Series Expansion for Interference in Wireless Networks
arXiv:1101.3824 · doi:10.1109/TIT.2011.2177067
Abstract
The spatial correlations in transmitter node locations introduced by common multiple access protocols makes the analysis of interference, outage, and other related metrics in a wireless network extremely difficult. Most works therefore assume that nodes are distributed either as a Poisson point process (PPP) or a grid, and utilize the independence properties of the PPP (or the regular structure of the grid) to analyze interference, outage and other metrics. But,the independence of node locations makes the PPP a dubious model for nontrivial MACs which intentionally introduce correlations, e.g. spatial separation, while the grid is too idealized to model real networks. In this paper, we introduce a new technique based on the factorial moment expansion of functionals of point processes to analyze functions of interference, in particular outage probability. We provide a Taylor-series type expansion of functions of interference, wherein increasing the number of terms in the series provides a better approximation at the cost of increased complexity of computation. Various examples illustrate how this new approach can be used to find outage probability in both Poisson and non-Poisson wireless networks.
Submitted to IEEE Transactions on Information Theory
References in corpus (4)
- Point processes in arbitrary dimension from fermionic gases, random matrix theory, and number theory
- Performance of Optimum Combining in a Poisson Field of Interferers and Rayleigh Fading Channels
- Performance of Interference Alignment in Clustered Wireless Ad Hoc Networks
- Outage Probability of General Ad Hoc Networks in the High-Reliability Regime
Cited by in corpus (6)
- Moments of Interference in Vehicular Networks with Hardcore Headway Distance
- Analysis of a Cooperative Strategy for a Large Decentralized Wireless Network
- Stochastic Geometric Analysis of Energy-Efficient Dense Cellular Networks
- Flow-level performance of random wireless networks
- Generalized Interference Models in Doubly Stochastic Poisson Random Fields for Wideband Communications: the PNSC(alpha) model
- Effects of Base-Station Spatial Interdependence on Interference Correlation and Network Performance