There are over 8000 roundabouts in the United States. The current techniques for assessing their performance require field counts to provide inputs to analysis or simulation models. These techniques are labor-intensive and do not scale well. This paper presents a methodology to use connected vehicle (CV) trajectory data to estimate delay and level of service for roundabout approaches by adapting the Purdue Probe Diagram used for traffic signal analytics. By linear referencing vehicle trajectories with a particular movement based on the location and time they exit a roundabout, delay can be calculated. The scalability is demonstrated by applying these techniques to assess over 100 roundabouts in Carmel, IN during the weekday afternoon peak period in July 2021. Over 264,000 trajectories and 3,600,000 GPS points were analyzed to rank over 300 roundabout approaches by delay and summarize in Pareto-sorted graphics and maps. The paper concludes by discussing how these techniques can also be used to analyze queue lengths and origin -destination characteristics at roundabouts. The methodology presented in this study can be used by any agency that wants to assess the performance of all roundabouts in their system.
KeywordsRoundaboutPerformance MeasureConnected VehicleBig Data
FHWA (2000) Roundabouts: An Informational Guide. https://www.fhwa.dot.gov/publications/research/safety/00067/00067.pdf
NCHRP (2010) Roundabouts: An Informational Guide. Washington DC. https://nacto.org/docs/usdg/nchrprpt672.pdf
NCHRP (2007) Roundabouts in the United States. Washington DC. https://nacto.org/docs/usdg/nchrprpt572.pdf
Özuysal, M., Çaliskanelli, S.P., Tanyel, S. and Baran, T. (2009) Capacity Prediction for Traffic Circles: Applicability of ANN. Proceedings of the Institution of Civil Engineers: Transport, 162, 195-206. https://doi.org/10.1680/tran.2009.162.4.195
Department of Transport (1981) TA 23/81 Junctions and Accesses—Determination of Size of Roundabouts and Major/Minor Junctions: Design Manual for Roads and Bridges. London.
Ren, L., Qu, X., Guan, H., Easa, S. and Oh, E. (2016) Evaluation of Roundabout Capacity Models: An Empirical Case Study. Journal of Transportation Engineering, 142, Article ID: 04016066. https://doi.org/10.1061/(ASCE)TE.1943-5436.0000878
Kimber, R.M. (1980) Traffic Capacity of Roundabouts. TRRL Laboratory Report (Transport and Road Research Laboratory, Great Britain), No. 942.
Transportation Research Board (TRB) (2010) Highway Capacity Manual 2010. National Research Council (NRC), Washington DC.
Dahl, J. and Lee, C. (2012) Empirical Estimation of Capacity for Roundabouts Using Adjusted Gap-Acceptance Parameters for Trucks. Transportation Research Record, 2312, 34-45. https://doi.org/10.3141/2312-04
Akçelik, R. (2003) A Roundabout Case Study Comparing Capacity Estimates from Alternative Analytical Models. 2nd Urban Street Symposium, Anaheim, 28-30 July 2003, 1-19.
Akcelik, R. (2007) A Review of Gap-Acceptance Capacity Models. The 29th Conference of Australian Institutes of Transport Research (CAITR 2007), Adelaide, 5-7 December 2007, 1-25.
Xu, F. and Tian, Z.Z. (2008) Driver Behavior and Gap-Acceptance Characteristics at Roundabouts in California. Transportation Research Record, 2071, 117-124. https://doi.org/10.3141/2071-14
Akçelik, R. (1994) Gap Acceptance Modelling by Traffic Signal Analog. Traffic Engineering and Control, 35, 498-506.
Transportation Research Board (TRB) (2000) Highway Capacity Manual. National Research Council (NRC), Washington DC.
Flannery, A., Elefteriadou, L., Koza, P. and Mcfadden, J. (1998) Safety, Delay, and Capacity of Single-Lane Roundabouts in the United States. Transportation Research Record, 1646, 63-70. https://doi.org/10.3141/1646-08
Kyte, M., Dixon, M., List, G., Flannery, A. and Rodegerdts, L. (2005) NCRHP 3-65: Data Collection and Extraction.
