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A rate control scheme for adaptive real-time applications in IP networks with lossy links and long round trip times

机译:具有有损链路和长往返时间的IP网络中用于自适应实时应用的速率控制方案

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摘要

Currently there is no control for real-time traffic sources in IP networks. This is a serious problem because real-time traffic can not only congest the network but can also cause unfairness and starvation of TCP traffic. However, it is not possible to apply current solutions for Internet to the networks with high bandwidth-delay products and high bit error rates. The channel errors may result in inaccurate congestion control decisions and unnecessary rate throttles leading to severe performance degradation. This problem is amplified in the links with high bandwidth-delay products, since the link is inefficiently utilized for a very long time until the unnecessary rate throttle is recovered. In this paper, a new Rate Control Scheme, RCS, is introduced for real-time interactive applications in networks with high bandwidth-delay products and high bit error rates. RCS is based on the concept of using dummy packets to probe the availability of network resources. Dummy packets are treated as low priority packets and consequently they do not affect the throughput of actual data traffic. Therefore, RCS requires all the routers in the connection path to support some priority policy. A new algorithm is also proposed to improve the robustness of the RCS to temporal signal loss conditions. The delay-bound considerations for real-time traffic sources using RCS rate control scheme are also investigated. Simulation experiments show that in environments with high bandwidth-delay products and high bit error rates, RCS achieves high throughput performance without penalizing TCP connections.
机译:当前,无法控制IP网络中的实时流量源。这是一个严重的问题,因为实时流量不仅会阻塞网络,还会导致TCP流量不公平和匮乏。但是,不可能将当前的Internet解决方案应用于具有高带宽延迟乘积和高误码率的网络。信道错误可能会导致不正确的拥塞控制决策和不必要的速率调节,从而导致严重的性能下降。这个问题在具有高带宽延迟乘积的链路中被放大,因为该链路在很长的时间内一直没有被有效利用,直到恢复了不必要的速率调节为止。在本文中,针对具有高带宽延迟乘积和高误码率的网络中的实时交互式应用,引入了一种新的速率控制方案RCS。 RCS基于使用虚拟数据包探测网络资源可用性的概念。虚拟数据包被视为低优先级数据包,因此它们不影响实际数据流量的吞吐量。因此,RCS要求连接路径中的所有路由器都支持某种优先级策略。还提出了一种新算法来提高RCS对时间信号丢失条件的鲁棒性。还研究了使用RCS速率控制方案的实时流量源的延迟约束注意事项。仿真实验表明,在具有高带宽延迟乘积和高误码率的环境中,RCS可实现高吞吐量性能,而不会影响TCP连接。

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