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Challenges on primary frequency control and potential solution from EVs in the future GB electricity system

机译:未来GB国电系统对电动汽车的主频控制和潜在解决方案的挑战

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System inertia reduction, driven by the integration of renewables, imposes significant challenges on the primary frequency control. Electrification of road transport not only reduces carbon emission by shifting from fossil fuel consumption to cleaner electricity consumption, but also potentially provide flexibility to facilitate the integration of renewables, such as supporting primary frequency control. In this context, this paper develops a techno-economic evaluation framework to quantify the challenges on primary frequency control and assess the benefits of EVs in providing primary frequency response. A simplified GB power system dynamic model is used to analyze the impact of declining system inertia on the primary frequency control and the technical potential of primary frequency response provision from EVs. Furthermore, an advanced stochastic system scheduling tool with explicitly modeling of inertia reduction effect is applied to assess the cost and emission driven by primary frequency control as well as the benefits of EVs in providing primary frequency response under two representative GB 2030 system scenarios. This paper also identifies the synergy between PFR provision from EVs and "smart charging" strategy as well as the impact of synthetic inertia from wind turbines. (C) 2016 Elsevier Ltd. All rights reserved.
机译:由可再生能源的整合推动的系统惯性降低,对初级频率控制提出了重大挑战。公路运输电气化不仅可以通过从化石燃料消耗转向清洁电力消耗来减少碳排放,而且还可能提供灵活性,以促进可再生能源的整合,例如支持一次频率控制。在此背景下,本文开发了一种技术经济评估框架,以量化对主频率控制的挑战,并评估电动汽车在提供主频率响应方面的优势。使用简化的GB电力系统动态模型来分析系统惯性下降对一次频率控制的影响以及电动汽车提供一次频率响应的技术潜力。此外,在两个具有代表性的GB 2030系统场景下,具有显式建模的惯性降低效果的先进的随机系统调度工具可用于评估由一次频率控制驱动的成本和排放以及电动汽车在提供一次频率响应方面的优势。本文还确定了电动汽车的PFR提供与“智能充电”策略之间的协同作用,以及风力涡轮机的合成惯性的影响。 (C)2016 Elsevier Ltd.保留所有权利。

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