DocumentCode
232708
Title
UWB channel measurement and development of scatterer identification algorithm
Author
Zahedi, Yasser ; Ngah, Razali ; Oknonkwo, Uche ; Nunoo, Solomon ; Mokayef, Mastaneh
Author_Institution
Wireless Commun. Centre, Univ. Teknol., Skudai, Malaysia
fYear
2014
fDate
19-21 Aug. 2014
Firstpage
511
Lastpage
514
Abstract
Ultra wideband is a promising technology for achieving high data rate communication. When channel measurements are conducted, the channel values can be extracted using CLEAN deconvolution algorithm. However, artifact paths can be generated during this process. These artifact paths are registered as channel element values representing a reflected signal from a scatterer. In reality, these mentioned paths does not represent a real scattering environment which affects accurate channel modeling. Therefore, removing the artifact paths is important to conserve better and more real scattering environment. In this paper, a scattering identification algorithm that can be used upon CLEAN algorithm is presented. It has been developed based on the geometric elliptical modeling approach. Results show that the developed algorithm can remove additional paths in a particular delay bin and conserve one channel values in that bin.
Keywords
deconvolution; electromagnetic wave scattering; signal representation; ultra wideband communication; wireless channels; CLEAN deconvolution algorithm; UWB channel measurement; artifact path removal; delay bin; geometric elliptical modeling approach; high data rate communication; reflected signal represention; scatterer identification algorithm; ultra wideband channel; Antenna measurements; Approximation algorithms; Delays; Electric variables measurement; Frequency measurement; Scattering; Wireless communication; Algorithm; Channel measurement; Ultra wideband channel;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Design (ICED), 2014 2nd International Conference on
Conference_Location
Penang
Type
conf
DOI
10.1109/ICED.2014.7015860
Filename
7015860
Link To Document