An Overview of Vehicular Communications
Tóm tắt
Từ khóa
Tài liệu tham khảo
Ghosh, R., Pragathi, R., Ullas, S., and Borra, S. (2017, January 15–16). Intelligent transportation systems: A survey. Proceedings of the 2017 International Conference on Circuits, Controls, and Communications (CCUBE), Bangalore, India.
Chowdhury, M., Apon, A., and Dey, K. (2017). Data Infrastructure for Intelligent Transportation Systems. Data Analytics for Intelligent Transportation Systems, Elsevier. Chapter 5.
Alam, M., Ferreira, J., and Fonseca, J. (2016). Introduction to Intelligent Transportation Systems. Intelligent Transportation Systems: Dependable Vehicular Communications for Improved Road Safety, Springer International Publishing.
Soret, 2018, Geolocation-Based Access for Vehicular Communications: Analysis and Optimization via Stochastic Geometry, IEEE Trans. Veh. Technol., 67, 3069, 10.1109/TVT.2017.2775249
Han, 2012, Analytical Study of the IEEE 802.11p MAC Sublayer in Vehicular Networks, IEEE Trans. Intell. Transp. Syst., 13, 873, 10.1109/TITS.2012.2183366
Bazzi, 2018, Enhancing Cooperative Driving in IEEE 802.11 Vehicular Networks Through Full-Duplex Radios, IEEE Trans. Wirel. Commun., 17, 2402, 10.1109/TWC.2018.2794967
Gozalvez, 2017, LTE-V for Sidelink 5G V2X Vehicular Communications: A New 5G Technology for Short-Range Vehicle-to-Everything Communications, IEEE Veh. Technol. Mag., 12, 30, 10.1109/MVT.2017.2752798
Bazzi, 2018, Study of the Impact of PHY and MAC Parameters in 3GPP C-V2V Mode 4, IEEE Access, 6, 71685, 10.1109/ACCESS.2018.2883401
Park, 2018, RA-eV2V: Relaying systems for LTE-V2V communications, J. Commun. Netw., 20, 396, 10.1109/JCN.2018.000055
Bazzi, 2017, On the Performance of IEEE 802.11p and LTE-V2V for the Cooperative Awareness of Connected Vehicles, IEEE Trans. Veh. Technol., 66, 10419, 10.1109/TVT.2017.2750803
Ali, 2018, Performance Analysis of IEEE 802.11p Safety Message Broadcast with and without Relaying at Road Intersection, IEEE Access, 6, 23786, 10.1109/ACCESS.2018.2829897
He, 2018, Enhanced Collision Avoidance for Distributed LTE Vehicle to Vehicle Broadcast Communications, IEEE Commun. Lett., 22, 630, 10.1109/LCOMM.2018.2791399
Bluetooth Special Interest Group (2018, December 29). Bluetooth Core Specification Versions: 4.0; 4.1; 4.2. Available online: https://www.bluetooth.com/specifications/bluetooth-core-specification.
IEEE (2006). IEEE Standard for Information Technology—Telecommunications and Information Exchange between Systems—Local and Metropolitan Area Networks—Specific Requirements Part 15.4: Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications for Low-Rate Wireless Personal Area Networks (WPANs), IEEE. Technical Report.
Iordache, V., Gheorghiu, R.A., Minea, M., and Cormos, A.C. (2017, January 18–20). Field testing of Bluetooth and ZigBee technologies for vehicle-to-infrastructure applications. Proceedings of the 2017 13th International Conference on Advanced Technologies, Systems and Services in Telecommunications (TELSIKS), Nis, Serbia.
Abbasi, I.A., and Shahid Khan, A. (2018). A Review of Vehicle to Vehicle Communication Protocols for VANETs in the Urban Environment. Future Internet, 10.
Demba, A., and Möller, D.P.F. (2018, January 3–5). Vehicle-to-Vehicle Communication Technology. Proceedings of the 2018 IEEE International Conference on Electro/Information Technology (EIT), Rochester, MI, USA.
Silva, C.M., Silva, L.D., Santos, L.A.L., Sarubbi, J.F.M., and Pitsillides, A. (2018). Broadening Understanding on Managing the Communication Infrastructure in Vehicular Networks: Customizing the Coverage Using the Delta Network. Future Internet, 11.
Noh, S., An, K., and Han, W. (2015, January 13–16). Toward highly automated driving by vehicle-to-infrastructure communications. Proceedings of the 2015 15th International Conference on Control, Automation and Systems (ICCAS), Busan, Korea.
