Simplified Fiber-Wireless Distribution of HD Video in Passive and Active W-band Close Proximity Terminals
Publication: Research - peer-review › Article in proceedings – Annual report year: 2012
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Simplified Fiber-Wireless Distribution of HD Video in Passive and Active W-band Close Proximity Terminals. / Lebedev, Alexander; Rodes Lopez, Roberto; Yu, Xianbin; Vegas Olmos, Juan José; Tafur Monroy, Idelfonso ; Forchhammer, Søren.
In: 3rd Fiber Optics in Access Network - FOAN2012. IEEE, 2012. p. 523-527.Publication: Research - peer-review › Article in proceedings – Annual report year: 2012
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TY - GEN
T1 - Simplified Fiber-Wireless Distribution of HD Video in Passive and Active W-band Close Proximity Terminals
A1 - Lebedev,Alexander
A1 - Rodes Lopez,Roberto
A1 - Yu,Xianbin
A1 - Vegas Olmos,Juan José
A1 - Tafur Monroy,Idelfonso
A1 - Forchhammer,Søren
AU - Lebedev,Alexander
AU - Rodes Lopez,Roberto
AU - Yu,Xianbin
AU - Vegas Olmos,Juan José
AU - Tafur Monroy,Idelfonso
AU - Forchhammer,Søren
PB - IEEE
PY - 2012
Y1 - 2012
N2 - We experimentally demonstrate uncompressed high-definition (HD) video distribution at 84 GHz Radio over Fiber link achieving up to 3 meters of wireless transmission. We experimentally emulate Metro-Access architecture by deploying single/multimode fibers. Passive and active approaches for remote antenna unit (RAU) are experimentally investigated. The bit error rate (BER) performance of the optical and wireless channels is reported. A successful transmission of uncompressed HD video in the W-band wireless channel is demonstrated with prospects to pave the way for application-focused fiber-wireless connectivity supported by diverse optical fiber distribution infrastructure.
AB - We experimentally demonstrate uncompressed high-definition (HD) video distribution at 84 GHz Radio over Fiber link achieving up to 3 meters of wireless transmission. We experimentally emulate Metro-Access architecture by deploying single/multimode fibers. Passive and active approaches for remote antenna unit (RAU) are experimentally investigated. The bit error rate (BER) performance of the optical and wireless channels is reported. A successful transmission of uncompressed HD video in the W-band wireless channel is demonstrated with prospects to pave the way for application-focused fiber-wireless connectivity supported by diverse optical fiber distribution infrastructure.
KW - Hybrid optical-wireless architecture
KW - Radio over Fiber
KW - W-band wireless
KW - Uncompressed high-definition video transmission
U2 - 10.1109/ICUMT.2012.6459722
DO - 10.1109/ICUMT.2012.6459722
SN - 978-1-4673-2016-0
BT - 3rd Fiber Optics in Access Network - FOAN2012
T2 - 3rd Fiber Optics in Access Network - FOAN2012
SP - 523
EP - 527
ER -