Performance of an enhanced multiplexer with imperfect access lines in an ATM network

H. Nassar, A. Meligy
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Abstract

Multiplexers are used in communications networks to increase link efficiency. A multiplexer receives traffic from many sources on access lines and sends it to its destination on a trunk line. This technique results in a great savings when the traffic of the sources is bursty. A problem arises, however, if the access lines are imperfect, in the sense that they may introduce errors in the traffic they carry. A normal multiplexer unknowingly transmits the erroneous traffic to the destination. The destination, with the help of an error-detection routine, detects the errors and discards that traffic, but of course after it has wasted much needed bandwidth on the trunk. This paper proposes an enhanced multiplexer, which is just a normal multiplexer with an error-detection routine similar to that of the destination. The function of this routine is to discard the erroneous traffic right at the multiplexer, thus saving the bandwidth of the trunk for only the error-free traffic. A discrete queueing theoretic model is developed in this paper for the enhanced multiplexer. By analyzing the model, using the generating function approach, it is shown that the enhanced multiplexer is superior in performance to its normal counterpart. For conciseness, it is assumed that the multiplexer is hooked to an asynchronous transfer mode (ATM) network. However the model presented can be easily modified to suit other network standards.
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ATM网络中接入线路不完善的增强型多路复用器的性能
多路复用器用于通信网络以提高链路效率。多路复用器在接入线路上接收来自许多源的流量,并将其发送到中继线上的目的地。当信息源的流量突发时,这种技术可以大大节省开销。但是,如果接入线路不完善,就会出现问题,因为它们可能会在它们所承载的流量中引入错误。正常的多路复用器在不知情的情况下将错误的流量发送到目的地。在错误检测例程的帮助下,目的地检测错误并丢弃该流量,但当然是在它浪费了主干上急需的带宽之后。本文提出了一种增强型多路复用器,它只是一个普通的多路复用器,其错误检测例程与目标相似。该例程的作用是在多路复用器上丢弃错误的流量,从而节省trunk的带宽,只用于无错误的流量。本文建立了增强型多路复用器的离散排队理论模型。利用生成函数法对模型进行了分析,结果表明增强型多路复用器的性能优于普通多路复用器。为简洁起见,假设多路复用器连接到异步传输模式(ATM)网络。然而,所提出的模型可以很容易地修改以适应其他网络标准。
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