Mitigating interference in Wireless Body Area Networks and harnessing big data for healthcare
暂无分享,去创建一个
[1] Jian Zhang,et al. Performance of Piconet Co-Existence Schemes in Wireless Body Area Networks , 2010, 2010 IEEE Wireless Communication and Networking Conference.
[2] Didier Stricker,et al. Creating and benchmarking a new dataset for physical activity monitoring , 2012, PETRA '12.
[3] S Sharma,et al. Cardiac troponins , 2004, Journal of Clinical Pathology.
[4] Seong-Soon Joo,et al. PNP-MAC: Preemptive Slot Allocation and Non-Preemptive Transmission for Providing QoS in Body Area Networks , 2010, 2010 7th IEEE Consumer Communications and Networking Conference.
[5] Roy D. Yates,et al. Interference management for CDMA systems through power control, multiuser detection, and beamforming , 2001, IEEE Trans. Commun..
[6] B Aldecoa Sanchez del Rio,et al. Assessment of different methods to estimate electrocardiogram signal quality , 2011, 2011 Computing in Cardiology.
[7] Kyung Sup Kwak,et al. A performance study for IPv4–IPv6 translation in IP multimedia core network subsystem , 2010 .
[8] Yaser Jararweh,et al. Cloudlet-based for big data collection in body area networks , 2013, 8th International Conference for Internet Technology and Secured Transactions (ICITST-2013).
[9] Twan Basten,et al. MoBAN: a configurable mobility model for wireless body area networks , 2011, SimuTools.
[10] Sudip Misra,et al. Interference mitigation between WBAN equipped patients , 2012, 2012 Ninth International Conference on Wireless and Optical Communications Networks (WOCN).
[11] Dieter Fox,et al. Bayesian Filtering for Location Estimation , 2003, IEEE Pervasive Comput..
[12] Dharma P. Agrawal,et al. Scheduling Transmissions of Coexisting Wireless Body Area Networks Using Minimum Weight Match , 2014 .
[13] H. Lin,et al. Using DQRAP (Distributed Queueing Random Access Protocol) for Local Wireless Communications , 1993 .
[14] Vikramaditya R. Jakkula,et al. Anomaly Detection Using Temporal Data Mining in a Smart Home Environment , 2008, Methods of Information in Medicine.
[15] Jesus Alonso-Zarate,et al. A near-optimum cross-layered distributed queuing protocol for wireless LAN , 2008, IEEE Wireless Communications.
[16] Hongliang Ren,et al. Understanding the Mobility Model of Wireless Body Sensor Networks , 2006, 2006 IEEE International Conference on Information Acquisition.
[17] Rocco Aversa,et al. Big data (lost) in the cloud , 2014, Int. J. Big Data Intell..
[18] Seokjoo Shin,et al. QoS Provisioning in Wireless Body Area Networks: A Review on MAC Aspects , 2012, KSII Trans. Internet Inf. Syst..
[19] Jan-Hinrich Hauer,et al. Opportunistic Packet Scheduling in Body Area Networks , 2011, EWSN.
[20] Joel J. P. C. Rodrigues. Digital Advances in Medicine, E-Health, and Communication Technologies , 2013 .
[21] Ingrid Moerman,et al. A survey on wireless body area networks , 2011, Wirel. Networks.
[22] Tracy Camp,et al. A survey of mobility models for ad hoc network research , 2002, Wirel. Commun. Mob. Comput..
[23] Antonio Ruiz-Martínez,et al. Architectures and Protocols for Secure Information Technology Infrastructures , 2014 .
[24] A. Asuncion,et al. UCI Machine Learning Repository, University of California, Irvine, School of Information and Computer Sciences , 2007 .
[25] Didier Stricker,et al. Introducing a New Benchmarked Dataset for Activity Monitoring , 2012, 2012 16th International Symposium on Wearable Computers.
[26] J. Mendel. Fuzzy logic systems for engineering: a tutorial , 1995, Proc. IEEE.
