Title :
MCube: A high performance and fault-tolerant network architecture for data centers
Author :
Cong Wang ; Cuirong Wang ; Ying Yuan ; Wei, Yongtao
Author_Institution :
Sch. of Inf. Sci. & Eng., Northeastern Univ., Shenyang, China
Abstract :
A fundamental challenge in data center networking is how to efficiently interconnect a huge amount of servers. The network architecture typically consists of a tree of routing and switching elements with progressively more specialized and expensive equipment moving up the network hierarchy. Unfortunately, even when deploying the highest-end IP switches/routers, resulting topologies remain complicate application design and limit overall system performance. This paper presents MCube, a server-centric network architecture specifically designed for data centers. MCube leverages commodity mini-switches to provide high aggregate bandwidth and can deliver more performance at less cost than available from today´s higher-end solutions. MCube is fully backward compatible with Ethernet, IP, and TCP and provides higher network capacity than the traditional tree-based structure for various types of services. Furthermore, MCube is also fault tolerant since it does not have single point of failure and its source routing protocol performs near shortest-path routing even in the presence of severe link or node failures. Experiences show that MCube is fault tolerant and load balancing and it significantly accelerates the bandwidth-intensive applications.
Keywords :
IP networks; computer centres; fault tolerant computing; resource allocation; routing protocols; telecommunication network topology; telecommunication switching; MCube; data center networking; fault-tolerant network architecture; highest-end IP routers; highest-end IP switches; load balancing; near shortest-path routing; network hierarchy; routing protocol; server-centric network architecture; traditional tree-based structure; Aggregates; Bandwidth; Costs; Ethernet networks; Fault tolerance; Network servers; Network topology; Routing; Switches; System performance; component; data centers; fault-tolerant; routing protocol; server-centric;
Conference_Titel :
Computer Design and Applications (ICCDA), 2010 International Conference on
Conference_Location :
Qinhuangdao
Print_ISBN :
978-1-4244-7164-5
Electronic_ISBN :
978-1-4244-7164-5
DOI :
10.1109/ICCDA.2010.5540940