TCP-AFEC: An adaptive FEC code control for end-to-end bandwidth guarantee
Tomoaki Tsugawa, Norihito Fujita, Hama Takayuki, Hideyuki Shimonishi, Tutomu Murase · 2007
Recently TCP is often used for video streaming applications. Since TCP congestion control is designed to be responsible for varying network conditions, its sending rate adaptation results in throughput fluctuations and leads to poor video quality. To address the problem, a FEC scheme is useful. Since lost packets can be recovered by redundant packets and are concealed from TCP, TCP can maintain higher throughput. To effectively utilize the FEC scheme, the redundancy level has to be appropriately determined so that redundant packets do not waste network bandwidth. Although many dynamic FEC mechanisms are proposed, these mechanisms are not appropriate for TCP video streaming because they do not try to satisfy the required rate. In this paper, we propose a new adaptive FEC scheme called TCP-AFEC that optimizes extra bandwidth usage for the redundancy level. Simulation evaluations show that the proposed mechanism performs better than previous FEC control approaches in various network conditions.