The human body has got a pivotal role in portable devices operating in Body-centric Wireless Networks (BCWNs). Electromagnetic interaction between lossy human body tissues and wearable antennas degrades the system performance. Efficient deployment of such systems necessitates thorough understanding of these effects. Numerical analysis is a powerful tool that provides useful information of such scenarios fairly quicker than the actual measurements giving the user full control of the design environment. This paper investigates usefulness of numerical analysis based on the comparison of three different homogeneous models of the human body. Effectiveness of a numerical model is evaluated in terms of its resolution, computational efficiency, tim...
none4siThis paper presents a novel approach for modelling the influence of body dynamics on the radi...
In this paper, the propagation channel between two half-wavelength dipoles at 2.45 GHz, placed near ...
In this paper, we present an accurate and realistic simulation for body area networks (BAN) and body...
The human body has got a pivotal role in portable devices operating in Body-centric Wireless Network...
Body-Centric Wireless Communication (BCWC) is a central point in the development of fourth generatio...
The paper presents a subject-specific radio propagation study and system modeling in wireless body a...
This chapter presents an investigative study to characterize the electromagnetic interaction between...
As personal communications develop further, there is need to develop wearable antennas that can comm...
Wireless body area network (WBAN) technology shows potential for improving human quality of life by ...
The development of communication devices, especially cellular phones has necessitated the advances o...
Wireless implantable body area network (WiBAN) is useful in health monitoring systems especially for...
The paper presents radio propagation study in wireless body area networks using a simulation tool ba...
A new trend in developing wireless sensors consists in using wearable wireless sensors to monitor hu...
Many current and future wireless devices are wearable and use the human body as a carrier. This has ...
International audienceNowadays, human body influence on communication channels attracts a lot of int...
none4siThis paper presents a novel approach for modelling the influence of body dynamics on the radi...
In this paper, the propagation channel between two half-wavelength dipoles at 2.45 GHz, placed near ...
In this paper, we present an accurate and realistic simulation for body area networks (BAN) and body...
The human body has got a pivotal role in portable devices operating in Body-centric Wireless Network...
Body-Centric Wireless Communication (BCWC) is a central point in the development of fourth generatio...
The paper presents a subject-specific radio propagation study and system modeling in wireless body a...
This chapter presents an investigative study to characterize the electromagnetic interaction between...
As personal communications develop further, there is need to develop wearable antennas that can comm...
Wireless body area network (WBAN) technology shows potential for improving human quality of life by ...
The development of communication devices, especially cellular phones has necessitated the advances o...
Wireless implantable body area network (WiBAN) is useful in health monitoring systems especially for...
The paper presents radio propagation study in wireless body area networks using a simulation tool ba...
A new trend in developing wireless sensors consists in using wearable wireless sensors to monitor hu...
Many current and future wireless devices are wearable and use the human body as a carrier. This has ...
International audienceNowadays, human body influence on communication channels attracts a lot of int...
none4siThis paper presents a novel approach for modelling the influence of body dynamics on the radi...
In this paper, the propagation channel between two half-wavelength dipoles at 2.45 GHz, placed near ...
In this paper, we present an accurate and realistic simulation for body area networks (BAN) and body...