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History of bicycle steer and dynamics equations |
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Delft University of Technology |
This partial survey, of analyses and simulations of rigid-body models of bicycles and motorcycles, had its genesis in the M.Sc. thesis of Hand (1988). Included are several papers which do not contain comparable equations, but which are well known as related to bicycle dynamics. Note that, from distant past to present, much of the key literature has not been peer-reviewed.
Most motorcycle models include tire compliance, which permits precise comparison with rigid-wheel models only if the tire stiffness can be made infinite. So we have largely neglected the motorcycle literature.
Papers marked with a * have equations at least nearly as general as ours and also have equations which we either have verified as at least close to correct or which we believe are likely to be close to correct. Papers marked with a ** are at least as general as ours and we are confident that they agree with ours exactly (but for minor typographical errors).
Although surely there are gaps to be filled and corrections to be made, this survey is more complete than anything available in the open literature.
[If you know the whereabouts of any of these authors or copyright holders, please let us know.]
Adiele, C. 1979 Two wheeled vehicle design. M.Eng. thesis, Sibley School of Mechanical and Aerospace Engineering, Cornell University.
Appell, P.E. 1896 Mecanique Rationnelle, Vol. II, pp.297-302, 6th edn. Paris: Gauthier-Villars.
Åström, K.J., Klein, R.E. & Lennartsson, A. 2005 Bicycle dynamics and control: Adapted bicycles for education and research. IEEE Control Systems Magazine 25(4), 26-47.
Besseling, J. F. 1964 The complete analogy between the matrix equations and the continuous field equations of structural analysis. In International symposium on analogue and digital techniques applied to aeronautics: Proceedings, Presses Académiques Européennes, Bruxelles, pp. 223-242.
Bouasse, H. 1910 Cours de Mechanique, part 2, pp. 620-623. Paris: Ch. Delagrave. (Bou1910pp620-623.pdf)
Bourlet, C. 1899 Étude théorique sur la bicyclette. Bulletin de la Société Mathématique de France, 27 (1899), p. 47-67 (Bourlet1899pp47-67.pdf)
Bourlet, C. 1899 Étude théorique sur la bicyclette. Bulletin de la Société Mathématique de France, 27 (1899), p. 76-96 (Bourlet1899pp76-96.pdf)
Bourlet, C. 1904 Les bicyclettes a retropedalage, Le Genie Civil, 1904, Vol? pp.126-120, pp.141-145.(Bourlet1904.pdf)
Valentine Joseph Boussinesq, 1899, "Apercu sur la thèorie de la bicyclette", Journal de Mathèmatique Pures et appliquèes, Tome Cinquième, pp 117-135. (pdf)
Valentine Joseph Boussinesq, 1899, ``Complèment à une ètude rècente concernant la thèorie de la bicyclette (1): influence, sur l'èquilibre, des mouvements latèraux spontanès du cavalier ", Journal de Mathèmatique Pures et appliquèes, Tome Cinquième, pp 217-232. (pdf)
Valentine Joseph Boussinesq, 1899, "De l'effet produit, sur le mouvement d'inclinaison d'une bicylette en marche, par les dèplacements latèraux que s'imprime le cavalier.", Journal de Mathèmatique Pures et appliquèes, Tome Cinquième, CR, vol 128, pp 766-781. (pdf), and another (859-862), one more (art 11) and still another (art 21).
Bower, G. S. 1915 Steering and stability of single-track vehicles. The Automobile Engineer V, 280-283.
Carvallo, M. E. 1900 Théorie du mouvement du Monocycle et de la Bicyclette. Journal de L'Ecole Polytechnique, Series 2, Part 1, Volume 5, "Cerceau et Monocyle", 1900, pp. 119-188, Part 2, Volume 6, "Théorie de la Bicyclette", 1901, pp. 1-118.(Carvallo1900.pdf)
Collins, R. N. 1963 A mathematical analysis of the stability of two-wheeled vehicles. Ph.D. thesis, Dept. of Mechanical Engineering, University of Wisconsin.[Posted without permission](CollinsRobert1963.pdf)
Cossalter, V. & Lot, R. 2002 A motorcycle multi-body model for real time simulations based on the natural coordinate approach. Vehicle System Dynamics 37(6), 423-447.
Davis, J. A. 1975 Bicycle tire testing – effects of inflation pressure & low coefficient surfaces, Cornell Aero. Lab. Report no. ZN-5431-V-3
Davis, J. A. & R. J. Cassidy 1974 The Effect of Frame Properties on Bicycling Efficiency, Cornell Aero. Lab. Report no. ZN-5431-V-2
Den Hartog, J. P. 1948 Mechanics, article 61. New York and London: McGraw-Hill.
