的跨时间约束。电动汽车是最具代表性的技术之一,具有特别重要的渗透性和灵活性。本文提出了一种新颖的发电扩展计划建模和优化框架,其中明确地结合了电动汽车的操作灵活性和约束以及发电侧的调度约束。通过使用整数而不是二进制代投资和承诺决策变量来解决计算负担。英国的案例研究表明,电动汽车的灵活性可能会对最佳发电组合及其潜在的经济和环境价值产生潜在影响。

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