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DOI of the published article https://doi.org/10.1186/s40537-019-0194-3
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DOI of the published article https://doi.org/10.1186/s40537-019-0194-3
Detecting high indoor crowd density with Wi-Fi localization: A statistical mechanics approach
DOI:
https://doi.org/10.31224/osf.io/f7st3Keywords:
big data analytics, crowd density estimation, indoor Wi-Fi localization, probabilistic modelingAbstract
We address the problem of detecting highly raised crowd density in situations such as indoor dance events. We propose a new method for estimating crowd density by anonymous, non-participatory, indoor Wi-Fi localization of smart phones. Using a probabilistic model inspired by statistical mechanics, and relying only on big data analytics, we tackle three challenges: (1) the ambiguity of Wi-Fi based indoor positioning, which appears regardless of whether the latter is performed with machine learning or with optimization, (2) the MAC address randomization when a device is not connected, and (3) the volatility of packet interarrival times. The main result is that our estimation becomes more -- rather than less -- accurate when the crowd size increases. This property is crucial for detection of dangerous crowd density.Downloads
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Posted
2019-01-04 — Updated on 2019-01-04
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