Enhanced Human Activity Recognition Based on Smartphone Sensor Data Using Hybrid Feature Selection Model
暂无分享,去创建一个
[1] Henrik Blunck,et al. Robust Human Activity Recognition using smartwatches and smartphones , 2018, Eng. Appl. Artif. Intell..
[2] Vivek Kanhangad,et al. Human Activity Classification in Smartphones Using Accelerometer and Gyroscope Sensors , 2018, IEEE Sensors Journal.
[3] David S. Rosenblum,et al. Context-aware mobile music recommendation for daily activities , 2012, ACM Multimedia.
[4] Jiyoun Lim,et al. Sensor Data Acquisition and Multimodal Sensor Fusion for Human Activity Recognition Using Deep Learning , 2019, Sensors.
[5] Davide Anguita,et al. A Public Domain Dataset for Human Activity Recognition using Smartphones , 2013, ESANN.
[6] Jong-Myon Kim,et al. Discriminant Feature Distribution Analysis-Based Hybrid Feature Selection for Online Bearing Fault Diagnosis in Induction Motors , 2016, J. Sensors.
[7] Alberto G. Bonomi,et al. Identifying Types of Physical Activity With a Single Accelerometer: Evaluating Laboratory-trained Algorithms in Daily Life , 2011, IEEE Transactions on Biomedical Engineering.
[8] Athanasios V. Vasilakos,et al. GCHAR: An efficient Group-based Context - aware human activity recognition on smartphone , 2017, J. Parallel Distributed Comput..
[9] Yu-Liang Hsu,et al. Application of nonparametric weighted feature extraction for an inertial-signal-based human activity recognition system , 2017, 2017 International Conference on Applied System Innovation (ICASI).
[10] Alexandros Iosifidis,et al. View-Invariant Action Recognition Based on Artificial Neural Networks , 2012, IEEE Transactions on Neural Networks and Learning Systems.
[11] Yufei Chen,et al. Performance Analysis of Smartphone-Sensor Behavior for Human Activity Recognition , 2017, IEEE Access.
[12] Hadi Tabatabaee Malazi,et al. PAMS: A new position-aware multi-sensor dataset for human activity recognition using smartphones , 2017, 2017 19th International Symposium on Computer Architecture and Digital Systems (CADS).
[13] Bo Yan,et al. Deep Ensemble Learning for Human Activity Recognition Using Smartphone , 2018, 2018 IEEE 23rd International Conference on Digital Signal Processing (DSP).
[14] Ling Shao,et al. Human action segmentation and recognition via motion and shape analysis , 2012, Pattern Recognit. Lett..
[15] Venet Osmani,et al. Human activity recognition in pervasive health-care: Supporting efficient remote collaboration , 2008, J. Netw. Comput. Appl..
[16] Ahmad Almogren,et al. A robust human activity recognition system using smartphone sensors and deep learning , 2018, Future Gener. Comput. Syst..
[17] B Jagadeesh,et al. An Approach of Understanding Human Activity Recognition and Detection for Video Surveillance using HOG Descriptor and SVM Classifier , 2017, 2017 International Conference on Current Trends in Computer, Electrical, Electronics and Communication (CTCEEC).
[18] Ian Cleland,et al. Dynamic detection of window starting positions and its implementation within an activity recognition framework , 2016, J. Biomed. Informatics.
[19] Wiphada Wettayaprasit,et al. A Cyclic Attribution Technique Feature Selection Method for Human Activity Recognition , 2019, International Journal of Intelligent Systems and Applications.
[20] Davide Anguita,et al. Transition-Aware Human Activity Recognition Using Smartphones , 2016, Neurocomputing.
[21] Sung-Bae Cho,et al. Human activity recognition with smartphone sensors using deep learning neural networks , 2016, Expert Syst. Appl..
[22] Chen Wei,et al. Up and down buses activity recognition using smartphone accelerometer , 2016, 2016 IEEE Information Technology, Networking, Electronic and Automation Control Conference.
[23] Jesús Favela,et al. Activity-Aware Computing for Healthcare , 2008, IEEE Pervasive Computing.
[24] Yu-Liang Hsu,et al. Human Daily and Sport Activity Recognition Using a Wearable Inertial Sensor Network , 2018, IEEE Access.
[25] Eamonn J. Keogh,et al. Curse of Dimensionality , 2010, Encyclopedia of Machine Learning.
[26] Md. Atiqur Rahman Ahad,et al. An Approach to Classify Human Activities in Real-time from Smartphone Sensor Data , 2019, 2019 Joint 8th International Conference on Informatics, Electronics & Vision (ICIEV) and 2019 3rd International Conference on Imaging, Vision & Pattern Recognition (icIVPR).
[27] Josef Hallberg,et al. Automatic Annotation for Human Activity Recognition in Free Living Using a Smartphone , 2018, Sensors.
[28] Xianbin Wang,et al. Human activity detection based on multiple smart phone sensors and machine learning algorithms , 2015, 2015 IEEE 19th International Conference on Computer Supported Cooperative Work in Design (CSCWD).
[29] Myeongsu Kang,et al. A Hybrid Feature Selection Scheme for Reducing Diagnostic Performance Deterioration Caused by Outliers in Data-Driven Diagnostics , 2016, IEEE Transactions on Industrial Electronics.
[30] Nirmalya Roy,et al. Recent trends in machine learning for human activity recognition—A survey , 2018, WIREs Data Mining Knowl. Discov..
[31] Yufeng Wang,et al. CCFS: A Confidence-Based Cost-Effective Feature Selection Scheme for Healthcare Data Classification , 2019, IEEE/ACM Transactions on Computational Biology and Bioinformatics.
[32] Jae Hoon Lee,et al. Deep Learning Based Real-time Daily Human Activity Recognition and Its Implementation in a Smartphone , 2019, 2019 16th International Conference on Ubiquitous Robots (UR).
[33] Vittorio Murino,et al. Characterizing Humans on Riemannian Manifolds , 2013, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[34] Gary M. Weiss,et al. Activity recognition using cell phone accelerometers , 2011, SKDD.