Hainen, A., et al. (2013) Roundabout Critical Headway Measurement Based on High-Resolution Event-Based Data from Wireless Magnetometers. Transportation Research Record, 2389, 51-64. https://doi.org/10.3141/2389-06
Hainen, A. (2016) Investigating Mixed Logit Analysis of Critical Headways at a Single-Lane Instrumented Roundabout. Journal of the Transportation Research Forum, 55, 83-96. https://doi.org/10.5399/osu/jtrf.55.3.4391
Day, C., Hainen, A. and Bullock, D. (2013) Best Practices for Roundabouts on State Highways. No. FHWA/IN/JTRP-2013/14. Joint Transportation Research Program, Indiana Department of Transportation and Purdue University, 128. https://doi.org/10.5703/1288284315216
Rescot, R.A. (2011) Feasibility of Bluetooth Data as a Surrogate Analysis Measure of Traffic. University of Kansas, Lawrence.
Rescot, R.A. and Schrock, S.D. (2013) Estimating Turning Movements at Roundabouts Using Bluetooth Technology. Transportation Research Board 92nd Annual Meeting, Washington DC, 13-17 January 2013, 1-24.
Crown, R.B. (1987) Rodel—An Alternative Approach to Roundabout Design. Highways and Transportation, 34, 12-19.
Flannery, A., Kharoufeh, J.P., Gautam, N. and Elefteriadou, L. (2005) Queuing Delay Models for Single-Lane Roundabouts. Civil Engineering and Environmental Science, 22, 133-150. https://doi.org/10.1080/10286600500279949
Hollis, E.M., Semmens, M.C. and Denniss, S.L. (1980) Arcady: A Computer Program to Model Capacities, Queues and Delays at Roundabouts. Wokingham, Berkshire.
Hamim, O.F., Hossain, Md.S. and Hadiuzzaman, Md. (2021) Developing Empirical Model with Graphical Tool to Estimate and Predict Capacity of Rural Highway Roundabouts. International Journal of Transportation Science and Technology, 1-12. https://doi.org/10.1016/j.ijtst.2021.10.002
Praticò, F.G., Vaiana, R. and Gallelli, V. (2012) Transport and Traffic Management by Micro Simulation Models: Operational Use and Performance of Roundabouts. WIT Transactions on the Built Environment, 128, 383-394. https://doi.org/10.2495/UT120331
Ghanim, M., Kharbeche, M., Hannun, J., Hannun, J. and Shamiyeh, K. (2020) Safety and Operational Performance of Signalized Roundabouts: A Case Study in Doha. Procedia Computer Science, 170, 427-433. https://doi.org/10.1016/j.procs.2020.03.085
Martin-Gasulla, M., Garcia, A., Moreno, A.T. and Llorca, C. (2016) Capacity and Operational Improvements of Metering Roundabouts in Spain. Transportation Research Procedia, 15, 295-307. https://doi.org/10.1016/j.trpro.2016.06.025
Valdez, M., Cheu, R.L. and Duran, C. (2011) Operations of Modern Roundabout with Unbalanced Approach Volumes. Transportation Research Record, 2265, 234-243. https://doi.org/10.3141/2265-26
Mohebifard, R. and Hajbabaie, A. (2021) Trajectory Control in Roundabouts with a Mixed Fleet of Automated and Human-Driven Vehicles. Computer-Aided Civil and Infrastructure Engineering, 1-19. https://doi.org/10.1111/mice.12711
Mohebifard, R. and Hajbabaie, A. (2021) Connected Automated Vehicle Control in Single Lane Roundabouts. Transportation Research Part C: Emerging Technologies, 131, 1-22. https://doi.org/10.1016/j.trc.2021.103308
Owais, M., Abulwafa, O. and Abbas, Y.A. (2020) When to Decide to Convert a Roundabout to a Signalized Intersection: Simulation Approach for Case Studies in Jeddah and Al-Madinah. Arabian Journal for Science and Engineering, 45, 7897-7914. https://doi.org/10.1007/s13369-020-04479-6
