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Research Article

Modeling activity-based tour shared travel choices, tour-level activity participation and time allocation

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Pages 494-531 | Received 07 Jan 2020, Accepted 19 Dec 2020, Published online: 02 Feb 2021

References

  • Ajrouch, Kristine J., Alysia Y. Blandon, and Toni C. Antonucci. 2005. “Social Networks Among Men and Women: The Effects of Age and Socioeconomic Status.” The Journals of Gerontology Series B: Psychological Sciences and Social Sciences 60 (6): S311–S317.
  • Auld, Joshua. 2011. “Agent-Based Dynamic Activity Planning and Travel Scheduling Model: Data Collection and Model Development.” PhD diss., University of Illinois at Chicago.
  • Auld, Joshua, and Abolfazl Mohammadian. 2009. “Framework for the Development of the Agent-Based Dynamic Activity Planning and Travel Scheduling (ADAPTS) Model.” Transportation Letters 1 (3): 245–255.
  • Bhat, Chandra R. 2005. “A Multiple Discrete–Continuous Extreme Value Model: Formulation and Application to Discretionary Time-use Decisions.” Transportation Research Part B: Methodological 39 (8): 679–707.
  • Bowman, John L., and Moshe E. Ben-Akiva. 2001. “Activity-Based Disaggregate Travel Demand Model System with Activity Schedules.” Transportation Research Part a: Policy and Practice 35 (1): 1–28.
  • Carrasco, Juan Antonio, and Eric J. Miller. 2006. “Exploring the Propensity to Perform Social Activities: A Social Network Approach.” Transportation 33 (5): 463–480.
  • Davis, Maradee A., John M. Neuhaus, Deborah J. Moritz, and Mark R. Segal. 1992. “Living Arrangements and Survival Among Middle-Aged and Older Adults in the NHANES I Epidemiologic Follow-up Study.” American Journal of Public Health 82 (3): 401–406.
  • Ding, Chuan, Yaoyu Lin, and Chao Liu. 2014. “Exploring the Influence of Built Environment on Tour-Based Commuter Mode Choice: A Cross-Classified Multilevel Modeling Approach.” Transportation Research Part D: Transport and Environment 32: 230–238.
  • Dong, Xiaojing, Moshe E. Ben-Akiva, John L. Bowman, and Joan L. Walker. 2006. “Moving from Trip-Based to Activity-Based Measures of Accessibility.” Transportation Research Part A: Policy and Practice 40 (2): 163–180.
  • Eluru, Naveen, Abdul Pinjari, Ram Pendyala, and Chandra Bhat. 2010. “An Econometric Multi-Dimensional Choice Model of Activity-Travel Behavior.” Transportation Letters 2 (4): 217–230.
  • Enam, Annesha, and Karthik C. Konduri. 2017. “Day Pattern Generation System for Jointly Modeling Tours and Stops: Bi-Level Multiple Discrete Continuous Probit Model.” Transportation Research Record 2665 (1): 69–79.
  • Ettema, Dick, Theo Arentze, and Harry Timmermans. 2011. “Social Influences on Household Location, Mobility and Activity Choice in Integrated Micro-Simulation Models.” Transportation Research Part A: Policy and Practice 45 (4): 283–295.
  • Fatmi, Mahmudur Rahman. 2017. “Development of Integrated Urban System Models: Population Life-transitions, Household Location, and Vehicle Transaction Decisions.” PhD diss., Dalhousie University, Halifax, Nova Scotia, Canada.
  • Fatmi, Mahmudur Rahman, and Muhammad Ahsanul Habib. 2018. “Microsimulation of Life-Stage Transitions and Residential Location Transitions Within a Life-Oriented Integrated Urban Modeling System.” Computers, Environment and Urban Systems 69: 87–103.
