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一种交错编码的多重门限调度算法
引用本文:伊鹏,汪斌强,陈庶樵,李挥.一种交错编码的多重门限调度算法[J].软件学报,2009,20(8):2289-2297.
作者姓名:伊鹏  汪斌强  陈庶樵  李挥
作者单位:1. 国家数字交换系统工程技术研究中心,河南,郑州,450002
2. 北京大学,深圳研究生院,集成微系统重点实验室,广东,深圳,518055
基金项目:Supported by the National High-Tech Research and Development Plan of China under Grant Nos.2007AA01Z218, 2008AA01Z214 (国家高技术研究发展计划(863)); the National Basic Research Program of China under Grant No.2007CB307102 (国家重点基础研究发展计划(973))
摘    要:提出一种交错编码的多重门限调度算法(interleaving coded multi-threshold scheduling,简称ICMTS).该算法将前、后级队列门限标记交错编码作为权值表征输入调度过程前、后两级队列的整体调度需求,根据交错编码的权值对前级虚拟输出队列进行优化调度判决,并通过多重门限机制降低算法的硬件资源开销.采用流模型证明当加速因子为2时,ICMTS算法可获得100%的吞吐量,并给出ICMTS算法的工程简化设计方案,复杂度为O(logN).仿真仿真结果表明,采用ICMTS算法的工程简化方案即可获得比现有算法更优的调度性能.

关 键 词:交换结构  调度算法  联合输入交叉节点排队  带缓存交叉开关
收稿时间:2007/10/20 0:00:00
修稿时间:2008/3/14 0:00:00

Interleaving Coded Multi-Threshold Scheduling Algorithm
YI Peng,WANG Bin-Qiang,CHEN Shu-Qiao and LI Hui.Interleaving Coded Multi-Threshold Scheduling Algorithm[J].Journal of Software,2009,20(8):2289-2297.
Authors:YI Peng  WANG Bin-Qiang  CHEN Shu-Qiao and LI Hui
Affiliation:National Digital Switch System Engineering & Technological R&D Center;Zhengzhou 450002;China;Key Laboratory of Integrated Microsystems;Shenzhen Graduate School;Peking University;Shenzhen 518055;China
Abstract:An interleaving coded multi-threshold scheduling (ICMTS) algorithm is proposed in this paper. Since the ICMTS algorithm uses the interleaving coded thresholds of two stage queues as the scheduling weights, it can systematically evaluate the scheduling demands of both the input queues and the crosspoint queues. By segmenting the queue length as multiple thresholds, the hardware resource of this algorithm can be largely decreased. It is proved that a CICQ (combined input-crosspoint-queued) switch operating with the ICMTS algorithm can achieve 100% throughput with a speedup of two. To facilitate hardware implementation, a simplified maximal ICMTS scheme is also presented with a time complexity of O(logN). Simulation results show that even the simplified ICMTS scheme can obtain better performance than the existing algorithms.
Keywords:switch architecture  scheduling algorithm  combined input-crosspoint-queued  buffered crossbar
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