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Articles

Intersection capacity adjustments considering different market penetration rates of connected and automated vehicles

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Pages 286-303 | Received 20 Oct 2022, Accepted 15 Feb 2023, Published online: 27 Feb 2023

References

  • Abhishek, Marko, A. A. Boon, and Michel Mandjes. 2019. “Generalized Gap Acceptance Models for Unsignalized Intersections.” Mathematical Methods of Operations Research 89 (3): 385–409. doi:10.1007/s00186-019-00662-0.
  • Adebisi, Adekunle, Yi Guo, Bastian Schroeder, Jiaqi Ma, Burak Cesme, Apoorba Bibeka, and Abby Morgan. 2022. ““Highway Capacity Manual Capacity Adjustment Factor Development for Connected and Automated Traffic at Signalized Intersections.” Journal of Transportation Engineering, Part A: Systems 148 (3): 04021121. doi:10.1061/jtepbs.0000631.
  • Algomaiah, Majeed, and Zhixia Li. 2019. “Utilizing Lane-Based Strategy to Incorporate Mixed Traffic in Interchange Control for Connected and Autonomous Vehicles.” TransportationResearch Record: Journal of the Transportation ResearchBoard 2673 (5): 454–465. doi:10.1177/0361198119839341.
  • Amoozadeh, Mani, Arun Raghuramu, Chen Nee Chuah, Dipak Ghosal, H. Michael Zhang, Jeff Rowe, and Karl Levitt. 2015. “Security Vulnerabilities of Connected Vehicle Streams and Their Impact on Cooperative Driving.” IEEE Communications Magazine 53 (6): 126–132. doi:10.1109/MCOM.2015.7120028.
  • Arnaout, Georges M., and Jean Paul Arnaout. 2014. “Exploring the Effects of Cooperative Adaptive Cruise Control on Highway Traffic Flow Using Microscopic Traffic Simulation.” Transportation Planning and Technology 37 (2): 186–199. doi:10.1080/03081060.2013.870791.
  • Brilon, Werner, and Ning Wu. 2001. “Capacity at Unsignalized Intersections Derived by Conflict Technique.” Transportation Research Record: Journal of the Transportation Research Board 1776 (1): 82–90. doi:10.3141/1776-11.
  • Dahl, Jason, and Chris Lee. 2012. “Empirical Estimation of Capacity for Roundabouts Using Adjusted Gap-Acceptance Parameters for Trucks.” Transportation Research Record: Journal of the Transportation Research Board 2312 (1): 34–45. doi:10.3141/2312-04.
  • Delis, Argiris I., Ioannis K. Nikolos, and Markos Papageorgiou. 2015. “Macroscopic Traffic Flow Modeling with Adaptive Cruise Control: Development and Numerical Solution.” Computers and Mathematics with Applications 70 (8): 1921–1947. doi:10.1016/j.camwa.2015.08.002.
  • Hajbabaie, Ali, Mehrdad Tajalli, and Eleni Bardaka. 2022. “The Effects of Connectivity and Automation on Saturation Headway and Capacity at Signalized Intersections.” http://arxiv.org/abs/2212.09986.
  • HCM. 2016. Highway Capacity Manual. 6th ed. Washington, D.C.: Transportation Research Board.
  • Ioannou, Petros A., and Margareta Stefanovic. 2005. “Evaluation of ACC Vehicles in Mixed Traffic: Lane Change Effects and Sensitivity Analysis.” IEEE Transactions on Intelligent Transportation Systems 6: 79–89. doi:10.1109/TITS.2005.844226.
  • Jerath, Kshitij, and Sean N. Brennan. 2012. “Analytical Prediction of Self-Organized Traffic Jams as a Function of Increasing ACC Penetration.” IEEE Transactions on Intelligent Transportation Systems 13 (4): 1782–1791. doi:10.1109/TITS.2012.2217742.
  • Jiang, Huifu, Jia Hu, Shi An, Meng Wang, and Byungkyu Brian. 2017. “Eco Approaching at an Isolated Signalized Intersection under Partially Connected and Automated Vehicles Environment.” Transportation Research Part C 79: 290–307. doi:10.1016/j.trc.2017.04.001.
  • Jiang, Qinhua, Bastian Schroeder, Jiaqi Ma, Lee Rodegerdts, Burak Cesme, Apoorba Bibeka, and Abby Morgan. 2022. ““Developing Highway Capacity Manual Capacity Adjustment Factors for Connected and Automated Traffic on Roundabouts.” Journal of Transportation Engineering, Part A: Systems 148 (5), American Society of Civil Engineers: 04022014. doi:10.1061/JTEPBS.0000674.
  • Lee, Joyoung, Byungkyu Brian Park, and Ilsoo Yun. 2013. “Cumulative Travel-Time Responsive Real-Time Intersection Control Algorithm in the Connected Vehicle Environment.” Journal of Transportation Engineering 139 (10): 1020–1029. doi:10.1061/(ASCE)TE.1943-5436.0000587.
  • Litman, Todd. 2020. Autonomous Vehicle Implementation Predictions: Implications for Transport Planning. https://www.vtpi.org/avip.pdf.
