박사

Secure vehicle communication using vehicular secrecy capacity

안나영 2020년
논문상세정보
' Secure vehicle communication using vehicular secrecy capacity' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Autonomous Driving
  • Secrecy Capacity
  • Vehicle Speed
  • Vehicular Secrecy Parameter
  • physical layer security
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
118 0

0.0%

' Secure vehicle communication using vehicular secrecy capacity' 의 참고문헌

  • ¡°Vehiclelocalization-based and DSRC-based autonomous vehicle rear-endCollision avoidanceConcerning measurement uncertainties , ¡± IEEJ Transactions on Electrical and Electronic Engineering
  • ¡°VehicleCommunication Using SecrecyCapacity
    vol 881Pp.158-172 [2019]
  • ¡°VehicleCollision Prediction under Reduced VisibilityConditions¡±
    [2018]
  • ¡°V2XCommunication for ITS from IEEE 802.11p Towards 5G
    Volume 1 , Number 2
  • ¡°TheCapacity analysis in the secureCooperativeCommunication system
    19 ( 6 ) :863 ? 869 [2017]
  • ¡°Standards for vehicularCommunication ? from IEEE 802.11p to 5G , ¡± e i Elektrotechnik und Informationstechnik
    Volume 132 , Issue 7 , pp 409 ? 416
  • ¡°Security-Aware and PrivacyPreserving D2DCommunications in 5G
    [2017]
  • ¡°Security-Aware Device-to-DeviceCommunications forCellular Networks
    [2016]
  • ¡°SecureCommunications With Asymptotically GaussianCompressed Encryption
    VOL . 25 , NO . 1 ,
  • ¡°Secure Transmissions viaCompressive Sensing in Multicarrier Systems
  • ¡°Secrecy Outage Analysis for Downlink Transmissions in the Presence of Randomly Located Eavesdroppers ,
    VOL . 12 , NO . 5
  • ¡°Physical Layer Security Key Generation for Fiber Optic and Inter-Vehicular OpticalCommunication Link¡± 2018
  • ¡°Performance analysis ofClustering for messageClassification andCongestionControl in DSRC/WAVE-based vehicular ad-hoc networks
    Vol . 4 , No . 1 , [2019]
  • ¡°On Unbounded Path-Loss Models : Effects of Singularity on Wireless Network Performance
    VOL . 27 , NO . 7 ,
  • ¡°Network-levelComparison of various ForwardCollision Warning algorithms , ¡± SIMULATION
    95 ( 4 ) , 313 ? 325 [2019]
  • ¡°Model-free OptimalControl based IntelligentCruiseControl with Hardware-in-theloop Demonstration
  • ¡°Millimeter wave massive MIMO forCellular vehicle-to-infrastructureCommunicationp. 983 ? 990
    Volume 13 , Issue 6 ,
  • ¡°Improving Physical-Layer Security in WirelessCommunications Using Diversity Techniques
    [2015]
  • ¡°Hybrid secure beamforming and vehicle selection using hierarchical agglomerativeClustering forC-RAN-based vehicle-to-infrastructureCommunications in vehicularCyber-physical systems ,
    [2016]
  • ¡°Evaluating the Efficiency of Physical andCryptographic Security Solutions for Quantum Immune IoT
    2.5 [2018]
  • ¡°Emerging technologies and researchChallenges for intelligent transportation systems : 5G , HetNets , and SDN¡±
    [2017]
  • ¡°Development of a rear-endCollision avoidance system with automatic brakeControl
    [1994]
  • ¡°Design of Active Safety Warning System for HazardousChemical Transportation Vehicle , ¡± Information Technology and Intelligent Transportation System
    pp . 11-21 [2017]
  • ¡°Cooperative Beamforming Design for Physical-Layer Security of Multi-Hop MIMOCommunications¡±
    [2015]
