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Sustainability through Intelligent Scheduling of Electric Water Heaters in a Smart Grid

机译:通过智能电网中的电热水器的智能调度实现可持续性

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摘要

The ever-increasing demand for energy and resurgence in communications technology are fueling research and development in smart grid and demand-side management solutions. Water heating is responsible for 32% of domestic energy use. Given the usage patterns, the capacitive nature of water heaters, and the standing losses when hot, these devices are good candidates for schedule control to affect energy savings. Although effort has been made in investigating the benefits of scheduling, doubts remain, and research has been limited to theoretical models, constricted lab experiments. The use of smart grid technologies now enable large natural experiments to demonstrate the effects of personalised schedule control in actual households. This paper presents such an experiment, in which water heaters were equipped with ETSI-compliant smart grid technology to measure and understand the impact on energy of schedule control on electrical water heaters. A thermal model and lab experiment are used to validate the energy results, while a control and treatment group are used in the field experiment to control for the impact of seasonal and consumption variation. The results demonstrate a 29% energy saving, comprised of reduced standing losses and usage enthalpy.
机译:对能源的不断增长的需求以及通信技术的兴起正在推动智能电网和需求方管理解决方案的研究与开发。热水占家庭能源消耗的32%。考虑到使用模式,热水器的电容特性以及高温时的固定损耗,这些设备非常适合进行时间表控制以节省能源。尽管已经在研究安排的好处方面进行了努力,但是仍然存在疑问,并且研究仅限于理论模型和狭窄的实验室实验。现在,使用智能电网技术可以进行大型自然实验,以演示个性化进度控制在实际家庭中的效果。本文提出了这样一个实验,其中热水器配备了符合ETSI的智能电网技术,以测量和了解进度控制对电热水器的能量的影响。使用热模型和实验室实验来验证能量结果,而在现场实验中使用对照组和处理组来控制季节和消耗量变化的影响。结果表明,该产品可节省29%的能源,包括减少的静置损耗和使用焓。

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