Spatial networks with wireless applications
arXiv:1803.04166 · doi:10.1016/j.crhy.2018.10.001
Abstract
Many networks have nodes located in physical space, with links more common between closely spaced pairs of nodes. For example, the nodes could be wireless devices and links communication channels in a wireless mesh network. We describe recent work involving such networks, considering effects due to the geometry (convex,non-convex, and fractal), node distribution, distance-dependent link probability, mobility, directivity and interference.
Review article- an amended version with a new title from the original
References in corpus (20)
- The structure and dynamics of multilayer networks
- The scaling laws of human travel
- Determinantal point processes for machine learning
- The entropy of network ensembles
- Point processes in arbitrary dimension from fermionic gases, random matrix theory, and number theory
- A New Phase Transition for Local Delays in MANETs
- Clustering implies geometry in networks
- Stochastic Geometry Modeling of Cellular Networks: Analysis, Simulation and Experimental Validation
- Temporal Correlation of Interference in Bounded Mobile Ad Hoc Networks with Blockage
- Entropy of Spatial Network Ensembles
- Generation of Spatially Embedded Random Networks to Model Complex Transportation Networks
- Correlated Interference from Uncorrelated Users in Bounded Ad Hoc Networks with Blockage
- Characterizing Spatial Patterns of Base Stations in Cellular Networks
- Accessibility and Delay in Random Temporal Networks
- Boundaries as an Enhancement Technique for Physical Layer Security
- Isolation probabilities in dynamic soft random geometric graphs
- Maximum Likelihood based Multihop Localization in Wireless Sensor Networks
- Isolation and connectivity in random geometric graphs with self-similar intensity measures
- Introduction to the theory of Gibbs point processes
- Location, location, location: Border effects in interference limited ad hoc networks