DocumentCode :
1522378
Title :
Emulating an Anechoic Environment in a Wave-Diffusive Medium Through an Extended Time-Reversal Approach
Author :
Cozza, Andrea
Author_Institution :
Dept. de Rech. en Electromagn., SUPELEC-Univ. Paris-Sud, Gif-sur-Yvette, France
Volume :
60
Issue :
8
fYear :
2012
Firstpage :
3838
Lastpage :
3852
Abstract :
A generalized time-reversal (TR) technique for the generation of coherent wavefronts within complex media is presented in this paper. Although completely general, this method is primarily considered for testing purposes herein, where an equipment under test is submitted to a series of impinging wavefronts with varying features. Electromagnetic compatibility, antenna testing as well as telecommunications facilities where complex-wavefront schemes (e.g., multi-path configurations) are required, could benefit from the proposed approach. The main advantages and limitations of current standard TR approaches are reviewed in this respect, exposing their inadequacy for this particular context. The proposed alternative technique, named time-reversal electromagnetic chamber (TREC) is introduced and studied by means of a formal theoretical analysis, showing how a reverberation chamber (RC) supporting a diffused-field condition can be operated as a generator of deterministic pulsed wavefronts. The TREC is demonstrated to be capable of generating arbitrary wavefronts with a remarkable accuracy, allowing to revisit the RC as a deterministic facility: the main advantages of RCs and anechoic ones are merged, leading to a new facility capable of potentially generating in real-time pulsed wavefronts while using low input energies, without requiring neither mechanical displacements nor any special features of the sources.
Keywords :
anechoic chambers (electromagnetic); antenna testing; electromagnetic compatibility; reverberation chambers; anechoic environment; antenna testing; coherent wavefront generation; complex media; complex-wavefront schemes; deterministic pulsed wavefronts; diffused-field condition; electromagnetic compatibility; equipment testing; extended time-reversal approach; generalized time-reversal technique; multipath configurations; reverberation chamber; telecommunications facilities; time-reversal electromagnetic chamber; wave-diffusive medium; Antennas; Media; Reverberation chamber; Standards; Testing; Transmission line measurements; Vectors; Cavities; dyadic Green´s functions; random media; test facilities; time reversal; time-domain measurements; wave focusing;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2012.2201097
Filename :
6204034
Link To Document :
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