Multimodal Transportation Pricing Alliance Design: Large-Scale Optimization for Rapid Gains
Published Online:23 Jan 2025https://doi.org/10.1287/trsc.2023.0009
References
- (2019) A state aggregation approach for stochastic multiperiod last-mile ride-sharing problems. Transportation Sci. 53(1):148–166.Link, Google Scholar
- (2019) Horizontal cooperation in a multimodal public transport system: The profit allocation problem. Eur. J. Oper. Res. 275(2):659–665.Crossref, Google Scholar
- (2024) Plan your system and price for free: Fast algorithms for multimodal transit operations. Transportation Sci. , ePub ahead of print October 25, https://doi.org/10.1287/trsc.2022.0452.Link, Google Scholar
- (2020) Joint frequency-setting and pricing optimization for multi-modal transit networks at scale. Transportation Sci. 54(3):839–853.Link, Google Scholar
- (2019a) Mechanism design for first-mile ridesharing based on personalized requirements part I: Theoretical analysis in generalized scenarios. Transportation Res. B 120:147–171.Crossref, Google Scholar
- (2019b) Mechanism design for first-mile ridesharing based on personalized requirements part II: Solution algorithm for large-scale problems. Transportation Res. B 120:172–192.Crossref, Google Scholar
- BRIDJ (2023a) Case study: Gawler, Adelaide. Accessed November 1, 2023, assets.website-files.com/622fca46a354c25db553766f/62980240518d8898ac5430f1_BRIDJ_Case_Studies_Adelaide2022_V2.pdf.Google Scholar
- BRIDJ (2023b) Case study: Tower Transit Singapore. Accessed November 1, 2023, assets.website-files.com/622fca46a354c25db553766f/6298015b38300c62cad533ee_BRIDJ_Case_Studies_Singapore2022_V2.pdf.Google Scholar
- BRMPO CTPS (2012) MBTA commuter rail passenger count memorandum. Accessed September 15, 2022, www.ctps.org/data/html/studies/transit/2012_MBTA_Commuter_Rail_Passenger_Counts/MBTA_Commuter_Rail_Passenger_Count_Results.html.Google Scholar
- (2017) Integrated airline scheduling: Considering competition effects and the entry of the high speed rail. Transportation Sci. 51(1):132–154.Link, Google Scholar
- (2018) Surge pricing solves the wild goose chase. Proc. ACM Conf. Econom. Comp. (Association for Computing Machinery, New York), 241–242.Google Scholar
- (2013) A model for estimating the optimal cycle length of demand responsive feeder transit services. Transportation Res. B 51:1–16.Crossref, Google Scholar
- (2018) Pricing for a last-mile transportation system. Transportation Res. B 107:57–69.Crossref, Google Scholar
- (2023) Dual-sourcing of capacity. Preprint, submitted January 12, https://dx.doi.org/10.2139/ssrn.4322824.Google Scholar
- (2017) When friends become competitors: The design of resource exchange alliances. Management Sci. 63(7):2127–2145.Link, Google Scholar
- City of Jersey City, NJ (2021) Jersey City and Via launch first on-demand public bus service in New Jersey. Accessed October 27, 2021, jerseycitynj.gov/cms/one.aspx.Google Scholar
- City of Newton, MA (2021) NewMo. Accessed October 5, 2021, www.newtonma.gov/government/planning/transportation-planning/newmo.Google Scholar
- City of Seattle, WA (2021) Via to transit: Metro-King County. Accessed October 27, 2021, kingcounty.gov/depts/transportation/metro/travel-options/on-demand/via-to-transit.aspx.Google Scholar
- (2007) Horizontal cooperation in transport and logistics: A literature review. Transportation J 46(3):22–39.Crossref, Google Scholar
- (2012) On the design of public infrastructure systems with elastic demand. Transportation Res. B 46:1288–1293.Crossref, Google Scholar
- Dallas Area Rapid Transit (2020) GoLink: Personalized, on-demand, curb-to-curb service when and where you need it: Plano zones. Accessed October 1, 2020, www.dart.org/riding/golinkplano.asp.Google Scholar
