Computer Science ›› 2020, Vol. 47 ›› Issue (2): 213-220.doi: 10.11896/jsjkx.190600001
Special Issue: Block Chain Technology
• Computer Network • Previous Articles Next Articles
ZHOU Chang1,LU Hui-mei1,XIANG Yong2,WU Jing-bang1
CLC Number:
[1]GOUDARZI F,ASGARI H,Al-RAWESHIDY H S,et al.Traffic-Aware VANET Routing for City Environments-A Protocol Based on Ant Colony Optimization[J].IEEE Systems Journal,2019,13(1):571-581. [2]ZHANG K,NI J B,YANG K,et al.Security and Privacy in Smart City Applications:Challenges and Solutions[J].IEEE Communications Magazine,2017,55(1):122-129. [3]HAN M,HUA L,WANG L M,et al.Efficient communication protocol of group negotiation in VANET[J].Journal on Communications,2018,2018(1):34-45. [4]LU Z,QU G,LIU Z.A Survey on Recent Advances in Vehicular Network Security,Trust,and Privacy[J].IEEE Transactions on Intelligent Transportation Systems,2019,20(2):760-776. [5]EMARA K.Safety-aware Location Privacy in VANET:Evaluation and Comparison[J].IEEE Transactions on Vehicular Technology,2017,66(12):10718-10731. [6]YUAN Y,WANG F Y.Blockchain:The State of the Art and Future Trends[J].Acta Automatica Sinica,2016,42(4):481-494. [7]SEAN R,MICHAEL C,MERIEL H,et al.Securing vehicle to vehicle data sharing using blockchain through visible light and acoustic side-channels[J].arXiv:1704.02553,2017. [8]LI L,LIU J Q,CHENG L C,et al.CreditCoin:A Privacy-Preserving Blockchain-Based Incentive Announcement Network for Communications of Smart Vehicles[J].IEEE Transactions on Intelligent Transportation Systems,2018,19(7):2204-2220. [9]LIU H,ZHANG Y,YANG T.Blockchain-Enabled Security in Electric Vehicles Cloud and Edge Computing[J].IEEE Network,2018,32(3):78-83. [10]LIU C,ZHANG G,GUO W,et al.Kalman Prediction-Based Neighbor Discovery and Its Effect on Routing Protocol in Vehicular Ad Hoc Networks[J].IEEE Transactions on Intelligent Transportation Systems,2020,21(1):159-169. [11]PAPER E W.Ethereum:A Next-Generation Smart Contract and Decentralized Application Platform[EB/OL].https://github.com/ethereum/wiki/wiki/White-Paper. [12]HOOFF J V D,KAASHOEK M F,ZELDOVICH N,et al.VerSum:Verifiable Computations over Large Public Logs[C]∥Computer and Communications Security.2014:1304-1316. [13]TSAI W T,BLOWER R,ZHU Y,et al.A System View of Financial Blockchains[C]∥2016 IEEE Symposium on Service-Oriented System Engineering (SOSE).IEEE,2016. [14]RICHARD D,GARETH O,BENJAMIN A.A Temporal Blockchain:A Formal Analysis[C]∥International Conference on Collaboration Technologies and Systems (CTS).Orlando,FL,2016:430-437. [15]NAKAMOTO S.Bitcoin:A peer-to-peer electronic cash system[EB/OL].http://bitcoin.org/bitcoin.pdf. [16]ZHANG J,GAO W Z,ZHANG Y C,et al.Blockchain Based Intelligent Distributed Electrical Energy Systems:Needs,Concepts,Approaches and Vision[J].Acta Automatica Sinica,2017,43(9):1544-1554. [17]ADAM B,MATT C,LUKE D,et al.Enabling Blockchain Innovations with Pegged Sidechains[EB/OL].http://www.blockstream.com/sid-echains.pdf. [18]WOOD D G.POLKADOT:Vision for a Heterogeneous Multi-chain Framework[EB/OL].https://github.com/w3f/polkadot-whitepaper/raw/master/PolkaDotPaper.pdf. [19]RICHARD G E,MARTINE B,SAMUEL P,et al.VANET security surveys[J].Computer Communications,2014,44:1-13. [20]LI G Y,BOUKHATEM L,WU J.Adaptive Quality-of-Service-Based Routing for Vehicular Ad Hoc Networks With Ant Colony Optimization[J].IEEE Transactions on Vehicular Technology,2017,66(4):3249-3264. [21]YU H,ZHANG Z Y,LIU J W.Research on Scaling Technology of Bitcoin Blockchain[J].Journal of Computer Research and Development,2017,54(10):2390-2403. [22]CUNHA F,VILLAS L,BOUKERCHE A,et al.Data communication in VANETs:Protocols,applications and challenges[J].Ad Hoc Networks,2016,44:90-103. [23]TIZIRI O,MAWLOUD O,FATIHA H,et al.Secure and dis-tributed certification system architecture for safety message authentication in