Abstract
A major issue in the design and operation of ad hoc networks is sharing the common spectrum among links in the same geographic area. Bandwidth allocation, to optimize the performance of networks in which each station can converse with at most a single neighbor at a time, has been recently studied in the context of Bluetooth Personal Area Networks. There, centralized and distributed, capacity assignment heuristics were developed, with applicability to a variety of ad hoc networks. Yet, no guarantees on the performance of these heuristics have been provided. In this paper, we extend these heuristics such that they can operate with general convex objective functions. Then, we present our analytic results regarding these heuristics. Specifically, we show that they are β-approximation (β<2) algorithms. Moreover, we show that even though the distributed and centralized algorithms allocate capacity in a different manner, both algorithms converge to the same results. Finally, we present numerical results that demonstrate the performance of the algorithms.
Original language | English |
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Pages (from-to) | 589-603 |
Number of pages | 15 |
Journal | Wireless Networks |
Volume | 12 |
Issue number | 5 |
DOIs | |
State | Published - Oct 2006 |
Externally published | Yes |
Bibliographical note
Funding Information:Acknowledgments This research was supported by THE ISRAEL SCIENCE FOUNDATION Grant No. 148/03. The research of Gil Zussman was supported by a Marie Curie International Fellowship within the 6th European Community Framework Programme. We thank the anonymous reviewers for their helpful comments.
Funding
Acknowledgments This research was supported by THE ISRAEL SCIENCE FOUNDATION Grant No. 148/03. The research of Gil Zussman was supported by a Marie Curie International Fellowship within the 6th European Community Framework Programme. We thank the anonymous reviewers for their helpful comments.
Funders | Funder number |
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6th European Community Framework Programme | |
The Israel Science Foundation | 148/03 |
Keywords
- Approximation algorithms
- Bandwidth allocation
- Bluetooth
- Capacity assignment
- IEEE 802.15.3
- Matching
- Scatternet
- Scheduling