English

Packet Travel Times in Wireless Relay Chains under Spatially and Temporally Dependent Interference

Networking and Internet Architecture 2014-04-29 v4 Information Theory math.IT

Abstract

We investigate the statistics of the number of time slots TT that it takes a packet to travel through a chain of wireless relays. Derivations are performed assuming an interference model for which interference possesses spatiotemporal dependency properties. When using this model, results are harder to arrive at analytically, but they are more realistic than the ones obtained in many related works that are based on independent interference models. First, we present a method for calculating the distribution of TT. As the required computations are extensive, we also obtain simple expressions for the expected value E[T]\mathrm{E} [T] and variance var[T]\mathrm{var} [T]. Finally, we calculate the asymptotic limit of the average speed of the packet. Our numerical results show that spatiotemporal dependence has a significant impact on the statistics of the travel time TT. In particular, we show that, with respect to the independent interference case, E[T]\mathrm{E} [T] and var[T]\mathrm{var} [T] increase, whereas the packet speed decreases.

Keywords

Cite

@article{arxiv.1311.2698,
  title  = {Packet Travel Times in Wireless Relay Chains under Spatially and Temporally Dependent Interference},
  author = {Alessandro Crismani and Udo Schilcher and Stavros Toumpis and Günther Brandner and Christian Bettstetter},
  journal= {arXiv preprint arXiv:1311.2698},
  year   = {2014}
}