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Deploying sensor networks with guaranteed capacity and fault tolerance

Jonathan Bredin, Erik D. Demaine, MohammadTaghi Hajiaghayi, Daniela Rus

Year
2005
Citations
202

Abstract

We consider the problem of deploying or repairing a sensor network to guarantee a specified level of multi-path connectivity (k-connectivity) between all nodes. Such a guarantee simultaneously provides fault tolerance against node failures and high capacity through multi-path routing. We design and analyze the first algorithms that place an almost-minimum number of additional sensors to augment an existing network into a k-connected network, for any desired parameter k. Our algorithms have provable guarantees on the quality of the solution. Specifically, we prove that the number of additional sensors is within a constant factor of the absolute minimum, for any fixed k. We have implemented greedy and distributed versions of this algorithm, and demonstrate in simulation that they produce high-quality placements for the additional sensors. We are also in the process of using our algorithms to deploy nodes in a physical sensor network using a mobile robot.

Keywords

Computer scienceFault toleranceWireless sensor networkNode (physics)Routing (electronic design automation)Distributed computingPath (computing)Process (computing)Greedy algorithmConstant (computer programming)

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