Privacy‐preserving cooperative localization in vehicular edge computing infrastructure
暂无分享,去创建一个
Rathin Chandra Shit | Deepak Puthal | Biswajeet Pradhan | Paul A. Watters | Kumar Yelamarthi | Suraj Sharma | Graham Morgan | Richard Davison | P. Watters | B. Pradhan | Deepak Puthal | K. Yelamarthi | G. Morgan | Suraj Sharma | Richard Davison | R. Shit
[1] M. Gerla,et al. RFID assisted vehicle positioning in VANETs , 2012, Pervasive and Mobile Computing.
[2] Hui Xiong,et al. Achieving Guaranteed Anonymity in GPS Traces via Uncertainty-Aware Path Cloaking , 2010, IEEE Transactions on Mobile Computing.
[3] Erik G. Ström,et al. Challenges for cooperative ITS: Improving road safety through the integration of wireless communications, control, and positioning , 2015, 2015 International Conference on Computing, Networking and Communications (ICNC).
[4] Karsten Lemmer,et al. Cooperative Maneuver Planning for Cooperative Driving , 2016, IEEE Intelligent Transportation Systems Magazine.
[5] Jinjun Chen,et al. Threats to Networking Cloud and Edge Datacenters in the Internet of Things , 2016, IEEE Cloud Computing.
[6] Depeng Jin,et al. Vehicular Fog Computing: A Viewpoint of Vehicles as the Infrastructures , 2016, IEEE Transactions on Vehicular Technology.
[7] Reinhard German,et al. Strong and affordable location privacy in VANETs: Identity diffusion using time-slots and swapping , 2010, 2010 IEEE Vehicular Networking Conference.
[8] William Whyte,et al. A Security Credential Management System for V2X Communications , 2018, IEEE Transactions on Intelligent Transportation Systems.
[9] Umberto Spagnolini,et al. Consensus-Based Algorithms for Distributed Network-State Estimation and Localization , 2017, IEEE Transactions on Signal and Information Processing over Networks.
[10] Albert Y. Zomaya,et al. Secure and Sustainable Load Balancing of Edge Data Centers in Fog Computing , 2018, IEEE Communications Magazine.
[11] Hassan Artail,et al. A Pseudonym Management System to Achieve Anonymity in Vehicular Ad Hoc Networks , 2016, IEEE Transactions on Dependable and Secure Computing.
[12] John B. Kenney,et al. Dedicated Short-Range Communications (DSRC) Standards in the United States , 2011, Proceedings of the IEEE.
[13] Ronald Raulefs,et al. Bound-based spectrum allocation for cooperative positioning , 2013, Trans. Emerg. Telecommun. Technol..
[14] Xuemin Shen,et al. Air-Ground Integrated Vehicular Network Slicing With Content Pushing and Caching , 2018, IEEE Journal on Selected Areas in Communications.
[15] Fabian de Ponte Muller. Survey on Ranging Sensors and Cooperative Techniques for Relative Positioning of Vehicles. , 2017 .
[16] Otman A. Basir,et al. Intervehicle-Communication-Assisted Localization , 2010, IEEE Transactions on Intelligent Transportation Systems.
[17] Priyadarsi Nanda,et al. An Overview of Security Challenges in Vehicular Ad-Hoc Networks , 2017, 2017 International Conference on Information Technology (ICIT).
[18] Tom Crick,et al. Determining device position through minimal user input , 2017, Human-centric Computing and Information Sciences.
[19] K. B. Letaief,et al. A Survey on Mobile Edge Computing: The Communication Perspective , 2017, IEEE Communications Surveys & Tutorials.
[20] Dominique Gruyer,et al. Vehicular cooperative map matching , 2014, 2014 International Conference on Connected Vehicles and Expo (ICCVE).
[21] Xiaohui Liang,et al. Anonymity Analysis on Social Spot Based Pseudonym Changing for Location Privacy in VANETs , 2011, 2011 IEEE International Conference on Communications (ICC).
[22] Shahrokh Valaee,et al. Vehicular Node Localization Using Received-Signal-Strength Indicator , 2007, IEEE Transactions on Vehicular Technology.
[23] F. Gustafsson,et al. Mobile positioning using wireless networks: possibilities and fundamental limitations based on available wireless network measurements , 2005, IEEE Signal Processing Magazine.
