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Persistent SCTP timeout policy by using cross-layer mechanism

机译:使用跨层机制的持久SCTP超时策略

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To meet various contingencies of operating wireless networks including for example the change of the state of the channel, cross-layer techniques facilitate the sharing of information between the OSI model layers and can be apply to all various protocols levels, if there are interactions for which the overall performance of the studied system can be improved. Reliable transport protocols use the retransmission timeout management mechanism (RTO-MM) when a bad state of the wireless channel occurs, which temporarily blocks the transmission of data. In this paper, we suggest a new policy of timeout applied to the Stream Control Transmission Protocol (SCTP) called persistent timeout policy. This policy is based on the use of the channel status provided by the 802.11 link layer, through the cross-layer mechanism. The principle of this timeout is that when a bad state of the wireless channel blocks the sending of data, SCTP continuously observes the evolution of this state to detect the next favorable change before sending its segments. We evaluate the following two timeout policies (persistent and traditional RTO-MM) of SCTP in an ad hoc network, and also in comparison with the Transmission Control Protocol (TCP). Section I of this paper presents an overview of the SCTP protocol. Section II presents the principle of the persistent timeout policy. Section III presents the simulation results that are used to compare the two timeout policies of the two reliable transport protocols SCTP and TCP.
机译:为了满足运行中的无线网络的各种意外情况,包括例如信道状态的更改,跨层技术可促进OSI模型层之间的信息共享,并且如果存在交互作用,则可应用于所有各种协议级别可以提高研究系统的整体性能。当无线信道出现不良状态时,可靠的传输协议会使用重传超时管理机制(RTO-MM),这会暂时阻止数据传输。在本文中,我们建议对流控制传输协议(SCTP)应用一种新的超时策略,称为持久超时策略。该策略基于对802.11链路层通过跨层机制提供的信道状态的使用。此超时的原理是,当无线信道的不良状态阻止数据发送时,SCTP会持续观察该状态的演变,以在发送其分段之前检测下一个有利的变化。我们评估了ad hoc网络中SCTP的以下两种超时策略(持久性和传统RTO-MM),并与传输控制协议(TCP)进行了比较。本文的第一部分概述了SCTP协议。第二部分介绍了持久超时策略的原理。第三节介绍了用于比较两个可靠传输协议SCTP和TCP的两个超时策略的仿真结果。

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