Title :
Revisiting the Design of Mega Data Centers: Considering Heterogeneity Among Containers
Author :
Dan Li ; Hongze Zhao ; Mingwei Xu ; Xiaoming Fu
Author_Institution :
Comput. Sci. Dept., Tsinghua Univ., Beijing, China
Abstract :
In this paper, we revisit the design of mega data centers, which are usually built by a number of modularized containers. Due to technical innovation and vendor diversity, heterogeneity widely exists among data-center containers in practice. To embrace this issue, we propose uFix, which is a scalable, flexible, and modularized network architecture to interconnect heterogeneous data-center containers. The intercontainer connection rule in uFix is designed in such a way that it can flexibly scale to a huge number of servers with stable server/switch hardware settings. uFix allows modularized and fault-tolerant routing by completely decoupling intercontainer routing from intracontainer routing. We implement a software-based uFix prototype on a Linux platform. Both simulation and prototype-based experiment show that uFix enjoys high network capacity, gracefully handles server/switch failures, and causes lightweight CPU overhead onto data-center servers.
Keywords :
Linux; computer centres; fault tolerant computing; innovation management; network operating systems; network servers; telecommunication network routing; telecommunication switching; Linux platform; data-center servers; fault-tolerant routing; heterogeneous data-center container interconnection; intercontainer connection rule; intercontainer routing decoupling; lightweight CPU overhead; mega data center design; modularized containers; modularized network architecture; prototype-based experiment; server-switch hardware settings; software-based uFix prototype; technical innovation; vendor diversity; Containers; Optical switches; Ports (Computers); Routing; Servers; Topology; Data center network; heterogeneous containers; mega data center;
Journal_Title :
Networking, IEEE/ACM Transactions on
DOI :
10.1109/TNET.2013.2280764