Wide-Sense Nonblocking Conditions for Flex-Grid OXC-Clos Networks

Yibei Yao;Tong Ye;Ning Deng
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Abstract

The emerging high-capacity optical networks make it urgent to design large-scale flexible mesh optical cross-connect (OXC). Though Clos networks are the theory for building scalable and cost-effective switching fabrics, the nonblocking conditions for flex-grid optical Clos networks without wavelength conversion remain unknown. This paper studies the nonblocking conditions for the flex-grid OXC-Clos network, which is constructed from a number of small-size standard OXCs. We first show that a strictly nonblocking (SNB) OXC-Clos network will incur a high cost, as small-granularity lightpaths may abuse central modules (CMs), rendering them unavailable for large-granularity requests due to frequency conflicts. Hence, we propose a granularity differential routing (GDR) strategy, the idea of which is to restrict the set of CMs that can be utilized by the lightpaths of each granularity. Under the GDR strategy, we investigate two system models, called granularity-port binding and unbinding models, and prove the wide-sense nonblocking (WSNB) conditions. We show that the cost of WSNB network is remarkably smaller than that of SNB network, and find that the granularity-port unbinding model can offer more flexible network-bandwidth utilization compared to the binding model, with a slight cost associated with switching fabrics.
柔性网格OXC-Clos网络的宽感知非阻塞条件
随着大容量光网络的出现,设计大规模柔性网状光交叉连接(OXC)成为当务之急。虽然Clos网络是构建可扩展且经济高效的交换结构的理论,但没有波长转换的柔性网格光Clos网络的无阻塞条件仍然未知。本文研究了由多个小尺寸的标准OXC-Clos网络构成的柔性网格OXC-Clos网络的不阻塞条件。我们首先表明,严格非阻塞(SNB) OXC-Clos网络将产生高成本,因为小粒度光路可能会滥用中心模块(CMs),由于频率冲突而使它们无法用于大粒度请求。因此,我们提出了一种粒度差分路由(GDR)策略,其思想是限制每个粒度的光路可以利用的cm集。在GDR策略下,我们研究了两种系统模型,即粒度端口绑定模型和非绑定模型,并证明了广义非阻塞(WSNB)条件。我们发现WSNB网络的成本明显小于SNB网络的成本,并且发现粒度端口解绑定模型比绑定模型可以提供更灵活的网络带宽利用率,并且与交换结构相关的成本很小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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