Title :
Radio-Wave Propagation Into Large Building Structures—Part 1: CW Signal Attenuation and Variability
Author :
Young, William F. ; Holloway, Christopher L. ; Koepke, Galen ; Camell, Dennis ; Becquet, Yann ; Remley, Kate A.
Author_Institution :
Sandia Nat. Labs., Albuquerque, NM, USA
fDate :
4/1/2010 12:00:00 AM
Abstract :
We report on our investigation into radio communications problems faced by emergency responders in disaster situations. A fundamental challenge to communications into and out of large buildings is the strong attenuation of radio signals caused by losses and scattering in the building materials and structure. Another challenge is the large signal variability that occurs throughout these large structures. We designed experiments in various large building structures in an effort to quantify continuous wave (CW) radio-signal attenuation and variability throughout twelve large structures. We carried radio frequency transmitters throughout these structures and placed receiving systems outside the structures. The transmitters were tuned to frequencies near public safety, cell phone bands, as well as ISM and wireless LAN bands. This report summarizes the experiments, performed in twelve large building structures. We describe the experiments, detail the measurement system, show primary results of the data we collected, and discuss some of the interesting propagation effects we observed.
Keywords :
disasters; electromagnetic wave scattering; radiocommunication; radiowave propagation; CW signal attenuation; ISM band; building materials; continuous wave radio-signal attenuation; emergency responders; large building structures; large signal variability; measurement system; propagation effects; radiocommunications problems; radiofrequency transmitters; radiowave propagation; wireless LAN bands; Attenuation; Building materials; Cellular phones; Mobile communication; NIST; Radio frequency; Radio transmitters; Safety; Scattering; Wireless LAN; Emergency responder communications; large building radio frequency propagation; radio-frequency propagation measurements;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2010.2041142