Survey of challenges and towards a unified architecture for location systems
暂无分享,去创建一个
[1] Jianping Pan,et al. Minimizing Energy Consumption with Probabilistic Distance Models in Wireless Sensor Networks , 2010, 2010 Proceedings IEEE INFOCOM.
[2] Xiaoxi Du,et al. DV-Hop localization algorithms in wireless sensor networks , 2016 .
[3] Horst Hellbrück,et al. Indoor localization based on bi-phase measurements for wireless sensor networks , 2015, 2015 IEEE Wireless Communications and Networking Conference (WCNC).
[4] Eyal de Lara,et al. Accurate GSM Indoor Localization , 2005, UbiComp.
[5] Santiago Mazuelas,et al. Robust Indoor Positioning Provided by Real-Time RSSI Values in Unmodified WLAN Networks , 2009, IEEE Journal of Selected Topics in Signal Processing.
[6] Xiaodong Lin. Security and Privacy in Mobile Social Networks , 2015, MobiMWareHN@MobiHoc.
[7] Julian Lategahn,et al. MOBILE ROBOT LOCALIZATION USING WLAN, ODOMETRY AND GYROSCOPE DATA , 2010 .
[8] Carmela Troncoso,et al. Protecting location privacy: optimal strategy against localization attacks , 2012, CCS.
[9] Thomas B. Schön,et al. Indoor Positioning Using Ultrawideband and Inertial Measurements , 2015, IEEE Transactions on Vehicular Technology.
[10] M. Bouet,et al. RFID tags: Positioning principles and localization techniques , 2008, 2008 1st IFIP Wireless Days.
[11] Deborah Estrin,et al. GPS-less low-cost outdoor localization for very small devices , 2000, IEEE Wirel. Commun..
[12] Widyawan,et al. Smartphone-based Pedestrian Dead Reckoning as an indoor positioning system , 2012, 2012 International Conference on System Engineering and Technology (ICSET).
[13] D. JothiKanna,et al. Localization Algorithms in Wireless Sensor Networks: A Survey , 2017 .
[14] Ling Pei,et al. Indoor/Outdoor Seamless Positioning Technologies Integrated on Smart Phone , 2009, 2009 First International Conference on Advances in Satellite and Space Communications.
[15] Françoise Sailhan,et al. Scalable Service Discovery for MANET , 2005, Third IEEE International Conference on Pervasive Computing and Communications.
[16] Jochen Schiller,et al. Location Based Services , 2004 .
[17] Andy Hopper,et al. The active badge location system , 1992, TOIS.
[18] Adam Wolisz,et al. A Hybrid Approach for Location-based Service Discovery in Vehicular Ad Hoc Networks , 2004 .
[19] Romit Roy Choudhury,et al. EnLoc: Energy-Efficient Localization for Mobile Phones , 2009, IEEE INFOCOM 2009.
[20] Pedro Figueiredo Silva,et al. Overview of positioning technologies from fitness-to-purpose point of view , 2014, International Conference on Localization and GNSS 2014 (ICL-GNSS 2014).
[21] Moustafa Youssef,et al. CoSDEO 2016 Keynote: A decade later — Challenges: Device-free passive localization for wireless environments , 2007, 2016 IEEE International Conference on Pervasive Computing and Communication Workshops (PerCom Workshops).
[22] 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).
[23] K. Kyamakya,et al. A low-cost experimental ultra-wideband positioning system , 2005, 2005 IEEE International Conference on Ultra-Wideband.
[24] Gerd Kortuem,et al. Smart objects as building blocks for the Internet of things , 2010, IEEE Internet Computing.
[25] Moustafa Youssef,et al. Nuzzer: A Large-Scale Device-Free Passive Localization System for Wireless Environments , 2009, IEEE Transactions on Mobile Computing.
[26] Amitangshu Pal,et al. Localization Algorithms in Wireless Sensor Networks: Current Approaches and Future Challenges , 2010, Netw. Protoc. Algorithms.
[27] Tomasz Imielinski,et al. GPS-Based Addressing and Routing , 1996, RFC.
[28] Andrea Zanella,et al. Experimental comparison of RSSI-based localization algorithms for indoor wireless sensor networks , 2008, REALWSN '08.
[29] Reiner S. Thomä,et al. Performance comparison of TOA and TDOA based location estimation algorithms in LOS environment , 2008, 2008 5th Workshop on Positioning, Navigation and Communication.
