This paper assesses the vehicle dynamics of a new cargo bike concept developed for euro pallet sized cargo. The cargo bike developed is for last-mile delivery. Different aspects of manoeuvrability and stability are examined using a series of manoeuvres based on tests from the automotive industry combined with bicycle industry regulations. These manoeuvres objectively evaluate and determine the handling capabilities of the cargo bike concept. Those tests can be compared using the results of the benchmark vehicles. The results conclude the new cargo bike has proper vehicle dynamics above the majority of benchmark vehicles but there is still room for improvement.
Verlinghieri, E., Itova, I., Collignon, N. and Aldred, R. (2021) The Promise of Low-Carbon Freight. University of Westminster, London. https://static1.squarespace.com/static/5d30896202a18c0001b49180/t/61091edc3acfda2f4af7d97f/1627987694676/The+Promise+of+Low-Carbon+Freight.pdf
Sheth, M., Butrina, P., Goodchild, A. and McCormack, E. (2019) Measuring Delivery Route Cost Trade-Offs between Electric-Assist Cargo Bicycles and Delivery Trucks in Dense Urban Areas. European Transport Research Review, 11, Article No. 11. https://doi.org/10.1186/s12544-019-0349-5
Wrighton, S. and Reiter, K. (2016) CycleLogistics—Moving Europe Forward! Transportation Research Procedia, 12, 950-958. https://doi.org/10.1016/j.trpro.2016.02.046
Assmann, T. and Behrendt, F. (2017) Determining Optimal Container Heights for Cargobike Crossdocking Schemes in Urban Areas. Proceedings of the 10th International Doctoral Students Workshop on Logistics, Magdeburg, 20-22 June 2017, 6 p. https://www.researchgate.net/publication/317617634
Steinmaßl, S. and Lienkamp, M. (2016) Testing and Evaluation of a New Multitrack Electric Bicycle—A Comparative Study. In: Rebelo, F. and Soares, M., Eds., Advances in Ergonomics in Design, Springer, Cham, 743-755. https://doi.org/10.1007/978-3-319-41983-1_67
Alex (2021) Do E-Bikes Need Special Chains. EbikesHQ. https://ebikeshq.com/do-ebikes-need-special-chains/
Williams, T., Kaul, S. and Dhingra, A. (2015) Influence of Frame Stiffness and Rider Position on Bike Dynamics: Analytical Study. Proceedings of the ASME 2015 International Mechanical Engineering Congress and Exposition, Houston, 13-19 November 2015, V04AT04A033. https://doi.org/10.1115/IMECE2015-50137
Pai, S., Neuberger, B. and Buchholz, M. (2021) Adaptive Model Predictive Stabilization of an Electric Cargo Bike Using a Cargo Load Moment of Inertia Estimator. Automatisierungstechnik, 69, 632-642. https://doi.org/10.1515/auto-2021-0032
Pitskhelauri, S.N. (2020) Results of Mathematical and Simulation Modeling of Tricycle Stability against Overturning on a Slope. Naucno-Tehniceskij Vestnik Branskogo Gosudarstvennogo Universiteta, 6, 418-425.
Rodríguez Licea, M.A., Vazquez Rodríguez, E.A., Perez Pinal, F.J. and Prado Olivares, J. (2018) The Rollover Risk in Delta Tricycles: A New Rollover Index and Its Robust Mitigation by Rear Differential Braking. Mathematical Problems in Engineering, 2018, Article ID: 4972419. https://doi.org/10.1155/2018/4972419
Mamiti, G.I., Pliev, S.K. and Tedeev, V.B. (2015) Stability of a Tricycle with Inclination of the Body. Russian Engineering Research, 35, 733-736. https://doi.org/10.3103/S1068798X15100135
Meijaard, J.P., Papadopoulos, J.M., Ruina, A. and Schwab, A.L. (2013) Linearized Dynamics Equations for the Balance and Steer of a Bicycle: A Benchmark and Review. Russian Journal of Nonlinear Dynamics, 9, 343-376. https://doi.org/10.20537/nd1302010
The European Parliament and the Council of the European Union (2013) On the Approval and Market Surveillance of Two- or Three-Wheel Vehicles and Quadricycles. Regulation (EU) No 168/2013.
ISO (2015) Cycles—Safety Requirements for Bicycles. Part 2: Requirements for City and Trekking, Young Adult Mountain and Racing Bicycles. European Committee for Standardization, ISO 4210-2:2015.
ISO (2021) Passenger Cars—Validation of Vehicle Dynamics Simulation—Lateral Transient Response Test Methods. International Organization for Standardization, ISO 22140:2021.
Wilson, D.G. and Schmidt, T. (2020) Bicycling Science. 4th Edition, MIT Press, Cambridge, MA. https://doi.org/10.7551/mitpress/11660.001.0001
Kooijman, J.D.G. and Schwab, A.L. (2011) A Review on Handling Aspects in Bicycle and Motorcycle Control. Proceedings of the ASME 2011 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, Washington DC, 28-31 August 2011, 597-607. https://doi.org/10.1115/DETC2011-47963
UNECE (2015) Uniform Provisions Concerning the Approval of Vehicles of Categories L1, L2, L3, L4 and L5 with Regard to Braking. Regulation No. 78 of the Economic Commission for Europe of the United Nations (UNECE). Regulation No 78.
Li, L., Li, X.J., Wang, X.Y., Song, J., He, K. and Li, C.F. (2016) Analysis of Downshift’s Improvement to Energy Efficiency of an Electric Vehicle during Regenerative Braking. Applied Energy, 176, 125-137. https://doi.org/10.1016/j.apenergy.2016.05.042
Reference Tables for Physical Setting/Chemistry. 2011 Edition, The University of the State of New York, Albany, NY. http://www.kentchemistry.com/newRT.pdf
Xue, Z.J., Li, C.F., Wang, X.Y., Li, L. and Zhong, Z.H. (2020) Coordinated Control of Steer-by-Wire and Brake-by-Wire for Autonomous Emergency Braking on Split-μ Roads. IET Intelligent Transport Systems, 14, 2122-2132. https://doi.org/10.1049/iet-its.2020.0184
Bulsink, V.E., Doria, A., Van de Belt, D. and Koopman, B. (2015) The Effect of Tyre and Rider Properties on the Stability of a Bicycle. Advances in Mechanical Engineering, 7, Article ID: 168781401562259. https://doi.org/10.1177/1687814015622596