English

On the Throughput-Delay Trade-off in Georouting Networks

Information Theory 2011-08-02 v1 Networking and Internet Architecture math.IT

Abstract

We study the scaling properties of a georouting scheme in a wireless multi-hop network of nn mobile nodes. Our aim is to increase the network capacity quasi linearly with nn while keeping the average delay bounded. In our model, mobile nodes move according to an i.i.d. random walk with velocity vv and transmit packets to randomly chosen destinations. The average packet delivery delay of our scheme is of order 1/v1/v and it achieves the network capacity of order nlognloglogn\frac{n}{\log n\log\log n}. This shows a practical throughput-delay trade-off, in particular when compared with the seminal result of Gupta and Kumar which shows network capacity of order n/logn\sqrt{n/\log n} and negligible delay and the groundbreaking result of Grossglausser and Tse which achieves network capacity of order nn but with an average delay of order n/v\sqrt{n}/v. We confirm the generality of our analytical results using simulations under various interference models.

Keywords

Cite

@article{arxiv.1108.0072,
  title  = {On the Throughput-Delay Trade-off in Georouting Networks},
  author = {Philippe Jacquet and Salman Malik and Bernard Mans and Alonso Silva},
  journal= {arXiv preprint arXiv:1108.0072},
  year   = {2011}
}

Comments

This work has been submitted to IEEE INFOCOM 2012

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