- (2023) Mechanism design for mobility-as-a-service platform considering travelers’ strategic behavior and multidimensional requirements. Transportation Res. B 173:1–30.Crossref, Google Scholar
- door2door (2023) Stadtwerke Münster closes the mobility gap with new on-demand bus offer. Accessed November 1, 2023, door2door.io/en/references/reference-loop-munster.Google Scholar
- Federal Transportation Administration (2016) Fiscal year 2016 mobility on demand (mod) sandbox program projects. Accessed November 19, 2020, www.transit.dot.gov/research-innovation/fiscal-year-2016-mobility-demand-mod-sandbox-program-projects.Google Scholar
- (2015) A general attraction model and sales-based linear program for network revenue management under customer choice. Oper. Res. 63(1):212–232.Link, Google Scholar
- (2018) Share of choices: Further evidence of the ride-hailing effect in Metro Boston and Massachusetts. Technical report, Metropolitan Area Planning Council, Boston.Google Scholar
- (2023) Optimizing first-and last-mile public transit services leveraging transportation network companies (TNC). Transportation 50(5):2049–2076.Crossref, Google Scholar
- (2016) A review on cost allocation methods in collaborative transportation. Internat. Transportation Oper. Res. 23(3):371–392.Crossref, Google Scholar
- (2017) Technical memorandum: Fall 2016 monitoring of MBTA bus performance measures. Accessed January 4, 2023, www.ctps.org/data/calendar/htmls/2017/CMP_1221_Fall_2016_MBTA_Bus_Performance_Measures_Memo.html.Google Scholar
- (2018) A survey of dial-a-ride problems: Literature review and recent developments. Transportation Res. B 111:395–421.Crossref, Google Scholar
- (2013) Revenue sharing in airline alliances. Management Sci. 59(5):1177–1195.Google Scholar
- Indianapolis Public Transportation Corporation (2021) Rides for essential workers. Accessed October 27, 2021, www.indygo.net/rides-for-essential-workers/.Google Scholar
- (2016) How Lyft and Uber can improve transit agency budgets. Technical report, The Brookings Institution, Washington, DC.Google Scholar
- (2014) Integration of conventional and flexible bus services with timed transfers. Transportation Res. B 68:76–97.Crossref, Google Scholar
- (2019) Optimal zone sizes and headways for flexible-route bus services. Transportation Res. B 130:67–81.Crossref, Google Scholar
- (2017) An extended demand responsive connector. EURO J. Transportation Logist. 6:25–50.Crossref, Google Scholar
- (2010) Feeder transit services: Choosing between fixed and demand responsive policy. Transportation Res. C 18:770–780.Crossref, Google Scholar
- (2022) Efficient and stable data-sharing in a public transit oligopoly as a coopetitive game. Transportation Res. B 163:64–87.Crossref, Google Scholar
- (2019) A framework to integrate mode choice in the design of mobility-on-demand systems. Transportation Res. C 105:648–665.Crossref, Google Scholar
- (2014) Innovative operating strategies for paratransit services with zoning. Transportation Res. Rec. 2469(1):120–128.Crossref, Google Scholar
- MARTA (2021) MARTAConnect. Accessed October 27, 2021, www.itsmarta.com/marta-connect2.aspx.Google Scholar
- MBTA (2021) The RIDE flex. Accessed August 26, 2021, www.mbta.com/accessibility/the-ride/.Google Scholar
- MBTA (2022) MBTA monthly ridership by mode. Accessed September 15, 2022, mbta-massdot.opendata.arcgis.com/datasets/MassDOT::mbta-monthly-ridership-by-mode.Google Scholar
- MDOT (2019) FOCUS40: The 2040 investment plan for the MBTA. Technical report, MDOT, Boston.Google Scholar
- MDPU (2018) Rideshare in Massachusetts: 2018 data report. Accessed September 15, 2022, tnc.sites.digital.mass.gov/2018/.Google Scholar
