We propose a scheme by which Broadcast Satellite/Communication Satellite- radio frequency (BS/CS-RF) converted TV signals are transmitted over optical fiber, and also propose a simultaneous Frequency Modulation (FM) converted CATV and BS/CS-RF converted TV optical transmission system as one of its applications. To confirm the proposals, we demonstrate the simultaneous transport of FM converted CATV signals and BS/CS-RF converted TV signals over a single optical fiber. In the experiments, 40 carriers of AM-VSB CATV channels, 30 carriers of 64-QAM digital TV channels, 8 carriers of FM/TC8PSK BS-TV channels, and 12 carriers of QPSK CS-TV channels are simultaneously transmitted. For optical access network application, the practical transmission length of 15 km over 1.3 µm-zero-dispersion optical fiber can be achieved by using dispersion compensation fiber (DCF).
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Koji KIKUSHIMA, Toshihito FUJIWARA, Satoshi IKEDA, "Simultaneous Optical Transmission of AM-VSB/64-QAM/FM/TC8PSK/QPSK Multi-Channel Television Signals by Super-Wideband FM and BS/CS-RF Conversion Techniques" in IEICE TRANSACTIONS on Communications,
vol. E89-B, no. 11, pp. 3008-3020, November 2006, doi: 10.1093/ietcom/e89-b.11.3008.
Abstract: We propose a scheme by which Broadcast Satellite/Communication Satellite- radio frequency (BS/CS-RF) converted TV signals are transmitted over optical fiber, and also propose a simultaneous Frequency Modulation (FM) converted CATV and BS/CS-RF converted TV optical transmission system as one of its applications. To confirm the proposals, we demonstrate the simultaneous transport of FM converted CATV signals and BS/CS-RF converted TV signals over a single optical fiber. In the experiments, 40 carriers of AM-VSB CATV channels, 30 carriers of 64-QAM digital TV channels, 8 carriers of FM/TC8PSK BS-TV channels, and 12 carriers of QPSK CS-TV channels are simultaneously transmitted. For optical access network application, the practical transmission length of 15 km over 1.3 µm-zero-dispersion optical fiber can be achieved by using dispersion compensation fiber (DCF).
URL: https://global.ieice.org/en_transactions/communications/10.1093/ietcom/e89-b.11.3008/_p
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@ARTICLE{e89-b_11_3008,
author={Koji KIKUSHIMA, Toshihito FUJIWARA, Satoshi IKEDA, },
journal={IEICE TRANSACTIONS on Communications},
title={Simultaneous Optical Transmission of AM-VSB/64-QAM/FM/TC8PSK/QPSK Multi-Channel Television Signals by Super-Wideband FM and BS/CS-RF Conversion Techniques},
year={2006},
volume={E89-B},
number={11},
pages={3008-3020},
abstract={We propose a scheme by which Broadcast Satellite/Communication Satellite- radio frequency (BS/CS-RF) converted TV signals are transmitted over optical fiber, and also propose a simultaneous Frequency Modulation (FM) converted CATV and BS/CS-RF converted TV optical transmission system as one of its applications. To confirm the proposals, we demonstrate the simultaneous transport of FM converted CATV signals and BS/CS-RF converted TV signals over a single optical fiber. In the experiments, 40 carriers of AM-VSB CATV channels, 30 carriers of 64-QAM digital TV channels, 8 carriers of FM/TC8PSK BS-TV channels, and 12 carriers of QPSK CS-TV channels are simultaneously transmitted. For optical access network application, the practical transmission length of 15 km over 1.3 µm-zero-dispersion optical fiber can be achieved by using dispersion compensation fiber (DCF).},
keywords={},
doi={10.1093/ietcom/e89-b.11.3008},
ISSN={1745-1345},
month={November},}
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TY - JOUR
TI - Simultaneous Optical Transmission of AM-VSB/64-QAM/FM/TC8PSK/QPSK Multi-Channel Television Signals by Super-Wideband FM and BS/CS-RF Conversion Techniques
T2 - IEICE TRANSACTIONS on Communications
SP - 3008
EP - 3020
AU - Koji KIKUSHIMA
AU - Toshihito FUJIWARA
AU - Satoshi IKEDA
PY - 2006
DO - 10.1093/ietcom/e89-b.11.3008
JO - IEICE TRANSACTIONS on Communications
SN - 1745-1345
VL - E89-B
IS - 11
JA - IEICE TRANSACTIONS on Communications
Y1 - November 2006
AB - We propose a scheme by which Broadcast Satellite/Communication Satellite- radio frequency (BS/CS-RF) converted TV signals are transmitted over optical fiber, and also propose a simultaneous Frequency Modulation (FM) converted CATV and BS/CS-RF converted TV optical transmission system as one of its applications. To confirm the proposals, we demonstrate the simultaneous transport of FM converted CATV signals and BS/CS-RF converted TV signals over a single optical fiber. In the experiments, 40 carriers of AM-VSB CATV channels, 30 carriers of 64-QAM digital TV channels, 8 carriers of FM/TC8PSK BS-TV channels, and 12 carriers of QPSK CS-TV channels are simultaneously transmitted. For optical access network application, the practical transmission length of 15 km over 1.3 µm-zero-dispersion optical fiber can be achieved by using dispersion compensation fiber (DCF).
ER -