摘要
对两级自路由交换结构,提出了一种新的分割聚合流的负载均衡方法.该方法通过群组集线器对输入输出线进行分组以获得统计复用的优点并减少接入控制计算的复杂度,并对输入输出及中间端口进行缓存结构的优化设计以实现分组线速转发并降低缓存的复杂度.理论分析和仿真结果表明,对于任意允许的流量模式,可以达到100%的吞吐率.与其它负载均衡交换方法相比,本方法具有最低的缓存复杂度O(N),很小的固定排队延迟O(1).这些特性使之在下一代网络中更适合超大规模的分组交换结构.
Load-balanced Split Aggregated Flow (LB-SAF) scheme was proposed for two-stage load-balanced self-routing switching structures.By grouping the signal lines with self-routing concentrators,this scheme obtained statistical multiplex gain and reduced the computing complexity for call admission control;moreover,optimal buffer design at line group of each stage achieved wire-speed forwarding and reduced the buffer complexity.Mathematical analysis and simulations show that it can guarantee 100% throughput for any admissible traffic pattern. Compared with other previous proposed schemes, LB-SFA has properties such as lower buffer complexity of O(N) and small constant queuing delay of O( 1 ). These advantages make it more suitable for very large scale switching structures in Next Generation Network (NGN).
出处
《电子学报》
EI
CAS
CSCD
北大核心
2009年第11期2367-2372,共6页
Acta Electronica Sinica
基金
国家863计划(No.2007AA01Z218
2008AA01Z214)
国家自然科学基金(No.NSFC:60872010
60872005)
上海市重大科技攻关项目(No.08DZ150010D)
广东自然科学基金(No.8251805704000001)
关键词
缓存
负载均衡
自路由
大规模交换
buffer
load balancing
self-routing
large scale switch