Indoor positioning system (middleware)
Indoor positioning systems (IPS) have gained significant attention in the recent years; it provides an efficient and cost saving solution to track processes and assets within an indoor environment [1].
Leow, Yan Hao.
core
Why would individuals use indoor positioning systems? A study from a potential user interface perspective. [PDF]
Paetow T, Wichmann J, Leyer M.
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Neural Network-Based LoRa Received Signal Strength Indicator Fingerprint Identification for Indoor Localization of Mobile Robots. [PDF]
Barai C +6 more
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From Fingerprinting to Advanced Machine Learning: A Systematic Review of Wi-Fi and BLE-Based Indoor Positioning Systems. [PDF]
MartÃn-Frechina S +3 more
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Deep Learning Indoor Positioning for Connected Aircraft Cabins: A ResNet Approach with Real-World Validation. [PDF]
Schwarzbach P +3 more
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Tracking Day Shift Nurses' Work Patterns Using an Indoor Positioning System in an Internal Medicine Ward at a Japanese University Hospital. [PDF]
Otaki C +6 more
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Indoor Positioning Systems as Critical Infrastructure: An Assessment for Enhanced Location-Based Services. [PDF]
Hailu TG, Guo X, Si H.
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Precise indoor localization using a lightweight 2D-CNN with adaptive temperature guided iterative self-knowledge distillation. [PDF]
Rizwan M +4 more
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Bias Normalization for Sensors in Smart Devices. [PDF]
Son W, Choi L.
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Universal Vector Calibration for Orientation-Invariant 3D Sensor Data. [PDF]
Son W, Choi L.
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