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Exploiting electric heat pump flexibility for renewable generation matching

机译:利用电热泵的灵活性进行可再生能源发电匹配

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With the increasing penetration of renewable energy sources in the modern electric grid, it becomes more technically difficult and costly for system operators to balance generation and demand as traditional providers of flexibility (i.e., flexible generation) become uneconomic. Therefore new sources of flexibility are needed to maintain reliable operation. Flexible demand, including from electric heat pump (EHP) resources, is one source of flexibility which can be utilised to cope with the uncertainty of renewable generation by providing demand response services. In this paper, a high resolution and granular domestic energy consumption model is applied, which uses a four-node electrical analogue to represent the thermal characteristics of domestic dwellings. Then the performance of an EHP cluster coupled with dwellings is simulated. A control algorithm is designed to match the clusters electric load with renewable generation profile. Recognising the potentially detrimental effect of EHP flexibility exploitation on end-user thermal comfort, the loss of comfort level of occupants is assessed. The possibility of significant thermal discomfort from renewable generation matching is demonstrated.
机译:随着现代电网中可再生能源的日益普及,由于传统的灵活性提供者(即,柔性发电)变得不经济,系统运营商在平衡发电和需求方面在技术上变得更加困难并且成本更高。因此,需要新的灵活性来维持可靠的操作。灵活的需求(包括来自电热泵(EHP)资源的需求)是灵活性的来源之一,可以通过提供需求响应服务来应对可再生能源发电的不确定性。在本文中,应用了一个高分辨率的颗粒状家庭能耗模型,该模型使用一个四节点电模拟来表示住宅的热特性。然后,模拟了带有住宅的EHP集群的性能。设计了一种控制算法,以使集群的电力负荷与可再生发电量相匹配。认识到EHP灵活性开发对最终用户的热舒适性的潜在有害影响,因此评估了乘员舒适度的损失。证明了可再生能源发电匹配可能导致严重的热不适。

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