[1] PAPAGEORGIOU M, HABIB H S, MIDDELHAM F. ALINEA local ramp metering: Summary of field results [M]. Transportation Research Record, 1997.
[2] SMARAGDIS E, PAPAGEORGIOU M, KOSMATOPOULOS E. A flow-maximizing adaptive local ramp metering strategy[J]. Transportation Research, Part B (Methodological), 2004, 38(3): 251- 270.
[3] KACHROO P, OZBAY K. Feedback ramp metering in intelligent transportation systems[M]. Blacksburg, Virginia, Springer US, 2003.
[4] GEROLIMINIS N, SRIVASTAVA A, MICHALOPOULOS P G. Experimental observations of capacity drop phenomena in freeway merges with ramp metering control and integration in a first-order model [J]. Transportation Research Part C: Emerging Technologies, 2013, 30(4): 161-177.
[5] BELLETTI F, HAZIZA D, GOMEs G, et al. Expert level control of ramp metering based on multi- task deep reinforcement learning[J]. IEEE Transactions on Intelligent Transportation Systems, 2017, 1(99): 1-10.
[6] CASSIDY M J, RUDJANAKANOKNAD J. Increasing the capacity of an isolated merge by metering its onramp[ J]. Transportation Research Part B: Methodological, 2005, 39(10): 896-913.
[7] ZHANG L, LEVINSON D. Ramp metering and freeway bottleneck capacity[J]. Transportation Research Part A:Policy and Practice, 2010, 44(4): 218-235.
[8] ROSS J V, TAIMRE T, POLLETT P K. Estimation for queues from queue length data[J]. Queueing Systems, 2007, 55(2): 131-138.
[9] PAPAMICHAIL I, PAPAGEORGIOU M. Balancing of queues or waiting times on metered dual- branch onramps[ J]. IEEE Transactions on Intelligent Transportation Systems, 2011, 12(2): 438-452.
[10] CARLSON, CASTELAN R, PAPAMICHAIL, et al. Integrated feedback ramp metering and mainstream traffic flow control on motorways using variable speed limits[J]. Transportation Research Part C, 2014, 46 (2307): 209-221.
[11] 李克强, 戴一凡, 李升波, 等. 智能网联汽车(ICV)技术的发展现状及趋势[J]. 汽车安全与节能学报, 2017, 8 (1):1-14. [LI K Q, DAI Y F, LI S B, et al. State-of-theart and technical trends of intelligent and connected vehicles[J]. Journal of Automotive Safety and Energy, 2017, 8(1): 1-14.]
[12] BANSAL P, KOCKELMAN K M. Forecasting americans' long-term adoption of connected and autonomous vehicle technologies[J]. Transportation Research Part A: Policy and Practice, 2017, 95(1): 49- 63.
[13] RIOS T J, MALIKOPOULOS A A. A survey on the coordination of connected and automated vehicles at intersections and merging at highway on- ramps[J]. IEEE Transactions on Intelligent Transportation Systems, 2017, 18(5): 1066-1077.
[14] YANG K, GULER S I, MENENDEZ M. Isolated intersection control for various levels of vehicle technology: Conventional, connected, and automated vehicles[J]. Transportation Research Part C: Emerging Technologies, 2016, 72 (2016): 109-129.
[15] MALIKOPOULOS A A, CASSANDRAS C G, ZHANG Y J. A decentralized energy- optimal control framework for connected automated vehicles at signal- free intersections[J]. Automatica, 2018, 93 (2018): 244-256.
[16] JIANG H, et al. Eco approaching at an isolated signalized intersection under partially connected and automated vehicles environment[J]. Transportation Research Part C: Emerging Technologies, 2017, 79 (2017): 290-307.
[17] LEE J, BYUNGKYU P. Development and evaluation of a cooperative vehicle intersection control algorithm under the connected vehicles environment[J]. IEEE Transactions on Intelligent Transportation Systems, 2012, 13(2012): 81-90.
[18] TYPALDOS P, PAPAMICHAIL I, PAPAGEORGIOU M. Minimization of fuel consumption for vehicle trajectories, 2018[C]. Washington DC, United States, Transportation Research Board 97th Annual Meeting press, 2018. |