软件学报
軟件學報
연건학보
JOURNAL OF SOFTWARE
2007年
11期
2882-2892
,共11页
肖嵩%吴成柯%周有喜%杜建超
肖嵩%吳成柯%週有喜%杜建超
초숭%오성가%주유희%두건초
分级编码%联合信源信道编码%信源特性%网络拥塞控制%速率自适应截短Turbo(rate compatible punctured Turbo, RCPT)码
分級編碼%聯閤信源信道編碼%信源特性%網絡擁塞控製%速率自適應截短Turbo(rate compatible punctured Turbo, RCPT)碼
분급편마%연합신원신도편마%신원특성%망락옹새공제%속솔자괄응절단Turbo(rate compatible punctured Turbo, RCPT)마
scalable video%joint source channel coding%source statistic%network congestion control%rate compatible punctured Turbo (RCPT) code
提出了一种用于在无线网络中传输视频的结合信源特性及网络拥塞控制的鲁棒性算法.通过场景建模以及特性分析,将分级编码产生的所有码流层划分成不同的类型,并根据它们对网络拥塞控制的贡献以及对重建图像质量的贡献不同,将其分成两个不同的队列.系统根据不同的网络丢包状态(即丢包是由网络拥塞引起还是由无线信道的不可靠传输引起)动态地调整信源速率、不等错误保护强度以及拥塞控制策略.仿真结果表明,该方法与MPEG-4信源编码加固定速率Turbo码方法以及动态调整信源、信道编码速率加选择性丢I,B,P包的网络拥塞控制方法相比,能够提供更好的性能.
提齣瞭一種用于在無線網絡中傳輸視頻的結閤信源特性及網絡擁塞控製的魯棒性算法.通過場景建模以及特性分析,將分級編碼產生的所有碼流層劃分成不同的類型,併根據它們對網絡擁塞控製的貢獻以及對重建圖像質量的貢獻不同,將其分成兩箇不同的隊列.繫統根據不同的網絡丟包狀態(即丟包是由網絡擁塞引起還是由無線信道的不可靠傳輸引起)動態地調整信源速率、不等錯誤保護彊度以及擁塞控製策略.倣真結果錶明,該方法與MPEG-4信源編碼加固定速率Turbo碼方法以及動態調整信源、信道編碼速率加選擇性丟I,B,P包的網絡擁塞控製方法相比,能夠提供更好的性能.
제출료일충용우재무선망락중전수시빈적결합신원특성급망락옹새공제적로봉성산법.통과장경건모이급특성분석,장분급편마산생적소유마류층화분성불동적류형,병근거타문대망락옹새공제적공헌이급대중건도상질량적공헌불동,장기분성량개불동적대렬.계통근거불동적망락주포상태(즉주포시유망락옹새인기환시유무선신도적불가고전수인기)동태지조정신원속솔、불등착오보호강도이급옹새공제책략.방진결과표명,해방법여MPEG-4신원편마가고정속솔Turbo마방법이급동태조정신원、신도편마속솔가선택성주I,B,P포적망락옹새공제방법상비,능구제공경호적성능.
An algorithm combining source statistics and network congestion control for robust video transmission over wireless network is proposed in this paper. Based on scene modeling and characteristic analyzing, all layers generated by scalable coding are classified into several types and two queuing are made respectively according to their contribution to network congestion and to the quality of reconstructed video. Then the source rate, unequal error protection level and congestion control strategy are dynamically adjusted according to different network status in which the packet loss is caused by network congestion or by unreliable transmission in wireless channel. The simulation results show that the proposed method can achieve better results than MPEG-4 video source coding with fixed rate Turbo coding and than the one which dynamically adjusting source coding and channel coding rates and using network congestion control method of selectively dropping I, B or P packets.