Dosimetric study of the radiolectric influence of humans into complex environments through determistic simulations and the implementation of a simplified model

  1. Aguirre Gallego, Erik
Dirigida por:
  1. Luis Serrano Arriezu Director/a
  2. Francisco Falcone Director/a

Universidad de defensa: Universidad Pública de Navarra

Fecha de defensa: 16 de diciembre de 2014

Tribunal:
  1. Antonio López Martín Presidente/a
  2. Alfonso Bahillo Secretario
  3. Victoria Ramos González Vocal

Tipo: Tesis

Resumen

The research presented in this thesis falls under the framework of dosimetry and deterministic estimations. A dosimetric study is carried out with the aid of a 3D Ray Launching simulation technique, by means of an in-house developed code at UPNA. Dosimetry is defined as the calculation of the absorbed dose when a tissue is exposed to electromagnetic radiation, in this case, non-ionizing radiation. It has reached a great importance since a part of the society starts to show concern about the exposure of people to artificial exposures caused by mobile phones or Wi-Fi networks. In fact, some entities (administrations and health bodies) are involved in the regulation and the release of guidelines about this subject. The objective of this thesis is to study dosimetry through 3D Ray Launching simulation technique, calibrating it by the implementation of several scenarios where the simulation tool is tested throughout the comparison of theoretical and measurement results. A simplified human body has been also developed with the aim of employing it in different scenarios, performing dosimetric estimations and providing insight on its influence in the electromagnetic power distribution inside an indoor scenario. Finally, obtained results are compared with different guideline thresholds giving an idea of the compliance of the law when usual wireless communication systems are emitting.