  • ¡°Communicating Awareness and Intent in Autonomous VehiclePedestrian Interaction , ¡± In Proceedings of the 2018CHIConference on Human Factors inComputing Systems
    [2018]
  • ¡°Collision avoidance timing analysis of DSRC-based vehicles
    Volume 42 , Issue 1 ,
  • ¡°Clustering-based reliable low-latency routing scheme using ACO method for vehicular networks
    [2018]
  • ¡°Anger and highly automated driving in urban areas : The role of time pressure
    Volume 64 ,
  • ¡°An Empirical study on MAC layer in IEEE 802.11p/WAVE based Vehicular Ad hoc Networks
    [2018]
  • ¡°A novelContext-aware variable interval MAC protocol to enhance eventdriven message delivery in IEEE 802.11p/WAVE vehicular networks
    [2015]
  • ¡°A Survey onCompressed Sensing in Vehicular Infotainment Systems ,
    VOL . 19 , NO . 4 , FOURTH QUARTER [2017]
  • ¡°A SecurityCredential Management System for V2VCommunications
    [2013]
  • ¡°A Lower Bound on SecrecyCapacity for MIMO WiretapChannel Aided by aCooperative Jammer WithChannel Estimation Error
    Volume 5 , [2017]
  • ¡° VehicularCommunications for 5GCooperative Small-Cell Networks ,
    VOL . 65 , NO . 10 ,
  • ¡° Understanding autonomous vehicles : A systematic literature review onCapability , impact , planning and policy , ¡± Journal of Transport and Land Use
    12 ( 1 ) , pp . 45-72 [2019]
  • ¡° The Meta Distribution of the Secrecy Rate in the Presence of Randomly Located Eavesdroppers
    Volume : PP , Issue : 99 ) [2018]
  • ¡° Survey and Perspectives of Vehicular Wi-Fi versus SidelinkCellular-V2X in the 5G Era ,
    11 , 122 . [2019]
  • ¡° SecureCommunication Over FadingChannels
    VOL . 54 , NO . 6
  • ¡° Secure Data Dissemination for Intelligent Transportation Systems , ¡± in Secure and Trustworthy TransportationCyber-Physical Systems
    pp . 99 ? 140 [2017]
  • ¡° Radio propagation prediction for high frequency bands using hybrid method of ray-tracing and ER model with pointCloud of urban environments
    [2018]
  • ¡° Performance Analysis of VANETs under Rayleigh , Rician , Nakagami and Weibull Fading
    [2017]
  • ¡° ON THE SECURITY AND ROBUSTNESS OF ENCRYPTION VIACOMPRESSED SENSING , ¡± in MilitaryCommunicationsConference ( MILCOM ) , pp.1-7 , Nov. 17-19
    [2008]
  • ¡° NetworkCoding in Device-to-device ( D2D )Communications UnderlayingCellular Networks , ¡± IEEE ICC 2015 ?
    [2015]
  • ¡° HandlingCut-In Vehicles in Strings ofCooperative AdaptiveCruiseControl Vehicles
    Volume 20 ,
  • ¡° Amplify-and-ForwardCompressed Sensing as a Physical-Layer Secrecy Solution in Wireless Sensor Networks ,
    VOL . 9 , NO . 5
  • ¡° A Novel Encryption Method Based onCompressive Sensing ,
    [2013]
  • [99] https://www.sciencedirect.com/topics/engineering/channel-quality
  • [95] Mounir Ghogho and Ananthram Swami, ¡° PHYSICAL-LAYER SECRECY OF MIMO COMMUNICATIONS IN THE PRESENCE OF A POISSON RANDOM FIELD OF EAVESDROPPERS, ¡± Communications Workshops (ICC), 2011 IEEE International Conference on 2011.
  • [94] H. Vincent Poora, and Rafael F. Schaeferb, ¡°Wireless physical layer security,¡± PNAS, January 3, 2017, vol. 114, no. 1, pp. 19?26, 2017.
  • [82] M. Martinez-Diaz, F. Soriguera and I. Perez, "Autonomous driving: a bird's eye view," in IET Intelligent Transport Systems, vol. 13, no. 4, pp. 563-579, 4 2019.