- (2010) Piecewise-linear approximations of multidimensional functions. J. Optim. Theory Appl. 145:120–147.Crossref, Google Scholar
- (2012) Bayesian Approach to Global Optimization: Theory and Applications, Mathematics and Its Applications (Springer Netherlands).Google Scholar
- (2017) Typology and literature review for dial-a-ride problems. Ann. Oper. Res. 259:295–325.Crossref, Google Scholar
- (2017) The integrated dial-a-ride problem with timetabled fixed route service. Public Transportation 9:217–241.Crossref, Google Scholar
- (2019) Route-cost-assignment with joint user and operator behavior as a many-to-one stable matching assignment game. Transportation Res. B 124:60–81.Crossref, Google Scholar
- Regional Transportation Commission of Southern Nevada (2021) RTC on-demand pilot program. Accessed August 26, 2021, www.rtcsnv.com/ways-to-travel/paratransit-accessibility/.Google Scholar
- (2018) The new automobility: Lyft, Uber and the future of American cities. Technical report, Schaller Consulting, Brooklyn, NY.Google Scholar
- (2022) Stable allocations for choice-based collaborative price setting. Eur. J. Oper. Res. 302(3):1242–1254.Crossref, Google Scholar
- (2015) Urban mobility scorecard. Technical report, Texas A&M Transportation Institute, Bryan, TX.Google Scholar
- (2022) Partnerships in urban mobility: Incentive mechanisms for improving public transit adoption. Manufacturing Service Oper. Management 24(2):956–971.Link, Google Scholar
- St. Louis Metro (2021) $1 Lyft trips to transit connections. Accessed October 27, 2021, www.metrostlouis.org/lyft/.Google Scholar
- (2018) Enhancing urban mobility: Integrating ride-sharing and public transit. Comput. Oper. Res. 90:12–21.Crossref, Google Scholar
- The Economist (2018) Public transport is in decline in many wealthy cities. Accessed July 22, 2022, www.economist.com/international/2018/06/21/public-transport-is-in-decline-in-many-wealthy-cities.Google Scholar
- Transport for London (2023) Demand responsive bus trials. Accessed November 1, 2023, content.tfl.gov.uk/drb-research-report-july-2021.pdf.Google Scholar
- Transport for Wales (2023) Fflecsi–The experience of demand responsive transport in Wales. Accessed November 1, 2023, www.transportfocus.org.uk/publication/fflecsi-the-experience-of-demand-responsive-transport-in-wales.Google Scholar
- U.S. Census Bureau (2018) Census reporter. Accessed September 28, 2020, censusreporter.org/tables/.Google Scholar
- (2019) Routing and scheduling for a last-mile transportation system. Transportation Sci. 53(1):131–147.Link, Google Scholar
- (2018) Stable matching for dynamic ride-sharing systems. Transportation Sci. 52(4):850–867.Link, Google Scholar
- (2022) Vertiport planning for urban aerial mobility: An adaptive discretization approach. Manufacturing Service Oper. Management 24(6):3215–3235.Link, Google Scholar
- (2023) Quantifying the uneven efficiency benefits of ridesharing market integration. Preprint, submitted February 5, https://arxiv.org/abs/2303.13520.Google Scholar
- (2020) Airline timetable development and fleet assignment incorporating passenger choice. Transportation Sci. 54(1):139–163.Link, Google Scholar
- (2022) Transit planning optimization under ride-hailing competition and traffic congestion. Transportation Sci. 56(3):725–749.Link, Google Scholar
- (2010) Dynamic revenue management in airline alliances. Transportation Sci. 44(1):15–37.Link, Google Scholar
- (2024) Impact of negotiation on subsidy scheme to incentivise the integrated use of metro and ride-hailing services. Internat. J. Logist. Res. App. 27(10):1870–1890.Crossref, Google Scholar

