In this work, the influence of human body within the estimation of dosimetric values is analyzed. A simplified human body model, including the dispersive nature of material parameters of internal organs, skin, muscle, bones and other elements has been implemented. Such a model has been included within an indoor scenario in which an in-house 3D ray launching code has been applied to estimate received power levels within the complete scenario. The results enhance previous dosimetric estimations, while giving insight on influence of human body model in power level distribution and enabling to analyze the impact in the complete volume of the scenario.The authors wish to acknowledge the financial support of project FASTER, funded by the Consejer...
This study analyzes the exposure of the human torso to electromagnetic fields caused by wireless bod...
PhDIn this thesis, a comprehensive investigation of the state-of-the-art guidelines for the conducte...
In this article, we study human electromagnetic exposure to the radiation of an ultra dense network ...
In this work, the influence of human body within the estimation of dosimetric values is analyzed. A ...
International audienceThe presence of human body has an important influence on the wireless communic...
International audienceThis study compares the exposure of a grounded and ungrounded human body to a ...
A well-defined experimental procedure is put forward to evaluate maximum exposure conditions in a wo...
The development of wireless technologies led to the birth of numerical dosimetry for non-ionizing ra...
For Review Personal exposure meters (PEMs) for measuring exposure to electromagnetic fields (EMF) ar...
This work focuses on the evaluation of power absorption in a human body exposed to the field emitted...
In this work, numerical aspects related to the accuracy of numerical dosimetric simulations, perform...
In this paper, human body exposure to high frequency electromagnetic field radiated by wireless powe...
The impact of wireless channel modeling on exposure to electromagnetic radiation is studied. Two met...
Realistic numerical models of human subjects and their surrounding environment represent the basic p...
International audienceInternational organizations have collaborated to revise standards and guidelin...
This study analyzes the exposure of the human torso to electromagnetic fields caused by wireless bod...
PhDIn this thesis, a comprehensive investigation of the state-of-the-art guidelines for the conducte...
In this article, we study human electromagnetic exposure to the radiation of an ultra dense network ...
In this work, the influence of human body within the estimation of dosimetric values is analyzed. A ...
International audienceThe presence of human body has an important influence on the wireless communic...
International audienceThis study compares the exposure of a grounded and ungrounded human body to a ...
A well-defined experimental procedure is put forward to evaluate maximum exposure conditions in a wo...
The development of wireless technologies led to the birth of numerical dosimetry for non-ionizing ra...
For Review Personal exposure meters (PEMs) for measuring exposure to electromagnetic fields (EMF) ar...
This work focuses on the evaluation of power absorption in a human body exposed to the field emitted...
In this work, numerical aspects related to the accuracy of numerical dosimetric simulations, perform...
In this paper, human body exposure to high frequency electromagnetic field radiated by wireless powe...
The impact of wireless channel modeling on exposure to electromagnetic radiation is studied. Two met...
Realistic numerical models of human subjects and their surrounding environment represent the basic p...
International audienceInternational organizations have collaborated to revise standards and guidelin...
This study analyzes the exposure of the human torso to electromagnetic fields caused by wireless bod...
PhDIn this thesis, a comprehensive investigation of the state-of-the-art guidelines for the conducte...
In this article, we study human electromagnetic exposure to the radiation of an ultra dense network ...