首页> 外文会议>International Teletraffic Congress(ITC20); 20070617-21; Ottawa(CA) >Performance Analysis of FEC Recovery Using Finite-Buffer Queueing System with General Renewal and Poisson Inputs
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Performance Analysis of FEC Recovery Using Finite-Buffer Queueing System with General Renewal and Poisson Inputs

机译:使用具有一般更新和Poisson输入的有限缓冲区排队系统进行FEC恢复的性能分析

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This paper considers the packet recovery performance of forward error correction (FEC) for a single-server queueing system with a finite buffer fed by two independent input processes; one is a general renewal input process in which the interarrival times of packets are independent and identically distributed according to a general distribution, and the other is a Poisson arrival process. We analyze the packet- and block-level loss probabilities, and investigate the recovery performance of FEC at block level. Numerical examples show that the block-loss probability is significantly improved by FEC when the system can only accommodate a small number of packets. It is also shown that FEC recovery is more effective than packet buffering when the traffic intensity is large.
机译:本文考虑了具有两个独立输入进程馈送的有限缓冲区的单服务器排队系统的前向纠错(FEC)的数据包恢复性能。一个是一般更新输入过程,其中数据包的到达时间是独立的,并且根据一般分布均匀地分布,另一个是泊松到达过程。我们分析了数据包和数据块级别的丢失概率,并研究了FEC在数据块级别的恢复性能。数值示例表明,当系统只能容纳少量数据包时,FEC可以显着提高块丢失概率。还显示出,在业务量大时,FEC恢复比数据包缓冲更有效。

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