Abstract:
Over the past decade, many data centers have been constructed around the world due to the explosive growth of data volume and type. The cost and energy consumption have b...Show MoreMetadata
Abstract:
Over the past decade, many data centers have been constructed around the world due to the explosive growth of data volume and type. The cost and energy consumption have become the most important challenges of building those data centers. Data centers today use commodity computers and switches instead of high-end servers and interconnections for cost-effectiveness. In this paper, we propose a new type of interconnection networks called Exchanged Cube-Connected Cycles (ExCCC). The ExCCC network is an extension of Exchanged Hypercube (EH) network by replacing each node with a cycle. The EHnetwork is based on link removal from a Hypercube network, which makes the EHnetwork more cost-effective as it scales up. After analyzing the topological properties of ExCCC, we employ commodity switches to construct a new class of data center network models, namely ExCCC-DCN, by leveraging the advantages of the ExCCC architecture. The analysis and experimental results demonstrate that the proposed ExCCC-DCN models significantly outperform four state-of-the-art data center network models in terms of the total cost, power consumption, scalability, and other static characteristics. It achieves the goals of low cost, low energy consumption, high network throughput, and high scalability simultaneously.
Published in: IEEE Transactions on Parallel and Distributed Systems ( Volume: 28, Issue: 4, 01 April 2017)
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- IEEE Keywords
- Index Terms
- Data Center ,
- High Scalability ,
- Energy Consumption ,
- High Throughput ,
- Power Consumption ,
- Topological Properties ,
- Low Energy Consumption ,
- Path Length ,
- Network Topology ,
- Shortest Path ,
- Core Level ,
- Bisection ,
- Small Constant ,
- Longest Length ,
- Multiple Edges ,
- Number Of Switches ,
- Destination Node ,
- Round-trip Time ,
- Routing Algorithm ,
- Routing Scheme ,
- Number Of Wires
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Data Center ,
- High Scalability ,
- Energy Consumption ,
- High Throughput ,
- Power Consumption ,
- Topological Properties ,
- Low Energy Consumption ,
- Path Length ,
- Network Topology ,
- Shortest Path ,
- Core Level ,
- Bisection ,
- Small Constant ,
- Longest Length ,
- Multiple Edges ,
- Number Of Switches ,
- Destination Node ,
- Round-trip Time ,
- Routing Algorithm ,
- Routing Scheme ,
- Number Of Wires
- Author Keywords