Zhai Fan, Eisenberg Yiftach, Pappas Thrasyvoulos N, Berry Randall, Katsaggelos Aggelos K
Texas Instruments, Dallas, TX 75243, USA.
IEEE Trans Image Process. 2006 Jan;15(1):40-53. doi: 10.1109/tip.2005.860353.
The problem of application-layer error control for real-time video transmission over packet lossy networks is commonly addressed via joint source-channel coding (JSCC), where source coding and forward error correction (FEC) are jointly designed to compensate for packet losses. In this paper, we consider hybrid application-layer error correction consisting of FEC and retransmissions. The study is carried out in an integrated joint source-channel coding (IJSCC) framework, where error resilient source coding, channel coding, and error concealment are jointly considered in order to achieve the best video delivery quality. We first show the advantage of the proposed IJSCC framework as compared to a sequential JSCC approach, where error resilient source coding and channel coding are not fully integrated. In the USCC framework, we also study the performance of different error control scenarios, such as pure FEC, pure retransmission, and their combination. Pure FEC and application layer retransmissions are shown to each achieve optimal results depending on the packet loss rates and the round-trip time. A hybrid of FEC and retransmissions is shown to outperform each component individually due to its greater flexibility.
在丢包网络上进行实时视频传输时,应用层错误控制问题通常通过联合信源信道编码(JSCC)来解决,即联合设计信源编码和前向纠错(FEC)以补偿数据包丢失。在本文中,我们考虑由FEC和重传组成的混合应用层纠错。该研究是在集成联合信源信道编码(IJSCC)框架中进行的,在该框架中,为了实现最佳的视频传输质量,联合考虑了抗误码信源编码、信道编码和错误隐藏。我们首先展示了所提出的IJSCC框架与顺序JSCC方法相比的优势,在顺序JSCC方法中,抗误码信源编码和信道编码没有完全集成。在IJSCC框架中,我们还研究了不同错误控制方案的性能,如纯FEC、纯重传及其组合。结果表明,纯FEC和应用层重传分别根据丢包率和往返时间实现了最优结果。由于其更大的灵活性,FEC和重传的混合方案表现优于单独的每个组件。