VANET[J].Telecommunication Systems,2017,64(4):679-694. [24]ABIR M,TAREK M,BECHIR A,et al.A survey and comparative study of QoS aware broadcasting techniques in VANET[J].Telecommunication Systems,2017,66(2):1-29. [25]BUTERIN V.Chain Interoperability[EB/OL].https://static1.squarespace.com/static/55f73743e4b051cfcc0b02cf/t/5886800ecd0f68de303349b1/1485209617040/Chain+Interoperability.pdf. [26]THOMAS E S S.A Protocol for Interledger Payments[EB/ OL].https://interledger.org/interledger.pdf. [27]JOHNNY D,ANDREW P,JONATHAN W,et al.Strong Federations:An Interoperable Blockchain Solution to Centralized Third Party Risks[EB/OL].https://www.blockstream.com/strong-federations.pdf. [28]ELEMENTS.The Periodic Table of Elements[EB/OL]. https://www.elementsproject.org/elements/. [29]BTC Relay.BTC Relay’s documentation[EB/OL].http://btc-relay.readthedocs.io/en/latest/index.html. [30]JOSEPH P,THADDEUS D.The Bitcoin Lightning Network:Scalable Off-Chain Instant Payments[EB/OL].https://lightning.network/lightning-network-paper.pdf. [31]RAIDEN Network.Raiden Network 0.3.0 Documentation. [EB/OL].http://raiden-network.readthedocs.io/en/stable/. [32]WANCHAIN.Building Super Financial Markets for the New Digital Economy[EB/OL].https://www.wanchain.org/files/Wanchain-Whitepaper-EN-version.pdf. [33]FOUNDATION F.FUSION Whitepaper:An Inclusive Cryptofinance Platform Based on Blockchain[EB/OL].https://docs.wixstatic.com/ugd/76b9ac_6919c49798d84a65bfb2e421cefbfbd3.pdf. [34]FACTOM.Factom Business Processes Secured by Immutable Audit Trails on the Blockchain[EB/OL].https://github.com/FactomProject/FactomDocs/blob/master/Factom_Whitepaper.pdf. [35]ALI M,NELSON J C,SHEA R,et al.Blockstack:a Global naming and storage system secured by blockchains[C]∥Usenix Annual Technical Conference.2016:181-194. [36]CAO Z,KONG J J,LEE U,et al.Proof-of-relevance:Filtering false data via authentic consensus in Vehicle Ad-hoc Networks[C]∥IEEE INFOCOM Workshops 2008.Phoenix,AZ,2008:1-6. [37]GRAY J,LAMPORT L.Consensus on Transaction Commit[J].ACM Transactions on Database Systems,2004,31(1):133-160. [38]LAMPORT L.Fast Paxos[J].Distributed Computing,2006,19(2):79-103. [39]LAMPORT L.Byzantizing Paxos by Refinement[M]∥Distributed Computing.Berlin:Springer,2011:211-224. [40]SUNNY K,SCOTT N.PPCoin:Peer-to-Peer Crypto-Currency with Proof-of-Stake[EB/OL].https://peercoin.net/assets/paper/peercoin-paper.pdf. [41]BITSHARES.Delegated Proof of Stake[EB/OL].https://bitshares.org/technology/delegated-proof-of-stake-consensus/. [42]BENTOV I,LEE C,MIZRAHI A,et al.Proof of Activity:Extending Bitcoin’s Proof of Work via Proof of Stake[J].Measurement and Modeling of Computer Systems,2014,42(3):34-37. [43]LAMPORT L,SHOSTAK R E,PEASE M C,et al.The Byzantine Generals Problem[J].ACM Transactions on Programming Languages and Systems,1982,4(3):382-401. [44]NEO.A Byzantine Fault Tolerance Algorithm for Blockchain. [EB/OL].http://docs.neo.org/enus/basic/consensus/whitepaper.html. [45]ZHU J Y,HUANG C H,FAN X,et al.RSU deployment planning based on approximation algorithm in urban VANET[J].Journal on Communications,2018,39(1):78-89. [46]KIM D,VELASCO Y,WANG W,et al.A New Comprehensive RSU Installation Strategy for Cost-Efficient VANET Deployment[J].IEEE Transactions on Vehicular Technology,2017,66(5):4200-4211. [47]ZHANG B,JIA X,YANG K,et al.Design of Analytical Model and Algorithm for Optimal Roadside AP Placement in VANETs[J].IEEE Transactions on Vehicular Technology,2016,65(9):7708-7718. [48]SAINI M,ALELAIWI A,SADDIK A E.How Close are We to Realizing a Pragmatic VANET Solution? A Meta-Survey[J].Acm Computing Surveys,2015,48(2):1-40. [49]CHEN M,WEN Y,YUE S,et al.A progressive transmission strategy for GIS vector data under the precondition of pixel losslessness[J].Arabian Journal of Geosciences,2015,8(6):3461-3475. [50]DUFILIE A S,GRINSTEIN G G.Feathered Tiles with Uniform