When Data Fly: An Open Data Trading System in Vehicular Ad Hoc Networks
暂无分享,去创建一个
Wilhelm Stork | Michael Beigl | Ali Sunyaev | Niclas Kannengießer | Markus Lücking | Felix Kretzer | A. Sunyaev | M. Beigl | W. Stork | Niclas Kannengießer | M. Lücking | Felix Kretzer
[1] M. Monica Bhavani,et al. Smart city routing using GIS & VANET system , 2020 .
[2] Roderval Marcelino,et al. Iota Tangle: A cryptocurrency to communicate Internet-of-Things data , 2020, Future Gener. Comput. Syst..
[3] Sylvain Kubler,et al. Enhanced Lightning Network (off-chain)-based micropayment in IoT ecosystems , 2020, Future Gener. Comput. Syst..
[4] Wilhelm Stork,et al. The Merits of a Decentralized Pollution-Monitoring System Based on Distributed Ledger Technology , 2020, IEEE Access.
[5] Samiha Ayed,et al. Smart Contract-Based Access Control for the Vehicular Networks , 2020, 2020 International Conference on Software, Telecommunications and Computer Networks (SoftCOM).
[6] Felix Beierle,et al. Distributed-Ledger-based Authentication with Decentralized Identifiers and Verifiable Credentials , 2020, 2020 2nd Conference on Blockchain Research & Applications for Innovative Networks and Services (BRAINS).
[7] Nadeem Javaid,et al. Efficient Data Trading and Storage in Internet of Vehicles using Consortium Blockchain , 2020, 2020 International Wireless Communications and Mobile Computing (IWCMC).
[8] Vikas Hassija,et al. A Framework for Secure Vehicular Network using Advanced Blockchain , 2020, 2020 International Wireless Communications and Mobile Computing (IWCMC).
[9] A. Sunyaev,et al. Trade-offs between Distributed Ledger Technology Characteristics , 2020, ACM Comput. Surv..
[10] Rojeena Bajracharya,et al. A new type of blockchain for secure message exchange in VANET , 2020, Digit. Commun. Networks.
[11] Kaiping Xue,et al. An Identity Management and Authentication Scheme Based on Redactable Blockchain for Mobile Networks , 2020, IEEE Transactions on Vehicular Technology.
[12] Keon Myung Lee,et al. Blockchain-based reputation management for custom manufacturing service in the peer-to-peer networking environment , 2020, Peer-to-Peer Netw. Appl..
[13] Tianhan Gao,et al. Electronic Payment Schemes Based on Blockchain in VANETs , 2020, IEEE Access.
[14] Wei He,et al. An Efficient Decentralized Key Management Mechanism for VANET With Blockchain , 2020, IEEE Transactions on Vehicular Technology.
[15] Young-Bae Ko,et al. Blockchain-Based Lightweight Trust Management in Mobile Ad-Hoc Networks , 2020, Sensors.
[16] Ruobing Jiang,et al. Wireless Access in Vehicular Environment , 2020, Encyclopedia of Wireless Networks.
[17] Haowen Tan,et al. Secure Authentication and Key Management With Blockchain in VANETs , 2020, IEEE Access.
[18] Wilhelm Stork,et al. An Open Multimodal Mobility Platform Based on Distributed Ledger Technology , 2019, NEW2AN.
[19] Qian Wang,et al. A Blockchain-Based Privacy-Preserving Authentication Scheme for VANETs , 2019, IEEE Transactions on Very Large Scale Integration (VLSI) Systems.
[20] Radu State,et al. Lightning Network: A Comparative Review of Transaction Fees and Data Analysis , 2019, BLOCKCHAIN.
[21] Seungmo Kim,et al. Impacts of Mobility on Performance of Blockchain in VANET , 2019, IEEE Access.
[22] Stefan Dziembowski,et al. Perun: Virtual Payment Hubs over Cryptocurrencies , 2019, 2019 IEEE Symposium on Security and Privacy (SP).
[23] Bhaskar Krishnamachari,et al. MOTIVE: Micropayments for trusted vehicular services , 2019, ArXiv.
[24] Yi Mu,et al. Efficient Micropayment of Cryptocurrency from Blockchains , 2019, Comput. J..
[25] Bhaskar Krishnamachari,et al. Solving the Buyer and Seller’s Dilemma: A Dual-Deposit Escrow Smart Contract for Provably Cheat-Proof Delivery and Payment for a Digital Good without a Trusted Mediator , 2018, 2019 IEEE International Conference on Blockchain and Cryptocurrency (ICBC).
[26] Matthew Wagner,et al. Cyber-Physical Transactions: A Method for Securing VANETs with Blockchains , 2018, 2018 IEEE 23rd Pacific Rim International Symposium on Dependable Computing (PRDC).
[27] Sigrid Schefer-Wenzl,et al. Blockchains for IoT Payments: A Survey , 2018, 2018 IEEE Globecom Workshops (GC Wkshps).
[28] Ricardo Mühlbauer,et al. Bring Your Own Reputation: A Feasible Trust System for Vehicular Ad Hoc Networks , 2018, J. Sens. Actuator Networks.
[29] Christoph Meinel,et al. A Survey on Essential Components of a Self-Sovereign Identity , 2018, Comput. Sci. Rev..
[30] Gang Qu,et al. BARS: A Blockchain-Based Anonymous Reputation System for Trust Management in VANETs , 2018, 2018 17th IEEE International Conference On Trust, Security And Privacy In Computing And Communications/ 12th IEEE International Conference On Big Data Science And Engineering (TrustCom/BigDataSE).
