Multimodal Approaches for Indoor Localization for Ambient Assisted Living in Smart Homes
暂无分享,去创建一个
[1] Zhiyi Qu,et al. Optimization WIFI indoor positioning KNN algorithm location-based fingerprint , 2016, 2016 7th IEEE International Conference on Software Engineering and Service Science (ICSESS).
[2] Smartphone Sensor Accelerometer Data for Human Activity Recognition Using Spiking Neural Network , 2021 .
[3] Shih-Hau Fang,et al. A case study of indoor positioning in an unmodified factory environment , 2014, 2014 International Conference on Indoor Positioning and Indoor Navigation (IPIN).
[4] Feng Qin,et al. CCpos: WiFi Fingerprint Indoor Positioning System Based on CDAE-CNN , 2021, Sensors.
[5] Mohammed Faeik Ruzaij Al-Okby,et al. New Approach for Fall Detection System Using Embedded Technology , 2020, 2020 IEEE 24th International Conference on Intelligent Engineering Systems (INES).
[6] Ayed Alwadain,et al. Killer heuristic optimized convolution neural network-based fall detection with wearable IoT sensor devices , 2021 .
[7] Yong Zhang,et al. A robust indoor localization method with calibration strategy based on joint distribution adaptation , 2021, Wireless Networks.
[8] Antoni Morell,et al. Indoor Pedestrian Tracking by On-Body Multiple Receivers , 2016, IEEE Sensors Journal.
[9] Sudeep Pasricha,et al. Indoor Localization with Smartphones: Harnessing the Sensor Suite in Your Pocket , 2017, IEEE Consumer Electronics Magazine.
[10] Tao Ma. A Framework for Modeling and Capturing Social Interactions , 2015 .
[11] Stefano Chessa,et al. Automatic virtual calibration of range-based indoor localization systems , 2012, Wirel. Commun. Mob. Comput..
[12] Lijun Jiang,et al. Integrated UWB and GPS location sensing system in hospital environment , 2010, 2010 5th IEEE Conference on Industrial Electronics and Applications.
[13] Zhi Yan,et al. Experimental Analysis on Weight ${K}$ -Nearest Neighbor Indoor Fingerprint Positioning , 2019, IEEE Internet of Things Journal.
[14] T. Masud,et al. Epidemiology of falls. , 2001, Age and ageing.
[15] Peng Zhang,et al. A modularized real-time indoor navigation algorithm on smartphones , 2015, 2015 International Conference on Indoor Positioning and Indoor Navigation (IPIN).
[16] Petar M. Djuric,et al. Indoor Tracking: Theory, Methods, and Technologies , 2015, IEEE Transactions on Vehicular Technology.
[17] Rosa Maria Alsina-Pagès,et al. Real-Time Distributed Architecture for Remote Acoustic Elderly Monitoring in Residential-Scale Ambient Assisted Living Scenarios , 2018, Sensors.
[18] Tim Wark,et al. A Wireless Sensor Network for Real-Time Indoor Localisation and Motion Monitoring , 2008, 2008 International Conference on Information Processing in Sensor Networks (ipsn 2008).
[19] Gang Qiao,et al. An improved hybrid indoor positioning system based on surface tessellation artificial neural network , 2020 .
[20] A. Gow,et al. Older Adults Perceptions of Technology and Barriers to Interacting with Tablet Computers: A Focus Group Study , 2017, Front. Psychol..
[21] Nirmalya Thakur,et al. An Improved Approach for Complex Activity Recognition in Smart Homes , 2019, ICSR.
[22] Yeng Chai Soh,et al. Smartphone Inertial Sensor-Based Indoor Localization and Tracking With iBeacon Corrections , 2016, IEEE Transactions on Industrial Informatics.
[23] Patrizia Scandurra,et al. Mobile cloud computing for indoor emergency response: the IPSOS assistant case study , 2019, Journal of Reliable Intelligent Environments.
[24] D. Han,et al. Hybrid Deep Learning Model Based Indoor Positioning Using Wi-Fi RSSI Heat Maps for Autonomous Applications , 2020, Electronics.
[25] Robert A Sottilare,et al. Conducting an Analysis of a Qualitative Dataset Using the Waikato Environment for Knowledge Analysis (WEKA) , 2015 .
[26] Ruizhi Chen,et al. A Hybrid Smartphone Indoor Positioning Solution for Mobile LBS , 2012, Sensors.
[27] José A. García-Naya,et al. Multi-Sensor Accurate Forklift Location and Tracking Simulation in Industrial Indoor Environments , 2019, Electronics.
[28] Petar M. Djuric,et al. Proximity Detection with RFID: A Step Toward the Internet of Things , 2015, IEEE Pervasive Computing.
