Abstract:
Coping with network failures has become a major networking challenge. The concept of tunable survivability provides a quantitative measure for specifying any desired leve...Show MoreMetadata
Abstract:
Coping with network failures has become a major networking challenge. The concept of tunable survivability provides a quantitative measure for specifying any desired level (0%-100%) of survivability, thus offering flexibility in the routing choice. Previous works focused on implementing this concept on unicast transmissions. However, vital network information is often broadcast via spanning trees. Accordingly, in this study, we investigate the application of tunable survivability for efficient maintenance of spanning trees under the presence of failures. We establish efficient algorithmic schemes for optimizing the level of survivability under various QoS requirements. In addition, we derive theoretical bounds on the number of required trees for maximum survivability. Finally, through extensive simulations, we demonstrate the effectiveness of the tunable survivability concept in the construction of spanning trees. Most notably, we show that, typically, negligible reduction in the level of survivability results in major improvement in the QoS performance of the resulting spanning trees.
Published in: IEEE/ACM Transactions on Networking ( Volume: 24, Issue: 3, June 2016)
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- IEEE Keywords
- Index Terms
- Spanning Tree ,
- Conceptual Constructs ,
- Algorithmic Strategies ,
- Network Failure ,
- University Of Wisconsin Solution ,
- Optimization Problem ,
- Local Network ,
- Network Topology ,
- Undirected ,
- Number Of Trees ,
- Protection Scheme ,
- Pair Of Nodes ,
- Random Networks ,
- Failure Model ,
- Probability Of Failure ,
- Limited Bandwidth ,
- Network Infrastructure ,
- Simulated Networks ,
- Number Of Networks ,
- Ethernet ,
- Single Failure ,
- Common Link ,
- Single Linkage ,
- Optical Networks ,
- Bandwidth Requirements ,
- Pairs Of Trees ,
- Comprehensive Simulation ,
- Correction Scheme
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Spanning Tree ,
- Conceptual Constructs ,
- Algorithmic Strategies ,
- Network Failure ,
- University Of Wisconsin Solution ,
- Optimization Problem ,
- Local Network ,
- Network Topology ,
- Undirected ,
- Number Of Trees ,
- Protection Scheme ,
- Pair Of Nodes ,
- Random Networks ,
- Failure Model ,
- Probability Of Failure ,
- Limited Bandwidth ,
- Network Infrastructure ,
- Simulated Networks ,
- Number Of Networks ,
- Ethernet ,
- Single Failure ,
- Common Link ,
- Single Linkage ,
- Optical Networks ,
- Bandwidth Requirements ,
- Pairs Of Trees ,
- Comprehensive Simulation ,
- Correction Scheme
- Author Keywords