  • [72] M. Bagheri, M. Siekkinen and J. K. Nurminen, "Cellular-based vehicle to pedestrian (V2P) adaptive communication for collision avoidance," 2014 International Conference on Connected Vehicles and Expo (ICCVE), Vienna, 2014, pp. 450-456.
  • [67] Burgert A. L. et al "A Collision Warning Algorithm for Rear-End Collisions " National Highway Traffic Safety Administration Paper Number 98-S2-P-31 1998.
  • [57] https://www.sae.org/news/2019/01/sae-updates-j3016- automated-driving-graphic
  • [55] https://www.sae.org/standards/
  • [51] M. Yousef et al., "Dual-Mode Forward Collision Avoidance Algorithm Based on Vehicle-to-Vehicle (V2V) Communication," 2018 IEEE 61st International Midwest Symposium on Circuits and Systems (MWSCAS), Windsor, ON, Canada, 2018, pp. 739-742.
  • [48] A. Vinel, L. Lan and N. Lyamin, "Vehicle-to-vehicle communication in C-ACC/platooning scenarios," in IEEE Communications Magazine, vol. 53, no. 8, pp. 192-197, August 2015.
  • [45] A. Vinel, N. Lyamin and P. Isachenkov, "Modeling of V2V Communications for C-ITS Safety Applications: A CPS Perspective," in IEEE Communications Letters, vol. 22, no. 8, pp. 1600-1603, Aug. 2018.
  • [44] A. Lautenbach, N. Nowdehi, T. Olovsson and R. Zaragatzky, "A Preliminary Security Assessment of 5G V2X," 2019 IEEE 89th Vehicular Technology Conference (VTC2019-Spring), Kuala Lumpur, Malaysia, 2019, pp. 1-7.
  • [42] S. Kuehlmorgen, P. Schmager, A. Festag and G. Fettweis, "Simulation-Based Evaluation of ETSI ITS-G5 and Cellular-VCS in a Real-World Road Traffic Scenario," 2018 IEEE 88th Vehicular Technology Conference (VTC-Fall), Chicago, IL, USA, 2018, pp. 1-6.
  • [3] F. Saki and S. Sen, ¡°A survey of attacks and detection mechanisms on intelligent transportation systems: VANETs and IoV,¡± Ad Hoc Networks, vol. 61, 2017.
  • [34] N. Vivek, P. Sowjanya, B. Sunny and S. V. Srikanth, "Implementation of IEEE 1609 WAVE/DSRC stack in Linux,2017 IEEE Region 10 Symposium (TENSYMP),Cochin, 2017, pp. 1-5.
    pp . 1-5 . [2017]
  • [30] Shaikh, Umera and Thalkar, Neeta, ¡° Vehicle Communication Systems: Technology and Review, ¡± (December 24, 2018). Proceedings 2019: Conference on Technologies for Future Cities (CTFC).
  • [24] M. G. Sanchez, M. P. Taboas, E. L. Cid, ¡°Millimeter wave radio channel characterization for 5G vehicle-to-vehicle communications,¡± Measurement, Volume 95, 2017, Pages 223-229.
  • [22] F. Jameel, S. Wyne and I. Krikidis, "Secrecy Outage for Wireless Sensor Networks," in IEEE Communications Letters, vol. 21, no. 7, pp. 1565-1568, July 2017.
  • [1] https://www.federalregister.gov/documents/2017/01/12/2016- 31059/federal-motor-vehicle-safety-standards-v2vcommunications
  • [18] T. C. Gulcu and A. Barg, "Achieving Secrecy Capacity of the Wiretap Channel and Broadcast Channel With a Confidential Component," in IEEE Transactions on Information Theory, vol. 63, no. 2, pp. 1311-1324, Feb. 2017.
  • [162] C. Huang, M. Chiang, D. Dao, W. Su, S. Xu and H. Zhou, "V2V Data Offloading for Cellular Network Based on the Software Defined Network (SDN) Inside Mobile Edge Computing (MEC) Architecture," in IEEE Access, vol. 6, pp. 17741-17755, 2018.
  • [161] M. Sookhak F. R. Yu H. Tang "Secure data sharing for vehicular ad-hoc networks using cloud computing" in Ad Hoc Networks Springer pp. 306-315 2017.