  • Liu, Hao, Lin Xiao, Xingan David Kan, Steven E. Shladover, Xiao-Yun Lu, Meng Wang, Wouter Schakel, and Bart van Arem. 2018. Using Cooperative Adaptive Cruise Control (CACC) to Form High-Performance Vehicle Streams. California: University of California, Berkeley, PATH Program. https://escholarship.org/uc/item/8pw857gb.
  • Milanés, Vicente, and Steven E. Shladover. 2014. “Modeling Cooperative and Autonomous Adaptive Cruise Control Dynamic Responses Using Experimental Data.” Transportation Research Part C: Emerging Technologies 48: 285–300. doi:10.1016/j.trc.2014.09.001.
  • Milanés, Vicente, and Steven E. Shladover. 2016. “Handling Cut-In Vehicles in Strings of Cooperative Adaptive Cruise Control Vehicles.” Journal of Intelligent Transportation Systems: Technology, Planning, and Operations 20 (2): 178–191. doi:10.1080/15472450.2015.1016023.
  • Milanes, Vicente, Steven E. Shladover, John Spring, Christopher Nowakowski, Hiroshi Kawazoe, and Masahide Nakamura. 2014. “Cooperative Adaptive Cruise Control in Real Traffic Situations.” IEEE Transactions on Intelligent Transportation Systems 15 (1): 296–305. doi:10.1109/TITS.2013.2278494.
  • Mintsis, Evangelos. 2018. “Modelling, Simulation and Assessment of Vehicle Automations and Automated Vehicles’ Driver Behaviour in Mixed Traffic.” TransAID Deliverable D3.1 2018 (723390): 113. https://www.transaid.eu/wp-content/uploads/2017/Deliverables/WP3/TransAID_D3.1_Modelling-simulation-and-assessment-of-vehicle-automations.pdf.
  • Ploeg, Jeroen, Alex F. A. Serrarens, and Geert J. Heijenk. 2011. “Connect & Drive: Design and Evaluation of Cooperative Adaptive Cruise Control for Congestion Reduction.” Journal of Modern Transportation 19 (3): 207–213. doi:10.1007/bf03325760.
  • Porfyri, Kallirroi N., Evangelos Mintsis, and Evangelos Mitsakis. 2018. “Assessment of ACC and CACC Systems Using SUMO.” EPiC Series in Engineering 2: 82–69. doi:10.29007/r343.
  • Sharon, Guni, and Peter Stone. 2017. “A Protocol for Mixed Autonomous and Human-Operated Vehicles at Intersections.” International Conference on Autonomous Agents and Multiagent Systems, 151–167. doi:10.1007/978-3-319-71682-4_10.
  • Shladover, Steven E. 2018. “Connected and Automated Vehicle Systems: Introduction and Overview.” Journal of Intelligent Transportation Systems: Technology, Planning, and Operations 22 (3): 190–200. doi:10.1080/15472450.2017.1336053.
  • Shladover, Steven E., Dongyan Su, and Xiao Yun Lu. 2012. “Impacts of Cooperative Adaptive Cruise Control on Freeway Traffic Flow.” TransportationResearch Record: Journal of the Transportation ResearchBoard 2324 (1): 63–70. doi:10.3141/2324-08.
  • Song, Li, and Wei Fan. 2021. “Traffic Signal Control under Mixed Traffic with Connected and Automated Vehicles: A Transfer-Based Deep Reinforcement Learning Approach.” IEEE Access 9: 145228–145237. doi:10.1109/ACCESS.2021.3123273.
  • Song, Li, Wei Fan, and Pengfei Liu. 2021. “Exploring the Effects of Connected and Automated Vehicles at Fixed and Actuated Signalized Intersections with Different Market Penetration Rates.” Transportation Planning and Technology 44 (6): 577–593. doi:10.1080/03081060.2021.1943129.
  • Treiber, Martin, Ansgar Hennecke, and Dirk Helbing. 2000. “Congested Traffic States in Empirical Observations and Microscopic Simulations.” Physical Review E - Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics 62 (2): 1805–1824. doi:10.1103/PhysRevE.62.1805.
  • Treiber, Martin, and Arne Kesting. 2013. Traffic Flow Dynamics. Traffic Flow Dynamics: Data, Models and Simulation. Berlin, Germany: Springer.
  • Virdi, Navreet, Hanna Grzybowska, S. Travis Waller, and Vinayak Dixit. 2019. “A Safety Assessment of Mixed Fleets with Connected and Autonomous Vehicles Using the Surrogate Safety Assessment Module.” Accident Analysis and Prevention 131: 95–111. doi:10.1016/j.aap.2019.06.001.
  • Xiao, Lin, Meng Wang, and Bart Van Arem. 2017. “Realistic Car-Following Models for Microscopic Simulation of Adaptive and Cooperative Adaptive Cruise Control Vehicles.” TransportationResearch Record: Journal of the Transportation ResearchBoard 2623: 1–9. doi:10.3141/2623-01.
  • Yang, Hao, Hesham Rakha, and Mani Venkat Ala. 2017. “Eco-Cooperative Adaptive Cruise Control at Signalized Intersections Considering Queue Effects.” IEEE Transactions on Intelligent Transportation Systems 18 (6): 1575–1585. doi:10.1109/TITS.2016.2613740.

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