Unslotted optical CSMA/CA MAC protocol with fairness control in metro WDM ring networks

K. Kim, Hiroshi Okagawa, K. Shrikhande, L. Kazovsky
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引用次数: 6

Abstract

Optical carrier sense multiple access with collision avoidance (CSMA/CA) is a media access control (MAC) protocol proposed for future metropolitan area wavelength division multiplexing (WDM) ring networks with a fixed receiver and a tunable transmitter at access nodes. In this paper, we focus on the unslotted version of the optical CSMA/CA MAC which is a fully-distributed and asynchronous protocol. We present the results of design and performance evaluation of fairness control schemes based on longest queue first (LQF) scheduling and two random routing algorithms - full random routing (FRR) and partial random routing (PRR). Through extensive network-level simulation of a WDM ring network with 10 nodes and 10 wavelengths on a 100 km ring at 10 Gbit/s line rate, we demonstrate a combination of the LQF scheduling and the PRR with a retransmission counter provides good fairness (fairness index of 0.9995) with high bandwidth efficiency and small delay spread, under highly unbalanced traffic conditions.
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城域WDM环网中具有公平性控制的无槽光CSMA/CA MAC协议
CSMA/CA (Optical carrier sense multiple access with collision avoidance)是针对未来城域网波分复用(WDM)环网提出的一种媒体访问控制(MAC)协议,该网络在接入节点上具有固定的接收端和可调谐的发送端。本文主要研究CSMA/CA无槽版本的全分布式异步协议CSMA/CA MAC。给出了基于最长队列优先(LQF)调度和两种随机路由算法——完全随机路由(FRR)和部分随机路由(PRR)的公平性控制方案的设计和性能评价结果。通过对100 km环上10个节点、10个波长、10 Gbit/s线速率的WDM环网进行广泛的网络级仿真,我们证明了LQF调度和带重传计数器的PRR的组合在高度不平衡的业务条件下具有良好的公平性(公平性指数为0.9995)、高带宽效率和小延迟扩展。
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