DocumentCode
1363204
Title
A Frame-Related Approach for Performance Improvement of MPE-FEC in DVB-H
Author
Liu, Rongke ; Wang, Yan ; Zhang, Yanzhong
Author_Institution
Sch. of EIE, Beihang Univ., Beijing, China
Volume
57
Issue
4
fYear
2011
Firstpage
888
Lastpage
894
Abstract
Digital Video Broadcasting - Handheld (DVB-H) is a new digital terrestrial broadcasting standard customized for the multimedia service on the mobile devices and the handheld terminals. It introduces a technique known as multi-protocol encapsulation forward error correction (MPE-FEC) for the IP-datagrams in the data link layer to improve the mobile performance. Every MPE-FEC frame is constructed independently in the DVB-H standard. In this paper, a frame-related coding approach for MPE-FEC frames is proposed. When a MPE-FEC frame is built during the data link layer encoding process, the rightmost columns in the MPE part of the current MPE-FEC frame are filled with the data populated from the leftmost columns of its previous MPE-FEC frame. After the encoding process, a correlation is set up between the adjacent frames. This correlation can be utilized by the proposed decoding algorithm to enhance the error correction capability. The theoretical analysis and simulations results show that the proposed approach can provide better error correction capability than the DVB-H standard as well as the conventional zero-padding method in random noise channels. As a more efficient decoding strategy, the proposed approach is a good candidate for the decoding of MPE-FEC frame.
Keywords
digital video broadcasting; error correction codes; forward error correction; mobile radio; multimedia communication; protocols; DVB-H standard; IP-datagram; MPE-FEC frame; data link layer encoding; digital terrestrial broadcasting standard; digital video broadcasting-handheld; encoding process; frame-related coding; handheld terminal; mobile device; mobile performance; multimedia service; multiprotocol encapsulation forward error correction; Decoding; Digital video broadcasting; Encoding; Error correction codes; Forward error correction; Noise measurement; DVB-H; error correction capability; frame- related; multi-Protocol Encapsulation Forward Error Correction (MPE-FEC);
fLanguage
English
Journal_Title
Broadcasting, IEEE Transactions on
Publisher
ieee
ISSN
0018-9316
Type
jour
DOI
10.1109/TBC.2011.2169330
Filename
6062394
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