[27] Esko Strömmer,et al. Ultra-low Power Sensors with Near Field Communication for Mobile Applications , 2007, WSAN.
[28] Jeanette X. Polaschek,et al. A Belief Network Model for Interpretation of ICU Data , 1990 .
[29] Luis Alonso,et al. Novel QoS scheduling and energy-saving MAC protocol for body sensor networks optimization , 2008, BODYNETS.
[30] Dharma P. Agrawal,et al. Approaches for Energy Harvesting and Power Management in Wireless Healthcare Sensor Networks , 2013 .
[31] Ching Yao Huang,et al. Coloring-Based Inter-WBAN Scheduling for Mobile Wireless Body Area Networks , 2013, IEEE Transactions on Parallel and Distributed Systems.
[32] Sung-Kwan Youm,et al. Asynchronous inter-network interference avoidance for wireless body area networks , 2012, The Journal of Supercomputing.
[33] Billur Barshan,et al. Human Activity Recognition Using Inertial/Magnetic Sensor Units , 2010, HBU.
[34] Dharma P. Agrawal,et al. An Implementation of Wireless Sensor Network in Monitoring of Parkinson's Patients Using Received Signal Strength Indicator , 2013, 2013 IEEE International Conference on Distributed Computing in Sensor Systems.
[35] Yao Sun,et al. HBase, MapReduce, and Integrated Data Visualization for Processing Clinical Signal Data , 2011, AAAI Spring Symposium: Computational Physiology.
[36] Marimuthu Palaniswami,et al. Healthcare sensor networks :challenges toward practical implementation , 2011 .
[37] Herodotos Herodotou,et al. No one (cluster) size fits all: automatic cluster sizing for data-intensive analytics , 2011, SoCC.
[38] Dharma P. Agrawal,et al. USEFULNESS OF WIRELESS TECHNOLOGY IN MEDICAL APPLICATIONS , 2013 .
[39] Xiaofei Wang,et al. Cloud-enabled wireless body area networks for pervasive healthcare , 2013, IEEE Network.
[40] Tom White,et al. Hadoop: The Definitive Guide , 2009 .
[41] Paul J. M. Havinga,et al. Activity Recognition Using Inertial Sensing for Healthcare, Wellbeing and Sports Applications: A Survey , 2010, ARCS Workshops.
[42] Lavy Libman,et al. Reducing transmission losses in body area networks using variable TDMA scheduling , 2011, 2011 IEEE International Symposium on a World of Wireless, Mobile and Multimedia Networks.
[43] Lusheng Wang,et al. Cooperative Scheduling for Coexisting Body Area Networks , 2013, IEEE Transactions on Wireless Communications.
[44] Dharma P. Agrawal,et al. Scheduling schemes for interference suppression in healthcare sensor networks , 2014, 2014 IEEE International Conference on Communications (ICC).
[45] Richard Tynan,et al. Towards evolutionary ambient assisted living systems , 2010, J. Ambient Intell. Humaniz. Comput..
[46] Daniel P. Siewiorek,et al. Activity recognition and monitoring using multiple sensors on different body positions , 2006, International Workshop on Wearable and Implantable Body Sensor Networks (BSN'06).
[47] D. Panescu. Emerging Technologies [wireless communication systems for implantable medical devices] , 2008, IEEE Engineering in Medicine and Biology Magazine.
[48] G. Clifford,et al. Wireless technology in disease management and medicine. , 2012, Annual review of medicine.
[49] Leif Hanlen,et al. Interference in body area networks: Distance does not dominate , 2009, 2009 IEEE 20th International Symposium on Personal, Indoor and Mobile Radio Communications.
[50] Sohail Iqbal,et al. Fuzzy Controllers- Recent Advances in Theory and Applications , 2012 .
[51] Sandeep K. S. Gupta,et al. Body Area Networks: Safety, Security, and Sustainability , 2013 .
[52] Dharma P. Agrawal,et al. Choices for interaction with things on Internet and underlying issues , 2015, Ad Hoc Networks.