Learning to live in a smart home
Datos Bibliográficos
| ID | 23318239 |
|---|---|
| Autores | Tom Hargreaves (0000-0002-3764-7364, University of East Anglia, autor de correspondencia), Charlie Wilson (0000-0001-8164-3566, University of East Anglia), Richard Hauxwell‐Baldwin (University of East Anglia), Richard Hauxwell-Baldwin (University of East Anglia) |
| Año | 2018 |
| Volumen | 46 |
| Número | 1 |
| Páginas | 127-139 |
| Fecha de publicación | 2018-01-02 |
| Peer Reviewed | Sí |
| Open Access | Sí |
| Tipo | ARTICLE |
| Revista | Building Research & Information (JOURNAL) |
| Identificadores de la revista | ISSN: 0961-3218 • E-ISSN: 1466-4321 |
| Editorial | Informa UK Limited (PUBLISHER • GB) |
| DOI | 10.1080/09613218.2017.1286882 |
| OpenAlex | W2589241115 |
| Idioma | EN |
| Citas recibidas | 79 |
| Referencias citadas | 29 |
Smart homes promise to significantly enhance domestic comfort, convenience, security and leisure whilst simultaneously reducing energy use through optimized home energy management. Their ability to achieve these multiple aims rests fundamentally on how they are used by householders, yet very little is currently known about this topic. The few studies that have explored the use of smart homes have tended to focus on special-interest groups and be quite short-term. This paper reports on new in-depth qualitative data that explore the domestication of a range of smart home technologies in 10 households participating in a nine-month field trial. Four core themes emerge: (1) smart home technologies are both technically and socially disruptive; (2) smart homes require forms of adaptation and familiarization from householders that can limit their use; (3) learning to use smart home technologies is a demanding and time-consuming task for which there is currently very little support available; and (4) there is little evidence that smart home technologies will generate substantial energy savings and, indeed, there is a risk that they may generate forms of energy intensification. The paper concludes by discussing the implications of these findings for policy, design and further research.
Adaptation (eye) · Architectural engineering · Business · Home automation · Internet privacy · Telecommunications · Computer Science · Context-Aware Activity Recognition Systems · Engineering · Green IT and Sustainability · Marketing · Psychology · Smart Cities and Technologies
Understanding the path to smart home adoption
Domestication, acceptance and zero emission ambitions
The “whole systems” energy sustainability of digitalization
Home is where the smart is”? Evaluating smart home research and approaches against the concept of home
Digitalisation, energy and data demand
Between craft and regulations
Smart home technologies in everyday life
Smart housing
Digital (un)sustainability at an urban university in Sydney, Australia
Automation, Smart Homes and Symmetrical Anthropology
The importance of social relations in shaping energy demand
A Qualitative Study toward Technologies for Active and Healthy Aging
Electric vehicle charging and end-user motivation for flexibility
Operationalising user behaviour
Residents’ Perceptions of a Smart Technology Retrofit Towards Nearly Zero-Energy Performance
Wieso eigentlich Alexa
Personalization and the Smart Home
Living in, with and beyond the ‘smart home’
The Covid digital home assemblage
Asignifying Animacies in the Home
In pursuit of thermal comfort
“It becomes more of an abstract idea, this privacy”—Informing the design for communal privacy experiences in smart homes
Pursuing pleasance
Connecting the dots
Useful shortcuts
Modelling a smart tech user journey to decarbonise tourist accommodation
Smart home
Towards Technology Domestication in a Care Organization? Facilitating and Hindering Factors in Care Robot Use
Attuning smart home scripts to household and energy care
Energy, emerging technologies and gender in homes
Technological fascination and reluctance
The gendering of energy household labour
The meaning of convenience in smart home imaginaries
Is it a match? Smart home energy management technologies and user comfort practices in German multi-apartment buildings
It's never telling me that I'm good!” Household experiences of testing a smart home energy management system with a personal threshold on energy use in Sweden
Twin transitions of decarbonisation and digitalisation
Robotic vacuum cleaners save energy? Raising cleanliness conventions and energy demand in Australian households with smart home technologies
Transformational innovation in home energy
Of impacts, agents, and functions
Energy platforms and the future of energy citizenship
Unlocking geographic differences
Humanising smart homes
Alleviation of energy poverty through transitions to low-carbon energy infrastructure
Digital technology and energy imaginaries of future home life
Smart energy technologies for the collective
Socially smart grids? A multi-criteria mapping of diverse stakeholder perspectives on smart energy futures in the United Kingdom
Shifting patterns – The patterned enactments of flexible electricity consumption by Norwegian households
The Internet of Things
Homemaking in a Living Laboratory
The lights are on, but no one’s home
Beyond virtual reality
What will drive household adoption of smart energy? Insights from a consumer acceptance study in Germany
Embedding eco-friendly and smart technology features in affordable housing for community happiness in Malaysia
Rethinking the timescape of home
Geographies of science and technology III
Making sense of sensing homes
Sociotechnical agendas
Electric feels
Caring for Comfort? How Social Relations Shape Household Practices of Home Comfort as Care
The everyday enactment of interfaces
Residents’ thermal comfort in Swedish newly built homes
Skin-to-skin with the house
Devising food consumption
The interaction between humans and buildings for energy efficiency
A Critical Review of Smart Residential Environment Research Focusing Human–Building Interaction
Smart energy technology
Smart but unfriendly
Trust in the institution and privacy management of Internet of Things devices. A comparative case study of Dutch and Norwegian households
Anticipating Technology‐Enabled Care at home
Practices and politics of energy efficiency among householders in a low-energy building in Sweden
Sharing space, time, and technology
Troubleshooting the connected home
Social networks and communication behaviour underlying smart home adoption in the UK
Practice reconfigurations around heat pumps in and beyond Dutch households
The Change before Behaviour
Do we really consider their concerns? User challenges with electric car sharing
Aesthetic pleasures and gendered tech-work in the 21st-century smart home
The digitalisation of consumption and its geographies
Public preferences for five electricity grid decarbonization policies in California
Smart Energy Technologies in Everyday Life
Non-Users Also Matter
Social barriers to the adoption of smart homes
Smart homes and their users
Making energy visible
How Users Matter
Pilot Users and Their Families
Place and Technology in the Home
The Contribution of Domestication Research to In-Home Computing and Media Consumption
Taming monsters
The Domestication of New Technologies as a Set of Trials
| Obras citantes distintas | 79 |
|---|---|
| Citas por año | 8,78 |
| Intervalo de citas | 2017 - 2026 (10) |
| Velocidad de citación | current |
| Altamente citado | No |
| Tipos de cita | Neutras: 70 |