[31] Kyung-Hyune Rhee,et al. A Secure Incentive Scheme for Vehicular Delay Tolerant Networks Using Cryptocurrency , 2018, Secur. Commun. Networks.
[32] Xiangyu Bai,et al. A Research of Vehicle Ad Hoc Network Incentive Mechanism , 2018, 2018 8th International Conference on Electronics Information and Emergency Communication (ICEIEC).
[33] Paolo Missier,et al. Mind my value: a decentralized infrastructure for fair and trusted IoT data trading , 2017, IOT.
[34] Syed Taha Ali,et al. The Nuts and Bolts of Micropayments: A Survey , 2017, ArXiv.
[35] Sunilkumar S. Manvi,et al. A survey on authentication schemes in VANETs for secured communication , 2017, Veh. Commun..
[36] Alejandro Quintero,et al. A flexible testbed architecture for VANET , 2017, Veh. Commun..
[37] B. Fong,et al. Smart Technologies and Vehicle‐to‐X (V2X) Infrastructures for Smart Mobility Cities , 2017 .
[38] Falko Dressler,et al. Poster: Field Testing Vehicular Networks using OpenC2X , 2017, MobiSys.
[39] Edith Condo Neira. Antenna Evaluation for VehicularApplications in Multipath Environment , 2017 .
[40] Αθανάσιος Φίτσιος,et al. Εφαρμογές Συνελικτικών Νευρωνικών Δικτύων με χρήση του Zynq-7000 SoC , 2017 .
[41] Falko Dressler,et al. Demo: OpenC2X — An open source experimental and prototyping platform supporting ETSI ITS-G5 , 2016, 2016 IEEE Vehicular Networking Conference (VNC).
[42] Feng Hao,et al. Towards Bitcoin Payment Networks , 2016, ACISP.
[43] José Santa,et al. The Role of communication and network technologies in vehicular applications , 2016, ArXiv.
[44] Eze C. Joy,et al. Advances in vehicular ad-hoc networks (VANETs): Challenges and road-map for future development , 2016, International Journal of Automation and Computing.
[45] Andreas Festag,et al. Standards for vehicular communication—from IEEE 802.11p to 5G , 2015, e & i Elektrotechnik und Informationstechnik.
[46] HoMAyooN ZAHMATkeSH,et al. A New Method for Urban Travel Rout Planning Based on Air Pollution Sensor Data , 2015 .
[47] Chapter 3 The Role of Communication Technologies in Vehicular Applications , 2015 .
[48] José Santa,et al. Experimental Evaluation of CAM and DENM Messaging Services in Vehicular Communications , 2014 .
[49] Zeeshan Hameed Mir,et al. LTE and IEEE 802.11p for vehicular networking: a performance evaluation , 2014, EURASIP J. Wirel. Commun. Netw..
[50] Sushmita Ruj,et al. A social network approach to trust management in VANETs , 2012, Peer-to-Peer Networking and Applications.
[51] Michael Menth,et al. Analysis of Cooperative Awareness Message rates in VANETs , 2013, 2013 13th International Conference on ITS Telecommunications (ITST).
[52] Qin Li,et al. A privacy-aware reputation-based announcement scheme for VANETs , 2013, 2013 IEEE 5th International Symposium on Wireless Vehicular Communications (WiVeC).
[53] S. Ranjitha Kumari,et al. A Survey on Performance Analysis of DES , AES and RSA Algorithm along with LSB Substitution Technique , 2013 .
[54] Qin Li,et al. A Reputation-Based Announcement Scheme for VANETs , 2012, IEEE Transactions on Vehicular Technology.
[55] Andry Rakotonirainy,et al. Empirical IEEE 802.11p performance evaluation on test tracks , 2012, 2012 IEEE Intelligent Vehicles Symposium.
[56] Ihn-Han Bae,et al. A Misbehavior-Based Reputation Management System for VANETs , 2012 .
[57] Kyung-Kwon Jung,et al. Estimation of Vehicle's CO2 Emission using OBD-II Interface , 2011 .
[58] Amir Qayyum,et al. VANET Architectures and Protocol Stacks: A Survey , 2011, Nets4Cars/Nets4Trains.
[59] Felix Leopoldo,et al. Proof of Work , 2011, Encyclopedia of Cryptography and Security.
[60] Mate Boban,et al. Impact of Vehicles as Obstacles in Vehicular Ad Hoc Networks , 2011, IEEE Journal on Selected Areas in Communications.
[61] Akira Matsumoto,et al. Performance evaluation of IEEE 802.11n devices for vehicular networks , 2009, 2009 IEEE 34th Conference on Local Computer Networks.
[62] Jesse Walker. Chapter 7 – Internet Security , 2014, NSS 2014.
[63] Tim Leinmüller,et al. Degradation of Transmission Range in VANETs caused by Interference , 2009, Prax. Inf.verarb. Kommun..
[64] John S. Baras,et al. On trust models and trust evaluation metrics for ad hoc networks , 2006, IEEE Journal on Selected Areas in Communications.
[65] Nicholas R. Jennings,et al. Certified reputation: how an agent can trust a stranger , 2006, AAMAS '06.
[66] J.P. Hespanha,et al. A new TCP for persistent packet reordering , 2006, IEEE/ACM Transactions on Networking.
[67] Jordi Sabater-Mir,et al. Review on Computational Trust and Reputation Models , 2005, Artificial Intelligence Review.
[68] Danny Dolev,et al. On the security of public key protocols , 1981, 22nd Annual Symposium on Foundations of Computer Science (sfcs 1981).