[24] Ashraf Darwish,et al. Cyber physical systems design, methodology, and integration: the current status and future outlook , 2017, Journal of Ambient Intelligence and Humanized Computing.
[25] Kaibin Huang,et al. Wireless Networks for Mobile Edge Computing: Spatial Modeling and Latency Analysis , 2017, IEEE Transactions on Wireless Communications.
[26] Deepak Puthal,et al. Cross-layer architecture for congestion control in Vehicular Ad-hoc Networks , 2013, 2013 International Conference on Connected Vehicles and Expo (ICCVE).
[27] Erwin Riegler,et al. Distributed Localization and Tracking of Mobile Networks Including Noncooperative Objects , 2014, IEEE Transactions on Signal and Information Processing over Networks.
[28] Zhili Sun,et al. A lightweight authentication and privacy-preserving scheme for VANETs using TESLA and Bloom Filters , 2017, ICT Express.
[29] Moe Z. Win,et al. Cooperative Localization in Wireless Networks , 2009, Proceedings of the IEEE.
[30] Kotagiri Ramamohanarao,et al. Preserving Privacy in the Internet of Connected Vehicles , 2020, IEEE Transactions on Intelligent Transportation Systems.
[31] Di Wu,et al. Online War-Driving by Compressive Sensing , 2015, IEEE Transactions on Mobile Computing.
[32] Naoki Suganuma,et al. Localization for autonomous driving on urban road , 2015, 2015 International Conference on Intelligent Informatics and Biomedical Sciences (ICIIBMS).
[33] Levente Buttyán,et al. SLOW: A Practical pseudonym changing scheme for location privacy in VANETs , 2009, 2009 IEEE Vehicular Networking Conference (VNC).
[34] Albert Y. Zomaya,et al. Ubiquitous Localization (UbiLoc): A Survey and Taxonomy on Device Free Localization for Smart World , 2019, IEEE Communications Surveys & Tutorials.
[35] Dirk T. M. Slock,et al. Cooperative localization in GNSS-aided VANETs with accurate IR-UWB range measurements , 2016, 2016 13th Workshop on Positioning, Navigation and Communications (WPNC).
[36] Frank Kargl,et al. Pseudonym Schemes in Vehicular Networks: A Survey , 2015, IEEE Communications Surveys & Tutorials.
[37] Jean-Yves Le Boudec,et al. Quantifying Location Privacy , 2011, 2011 IEEE Symposium on Security and Privacy.
[38] Schahram Dustdar,et al. A Middleware Infrastructure for Utility-Based Provisioning of IoT Cloud Systems , 2016, 2016 IEEE/ACM Symposium on Edge Computing (SEC).
[39] Jianqing Li,et al. Cooperative pseudonym change scheme based on the number of neighbors in VANETs , 2013, J. Netw. Comput. Appl..
[40] Zdenek Becvar,et al. Mobile Edge Computing: A Survey on Architecture and Computation Offloading , 2017, IEEE Communications Surveys & Tutorials.
[41] Deepak Puthal,et al. ADCS: An adaptive data collection scheme in vehicular networks using 3G/LTE , 2014, 2014 International Conference on Connected Vehicles and Expo (ICCVE).
[42] Albert Y. Zomaya,et al. Location of Things (LoT): A Review and Taxonomy of Sensors Localization in IoT Infrastructure , 2018, IEEE Communications Surveys & Tutorials.
[43] Sebastian Thrun,et al. The Graph SLAM Algorithm with Applications to Large-Scale Mapping of Urban Structures , 2006, Int. J. Robotics Res..
[44] Jianqing Li,et al. An analysis of anonymity for cooperative pseudonym change scheme in one-dimensional VANETs , 2012, Proceedings of the 2012 IEEE 16th International Conference on Computer Supported Cooperative Work in Design (CSCWD).
[45] Reinhard German,et al. SlotSwap: strong and affordable location privacy in intelligent transportation systems , 2011, IEEE Communications Magazine.
[46] Li Feng,et al. An Analytical Model for Random Changing Pseudonyms Scheme in VANETs , 2011, 2011 International Conference on Network Computing and Information Security.
[47] Chia-Ho Ou. A roadside unit-based localization scheme for vehicular ad hoc networks , 2014, Int. J. Commun. Syst..