This paper introduces the sensor-networked IoT model as a prototype to support the design of Body Area Network (BAN) applications for healthcare. Using the model, we analyze the synergistic effect of the functional requirements (data collection from the human body and transferring it to the top level) and non-functional requirements (trade-offs between energy-security-environmental factors, treated as Quality-of-Service (QoS)). We use feature models to represent the requirements at the earliest stage for the analysis and describe a model-driven methodology to design the possible BAN applications. Firstly, we specify the requirements as the problem domain (PD) variability model for the BAN applications. Next, we introduce the generative tech...
We describe the development of body area networks (BANs) incorporating sensors and other devices to ...
Nowadays, wireless Body Area Networks (wBAN) have gained more relevance, in particular in the areas ...
Body Area Network (BAN) is widely used in medical healthcare systems. Under WSN (Wireless Sensor Net...
This paper introduces the sensor-networked IoT model as a prototype to support the design of Body Ar...
A Body Area Network (BAN) consists of a set of sensing devices deployed on a person (user) typically...
The Body Area Network (BAN) is an emerging technology that focuses on monitoring physiological data ...
The Body Area Network (BAN) is an emerging technology that focuses on monitoring physiological data ...
Abstract—Recent technologies in electronics allow to build wireless sensor networks in on or around ...
Body Area Networks (BAN) designed for medical, lifestyle and entertainment applications have drawn t...
Accurate power and performance figures are critical to assess the effective design of possible senso...
Mobile health systems can extend the enterprise computing system of the healthcare provider by bring...
Biomedical devices in the past provided limited capability for the data acquisition and presented th...
Abstract Body area network (BAN) has recently emerged as a promising platform for futu...
Abstract Body area network (BAN) has recently emerged as a promising platform for futu...
Mobile health systems can extend the enterprise computing system of the healthcare provider by bring...
We describe the development of body area networks (BANs) incorporating sensors and other devices to ...
Nowadays, wireless Body Area Networks (wBAN) have gained more relevance, in particular in the areas ...
Body Area Network (BAN) is widely used in medical healthcare systems. Under WSN (Wireless Sensor Net...
This paper introduces the sensor-networked IoT model as a prototype to support the design of Body Ar...
A Body Area Network (BAN) consists of a set of sensing devices deployed on a person (user) typically...
The Body Area Network (BAN) is an emerging technology that focuses on monitoring physiological data ...
The Body Area Network (BAN) is an emerging technology that focuses on monitoring physiological data ...
Abstract—Recent technologies in electronics allow to build wireless sensor networks in on or around ...
Body Area Networks (BAN) designed for medical, lifestyle and entertainment applications have drawn t...
Accurate power and performance figures are critical to assess the effective design of possible senso...
Mobile health systems can extend the enterprise computing system of the healthcare provider by bring...
Biomedical devices in the past provided limited capability for the data acquisition and presented th...
Abstract Body area network (BAN) has recently emerged as a promising platform for futu...
Abstract Body area network (BAN) has recently emerged as a promising platform for futu...
Mobile health systems can extend the enterprise computing system of the healthcare provider by bring...
We describe the development of body area networks (BANs) incorporating sensors and other devices to ...
Nowadays, wireless Body Area Networks (wBAN) have gained more relevance, in particular in the areas ...
Body Area Network (BAN) is widely used in medical healthcare systems. Under WSN (Wireless Sensor Net...