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CSI-based Fingerprinting for Indoor Localization: A Deep Learning Approach

Xuyu WangLingjun GaoShiwen MaoSantosh Pandey

Abstract

With the fast-growing demand of location-based services in indoor environments, indoor positioning based on fingerprinting has attracted significant interest due to its high accuracy. In this paper, we present a novel deep-learning-based indoor fingerprinting system using channel state information (CSI), which is termed DeepFi. Based on three hypotheses on CSI, the DeepFi system architecture includes an offline training phase and an online localization phase. In the offline training phase, deep learning is utilized to train all the weights of a deep network as fingerprints. Moreover, a greedy learning algorithm is used to train the weights layer by layer to reduce complexity. In the online localization phase, we use a probabilistic method based on the radial basis function to obtain the estimated location. Experimental results are presented to confirm that DeepFi can effectively reduce location error, compared with three existing methods in two representative indoor environments.

Indoor and Outdoor Localization TechnologiesUnderwater Vehicles and Communication SystemsSpeech and Audio ProcessingComputer scienceDeep learningArtificial intelligenceChannel state informationProbabilistic logicIndoor positioning systemReal-time computingPattern recognition (psychology)Machine learningWireless

Funding

  • Directorate for Computer and Information Science and Engineering
Citations
1,071
FWCI
65.81
field-weighted impact
References
56
Percentile
100%
vs. same field & year
Citations per year
Cited by
CSI Phase Fingerprinting for Indoor Localization With a Deep Learning Approach
IEEE Internet of Things Journal · 2016 · 431 citations
References
CSI Phase Fingerprinting for Indoor Localization With a Deep Learning Approach
IEEE Internet of Things Journal · 2016 · 431 citations
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