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Smart Grid enabled heat pumps: An empirical platform for investigating how residential heat pumps can support large-scale integration of intermittent renewables

机译:智能电网使能热泵:调查住宅热泵如何支持间歇性再生能源的大规模集成的实证平台

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The transition towards a 100 % fossil-free energy system, while achieving extreme penetration levels of intermittent wind and solar power in electricity generation, requires demand-side technologies that are smart (intermittency-friendly) and efficient.The integration of Smart Grid enabling technologies has been widely acknowledged by the industry and academia as the key to achieve a more reliable, efficient and secure grid. However, there is a lack of information about real flexibility with an active participation from customers. In this paper, we combine techno-economical modelling results with an empirical study in order to achieve a number of recommendations with respect to technology concepts and control strategies that would allow residential vapor-compression heat pumps to support large-scale integration of intermittent renewables.The analysis is based on data gathered over a period of up to 3 years for 283 residential heat pumps installed and operating in Denmark. The results are used to assess the flexibility of domestic heat pumps and their ability to follow production.
机译:朝向100%无化石能量系统的过渡,同时实现了电力产生的间歇风和太阳能的极端渗透水平,需要智能(间歇性友好)和高效的需求侧技术。智能电网实现技术的集成已被行业和学术界被广泛承认,作为实现更可靠,高效和安全的网格的关键。但是,缺乏有关来自客户的积极参与的真正灵活性的信息。在本文中,我们将技术经济建模结果与实证研究相结合,以实现一些关于技术概念和控制策略的建议,这些建议将允许住宅蒸气压缩热泵支持大规模集成间歇性再生能源。该分析基于在丹麦安装和运营的283个住宅热泵的一段时间内收集的数据。结果用于评估国内热泵的灵活性及其遵循生产的能力。

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