Indoor Positioning Algorithm Fusing Multi-Source Information
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Fei Xue | Hengliang Tang | Chengang Dong | Tao Liu | Mingru Zhao | Fei Xue | Tao Liu | Hengliang Tang | Mingru Zhao | Chengang Dong
[1] Stephen P. Boyd,et al. Distributed Optimization and Statistical Learning via the Alternating Direction Method of Multipliers , 2011, Found. Trends Mach. Learn..
[2] Andy Hopper,et al. The active badge location system , 1992, TOIS.
[3] James McNames,et al. Inertial and time-of-arrival ranging sensor fusion. , 2017, Gait & posture.
[4] D. L. Donoho,et al. Compressed sensing , 2006, IEEE Trans. Inf. Theory.
[5] K. Kaemarungsi. Efficient design of indoor positioning systems based on location fingerprinting , 2005, 2005 International Conference on Wireless Networks, Communications and Mobile Computing.
[6] Allen Y. Yang,et al. Robust Face Recognition via Sparse Representation , 2009, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[7] Venkata N. Padmanabhan,et al. Indoor localization without the pain , 2010, MobiCom.
[8] Shutao Li,et al. A Survey on Compressive Sensing: A Survey on Compressive Sensing , 2009 .
[9] Yunhao Liu,et al. WILL: Wireless indoor localization without site survey , 2012, 2012 Proceedings IEEE INFOCOM.
[10] Yunhao Liu,et al. LANDMARC: Indoor Location Sensing Using Active RFID , 2004, Proceedings of the First IEEE International Conference on Pervasive Computing and Communications, 2003. (PerCom 2003)..
[11] Jun-Ho Huh,et al. An Indoor Location-Based Control System Using Bluetooth Beacons for IoT Systems , 2017, Sensors.
[12] Ignas Niemegeers,et al. A survey of indoor positioning systems for wireless personal networks , 2009, IEEE Communications Surveys & Tutorials.
[13] Archan Misra,et al. Improving the error drift of inertial navigation based indoor location tracking , 2015, IPSN '15.
[14] Young Soo Suh,et al. Pedestrian Navigation Using Foot-Mounted Inertial Sensor and LIDAR , 2016, Sensors.
[15] Ming Li,et al. CRIL: An Efficient Online Adaptive Indoor Localization System , 2017, IEEE Transactions on Vehicular Technology.
[16] Jing Liu,et al. Survey of Wireless Indoor Positioning Techniques and Systems , 2007, IEEE Transactions on Systems, Man, and Cybernetics, Part C (Applications and Reviews).
[17] F. Ince,et al. Contribution of GALILEO to search and rescue , 2005, Proceedings of 2nd International Conference on Recent Advances in Space Technologies, 2005. RAST 2005..
[18] K.J.R. Liu,et al. Signal processing techniques in network-aided positioning: a survey of state-of-the-art positioning designs , 2005, IEEE Signal Processing Magazine.
[19] B.W. Parkinson,et al. NAVSTAR: Global positioning system—Ten years later , 1983, Proceedings of the IEEE.
[20] Andy Hopper,et al. A new location technique for the active office , 1997, IEEE Wirel. Commun..
[21] Jianming Wei,et al. A Robust Method to Detect Zero Velocity for Improved 3D Personal Navigation Using Inertial Sensors , 2015, Sensors.
[22] Edoardo Amaldi,et al. On the Approximability of Minimizing Nonzero Variables or Unsatisfied Relations in Linear Systems , 1998, Theor. Comput. Sci..
[23] Ted Kremenek,et al. A Probabilistic Room Location Service for Wireless Networked Environments , 2001, UbiComp.
[24] Moustafa Youssef,et al. The Horus WLAN location determination system , 2005, MobiSys '05.
[25] Patrick Siarry,et al. A postural information based biometric authentification system employing S-transform, radial basis network and Kalman filtering , 2010 .
[26] Guillermo Sapiro,et al. Sparse Representation for Computer Vision and Pattern Recognition , 2010, Proceedings of the IEEE.
[27] Paramvir Bahl,et al. RADAR: an in-building RF-based user location and tracking system , 2000, Proceedings IEEE INFOCOM 2000. Conference on Computer Communications. Nineteenth Annual Joint Conference of the IEEE Computer and Communications Societies (Cat. No.00CH37064).
[28] Hari Balakrishnan,et al. 6th ACM/IEEE International Conference on on Mobile Computing and Networking (ACM MOBICOM ’00) The Cricket Location-Support System , 2022 .
[29] Yuguang Fang,et al. Secure localization and authentication in ultra-wideband sensor networks , 2006, IEEE Journal on Selected Areas in Communications.
[30] Young Soo Suh,et al. Foot Pose Estimation Using an Inertial Sensor Unit and Two Distance Sensors , 2015, Sensors.
[31] Hojung Cha,et al. LifeMap: A Smartphone-Based Context Provider for Location-Based Services , 2011, IEEE Pervasive Computing.
[32] Cornelius Leondes,et al. Evaluation of Geometric Performance of Global Positioning System , 1978, IEEE Transactions on Aerospace and Electronic Systems.
[33] Fernando Seco Granja,et al. Comparing Ubisense, BeSpoon, and DecaWave UWB Location Systems: Indoor Performance Analysis , 2017, IEEE Transactions on Instrumentation and Measurement.
[34] Haiyun Luo,et al. Zero-configuration indoor localization over IEEE 802.11 wireless infrastructure , 2010, Wirel. Networks.
[35] Myong-Soon Park,et al. An indoor localization mechanism using active RFID tag , 2006, IEEE International Conference on Sensor Networks, Ubiquitous, and Trustworthy Computing (SUTC'06).
[36] Estefania Munoz Diaz. Inertial Pocket Navigation System: Unaided 3D Positioning , 2015, Sensors.
[37] John-Olof Nilsson,et al. Foot-mounted inertial navigation made easy , 2014, 2014 International Conference on Indoor Positioning and Indoor Navigation (IPIN).
[38] S. A. Dale,et al. The Soviet Union's GLONASS Navigation Satellites , 1987, IEEE Aerospace and Electronic Systems Magazine.
[39] Wang Liang-jun,et al. Advances in Theory and Application of Compressed Sensing , 2009 .
[40] V. S. Saroja,et al. A survey on compressive sensing , 2015, 2015 2nd International Conference on Electronics and Communication Systems (ICECS).