  • [15] N. Bhargav, S. L. Cotton and D. E. Simmons, "Secrecy Capacity Analysis Over k-u Fading Channels: Theory and Applications," in IEEE Transactions on Communications, vol. 64, no. 7, pp. 3011- 3024, July 2016.
  • [157] S. Raza S. Wang M. Ahmed M. R. Anwar ¡°A Survey on Vehicular Edge Computing: Architecture Applications,¡± Technical Issues and Future Directions vol. 2019, 2019.
  • [156] D. Xu et al., "A Survey of Opportunistic Offloading," in IEEE Communications Surveys & Tutorials, vol. 20, no. 3, pp. 2198-2236, third quarter 2018.
  • [152]Chia-Hua Lin, Shang-Ho (Lawrence) Tsai and Yuan-Pei Lin, ¡°Secure MIMO Transmission viaCompressive Sensing,¡± IEEE ICC 2015Communication and Information Systems Security Symposium, 2015.
    [2015]
  • [150] Ruslan Dautov and Gill R Tsouri, ¡° Establishing Secure Measurement Matrix For Compressed Sensing Using Wireless Physical Layer Security, ¡± 2013 International Conference on Computing, Networking and Communications, Communications and Information Security Symposium, 2018.
  • [148] https://www.atsc.org/standards/atsc-standards/
  • [147] https://en.wikipedia.org/wiki/Blockchain
  • [142] Awais Hassan, M., Habiba, U., Ghani, U., & Shoaib, M. (2019). A secure message-passing framework for inter-vehicular communication using blockchain. International Journal of Distributed Sensor Networks. https://doi.org/10.1177/1550147719829677
  • [13] A. D. Wyner, "The wire-tap channel," in The Bell System Technical Journal, vol. 54, no. 8, pp. 1355-1387, Oct. 1975.
  • [138] Tanjil Amin, ¡° Performance Analysis of Secondary Users in Heterogeneous Cognitive Radio Network, ¡± Georgia Southern University Digital Commons@Georgia Southern, 2016.
  • [132] S. A. Abbas and A. U. Sheikh, "A geometric theory of Nakagami fading multipath mobile radio channel with physical interpretations," Proceedings of Vehicular Technology Conference VTC, Atlanta, GA, USA, 1996, pp. 637-641 vol.2.
  • [130] A. Afzal and S. A. Hassan, "A stochastic geometry approach for outage analysis of ad hoc SISO networks in Rayleigh fading," 2013 IEEE Global Communications Conference (GLOBECOM), Atlanta, GA, 2013, pp. 336-341.
  • [12] https://en.wikipedia.org/wiki/Information_theory
  • [129] A. M. Mc Donald and J. C. Olivier, "A Comparative Study of Deterministic and Stochastic Sum-of-Sinusoids Models of Rayleigh-Fading Wireless Channels," 2007 IEEE Wireless Communications and Networking Conference, Kowloon, 2007, pp. 2027-2031.
  • [127] S. Qu and S. M. Fleisher, "Double differential MPSK on the fast Rician fading channel," in IEEE Transactions on Vehicular Technology, vol. 41, no. 3, pp. 278-295, Aug. 1992.
  • [126] M. D. Yacoub, "The ¥á-¥ì Distribution: A Physical Fading Model for the Stacy Distribution," in IEEE Transactions on Vehicular Technology, vol. 56, no. 1, pp. 27-34, Jan. 2007.
  • [124] R. Martinek et al., "Modelling of wireless fading channels with RF impairments using virtual instruments," 2016 IEEE 17th Annual Wireless and Microwave Technology Conference (WAMICON), Clearwater, FL, 2016, pp. 1-6.
  • [123] R. Martinek, J. Vanus, P. Bilik, M. Al-Wohaishi, J. Zidek and H. Wen, "The implementation of equalization algorithms for real transmission channels," 2016 IEEE International Instrumentation and Measurement Technology Conference Proceedings, Taipei, 2016, pp. 1-6.
