An ultra wide band channel sounder has been developed and has attained the time delay resolution of 0.5 ns which enables the propagation path discrimination in indoor wireless propagation environments as well as the direction-of-arrival measurements by power delay profile measurements.
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Tsutomu TAKEUCHI, Hirohito MUKAI, "An Ultra Wide Band Channel Sounder for Indoor Wireless Propagation Environments" in IEICE TRANSACTIONS on Electronics,
vol. E87-C, no. 9, pp. 1467-1468, September 2004, doi: .
Abstract: An ultra wide band channel sounder has been developed and has attained the time delay resolution of 0.5 ns which enables the propagation path discrimination in indoor wireless propagation environments as well as the direction-of-arrival measurements by power delay profile measurements.
URL: https://globals.ieice.org/en_transactions/electronics/10.1587/e87-c_9_1467/_p
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@ARTICLE{e87-c_9_1467,
author={Tsutomu TAKEUCHI, Hirohito MUKAI, },
journal={IEICE TRANSACTIONS on Electronics},
title={An Ultra Wide Band Channel Sounder for Indoor Wireless Propagation Environments},
year={2004},
volume={E87-C},
number={9},
pages={1467-1468},
abstract={An ultra wide band channel sounder has been developed and has attained the time delay resolution of 0.5 ns which enables the propagation path discrimination in indoor wireless propagation environments as well as the direction-of-arrival measurements by power delay profile measurements.},
keywords={},
doi={},
ISSN={},
month={September},}
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TY - JOUR
TI - An Ultra Wide Band Channel Sounder for Indoor Wireless Propagation Environments
T2 - IEICE TRANSACTIONS on Electronics
SP - 1467
EP - 1468
AU - Tsutomu TAKEUCHI
AU - Hirohito MUKAI
PY - 2004
DO -
JO - IEICE TRANSACTIONS on Electronics
SN -
VL - E87-C
IS - 9
JA - IEICE TRANSACTIONS on Electronics
Y1 - September 2004
AB - An ultra wide band channel sounder has been developed and has attained the time delay resolution of 0.5 ns which enables the propagation path discrimination in indoor wireless propagation environments as well as the direction-of-arrival measurements by power delay profile measurements.
ER -