[29] Deokjai Choi,et al. A decision tree‐based NLOS detection method for the UWB indoor location tracking accuracy improvement , 2019, Int. J. Commun. Syst..
[30] Jaegeol Yim,et al. Introducing a decision tree-based indoor positioning technique , 2008, Expert Syst. Appl..
[31] Yuwei Chen,et al. iParking: An Intelligent Indoor Location-Based Smartphone Parking Service , 2012, Sensors.
[32] Patrick Robertson,et al. FootSLAM: Pedestrian Simultaneous Localization and Mapping Without Exteroceptive Sensors—Hitchhiking on Human Perception and Cognition , 2012, Proceedings of the IEEE.
[33] Jorma Laaksonen,et al. Indoor location recognition using fusion of SVM-based visual classifiers , 2010, 2010 IEEE International Workshop on Machine Learning for Signal Processing.
[34] Ciprian Dobre,et al. A Fog-Based Emergency System for Smart Enhanced Living Environments , 2016, IEEE Cloud Computing.
[35] Veena Anand,et al. Random Forest Learning Based Indoor Localization as an IoT Service for Smart Buildings , 2020, Wireless Personal Communications.
[36] W. Wee,et al. A Context Driven Human Activity Recognition Framework , 2016 .
[37] Claudia María Del Pilar Zapata Del Río,et al. Elderly Users and Their Main Challenges Usability with Mobile Applications: A Systematic Review , 2019, HCI.
[38] Andrei Szabo,et al. WLAN-Based Pedestrian Tracking Using Particle Filters and Low-Cost MEMS Sensors , 2007, 2007 4th Workshop on Positioning, Navigation and Communication.
[39] Roseli A. Francelin Romero,et al. Activity Recognition for Ambient Assisted Living with Videos, Inertial Units and Ambient Sensors , 2021, Sensors.
[40] Dong Myung Lee,et al. Neural network-based indoor localization system with enhanced virtual access points , 2020, The Journal of Supercomputing.
[41] Arkady B. Zaslavsky,et al. Complex activity recognition using context-driven activity theory and activity signatures , 2013, ACM Trans. Comput. Hum. Interact..
[42] Hao Jiang,et al. Fusion of WiFi, Smartphone Sensors and Landmarks Using the Kalman Filter for Indoor Localization , 2015, Sensors.
[43] Mohamed Jmaiel,et al. EasyLoc: Plug-and-Play RSS-Based Localization in Wireless Sensor Networks , 2014, Cooperative Robots and Sensor Networks.
[44] Wooi-Haw Tan,et al. A dataset for elderly action recognition using indoor location and activity tracking data , 2020 .
[45] Arash BEHBOODI,et al. Evaluation of RF-based Indoor Localization Solutions for the Future Internet , 2013 .
[46] Lei Dai,et al. Fingerprint-based Indoor Localization using Weighted K-Nearest Neighbor and Weighted Signal Intensity , 2020, AIAM.
[47] George Mastorakis,et al. An NF V-powered emergency system for smart enhanced living environments , 2017, 2017 IEEE Conference on Network Function Virtualization and Software Defined Networks (NFV-SDN).
[48] Yuan Wang,et al. A 3D mobile positioning method based on deep learning for hospital applications , 2020, EURASIP J. Wirel. Commun. Netw..
[49] ZaslavskyArkady,et al. Complex activity recognition using context-driven activity theory and activity signatures , 2013 .
[50] Jieyu Gao,et al. WiFi-Based Indoor Positioning by Random Forest and Adjusted Cosine Similarity , 2020, 2020 Chinese Control And Decision Conference (CCDC).
[51] Yuwei Chen,et al. Using LS-SVM Based Motion Recognition for Smartphone Indoor Wireless Positioning , 2012, Sensors.
[52] François Marx,et al. Advanced Integration of WiFi and Inertial Navigation Systems for Indoor Mobile Positioning , 2006, EURASIP J. Adv. Signal Process..
[53] Ehsan Tahami,et al. Fall detection system via smart phone and send people location , 2021, 2020 28th European Signal Processing Conference (EUSIPCO).
[54] Syed Fahad Tahir,et al. Activity recognition and anomaly detection in smart homes , 2021, Neurocomputing.
[55] Shuai Zhang,et al. Indoor 2.5D Positioning of WiFi Based on SVM , 2018, 2018 Ubiquitous Positioning, Indoor Navigation and Location-Based Services (UPINLBS).
[56] Michael Devetsikiotis,et al. An iBeacon based Proximity and Indoor Localization System , 2017, ArXiv.
[57] Ingo Mierswa,et al. YALE: rapid prototyping for complex data mining tasks , 2006, KDD '06.