  • Garikapati, Venu M., Daehyun You, Ram M. Pendyala, Peter S. Vovsha, Vladimir Livshits, and Kyunghwi Jeon. 2014. “Multiple Discrete-Continuous Model of Activity Participation and Time Allocation for Home-Based Work Tours.” Transportation Research Record 2429 (1): 90–98.
  • Glogger, Andrea F., Thomas W. Zängler, and Georg Karg. 2008. “The Impact of Telecommuting on Households’ Travel Behaviour, Expenditures and Emissions.” In Road Pricing, the Economy and the Environment, edited by C. Jensen-Butler, Brigitte Sloth, Morten M. Larsen, Bjarne Madsen, and Otto A. Nielsen, 411–425. Berlin, Heidelberg: Springer.
  • Golob, T. F. 1996. A Model of Household Demand for Activity Participation and Mobility. Berkeley, CA, USA: eScholarship, University of California Transportation Center.
  • Goulias, Konstadinos G., and Kriste M. Henson. 2006. “On Altruists and Egoists in Activity Participation and Travel: who are They and do They Live Together?” Transportation 33 (5): 447–462.
  • Gregory, William. 2014. Who Lives Downtown? Population and Demographic Change in Downtown Halifax, 1951–2011. School of Planning, Dalhousie University.
  • Habib, Muhammad Ahsanul. 2016. Nova Scotia Travel Activity (NovaTRAC) survey: Travel Choices and Behaviour. Halifax: Nova Scotia Department of Energy.
  • Hagerstrand, T. 1970. “What About People in Spatial Science.” Regional Science Association 24: 7–21.
  • Hassan, Mohammad Nurul, Ali Najmi, and Taha Hossein Rashidi. 2017. Recreational Destination Choice Modeling Incorporating Fuzzy Logic in Discrete Choice Modeling. No. 17-06315.
  • Hensher, David A., and William H. Greene. 2001. “The Mixed Logit Model: The State of Practice and Warnings for the Unwary.” Institute of Transport Studies, 1–39.
  • Khan, Nazmul Arefin, Annesha Enam, Muhammad Ahsanul Habib, and Karthik C. Konduri. 2018. Investigation of Tour Participation, Time Allocation, and Mode Choice: An Application of Multiple Discrete-Continuous Extreme Value-Mixed Multinomial Logit Modeling Approach. No. 18-06704. 2018.
  • Lizana, Maximiliano, Juan-Antonio Carrasco, and Alejandro Tudela. 2020. “Studying the Relationship Between Activity Participation, Social Networks, Expenditures and Travel Behavior on Leisure Activities.” Transportation 47 (4): 1765–1786.
  • Lu, Xuedong, and Eric I. Pas. 1999. “Socio-Demographics, Activity Participation and Travel Behavior.” Transportation Research Part A: Policy and Practice 33 (1): 1–18.
  • Miller, Eric J., and Matthew J. Roorda. 2003. “Prototype Model of Household Activity-Travel Scheduling.” Transportation Research Record 1831 (1): 114–121.
  • Mishra, Sabyasachee, Yanli Wang, Xiaoyu Zhu, Rolf Moeckel, and Subrat Mahapatra. 2013. Comparison Between Gravity and Destination Choice Models for Trip Distribution in Maryland. No. 13-3196.
  • Moniruzzaman, Md, Anna Chudyk, Antonio Paez, Meghan Winters, Joanie Sims-Gould, and Heather McKay. 2015. “Travel Behavior of Low Income Older Adults and Implementation of an Accessibility Calculator.” Journal of Transport & Health 2 (2): 257–268.
  • Páez, Antonio, and Darren M. Scott. 2007. “Social Influence on Travel Behavior: A Simulation Example of the Decision to Telecommute.” Environment and Planning A 39 (3): 647–665.
  • Pendyala, Ram M., and Chandra R. Bhat. 2004. “An Exploration of the Relationship Between Timing and Duration of Maintenance Activities.” Transportation 31 (4): 429–456.
  • Petersen, E., and Peter Vovsha. 2006. “Intrahousehold Car-Type Choice for Different Travel Needs.” Transportation Research Record 1985 (1): 207–219.
