垂直移交中TFRC的快速适应方案

Dagang Li, Wenpeng Sha
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引用次数: 1

摘要

下一代移动通信系统将是互补的有线和无线网络技术的集成。配备了支持不同技术的多个接口的移动用户应该能够在需要时在它们之间切换,而不会失去与系统的连接。这被称为垂直交接。由于新旧网络的特性和条件不同,垂直切换可能会导致移动用户体验到的吞吐量和延迟发生突变。这对于所有速率/拥塞控制机制来说都是一个问题,尤其是像TFRC这样响应缓慢的机制。TFRC是为平滑传输速率而设计的,因此它不能紧跟可用带宽的突然变化。端到端延迟的显著变化也可能导致假无反馈超时或数据包重排序,影响发送速率的计算。本文提出了一种快速适应机制,试图以系统统一的方式解决这些问题。研究表明,该机制可以大大减少任何技术之间的TFRC垂直切换时的适应时间和丢包,同时保持原有的TFRC行为。它还被设计成在有损环境中保持鲁棒性,以防无线链路质量差或网络拥塞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Fast Adaptation Scheme for TFRC over Vertical Handovers
The next generation of mobile communication systems will be an integration of complementary wired and wireless network technologies. A mobile user equipped with multiple interfaces that support different technologies should be able to switch between them when needed without losing its connection to the system. This is called a vertical handover. A vertical handover may cause abrupt changes in the throughput and delay experienced by the mobile user because of the differences in the characteristics and conditions on the old and new networks. This is an issue for all rate/congestion control mechanisms, especially slow responsive ones such as TFRC. TFRC was designed for a smooth transmission rate, therefore it can not follow closely the sudden change in the available bandwidth. Significant change in the end-to-end delay may also cause false no feedback timeout or packet reordering and affect the sending rate calculation. In this paper we propose a fast adaptation mechanism that tries to solve all these problems in a systematic and unified way. We show that our mechanism can greatly reduce the adaptation time and packet loss during TFRC vertical handover between any technologies, while preserving the original TFRC behavior otherwise. It is also designed to be robust in a lossy environment, in case of bad wireless link quality or network congestion.
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