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RTT Based Congestion Control and Path Switching Scheme for SCTP

机译:基于RTT的SCTP拥塞控制和路径切换方案

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SCTP is an emerging transport protocol that has TCP like congestion control mechanism. The occurrence of packet loss due to congestion is part of SCTP as its congestion control mechanisms rely on packet loss. Loss of packets leads to retransmissions causing excessive delay jitters and increasing traffic burden on the network reducing the throughput. As a result the packets suffer more delays. We have employed a RTT based congestion control technique [5] on SCTP which avoids occurrence of extreme congestion situations. With this scheme the queue-occupancy of the packets and unnecessary packet losses can be controlled. As a result the packet latency and jitter decreases and the utilization efficiency of the links improve. Further, SCTP uses the alternate path only for the retransmission of the packets and failover cases. We propose use of the alternate path for diversion of the traffic based on detection of congestion in the primary path using RTT. This allows good control over queue occupancy of the packets. Result is significantly improved throughput and fairness and reduced latency and packet loss. Experimental results have been obtained to that effect.
机译:SCTP是一种新兴的传输协议,具有类似TCP的拥塞控制机制。由于拥塞导致的数据包丢失是SCTP的一部分,因为其拥塞控制机制依赖于数据包丢失。数据包的丢失会导致重传,从而导致过度的延迟抖动,并增加网络上的流量负担,从而降低吞吐量。结果,分组遭受更多的延迟。我们在SCTP上采用了基于RTT的拥塞控制技术[5],避免了极端拥塞情况的发生。利用该方案,可以控制分组的队列占用和不必要的分组丢失。结果,分组等待时间和抖动减少,并且链路的利用效率提高。此外,SCTP仅将备用路径用于数据包的重传和故障转移情况。我们建议使用RTT在检测主路径中的拥塞的基础上,使用备用路径进行流量转移。这样可以很好地控制数据包的队列占用率。结果是显着提高了吞吐量和公平性,并减少了延迟和数据包丢失。已经获得了达到该效果的实验结果。

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