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Network-Adaptive Rate Control and Unequal Loss Protection with TCP-Friendly Protocol for Scalable Video Over Internet

机译:网络友好的速率控制和TCP友好协议的不等损保护,适用于Internet上的可伸缩视频

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摘要

Video communication with Quality of Service (QoS) is an important and challenging task. To have QoS provision at application level in the current best-effort Internet, rate control, congestion control and error control are several effective approaches. In this paper, we propose a new network-adaptive rate control and Unequal Loss Protection (ULP) scheme in conjunction with TCP-friendly congestion control for scalable video streaming. Our proposed approach is capable of simultaneously controlling congestion and packet loss occurred across the Internet. More specifically, we first dynamically estimate the available network bandwidth on the fly. Then, TCP-friendly congestion control is performed to smoothly adjust the sending rate for transmission of continuous media. Considering the characteristic of scalable video, unequal loss protection at packet level is adopted for different video layers while performing congestion control. Consequently, a fixed-length and priority-based packetization scheme is introduced to enhance the capability of loss protection and improve the efficiency of network-bandwidth utilization. Moreover, Rate-Distortion (R-D) based bit allocation is proposed to minimize the expected end-to-end distortion. Simulation results demonstrate the effectiveness of our proposed scheme.
机译:具有服务质量(QoS)的视频通信是一项重要且具有挑战性的任务。为了在当前尽力而为的Internet中在应用程序级别提供QoS,速率控制,拥塞控制和错误控制是几种有效的方法。在本文中,我们提出了一种新的网络自适应速率控制和不等损保护(ULP)方案,并结合TCP友好的拥塞控制来实现可伸缩视频流。我们提出的方法能够同时控制整个Internet发生的拥塞和数据包丢失。更具体地说,我们首先动态地动态估算可用的网络带宽。然后,执行TCP友好的拥塞控制以平稳地调整用于连续媒体传输的发送速率。考虑到可伸缩视频的特性,在执行拥塞控制时,对不同视频层采用分组级别的不等损保护。因此,引入了基于固定长度和优先级的分组方案,以增强丢失保护的能力并提高网络带宽利用的效率。此外,提出了基于速率失真(R-D)的比特分配,以最大程度地减少预期的端到端失真。仿真结果证明了该方案的有效性。

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