  • [122] X. Dong et al., "A Wavelet-based Power Analysis Attack against Random Delay Countermeasure," 2018 Asian Hardware Oriented Security and Trust Symposium (AsianHOST), Hong Kong, 2018, pp. 19-24.
  • [120] H. Pelletier and X. Charvet, "Improving the DPA attack using Wavelet transform, " September 26-29 2005 Honolulu Hawaii USA, NIST's Physical Security Testing Workshop.
  • [11] A. Yener and S. Ulukus, "Wireless Physical-Layer Security: Lessons Learned From Information Theory," in Proceedings of the IEEE, vol. 103, no. 10, pp. 1814-1825, Oct. 2015.
  • [113] L. Sun P. Ren Q. Du "Distributed source-relay selection scheme for vehicular relaying networks under eavesdropping attacks" EURASIP J. Wireless Commun. Networking no. 1 pp. 1-11 2014.
  • [110] A. Trichili, K. Park, M. Zghal, B. S. Ooi and M. Alouini, "Communicating Using Spatial Mode Multiplexing: Potentials, Challenges and Perspectives," in IEEE Communications Surveys & Tutorials.
  • [109] T. Hong C. Liu M. Kadoch "Machine learning based antenna design for physical layer security in ambient backscatter communications" Wireless Commun. Mobile Comput. vol. 2019 Jan. 2019.
  • [108] A. J. Compston, J. D. Fluhler and H. G. Schantz, "A Fundamental Limit on Antenna Gain for Electrically Small Antennas," 2008 IEEE Sarnoff Symposium, Princeton, NJ, 2008, pp. 1-5.
  • [103] N. Nandan, S. Majhi and H. Wu, "Maximizing Secrecy Capacity of Underlay MIMO-CRN Through Bi-Directional Zero-Forcing Beamforming," in IEEE Transactions on Wireless Communications, vol. 17, no. 8, pp. 5327-5337, Aug. 2018.
  • [102] M. Zareei C. Vargas-Rosales R. Villalpando-Hernandez L. Azpilicueta M. H. Anisi M. H. Rehmani "The effects of an adaptive and distributed transmission power control on the performance of energy harvesting sensor networks" Comput. Netw. vol. 137 pp. 69-82 Jun. 2018.- 162 -
  • W. McLaughlin , ¡° Wireless Information-Theoretic Security
    VOL . 54 , NO . 6
  • Vehicle-to-vehicle communication based on a peer-to-peer network with graph theory and consensus algorithm
    13 ( 2 ) :280 [2019]
  • Vehicle-to-Vehicle Communication for Autonomous Vehicles : Safety and Maneuver Planning
    pp . 1-5 . [2018]
  • Vehicle forward collision warning algorithm based on road friction ,
    vol . 66 , pp . 49-57 [2019]
  • Threshold Secret Sharing Transmission Against Passive Eavesdropping in MIMO Wireless Network
    pp . 634-636 [2018]
  • T. Khattab and M. Guizani , 3D Beamforming With Massive Cylindrical Arrays for Physical Layer Secure Data Transmission
    vol . 23 , no . 5 , pp . 830-833
  • Strategic Anti eavesdropping Game for Physical Layer Security in Wireless Cooperative Networks
    vol . 66 , no . 10 , pp . 9448-9457 , [2017]
  • SpatialBased PredictiveControl and GeometricCorridor Planning for AdaptiveCruiseControlCoupled With Obstacle Avoidance
    vol . 26 , no . 1 , pp . 38-50 [2018]
  • Secure V2VCommunications via Relays : Resource Allocation and Performance Analysis
    vol . 6 , no . 3 , pp . 342-345
  • Secure Blockchain-BasedCommunication Scheme forConnected Vehicles , 2018 EuropeanConference on Networks andCommunications ( EuCNC )
    pp . 347-351 . [2018]
  • SecrecyCapacity of WirelessChannels
    pp . 356-360 . [2006]
  • Secrecy-Driven Resource Management for VehicularComputation Offloading Networks
    vol . 32 , no . 3 , pp . 84-91 , [2018]
  • S. ¡°Secure updates in automotive systems , ¡± pp . 1 ? 71
    [2016]
  • Research on physical layer security technology of multi-antenna system
    pp . 1-4 . [2017]
  • Research on a DSRC-Based RearEndCollision Warning Model
    vol . 15 , no . 3 , pp . 1054-1065
  • Research on Intelligent VehicleCollision Warning Model Based on IntervehicleCommunication
    Volume 2013 , Article ID 208603 , 7 pages , [2013]
  • Quarter-Wave Balun Fed Vivaldi Antenna Pair for V2XCommunication Measurement