Payload Size for Progressive Transmission of Vector Data[C]∥Web and Wireless Geographical Information Systems.2014:19-35. [51]ABDOU W,DARITES B,MBAREK N,et al.An autonomic message dissemination protocol for Vehicular Ad hoc Networks:a density and priority levels aware approach[J].Wireless Networks,2015,21(3):1001-1014. [52]EYAL I,GENCER A E,SIRER E G,et al.Bitcoin-NG:a scalable blockchain protocol[C]∥Proceedings of the 13th Usenix Conference on Networked Systems Design and Implementation.2016:45-59. [53]LI C X,LI P L,ZHOU D,et al.Scaling Nakamoto Consensus to Thousands of Transactions per Second[J].arXiv:1805.03870,2018. [54]VITALIK B.Ethereum Sharding FAQ[EB/OL].https:// github.com/ethereum/wiki/wiki/Sharding-FAQ.2019. [55]ZAMANI M,MOVAHEDI M,RAYKOVA M.RapidChain: Scaling Blockchain via Full Sharding[C]∥2018 ACM SIGSAC Conference.ACM,2018. [56]DORRI A,STEGER M,KANHERE S S,et al.BlockChain:A Distributed Solution to Automotive Security and Privacy[J].IEEE Communications Magazine,2017,55(12):119-125. [57]MUHAMMAD M,SAFDAR G A.Survey on existing authentication issues for cellular-assisted V2X communication[J].Vehicular Communications,2018,12:50-65. |
[1] | WANG Zi-kai, ZHU Jian, ZHANG Bo-jun, HU Kai. Research and Implementation of Parallel Method in Blockchain and Smart Contract [J]. Computer Science, 2022, 49(9): 312-317. |
[2] | ZHOU Hang, JIANG He, ZHAO Yan, XIE Xiang-peng. Study on Optimal Scheduling of Power Blockchain System for Consensus Transaction ofEach Unit [J]. Computer Science, 2022, 49(6A): 771-776. |
[3] | LI Bo, XIANG Hai-yun, ZHANG Yu-xiang, LIAO Hao-de. Application Research of PBFT Optimization Algorithm for Food Traceability Scenarios [J]. Computer Science, 2022, 49(6A): 723-728. |
[4] | FU Li-yu, LU Ge-hao, WU Yi-ming, LUO Ya-ling. Overview of Research and Development of Blockchain Technology [J]. Computer Science, 2022, 49(6A): 447-461. |
[5] | GAO Jian-bo, ZHANG Jia-shuo, LI Qing-shan, CHEN Zhong. RegLang:A Smart Contract Programming Language for Regulation [J]. Computer Science, 2022, 49(6A): 462-468. |
[6] | MAO Dian-hui, HUANG Hui-yu, ZHAO Shuang. Study on Automatic Synthetic News Detection Method Complying with Regulatory Compliance [J]. Computer Science, 2022, 49(6A): 523-530. |
[7] | WANG Si-ming, TAN Bei-hai, YU Rong. Blockchain Sharding and Incentive Mechanism for 6G Dependable Intelligence [J]. Computer Science, 2022, 49(6): 32-38. |
[8] | SUN Hao, MAO Han-yu, ZHANG Yan-feng, YU Ge, XU Shi-cheng, HE Guang-yu. Development and Application of Blockchain Cross-chain Technology [J]. Computer Science, 2022, 49(5): 287-295. |
[9] | YANG Zhen, HUANG Song, ZHENG Chang-you. Study on Crowdsourced Testing Intellectual Property Protection Technology Based on Blockchain and Improved CP-ABE [J]. Computer Science, 2022, 49(5): 325-332. |
[10] | REN Chang, ZHAO Hong, JIANG Hua. Quantum Secured-Byzantine Fault Tolerance Blockchain Consensus Mechanism [J]. Computer Science, 2022, 49(5): 333-340. |
[11] | FENG Liao-liao, DING Yan, LIU Kun-lin, MA Ke-lin, CHANG Jun-sheng. Research Advance on BFT Consensus Algorithms [J]. Computer Science, 2022, 49(4): 329-339. |
[12] | WANG Xin, ZHOU Ze-bao, YU Yun, CHEN Yu-xu, REN Hao-wen, JIANG Yi-bo, SUN Ling-yun. Reliable Incentive Mechanism for Federated Learning of Electric Metering Data [J]. Computer Science, 2022, 49(3): 31-38. |
[13] | ZHANG Ying-li, MA Jia-li, LIU Zi-ang, LIU Xin, ZHOU Rui. Overview of Vulnerability Detection Methods for Ethereum Solidity Smart Contracts [J]. Computer Science, 2022, 49(3): 52-61. |
[14] | YANG Xin-yu, PENG Chang-gen, YANG Hui, DING Hong-fa. Rational PBFT Consensus Algorithm with Evolutionary Game [J]. Computer Science, 2022, 49(3): 360-370. |
[15] | FAN Jia-xing, WANG Zhi-wei. Hierarchical Anonymous Voting Scheme Based on Threshold Ring Signature [J]. Computer Science, 2022, 49(1): 321-327. |
|