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Context awareness

About: Context awareness is a research topic. Over the lifetime, 5790 publications have been published within this topic receiving 119944 citations.


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Book ChapterDOI
26 Aug 2002
TL;DR: In this article, the development of appropriate context modeling concepts for pervasive computing, which can form the basis for such a context management infrastructure is discussed, and the model overcomes problems associated with previous context models, including their lack of formality and generality, and tackles issues such as wide variations in information quality, the existence of complex relationships amongst context information and temporal aspects of context.
Abstract: As computing becomes more pervasive, the nature of applications must change accordingly. In particular, applications must become more flexible in order to respond to highly dynamic computing environments, and more autonomous, to reflect the growing ratio of applications to users and the corresponding decline in the attention a user can devote to each. That is, applications must become more context-aware. To facilitate the programming of such applications, infrastructure is required to gather, manage, and disseminate context information to applications. This paper is concerned with the development of appropriate context modeling concepts for pervasive computing, which can form the basis for such a context management infrastructure. This model overcomes problems associated with previous context models, including their lack of formality and generality, and also tackles issues such as wide variations in information quality, the existence of complex relationships amongst context information and temporal aspects of context.

741 citations

Proceedings ArticleDOI
01 Nov 2000
TL;DR: This work introduces and integrates a set of sensors into a handheld device, and demonstrates several new functionalities engendered by the sensors, such as recording memos when the device is held like a cell phone, switching between portrait and landscape display modes by holding the device in the desired orientation.
Abstract: We describe sensing techniques motivated by unique aspects of human-computer interaction with handheld devices in mobile settings. Special features of mobile interaction include changing orientation and position, changing venues, the use of computing as auxiliary to ongoing, real-world activities like talking to a colleague, and the general intimacy of use for such devices. We introduce and integrate a set of sensors into a handheld device, and demonstrate several new functionalities engendered by the sensors, such as recording memos when the device is held like a cell phone, switching between portrait and landscape display modes by holding the device in the desired orientation, automatically powering up the device when the user picks it up the device to start using it, and scrolling the display using tilt. We present an informal experiment, initial usability testing results, and user reactions to these techniques.

729 citations

Journal ArticleDOI
TL;DR: In this article, an XML-based language to describe implicit human-computer interaction (HCI) is proposed, using contextual variables that can be grouped using different types of semantics as well as actions that are called by triggers.
Abstract: In this paper the term “implicit human-computer interaction” is defined. It is discussed how the availability of processing power and advanced sensing technology can enable a shift in HCI from explicit interaction, such as direct manipulation GUIs, towards a more implicit interaction based on situational context. In the paper, an algorithm is given based on a number of questions to identify applications that can facilitate implicit interaction. An XML-based language to describe implicit HCI is proposed. The language uses contextual variables that can be grouped using different types of semantics as well as actions that are called by triggers. The term of perception is discussed and four basic approaches are identified that are useful when building context-aware applications. Two examples, a wearable context awareness component and a sensor-board, show how sensor-based perception can be implemented. It is also discussed how situational context can be exploited to improve input and output of mobile devices.

685 citations

Proceedings ArticleDOI
30 Sep 2001
TL;DR: A number of challenges from the technical, social, and pragmatic domains that must be overcome before the vision of the smart home, posited by ubiquitous computing research, can become a reality are examined.
Abstract: The smart home offers a new opportunity to augment people's lives with ubiquitous computing technology that provides increased communications, awareness, and functionality. Recently, a number of trends have increased the likelihood that the aware home can soon become a reality. We examine a number of challenges from the technical, social, and pragmatic domains that we feel must be overcome before the vision of the smart home, posited by ubiquitous computing research, can become a reality. Our hope in raising these issues is to create a conversation among researchers in the varied disciplines that make up ubiquitous computing. In particular, we hope to raise awareness of the existing literature on the adoption, use, and history of domestic technologies, as well as the use of situated studies, and the benefits that these can bring to bear on the design and evaluation of technologies for the home

665 citations

Journal ArticleDOI
TL;DR: An effective implementation for Internet of Things used for monitoring regular domestic conditions by means of low cost ubiquitous sensing system was reported, and reliability of sensing information transmission through the proposed integrated network architecture is 97%.
Abstract: In this paper, we have reported an effective implementation for Internet of Things used for monitoring regular domestic conditions by means of low cost ubiquitous sensing system. The description about the integrated network architecture and the interconnecting mechanisms for the reliable measurement of parameters by smart sensors and transmission of data via internet is being presented. The longitudinal learning system was able to provide a self-control mechanism for better operation of the devices in monitoring stage. The framework of the monitoring system is based on a combination of pervasive distributed sensing units, information system for data aggregation, and reasoning and context awareness. Results are encouraging as the reliability of sensing information transmission through the proposed integrated network architecture is 97%. The prototype was tested to generate real-time graphical information rather than a test bed scenario.

638 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
20236
202227
2021105
2020184
2019224
2018258