[30] Venkata N. Padmanabhan,et al. Indoor localization without the pain , 2010, MobiCom.
[31] Pradip K. Das,et al. A scalable location-based services infrastructure combining GPS and Bluetooth based positioning for providing services in ubiquitous environment , 2010, 2010 IEEE 4th International Conference on Internet Multimedia Services Architecture and Application.
[32] Moeness G. Amin,et al. Localization and Tracking of Passive RFID Tags Based on Direction Estimation , 2007 .
[33] Sebastian Tilch,et al. Survey of optical indoor positioning systems , 2011, 2011 International Conference on Indoor Positioning and Indoor Navigation.
[34] Anshul Rai,et al. Zee: zero-effort crowdsourcing for indoor localization , 2012, Mobicom '12.
[35] Moritz Kessel,et al. Bereitstellung von Umgebungsinformationen und Positionsdaten für ortsbezogene Dienste in Gebäuden , 2013 .
[36] Injong Rhee,et al. Towards Mobile Phone Localization without War-Driving , 2010, 2010 Proceedings IEEE INFOCOM.
[37] Shin-ichiro Mori,et al. Hybrid positioning system combining spatially continuous and discrete information for indoor location-based service , 2012, 2012 Ubiquitous Positioning, Indoor Navigation, and Location Based Service (UPINLBS).
[38] 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).
[39] Azzedine Boukerche,et al. Localization systems for wireless sensor networks , 2007, IEEE Wireless Communications.
[40] Kevin Curran,et al. A survey of active and passive indoor localisation systems , 2012, Comput. Commun..
[41] Christian S. Jensen,et al. Seamless Indoor/Outdoor Positioning Handover for Location-Based Services in Streamspin , 2009, 2009 Tenth International Conference on Mobile Data Management: Systems, Services and Middleware.
[42] Gaetano Borriello,et al. The location stack: a layered model for location in ubiquitous computing , 2002, Proceedings Fourth IEEE Workshop on Mobile Computing Systems and Applications.
[43] Sajal K. Das,et al. A survey on sensor localization , 2010 .
[44] Anja Klein,et al. Hybrid GPS/GSM localization of mobile terminals using the extended Kalman filter , 2009, 2009 6th Workshop on Positioning, Navigation and Communication.
[45] Johann Borenstein,et al. Accurate mobile robot dead-reckoning with a precision-calibrated fiber-optic gyroscope , 2001, IEEE Trans. Robotics Autom..
[46] Bessam Abdulrazak,et al. Indoor and Outdoor Localization Architecture for Pervasive Environment , 2010, ICOST.
[47] Ismail Güvenç,et al. A Survey on TOA Based Wireless Localization and NLOS Mitigation Techniques , 2009, IEEE Communications Surveys & Tutorials.
[48] Masayuki Murata,et al. Indoor Localization System using RSSI Measurement of Wireless Sensor Network based on ZigBee Standard , 2006, Wireless and Optical Communications.
[49] Prabal Dutta,et al. PolyPoint: Guiding Indoor Quadrotors with Ultra-Wideband Localization , 2015, HotWireless@MobiCom.
[50] N. Newman. Apple iBeacon technology briefing , 2014 .
[51] Hao Wu,et al. A Survey on Localization in Wireless Sensor Networks , 2011 .
[52] Deborah Estrin,et al. Adaptive beacon placement , 2001, Proceedings 21st International Conference on Distributed Computing Systems.
[53] Toby P. Breckon,et al. Cross-spectral visual simultaneous localization and mapping (SLAM) with sensor handover , 2013, Robotics Auton. Syst..
[54] Manuela M. Veloso,et al. Depth camera based indoor mobile robot localization and navigation , 2012, 2012 IEEE International Conference on Robotics and Automation.
[55] Christian Bettstetter,et al. A COMPARISON OF SERVICE DISCOVERY PROTOCOLS AND IMPLEMENTATION OF THE SERVICE LOCATION PROTOCOL , 2000 .
[56] Horst Hellbrück,et al. Evaluation of radio based, optical and barometric localization for indoor altitude estimation in medical applications , 2014, 2014 International Conference on Indoor Positioning and Indoor Navigation (IPIN).
[57] George M. Giaglis,et al. A taxonomy of indoor and outdoor positioning techniques for mobile location services , 2002, SECO.