Corchero, C., and Sanmarti, M. (2018, January 27–29). Vehicle-to-Everything (V2X): Benefits and Barriers. Proceedings of the 2018 15th International Conference on the European Energy Market (EEM), Lodz, Poland.
Bian, 2018, Toward Secure Crowd Sensing in Vehicle-to-Everything Networks, IEEE Netw., 32, 126, 10.1109/MNET.2017.1700098
Sanjana, T., Fuad, K.A.A., Habib, M.M., and Rumel, A.A. (2017, January 16–18). Automated anti-collision system for automobiles. Proceedings of the 2017 International Conference on Electrical, Computer and Communication Engineering (ECCE), Cox’s Bazar, Bangladesh.
Zhang, X., Zeng, Q., Meng, Q., Xiong, Z., and Qian, W. (2016, January 12–14). Design and realization of a mobile seamless navigation and positioning system based on Bluetooth technology. Proceedings of the 2016 IEEE Chinese Guidance, Navigation and Control Conference (CGNCC), Nanjing, China.
Tijerina, 2016, An Exploratory Study of Driver Response to Reduced System Confidence Notifications in Automated Driving, IEEE Trans. Intell. Veh., 1, 325, 10.1109/TIV.2017.2691158
Liu, 2018, A Distributed Markovian Parking Assist System, IEEE Trans. Intell. Transp. Syst., 99, 1
Arena, 2018, The development of autonomous driving vehicles in tomorrow’s smart cities mobility, AIP Conf. Proc., 2040, 140007, 10.1063/1.5079196
Silva, 2017, A Survey on Infrastructure-Based Vehicular Networks, Mob. Inf. Syst., 2017, 6123868
Festag, 2014, Cooperative intelligent transport systems standards in europe, IEEE Commun. Mag., 52, 166, 10.1109/MCOM.2014.6979970
Masini, B.M., Bazzi, A., and Zanella, A. (2018). A Survey on the Roadmap to Mandate on Board Connectivity and Enable V2V-Based Vehicular Sensor Networks. Sensors, 18.
Sjoberg, 2017, Cooperative Intelligent Transport Systems in Europe: Current Deployment Status and Outlook, IEEE Veh. Technol. Mag., 12, 89, 10.1109/MVT.2017.2670018
Anaya, J.J., Talavera, E., Jimenez, F., Zato, J.G., Gomez, N., and Naranjo, J.E. (2013, January 6–9). GeoNetworking based V2V Mesh Communications over WSN. Proceedings of the 16th International IEEE Conference on Intelligent Transportation Systems (ITSC 2013), The Hague, The Netherlands.
Zhang, E.D.L. (2017, January 26–27). Vehicle Stability Control System of Emergency Brake on Split-Mu Road. Proceedings of the 2017 9th International Conference on Intelligent Human-Machine Systems and Cybernetics (IHMSC), Hangzhou, China.
Tornell, S.M., Patra, S., Calafate, C.T., Cano, J., and Manzoni, P. (2016, January 9–12). A novel On-Board Unit to accelerate the penetration of ITS services. Proceedings of the 2016 13th IEEE Annual Consumer Communications Networking Conference (CCNC), Las Vegas, NV, USA.
Boban, 2016, Exploring the Practical Limits of Cooperative Awareness in Vehicular Communications, IEEE Trans. Veh. Technol., 65, 3904, 10.1109/TVT.2016.2544935
Ali, 2018, Efficient Real-Time Coding-Assisted Heterogeneous Data Access in Vehicular Networks, IEEE Internet Things J., 5, 3499, 10.1109/JIOT.2018.2830315
Ali, 2018, Analysis and Improvement of Reliability Through Coding for Safety Message Broadcasting in Urban Vehicular Networks, IEEE Trans. Veh. Technol., 67, 6774, 10.1109/TVT.2018.2820458
Liu, G., Wang, L., and Zou, S. (2017, January 25–26). A radar-based blind spot detection and warning system for driver assistance. Proceedings of the 2017 IEEE 2nd Advanced Information Technology, Electronic and Automation Control Conference (IAEAC), Chongqing, China.