    vol . 67 , no . 3 , pp . 1957-1962
  • Performance of Cooperative NOMA System with a Full-Duplex Relay over Nakagami-m Fading Channels
    pp . 130-134 . [2019]
  • Performance Enhanced Predictive Control for Adaptive Cruise Control System Considering Road Elevation Information
    vol . 2 , no . 3 , pp . 150-160 [2017]
  • P. Palacharla and T. Ikeuchi , Cooperative autonomous driving for traffic congestion avoidance through vehicle-to-vehicle communications
    pp . 327-330 . [2017]
  • On the Saturate Throughput of IEEE 802.11 DCF with Capture Effect in Rician Fading Channel ,
    pp . 1-4 . [2008]
  • Novel Beamforming Approach for Secure Communication in UDN to Maximize Secrecy Rate and Fairness Security Assessment ,
    vol . 6 , no . 4 , pp . 5935-5947 , [2019]
  • Networking and Communications in Autonomous Driving : A Survey
    vol . 21 , no . 2 , pp . 1243-1274 , [2019]
  • NOTSA : Novel OBU With Three-Level Security Architecture for Internet of Vehicles ,
    vol . 5 , no . 5 , pp . 3548-3558 , [2018]
  • M. A. Khan and S. D. Ravana , vFog : A Vehicle-Assisted Computing Framework for Delay-Sensitive Applications in Smart Cities
    vol . 7 , pp . 34900- 34909 [2019]
  • Longitudinal Collision Avoidance and Lateral Stability Adaptive Control System Based on MPC of Autonomous Vehicles
    [2019]
  • K. Lenarska and K. Wesolowski , Communication Aspects of a Modified Cooperative Adaptive Cruise Control Algorithm
    pp . 1-11 [2019]
  • Jamming Strategies for Physical Layer Security
    vol . 25 , no . 1 , pp . 148-153
  • J. T. Mathew and B. V. Joe V S , Safety Alert Systems Using Dedicated Short Range Communication for on Road Vehicles
    pp . 216-219 . [2018]
  • J. Dual ? band ( 5G millimeter ? wave and dedicated short ? range communication ) stacked patch antenna for advanced telematics applications
    61 : 1381 ? 1387 [2019]
  • Improved wavelet transform for noise reduction in power analysis attacks , 2016 IEEE International Conference on Signal and Image Processing ( ICSIP )
    pp . 602-606 . [2016]
  • Impacts of Radio Access Protocols on Cooperative Collision Avoidance in Urban Traffic Intersection Scenarios
    pp . 1411-1415 . [2007]
  • Impact of Interference on Secrecy Capacity in a Cognitive Radio Network
    pp . 1-6 . [2011]
  • IEEE 802.11bd & 5G NR V2X : Evolution of Radio Access Technologies for V2X Communications
    vol . 7 , pp . 70169-70184 [2019]
  • IEEE 1609 WAVE and IEC 61850 Standard Communication Based Integrated EV Charging Management in Smart Grids
    vol . 67 , no . 8 , pp . 7690-7697 , [2018]
  • I. J. Rudas and T. Haidegger , ¡°Assessment and Standardization of Autonomous Vehicles
    pp . 185-192 . [2018]
  • H. Rostami and H. R. Ataeian , Highway chain collision avoidance using intervehicular communications ,
    pp . 135- 140 . [2013]
  • G. Bansal and R. W. Heath , Millimeter Wave V2X Communications : Use Cases and Design Considerations of Beam Management
    pp . 183-185 . [2018]
  • Exploiting Opportunistic Scheduling in Uplink Wiretap Networks
    vol . 66 , no . 6 , pp . 4886- 4897
  • Enhancement of Physical Layer Security With Simultaneous Beamforming and Jamming for Visible Light Communication Systems ,
    vol . 14 , no . 10 , pp . 2633-2648 , [2019]
  • E. M. Castanho , M. E. M. Campista , L. H. M. K. Costa and P. C. M. Ribeiro , An error correction algorithm for forward collision warning applications
    pp . 1926-1931 . [2016]
  • Design of Improved Vehicle Collision Warning System Based on V2V Communication , 2018 8th International Conference on Electronics Information and Emergency Communication ( ICEIEC )
    pp . 95-98 . [2018]
  • Data Offloading Techniques Through Vehicular Ad Hoc Networks : A Survey
    vol . 6 , pp . 65250-65259 [2018]
  • D. S. Karas and G. K. Karagiannidis , How Much Does I/Q Imbalance Affect Secrecy Capacity ?