[58] Chunjie Zhou,et al. A Distributed UWB-based Localization System in Underground Mines , 2015, J. Networks.
[59] Reiner S. Thoma,et al. Time of arrival estimation for range-based localization in UWB sensor networks , 2010, 2010 IEEE International Conference on Ultra-Wideband.
[60] Eric A. Wan,et al. RSSI-Based Indoor Localization and Tracking Using Sigma-Point Kalman Smoothers , 2009, IEEE Journal of Selected Topics in Signal Processing.
[61] Volker Turau,et al. Towards ubiquitous indoor location based services and indoor navigation , 2010, 2010 7th Workshop on Positioning, Navigation and Communication.
[62] Ignas Niemegeers,et al. A survey of indoor positioning systems for wireless personal networks , 2009, IEEE Communications Surveys & Tutorials.
[63] Momin Uppal,et al. SHARF: A Single Beacon Hybrid Acoustic and RF Indoor Localization Scheme , 2015, CrownCom.
[64] Victoria Ying Zhang,et al. Combined AOA and TOA NLOS Localization With Nonlinear Programming in Severe Multipath Environments , 2009, 2009 IEEE Wireless Communications and Networking Conference.
[65] HanGuangjie,et al. Localization algorithms of Wireless Sensor Networks , 2013 .
[66] Patrick Weber,et al. OpenStreetMap: User-Generated Street Maps , 2008, IEEE Pervasive Computing.
[67] Brian A. Weiss,et al. Test arenas and performance metrics for urban search and rescue robots , 2003, Proceedings 2003 IEEE/RSJ International Conference on Intelligent Robots and Systems (IROS 2003) (Cat. No.03CH37453).
[68] Miklós Maróti,et al. Radio interferometric geolocation , 2005, SenSys '05.
[69] A. Petroff,et al. A practical, high performance Ultra-Wideband radar platform , 2012, 2012 IEEE Radar Conference.
[70] Manuela M. Veloso,et al. WiFi localization and navigation for autonomous indoor mobile robots , 2010, 2010 IEEE International Conference on Robotics and Automation.
[71] Sudarshan S. Chawathe,et al. Beacon Placement for Indoor Localization using Bluetooth , 2008, 2008 11th International IEEE Conference on Intelligent Transportation Systems.
[72] Haiyun Luo,et al. Zero-Configuration, Robust Indoor Localization: Theory and Experimentation , 2006, Proceedings IEEE INFOCOM 2006. 25TH IEEE International Conference on Computer Communications.
[73] Yi Zhou,et al. A Localization Scheme for Underwater Wireless Sensor Networks , 2009 .
[74] Carlos J. Escudero,et al. Architecture for Multi-Technology Real-Time Location Systems , 2013, Sensors.
[75] Lei Yu,et al. Comparison of Hybrid Localization Schemes using RSSI, TOA, and TDOA , 2011, EW.
[76] Christof Röhrig,et al. Localization of Sensor Nodes in a Wireless Sensor Network Using the nanoLOC TRX Transceiver , 2009, VTC Spring 2009 - IEEE 69th Vehicular Technology Conference.
[77] Kostas E. Bekris,et al. Indoor Human Navigation Systems: A Survey , 2013, Interact. Comput..
[78] Richard P. Martin,et al. The limits of localization using signal strength: a comparative study , 2004, 2004 First Annual IEEE Communications Society Conference on Sensor and Ad Hoc Communications and Networks, 2004. IEEE SECON 2004..
[79] M. Malajner,et al. Using RSSI value for distance estimation in wireless sensor networks based on ZigBee , 2008, 2008 15th International Conference on Systems, Signals and Image Processing.
[80] Xiaohui Liang,et al. Security and privacy in mobile social networks: challenges and solutions , 2014, IEEE Wireless Communications.
[81] Satoshi Kogure,et al. Indoor and Outdoor Seamless Positioning using Indoor Messaging System and GPS , 2011 .
[82] Winston Khoon Guan Seah,et al. Localization in underwater sensor networks: survey and challenges , 2006, Underwater Networks.
[83] Gordan Jezic,et al. Location-Based Services: A Road Towards Situation Awareness , 2008, Journal of Navigation.
[84] Takahiro Hara,et al. Localization algorithms of Wireless Sensor Networks: a survey , 2011, Telecommunication Systems.