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An optimal resource utilization scheme with end-to-end congestion control for continuous media stream transmission

机译:具有连续媒体流传输的端到端拥塞控制的最优资源利用方案

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In this paper, we propose an optimal resource utilization scheme with end-to-end congestion control for continuous media stream transmission. This scheme can achieve minimal allocation of bandwidth for each client and maximal utilization of the client buffers. By adjusting the server transmission rate in response to client buffer occupancy, playback requirements in the client, variations in network delays and the packet loss rate, an acceptable quality-of-service (QoS) level can be maintained at the end systems. Our proposed scheme can also achieve end-to-end TCP-friendly congestion control, which the multimedia flows can share fairly with the TCP flows instead of starving the TCP flows and the packet loss rate is reduced. Simulations to compare with different approaches under different network congestion levels and to show how our approach achieves end-to-end congestion control and inter-protocol fairness are conducted. The simulation results show that our proposed scheme can generally achieve high network utilization, low losses and end-to-end congestion control.
机译:在本文中,我们提出了一种具有端到端拥塞控制的最优资源利用方案,用于连续媒体流传输。此方案可以为每个客户端实现最小的带宽分配,并最大程度地利用客户端缓冲区。通过响应客户端缓冲区占用率,客户端中的回放要求,网络延迟的变化和数据包丢失率来调整服务器传输速率,可以在最终系统上维持可接受的服务质量(QoS)级别。我们提出的方案还可以实现端到端的TCP友好拥塞控制,多媒体流可以与TCP流公平地共享,而不会使TCP流枯竭,从而降低了丢包率。进行了仿真,以与在不同网络拥塞级别下的不同方法进行比较,并展示了我们的方法如何实现端到端的拥塞控制和协议间的公平性。仿真结果表明,该方案总体上可以实现较高的网络利用率,低损耗和端到端的拥塞控制。

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