Cao, 2018, Reliable Integrated ASC and DYC Control of All-Wheel-Independent- Drive Electric Vehicles over CAN Using A Codesign Methodology, IEEE Access, 7, 6047, 10.1109/ACCESS.2018.2886994
Wang, C., Song, C., and Li, J. (2015, January 18–20). Research on Key State Parameters Estimation of Electric Vehicle ESP Based on Multi-sensor. Proceedings of the 2015 Fifth International Conference on Instrumentation and Measurement, Computer, Communication and Control (IMCCC), Qinhuangdao, China.
Lu, Y., Yuan, Y., and Wang, Q. (2018, January 15–20). Forward Vehicle Collision Warning Based on Quick Camera Calibration. Proceedings of the 2018 IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), Calgary, AB, Canada.
Chao, C., and Qin, X. (2016, January 22–23). Research of vehicle automatic emergency braking system evaluation methods. Proceedings of the IET International Conference on Intelligent and Connected Vehicles (ICV 2016), Chongqing, China.
Kusano, 2012, Safety Benefits of Forward Collision Warning, Brake Assist, and Autonomous Braking Systems in Rear-End Collisions, IEEE Trans. Intell. Transp. Syst., 13, 1546, 10.1109/TITS.2012.2191542
Vinuchandran, A.V., and Shanmughasundaram, R. (2017, January 6–7). A real-time lane departure warning and vehicle detection system using monoscopic camera. Proceedings of the 2017 International Conference on Intelligent Computing, Instrumentation and Control Technologies (ICICICT), Kannur, India.
(Coherent Market Insight, 2017). Vehicle-To-Vehicle (V2V) Communication Market, by Connectivity Type, Deployment Type, Applications, End-Use, and Geography—Insights, Size, Share, Opportunity Analysis, and Industry Forecast till 2025, Coherent Market Insight.
Department of Transportation of the United States of America (2018, December 29). Vehicle-To-Vehicle (V2V) Communications for Safety, Available online: https://www.its.dot.gov/research_archives/safety/v2v_comm_plan.htm.
Jurgen, R. (2012). V2V/V2I Communications for Improved Road Safety and Efficiency, SAE.
Rahman, K.A., and Tepe, K.E. (2014, January 8–11). Towards a cross-layer based MAC for smooth V2V and V2I communications for safety applications in DSRC/WAVE based systems. Proceedings of the 2014 IEEE Intelligent Vehicles Symposium Proceedings, Dearborn, MI, USA.
Sepulcre, M., Gozalvez, J., Altintas, O., and Kremo, H. (2015, January 5–7). Context-aware heterogeneous V2I communications. Proceedings of the 2015 7th International Workshop on Reliable Networks Design and Modeling (RNDM), Munich, Germany.
Department of Transportation of the United States of America (2018, December 29). Vehicle-To-Infrastructure (V2I) Resources, Available online: https://www.its.dot.gov/v2i/index.htm.
Mahjoub, 2017, Implementation and Evaluation of a Cooperative Vehicle-to-Pedestrian Safety Application, IEEE Intell. Transp. Syst. Mag., 9, 62, 10.1109/MITS.2017.2743201
Wu, 2018, Computational Intelligence Inspired Data Delivery for Vehicle-to- Roadside Communications, IEEE Trans. Veh. Technol., 67, 12038, 10.1109/TVT.2018.2871606
Jomaa, 2017, A Comparative Study between Vehicle Activated Signs and Speed Indicator Devices, Transp. Res. Procedia, 22, 115, 10.1016/j.trpro.2017.03.017
Endo, M., and Tanaka, K. (2018, January 12–15). Evaluation of Storage Capacity of Electric Vehicles for Vehicle to Grid Considering Driver’s Perspective. Proceedings of the 2018 IEEE International Conference on Environment and Electrical Engineering and 2018 IEEE Industrial and Commercial Power Systems Europe (EEEIC/I CPS Europe), Palermo, Italy.
World Health Organization (2015). Global Status Report on Road Safety, World Health Organization.
Matsumoto, S., Ohhigashi, N., and Hasuike, T. (2016, January 10–14). Developing a Transportation Support System for Vulnerable Road Users in Local Community. Proceedings of the 2016 5th IIAI International Congress on Advanced Applied Informatics (IIAI-AAI), Kumamoto, Japan.
Pau, 2018, Smart Pedestrian Crossing Management at Traffic Light Junctions through a Fuzzy-Based Approach, Future Internet, 10, 15, 10.3390/fi10020015
Oliveira, 2016, SNVC: Social networks for vehicular certification, Comput. Netw., 111, 129, 10.1016/j.comnet.2016.08.030
Kuo, Y., Fu, C., Tsai, C., Lin, C., and Chang, G. (2016, January 4–6). Pedestrian Collision Warning of Advanced Driver Assistance Systems. Proceedings of the 2016 International Symposium on Computer, Consumer and Control (IS3C), Xi’an, China.
