浏览全部资源
扫码关注微信
吉林大学 通信工程学院,吉林 长春,中国,130012
收稿日期:2011-05-24,
修回日期:2011-05-27,
网络出版日期:2011-09-26,
纸质出版日期:2011-09-26
移动端阅览
迟学芬, 张伟. 802.16d系统的视频跨层容错传输机制[J]. 光学精密工程, 2011,19(9): 2163-2169
CHI Xue-fen, ZHANG Wei. Video error-resilient transmission mechanism using cross-layer design in 802.16d systems[J]. Editorial Office of Optics and Precision Engineering, 2011,19(9): 2163-2169
迟学芬, 张伟. 802.16d系统的视频跨层容错传输机制[J]. 光学精密工程, 2011,19(9): 2163-2169 DOI: 10.3788/OPE.20111909.2163.
CHI Xue-fen, ZHANG Wei. Video error-resilient transmission mechanism using cross-layer design in 802.16d systems[J]. Editorial Office of Optics and Precision Engineering, 2011,19(9): 2163-2169 DOI: 10.3788/OPE.20111909.2163.
为了提高IEEE 802.16d系统的吞吐量和无线信道的视频质量
提出了估计物理层正交频分复用(OFDM)符号错误程度的方法
设计了视频跨层容错传输机制。在物理层用幸存路径的平均量度实时估计OFDM符号错误程度
得到了数据错误级因子(
E
f
);MAC层根据容错门限和
E
f
值决定是否上传CRC校验出错的数据包。同时
应用层采用优化的分组级FEC算法恢复丢弃和出错的视频帧。实验结果表明
容错门限取值在0.02~0.06时可以达到用户可接受的视频峰值信噪比(PSNR)。与无容错传输功能的802.16d系统相比
本文设计的视频容错传输系统可在各种信道条件下获得更好的视频质量和更高的吞吐量。
In order to increase the throughput of IEEE 802.16d systems to improve the quality of video service
a method is proposed to evaluate the degree of error of Orthogonal Frequency Division Multiplexing(OFDM) symbols in the physical layer
and a cross-layer error resilient system for video transmission is designed. In the physical layer
the degree of error for OFDM symbols is calculated in the time domain from the mean metric of the survivor path and an error-level factor is defined. According to the error-level factor sent from physical layer and the threshold of error resilience
the MAC layer can decide whether or not the frame with CRC errors is passed to the upper layer. A packet-level FEC algorithm is designed to restore discarded and error affected video frames in the application layer. Experimental results indicate that the error-resilient system can guarantee the user acceptable video Peak Signal to Noise Ratio(PSNR)
when the error-resilient threshold value is within 0.02-0.06. Compared to the original IEEE802.16d
the error-resilient 802.16d proposed in this paper can support a larger throughput and a better quality video service.This conclusion also holds for different channel conditions.
HRUDEY W, TRAJKOVIC L. Mobile WiMAX MAC and PHY layer optimization for IPTV[J]. Mathematical and Computer Modelling, 2011,53(11-12):2119-2135.[2] GAO B K,SONG C J, SONG Z Y. Application of scalable video coding in broadband wireless network transmission. Proceedings-International Conference on Electrical and Control Engineering, 2010:4649-4652.[3] MERIAUX F, KIEFFER M. Robust IP and UDP-lite header recovery for packetized multimedia transmission. IEEE International Conference on Acoustics, Speech and Signal Processing, 2010:2358-2361.[4] KHAYAM S A, RADHA H. Comparison of conventional and cross-layer multimedia transport schemes for wireless networks[J]. Wireless Personal Communications, 2009,51(3):535-548.[5] SYED A K, SHIRISH K, MICHAEL K. Cross-layer protocol design for real-time multimedia applications over 802.11 b networks. 2003 International Conference on Multimedia and Expo, 2003, 2:425-428.[6] MARIN C, LEPROVOST Y, KIEFFER M, et al.. Robust MAC-lite and soft header recovery for packetized multimedia transmission[J]. IEEE Transactions on Communications, 2010,58(3):775-784.[7] BREDDERMANN T, IWELSKI S, VARY P. Bad parameter indication for error concealment in wireless multimedia communication. IEEE 72nd Vehicular Technology Conference, 2010.[8] TAN W T, PATTI A. Improving error resilience of scalable H.264 (SVC) via drift control. IEEE International Conference on Acoustics, Speech and Signal Processing, 2010:2302-2305.[9] 罗友宝,李小文. LTE系统的Viterbi译码算法仿真及DSP实现[J]. 光通信研究,2010, 3:67-70. LUO Y B, LI X W. Simulation and DSP realization of Viterbi decoding algorithm in LTE systems[J]. Study on Optical Communications, 2010, 3:67-70. (in Chinese)[10] TSAI M F, SHIEH C. An adaptive packet and block length forward error correction for video streaming over wireless networks[J]. Wireless Personal Communications, 2011,56(3):435-446.[11] 张红波, 张大方, 杨金民. 可靠组播中基于FEC的随机化差错恢复算法[J]. 计算机应用研究, 2007,24(6):318- 320. ZHANG H B, ZHANG D F, YANG J M. FEC-based randomized error recovery algorithm for reliable multicast[J]. Application Research of Computers, 2007,24(6):318- 320.(in Chinese)[12] IEEE Std. IEEE 802.16d. SS95246, IEEE Standard for Local and metropolitan area networks-Part 16: Air Interface for Fixed Broadband Wireless Access Systems[S]. New York, IEEE Std,Larzon.[13] MATIM M A, ALAM S, ALLSLAM M, et al.. Performance analysis of the IEEE 802.16-2004 256-point FFT OFDM physical layer. 2009 5th IEEE GCC Conference and Exhibition.
0
浏览量
339
下载量
1
CSCD
关联资源
相关文章
相关作者
相关机构