  • Pinjari, Abdul Rawoof, and Chandra Bhat. 2010. “A Multiple Discrete–Continuous Nested Extreme Value (MDCNEV) Model: Formulation and Application to Non-Worker Activity Time-use and Timing Behavior on Weekdays.” Transportation Research Part B: Methodological 44 (4): 562–583.
  • Pinjari, Abdul Rawoof, and Chandra R. Bhat. 2011. “Activity-Based Travel Demand Analysis.” A Handbook of Transport Economics 10: 213–248.
  • Rasouli, Soora, and Harry Timmermans. 2014. “Activity-Based Models of Travel Demand: Promises, Progress and Prospects.” International Journal of Urban Sciences 18 (1): 31–60.
  • Roth, Nathan, and Jill Grant. 2015. “The Story of a Commercial Street: Growth, Decline, and Gentrification on Gottingen Street, Halifax.” Urban History Review/Revue D’histoire Urbaine 43 (2): 38–53.
  • Sener, Ipek N., Chandra R. Bhat, Rachel Copperman, Sivaramakrishnan Srinivasan, Jessica Y. Guo, Abdul Pinjari, and Naveen Eluru. 2006. Activity-based Travel-Demand Analysis for Metropolitan Areas in Texas: CEMDAP Models, Framework, Software Architecture and Application Results. Madison, WI, USA: Midwest Regional University Transportation Center.
  • Shabanpour, Ramin, Nima Golshani, Sybil Derrible, Abolfazl Mohammadian, and Mohammad Miralinaghi. 2017. “Joint Discrete-Continuous Model of Travel Mode and Departure Time Choices.” Transportation Research Record 2669 (1): 41–51.
  • Shiftan, Yoram. 2008. “The Use of Activity-Based Modeling to Analyze the Effect of Land-Use Policies on Travel Behavior.” The Annals of Regional Science 42 (1): 79–97.
  • Sridhar, Kala Seetharam, and Varadharajan Sridhar. 2003. “The Effect of Telecommuting on Suburbanization: Empirical Evidence.” Journal of Regional Analysis & Policy 33 (1): 1–25.
  • Srinivasan, Sivaramakrishnan, and Chandra R. Bhat. 2005. “Modeling Household Interactions in Daily In-Home and Out-of-Home Maintenance Activity Participation.” Transportation 32 (5): 523–544.
  • Srinivasan, Sumeeta, and Joseph Ferreira. 2002. “Travel Behavior at the Household Level: Understanding Linkages with Residential Choice.” Transportation Research Part D: Transport and Environment 7 (3): 225–242.
  • Vij, Akshay, and Joan L. Walker. 2013. “You Can Lead Travelers to the Bus Stop, But You Can’t Make Them Ride.” In Transportation Research Board 92nd Annual Meeting, no. 13-4609.
  • Vovsha, Peter, Eric Petersen, and Robert Donnelly. 2003. “Explicit Modeling of Joint Travel by Household Members: Statistical Evidence and Applied Approach.” Transportation Research Record 1831 (1): 1–10.
  • Yagi, Sadayuki, and Abolfazl Mohammadian. 2008. “Joint Models of Home-Based Tour Mode and Destination Choices: Applications to a Developing Country.” Transportation Research Record 2076 (1): 29–40.
  • Yamamoto, Toshiyuki, and Ryuichi Kitamura. 1999. “An Analysis of Time Allocation to In-Home and Out-of-Home Discretionary Activities Across Working Days and Non-Working Days.” Transportation 26 (2): 231–250.
  • Yun, Mei-Ping, Zhen-Huan Chen, and Jiang-Yong Liu. 2014. Comparison of Mode Choice Behavior for Work Tours and Non-Work Tours Considering Trip Chain Complexity. No. 14-0610.
  • Zhang, Lei, Feng Xie, and David Levinson. 2009. “Illusion of Motion: Variation in Value of Travel Time Under Different Freeway Driving Conditions.” Transportation Research Record 2135 (1): 34–42.

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