Jung, H., Choi, M., Soon, K., and Jung, W.Y. (2018, January 12–14). End-to-end pedestrian collision warning system based on a convolutional neural network with semantic segmentation. Proceedings of the 2018 IEEE International Conference on Consumer Electronics (ICCE), Las Vegas, NV, USA.
Dhondge, K., Song, S., Choi, B., and Park, H. (2014, January 18–21). WiFiHonk: Smartphone-Based Beacon Stuffed WiFi Car2X-Communication System for Vulnerable Road User Safety. Proceedings of the 2014 IEEE 79th Vehicular Technology Conference (VTC Spring), Seoul, Korea.
Fire Angel (2018, December 29). Wi-Safe Connect. Available online: https://www.wi-safeconnect.com/uk/.
Lee, J.H., Park, M., and Shah, S.C. (2017, January 11–14). Wi-Fi direct based mobile ad hoc network. Proceedings of the 2017 2nd International Conference on Computer and Communication Systems (ICCCS), Krakow, Poland.
Kinkade, S., Naughton, C., Pines, S., and Eagles, R. (2018, December 29). Honda Demonstrates Advanced Vehicle-To-Pedestrian and Vehicle-To-Motorcycle Safety Technologies. Available online: https://www.prnewswire.com/news-releases/honda-demonstrates-advanced-vehicle-to-pedestrian-and-vehicle-to-motorcycle-safetytechnologies-221495031.html.
Nguyen, H., Noor-A-Rahim, M., Liu, Z., Jamaludin, D., and Guan, Y.L. (2018). A Semi-Empirical Performance Study of Two-Hop DSRC Message Relaying at Road Intersections. Information, 9.
General Motors (2018, December 29). GM Developing Wireless Pedestrian Detection Technology. Available online: https://media.gm.com/media/us/en/gm/home.detail.html/content/Pages/news/us/en/2012/Jul/0726_pedestrian.html.
Mare, 2016, Visible Light Communication Applied to Intelligent Transport Systems: An Overview, IEEE Lat. Am. Trans., 14, 3199, 10.1109/TLA.2016.7587621
Cailean, 2017, Current Challenges for Visible Light Communications Usage in Vehicle Applications: A Survey, IEEE Commun. Surv. Tutor., 19, 2681, 10.1109/COMST.2017.2706940
Yamazato, 2014, Image-sensor-based visible light communication for automotive applications, IEEE Commun. Mag., 52, 88, 10.1109/MCOM.2014.6852088
Bazzi, 2016, Visible light communications as a complementary technology for the internet of vehicles, Comput. Commun., 93, 39, 10.1016/j.comcom.2016.07.004
Anayor, C., Gao, W., and Odekunle, A. (2018, January 19–22). Cooperative Adaptive Cruise Control of A Mixture of Human-driven and Autonomous Vehicles. Proceedings of the IEEE SoutheastCon 2018, St. Petersburg, FL, USA.
Rezwan, M.S., Islam, M.A., Islam, M.M., and Hasan, M.R. (2018, January 6–7). Vehicle Breaking Support System. Proceedings of the 2018 3rd International Conference for Convergence in Technology (I2CT), Pune, India.
Asuzu, P., and Thompson, C. (2018, January 23–27). Road condition identification from millimeter-wave radar backscatter measurements. Proceedings of the 2018 IEEE Radar Conference (RadarConf18), Oklahoma City, OK, USA.
Yoshioka, M., Suganuma, N., Yoneda, K., and Aldibaja, M. (2017, January 24–26). Real-time object classification for autonomous vehicle using LIDAR. Proceedings of the 2017 International Conference on Intelligent Informatics and Biomedical Sciences (ICIIBMS), Okinawa, Japan.
Bronzi, W., Derrmann, T., Castignani, G., and Engel, T. (2016, January 8–10). Towards characterizing Bluetooth discovery in a vehicular context. Proceedings of the 2016 IEEE Vehicular Networking Conference (VNC), Columbus, OH, USA.
Collotta, 2018, Bluetooth 5: A Concrete Step Forward toward the IoT, IEEE Commun. Mag., 56, 125, 10.1109/MCOM.2018.1700053