    vol . 20 , no . 7 , pp . 1305-1308 ,
  • Cooperation via Spectrum Sharing for Physical Layer Security in Device-to-Device Communications Underlaying Cellular Networks
    vol . 15 , no . 8 , pp . 5651-5663 , [2016]
  • Collaborative Task Offloading in Vehicular Edge Multi-Access Networks
    vol . 56 , no . 8 , pp . 48-54
  • C. R. Bhat and R. W. Heath , Millimeter-Wave Vehicular Communication to Support Massive Automotive Sensing ,
    vol . 54 , no . 12 , pp . 160-167
  • C-V2X A Communication Technology for Cooperative , Connected and Automated Mobility , Mobile Communication Technologies and Applications
    24 . ITG-Symposium , Osnabrueck , Germanypp . 1-6 . [2019]
  • BlockchainBased Traffic Event Validation and Trust Verification for VANETs
    vol . 7 , pp . 30868-30877 [2019]
  • Blockchain and deep reinforcement learning empowered intelligent 5g beyond
    vol . 33 , no . 3 , pp . 10-17 , [2019]
  • Application of multipath shape factors in Nakagami-m fading channel ,
    pp . 1-4 . [2009]
  • Analysis of Spontaneous Raman and Rayleigh Scatterings in Distributed Fiber Raman Amplification Systems Based on a Random Distribution Model
    vol . 9 , no . 6 , pp . 1-8 ,Art no . 7205008 [2017]
  • An Artificial Noise assisted secrecy-enhancing scheme for Space ?
    Volume 35 [2019]
  • Adaptive DF Relaying Transmission for Security , 2015 IEEE Globecom Workshops ( GC Wkshps )
    pp . 1-6 [2015]
  • Achieving Full Secrecy Rate With Energy-Efficient Transmission Control
    vol . 65 , no . 12 , pp . 5386-5400 , [2017]
  • A. Stankovic T. He Adaptive transmission power control for wireless sensor networks Proc
    pp . 223-236 [2006]
  • A rear-end collision prediction scheme based on deep learning in the Internet of Vehicles J . Parallel Distrib
    vol . 117 pp .
  • A generic correlated Nakagami fading model for wireless communications
    vol . 51 , no . 11 , pp . 1745-1748 , [2003]
  • A comparison of cellular vehicle-to-everything and dedicated short range communication
    pp . 101-108 . [2017]
  • A Survey on Multiple-Antenna Techniques for Physical Layer Security
    vol . 19 , no . 2 , pp . 1027-1053 , [2017]
  • A Privacy-Preserving Trust Model Based on Blockchain for VANETs
    vol . 6 , pp . 45655-45664 [2018]
  • A Model Based on Hierarchical Safety Distance Algorithm for ACC Control Mode Switching Strategy
    [2017]
  • A Forward Collision Probability Index Based on the Driving Behavior
    pp . 1-5 . [2016]
  • 60 GHz circularly-polarized smart antenna system for high throughput two-dimensional scan cognitive radio
    pp . 1-3 . [2013]