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Temporary Redundant Transmission Mechanism for SCTP Multihomed Hosts

机译:SCTP多层主机的临时冗余传输机制

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摘要

In SCTP’s Concurrent Multipath Transfer, if data is sent to the destined IP(s) without knowledge of the paths condition, packets may be lost or delayed. This is because of the bursty nature of IP traffic and physical damage to the network. To offset these problems, network path status is examined using our new mechanism Multipath State Aware Concurrent Multipath Transfer using redundant transmission (MSACMT-RTv2). Here the status of multiple paths is analyzed, initially and periodically thereafter transmitted. After examination, paths priority is assigned before transmission. One path is temporarily employed as redundant path for the failure-expected path (FEP); this redundant path is used for transmitting redundant data. At the end of predefined period, reliability of the FEP is confirmed. If FEP is ensured to be reliable, temporary path is transformed into normal CMT path. MSACMT-RTv2 algorithm is simulated using the Delaware University ns-2 SCTP/CMT module (ns-2; V2.29). We present and discuss MSACMT-RTv2 performance in asymmetric path delay and with finite receiver buffer (rbuf) size. We extended our experiment to test robustness of this algorithm and inferred exhaustive result. It is inferred that our algorithm outperforms better in terms of increasing the throughput and reducing the latency than existing system.
机译:在SCTP的并发多路径传输中,如果数据被发送到未知路径条件的目的地IP,则可以丢失或延迟数据包。这是因为IP流量和对网络的物理损坏的突发性质。为了抵消这些问题,使用我们的新机制多径状态感知并发多路径传输来检查网络路径状态,使用冗余传输(MSACMT-RTV2)。这里,最初和周期性地分析多个路径的状态。检查后,在传输之前分配路径优先级。一条路径暂时被用作故障预期路径(FEP)的冗余路径;该冗余路径用于传输冗余数据。在预定义期结束时,确认FEP的可靠性。如果确保FEP可靠,则临时路径将转换为正常的CMT路径。使用Delaware University NS-2 SCTP / CMT模块(NS-2; V2.29)模拟MSACMT-RTV2算法。我们在不对称路径延迟和有限接收器缓冲区(RBUF)大小中展示并讨论MSACMT-RTV2性能。我们扩展了我们的实验,以测试该算法的稳健性,并推断出详细结果。推断我们的算法在提高吞吐量并降低延迟而不是现有系统方面的算法更好。

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