Understanding individual human mobility patterns
arXiv:0806.1256 · doi:10.1038/nature06958
Abstract
Despite their importance for urban planning, traffic forecasting, and the spread of biological and mobile viruses, our understanding of the basic laws governing human motion remains limited thanks to the lack of tools to monitor the time resolved location of individuals. Here we study the trajectory of 100,000 anonymized mobile phone users whose position is tracked for a six month period. We find that in contrast with the random trajectories predicted by the prevailing Levy flight and random walk models, human trajectories show a high degree of temporal and spatial regularity, each individual being characterized by a time independent characteristic length scale and a significant probability to return to a few highly frequented locations. After correcting for differences in travel distances and the inherent anisotropy of each trajectory, the individual travel patterns collapse into a single spatial probability distribution, indicating that despite the diversity of their travel history, humans follow simple reproducible patterns. This inherent similarity in travel patterns could impact all phenomena driven by human mobility, from epidemic prevention to emergency response, urban planning and agent based modeling.
Supporting Webpage: http://www.nd.edu/~mgonza16/Marta'sHomepage_files/nature2008/research.html
References in corpus (7)
- The scaling laws of human travel
- Structure and tie strengths in mobile communication networks
- Quantifying social group evolution
- Modeling the Worldwide Spread of Pandemic Influenza: Baseline Case and Containment Interventions
- First-passage times in complex scale-invariant media
- The Dynamics of a Mobile Phone Network
- Levy walk patterns in the foraging movements of spider monkeys (Ateles geoffroyi)
Cited by in corpus (14)
- Statistical physics of social dynamics
- Understanding the spreading patterns of mobile phone viruses
- Characterizing Human Mobility Patterns in a Large Street Network
- Microdynamics in stationary complex networks
- Heavy-tailed statistics in short-message communication
- The Opportunistic Transmission of Wireless Worms between Mobile Devices
- Statistical properties of volatility return intervals of Chinese stocks
- Multiscaling behavior in the volatility return intervals of Chinese indices
- Scaling and memory in the return intervals of realized volatility
- A Refined Experience Sampling Method to Capture Mobile User Experience
- Investigating Bimodal Clustering in Human Mobility
- Sampling bias in systems with structural heterogeneity and limited internal diffusion
- Planet-scale Human Mobility Measurement
- Characterizing Individual Communication Patterns