Giuffrè, T., Trubia, S., Canale, A. and Persaud, B. (2017) Using Microsimulation to Evaluate Safety and Operational Implications of Newer Roundabout Layouts for European Road Networks. Sustainability, 9, 1-13. https://doi.org/10.3390/su9112084
Giuffrè, O., et al. (2018) Evaluation of Roundabout Safety Performance through Surrogate Safety Measures from Microsimulation. Journal of Advanced Transportation, 2018, Article ID: 4915970. https://doi.org/10.1155/2018/4915970
Mohebifard, R. and Hajbabaie, A. (2020) Effects of Automated Vehicles on Traffic Operations at Roundabouts. 2020 IEEE 23rd International Conference on Intelligent Transportation Systems (ITSC), Rhodes, 20-23 September 2020, 1-6. https://doi.org/10.1109/ITSC45102.2020.9294563
Martin-Gasulla, M. and Elefteriadou, L. (2021) Traffic Management with Autonomous and Connected Vehicles at Single-Lane Roundabouts. Transportation Research Part C: Emerging Technologies, 125, Article ID: 102964. https://doi.org/10.1016/j.trc.2021.102964
Bassani, M. and Mussone, L. (2020) Experimental Analysis of Operational Data for Roundabouts through Advanced Image Processing. Journal of Traffic and Transportation Engineering (English Edition), 7, 482-497. https://doi.org/10.1016/j.jtte.2019.01.005
Khan, M.A., et al. (2018) Unmanned Aerial Vehicle-Based Traffic Analysis: A Case Study to Analyze Traffic Streams at Urban Roundabouts. Procedia Computer Science, 130, 636-643. https://doi.org/10.1016/j.procs.2018.04.114
Saldivar-Carranza, E.D., Hunter, M., Li, H., Mathew, J. and Bullock, D.M. (2021) Longitudinal Performance Assessment of Traffic Signal System Impacted by Long-Term Interstate Construction Diversion Using Connected Vehicle Data. Journal of Transportation Technologies, 11, 644-659. https://doi.org/10.4236/jtts.2021.114040
Desai, J., Saldivar-carranza, E., Mathew, J.K., Li, H., Platte, T. and Bullock, D. (2021) Methodology for Applying Connected Vehicle Data to Evaluate Impact of Interstate Construction Work Zone Diversions. 2021 IEEE International Intelligent Transportation Systems Conference (ITSC), Indianapolis, 19-22 September 2021, 4035-4042. https://doi.org/10.1109/ITSC48978.2021.9564873
Saldivar-Carranza, E.D., Li, H. and Bullock, D.M. (2021) Diverging Diamond Interchange Performance Measures Using Connected Vehicle Data. Journal of Transportation Technologies, 11, 628-643. https://doi.org/10.4236/jtts.2021.114039
Saldivar-Carranza, E., Li, H., Mathew, J., Hunter, M., Sturdevant, J. and Bullock, D. (2021) Deriving Operational Traffic Signal Performance Measures from Vehicle Trajectory Data. Transportation Research Record: Journal of the Transportation Research Board, 2675, 1250-1264. https://doi.org/10.1177/03611981211006725
Quiroga, C. and Bullock, D. (1999) Measuring Control Delay at Signalized Intersections. Journal of Transportation Engineering, 125, 271-280. https://doi.org/10.1061/(ASCE)0733-947X(1999)125:4(271)
Saldivar-Carranza, E.D., Mathew, J.K., Li, H., Hunter, M., Platte, T. and Bullock, D.M. (2021) Using Connected Vehicle Data to Evaluate Traffic Signal Performance and Driver Behavior after Changing Left-Turns Phasing. 2021 IEEE International Intelligent Transportation Systems Conference (ITSC), Indianapolis, 19-22 September 2021, 4028-4034. https://doi.org/10.1109/ITSC48978.2021.9564654
Saldivar-Carranza, E.D., Li, H. and Bullock, D.M. (2021) Identifying Vehicle Turning Movements at Intersections from Trajectory Data. 2021 IEEE International Intelligent Transportation Systems Conference (ITSC), Indianapolis, 19-22 September 2021, 4043-4050. https://doi.org/10.1109/ITSC48978.2021.9564781