A new error correction block based Hybrid ARQ protocol, in which PHY layer packets are composed of multiple error correction blocks, is devised together with a retransmission control scheme constructed on the basis of these error correction blocks. This protocol is designed dedicatedly for mobile AV stations to provide the high quality digital video transmission through a radio channel. To analyze the performance of this protocol, the frame loss rate vs. the uncorrectable error probability is simulated, in comparison with the ordinary packet based retransmission control. A wireless video transmission system using IEEE802.11b PHY is also described, which has been developed with the use of a Medium Access Control (MAC) LSI to perform the proposed protocol.
Yoshihiro OHTANI
Nobuyuki KAWAHARA
Hiroyuki NAKAOKA
Tomonobu TOMARU
Kazuhito MARUYAMA
Toru CHIBA
Takao ONOYE
Isao SHIRAKAWA
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Yoshihiro OHTANI, Nobuyuki KAWAHARA, Hiroyuki NAKAOKA, Tomonobu TOMARU, Kazuhito MARUYAMA, Toru CHIBA, Takao ONOYE, Isao SHIRAKAWA, "Wireless Digital Video Transmission System Using IEEE802.11b PHY with Error Correction Block Based ARQ Protocol" in IEICE TRANSACTIONS on Communications,
vol. E85-B, no. 10, pp. 2032-2043, October 2002, doi: .
Abstract: A new error correction block based Hybrid ARQ protocol, in which PHY layer packets are composed of multiple error correction blocks, is devised together with a retransmission control scheme constructed on the basis of these error correction blocks. This protocol is designed dedicatedly for mobile AV stations to provide the high quality digital video transmission through a radio channel. To analyze the performance of this protocol, the frame loss rate vs. the uncorrectable error probability is simulated, in comparison with the ordinary packet based retransmission control. A wireless video transmission system using IEEE802.11b PHY is also described, which has been developed with the use of a Medium Access Control (MAC) LSI to perform the proposed protocol.
URL: https://global.ieice.org/en_transactions/communications/10.1587/e85-b_10_2032/_p
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@ARTICLE{e85-b_10_2032,
author={Yoshihiro OHTANI, Nobuyuki KAWAHARA, Hiroyuki NAKAOKA, Tomonobu TOMARU, Kazuhito MARUYAMA, Toru CHIBA, Takao ONOYE, Isao SHIRAKAWA, },
journal={IEICE TRANSACTIONS on Communications},
title={Wireless Digital Video Transmission System Using IEEE802.11b PHY with Error Correction Block Based ARQ Protocol},
year={2002},
volume={E85-B},
number={10},
pages={2032-2043},
abstract={A new error correction block based Hybrid ARQ protocol, in which PHY layer packets are composed of multiple error correction blocks, is devised together with a retransmission control scheme constructed on the basis of these error correction blocks. This protocol is designed dedicatedly for mobile AV stations to provide the high quality digital video transmission through a radio channel. To analyze the performance of this protocol, the frame loss rate vs. the uncorrectable error probability is simulated, in comparison with the ordinary packet based retransmission control. A wireless video transmission system using IEEE802.11b PHY is also described, which has been developed with the use of a Medium Access Control (MAC) LSI to perform the proposed protocol.},
keywords={},
doi={},
ISSN={},
month={October},}
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TY - JOUR
TI - Wireless Digital Video Transmission System Using IEEE802.11b PHY with Error Correction Block Based ARQ Protocol
T2 - IEICE TRANSACTIONS on Communications
SP - 2032
EP - 2043
AU - Yoshihiro OHTANI
AU - Nobuyuki KAWAHARA
AU - Hiroyuki NAKAOKA
AU - Tomonobu TOMARU
AU - Kazuhito MARUYAMA
AU - Toru CHIBA
AU - Takao ONOYE
AU - Isao SHIRAKAWA
PY - 2002
DO -
JO - IEICE TRANSACTIONS on Communications
SN -
VL - E85-B
IS - 10
JA - IEICE TRANSACTIONS on Communications
Y1 - October 2002
AB - A new error correction block based Hybrid ARQ protocol, in which PHY layer packets are composed of multiple error correction blocks, is devised together with a retransmission control scheme constructed on the basis of these error correction blocks. This protocol is designed dedicatedly for mobile AV stations to provide the high quality digital video transmission through a radio channel. To analyze the performance of this protocol, the frame loss rate vs. the uncorrectable error probability is simulated, in comparison with the ordinary packet based retransmission control. A wireless video transmission system using IEEE802.11b PHY is also described, which has been developed with the use of a Medium Access Control (MAC) LSI to perform the proposed protocol.
ER -