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Are building users prepared for energy flexible buildings—A large-scale survey in the Netherlands

机译:建筑用户是否为能源灵活建筑做好了准备 - 荷兰的一项大规模调查

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摘要

Building energy flexibility might play a crucial role in demand side management for integrating intermittent renewables into smart grids. The potential of building energy flexibility depends not only on the physical characteristics of a building but also on occupant behaviour in the building. Building users will have to adopt smart technologies and to change their daily energy use behaviours or routines, if energy flexibility is to be achieved. The willingness of users to make changes will determine how much demand flexibility can be achieved in buildings and whether energy flexible buildings can be realized. This will have a considerable impact on the transition to smart grids. This study is thus to assess the perception of smart grids and energy flexible buildings by building users, and their readiness for them on a large scale. We attempted to identify the key characteristics of the ideal user of flexible buildings. A questionnaire was designed and administered as an online survey in the Netherlands. The questionnaire consisted of questions about the sociodemographic characteristics of the current users, house type, household composition, current energy use behaviour, willingness to use smart technologies, and willingness to change energy use behaviour. The survey was completed by 835 respondents, of which 785 (94%) were considered to have provided a genuine response. Our analysis showed that the concept of smart grids is an unfamiliar one, as more than 60% of the respondents had never heard of smart grids. However, unfamiliarity with smart grids increased with age, and half of the respondents aged 20–29 years old were aware of the concept. Monetary incentives were identified as the biggest motivating factor for adoption of smart grid technologies. It was also found that people would be most in favour of acquiring smart dishwashers (65% of the respondents) and refrigerator/freezers (60%). Statistical analysis shows that people who are willing to use smart technologies are also willing to change their behaviour, and can thus be categorised as potentially flexible building users. Given certain assumptions, 11% of the respondents were found to be potentially flexible building users. To encourage people to be prepared for energy flexible buildings, awareness of smart grids will have to be increased, and the adoption of smart technologies may have to be promoted by providing incentives such as financial rewards.
机译:建筑能源灵活性在将间歇性可再生能源集成到智能电网中的需求侧管理中可能发挥关键作用。建筑物能源灵活性的潜力不仅取决于建筑物的物理特性,还取决于建筑物中的乘员行为。如果要实现能源灵活性,建筑用户将不得不采用智能技术并改变他们的日常能源使用行为或惯例。用户做出改变的意愿将决定建筑物中可以实现多少需求灵活性以及是否可以实现能源灵活的建筑物。这将对向智能电网的过渡产生重大影响。因此,本研究旨在评估建筑用户对智能电网和能源柔性建筑的感知,以及它们对大规模应用的准备程度。我们试图确定柔性建筑理想用户的关键特征。在荷兰,设计了一个问卷并作为在线调查进行管理。问卷包括以下问题:当前用户的社会人口统计学特征,房屋类型,家庭组成,当前能源使用行为,使用智能技术的意愿以及更改能源使用行为的意愿。 835名受访者完成了调查,其中785名(94%)被认为提供了真实的答复。我们的分析表明,智能电网的概念是一个陌生的概念,因为超过60%的受访者从未听说过智能电网。但是,对智能电网的不熟悉随着年龄的增长而增加,年龄在20-29岁之间的受访者中有一半意识到了这一概念。货币激励被认为是采用智能电网技术的最大激励因素。还发现人们最喜欢购买智能洗碗机(占受访者的65%)和冰箱/冰柜(占60%)。统计分析表明,愿意使用智能技术的人们也愿意改变自己的行为,因此可以被归类为具有潜在灵活性的建筑用户。根据某些假设,发现11%的受访者是潜在的灵活建筑用户。为了鼓励人们为能源灵活的建筑做准备,必须提高对智能电网的认识,并且可能必须通过提供奖励(例如经济奖励)来促进对智能技术的采用。

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