Dikarev, Dikarev and Fufaev, 1981, A correction of the equations in Niemark and Fufaev.(pdf)
Döhring, E. 1953 . Über die Stabilität und die Lenkkräfte von Einspurfahrzeugen. Ph.D. thesis, Technical University Braunschweig, Germany.
Döhring, E. 1954 Die Stabilität von Einspurfahrzeugen. Automobil Technische Zeitschrift 56(3), 68-72. (Doh54.pdf)
Döhring, E. 1955
Stability of single-track vehicles,
(Transl. by J. Lotsof, March 1957
Die Stabilität von Einspurfahrzeugen.
Forschung Ing.-Wes. 21(2), 50-62 (Doh55a.pdf)
) [Posted without permission](Dohring.pdf)
[Posted here with the assumed courtesy (without permission) of CALSPAN.]
Eaton, D. J. 1973 Man-machine dynamics in the stabilization of single-track vehicles. Ph.D. thesis, University of Michigan.[Posted without permission](EatonDavid1973.pdf)
Franke, G., Suhr, W. & Riess, F. 1990 An advanced model of bicycle dynamics. Eur. J. Physics. 11(2), 116-121. (FraSuhRie90.pdf)
Getz, N. H. & Marsden, J. E. 1995 Control for an autonomous bicycle In IEEE Conference on Robotics and Automation. 21-27 May 1995, Nagoya, Japan.
Grammel, R. 1920 Der Kreisel, ch. 15, pp. 183-186. Braunschwieg: Vieweg & Sohn. (Gra1920pp183-186.pdf)
Grammel, R. 1950 Der Kreisel, Vol 2, ch. 3, pp. 53-57. Berlin: Springer Verlag. (Gra1950pp53-57.pdf)
Herfkens, B. D. 1949 De stabiliteit van het rijwiel,
(In Dutch, The stability of the bicycle.)
Report S-98-247-50-10-’49, Instituut voor rijwielontwikkeling, Delft, The
Netherlands.(Herfkens1949.pdf)
Herlihy, D. V. 2004 Bicycle: The history, New Haven, CT: Yale University Press.
Hand, R. S. 1988 Comparisons and stability analysis of linearized equations of motion for a basic bicycle model. M.Sc. thesis, Cornell University. (Han88.pdf)
Jones, D. E. H. 1970 The Stability of the bicycle. Physics Today 23(3), 34-40.
Jonker, J. B. 1988 A finite element dynamic analysis of flexible spatial mechanisms and manipulators. Ph.D. thesis, Delft University of Technology, Delft.
Jonker, J. B. & Meijaard, J. P. 1990 SPACAR-Computer program for dynamic analysis of flexible spatial mechanisms and manipulators. In Multibody Systems Handbook (ed. W. Schiehlen). Berlin: Springer-Verlag, pp. 123-143.
Kane, T. R. 1968 Dynamics. New York: Holt, Rinehart and Winston.
Kane, T. R. 1975 Fundamental kinematic relationships for single-track vehicles. International Journal for Mechanical Sciences 17, 499-504.
Klein, F. & Sommerfeld, A. 1910 Über die Theorie des Kreisels, Ch. IX, Section 8, Stabilität des Fahrrads, pp. 863-884. Leipzig: Teubner.(KleiSom1910V4pp863-884.pdf) Here is an English translation arranged by Jim Papadopoulos (PDF).
Koenen, C. 1983 The dynamics behaviour of a motorcycle when running straight ahead and when cornering. Ph.D. thesis, Delft University of Technology, Delft.
Kunkel, D. T. 1975 Simulation Study of Motorcycle Response to Pavement Grooving, Cornell Aero. Lab. Report no. ZN-5740-V-1.
Kunkel, D. T. 1976 Bicycle dynamics – simulated bicycle / rider system performance in a turning maneuver, Cornell Aero. Lab. Report no. ZN-5921-V-1
Kunkel, D. T. & R. S. Rice 1975 Low speed wobble study of the Harley Davidson Electra Glide FLH-1200 motorcycle, Cornell Aero. Lab. Report no. ZN-5473-V-1
Kunkel, D. T. & Roland, R. D. 1973 A comparative evaluation of the Schwinn Continental and Continental-based Sprint bicycles, Cornell Aero. Lab. Report no. ZN-5361-K,
Lobas, L. G. 1978 Controlled and programmed motion of a bicycle on a plane. Mechanics of solids 13(6), 18. (Transl. by Allerton Press [authors name misspelled into G[sic]obas], Cited in translation as Izv. AN SSSR. "Mekhanika Tverdogo Tela," Vol. 13, No. 6, pp. 22-28, 1978.(Lob78a.pdf))(Lob78b.pdf)
Loicjanskii, L. G. & Lu're, A. G. 1934 Course of Theoretical Mechanics, Vol. 3, ONTI, Moscow, 1934; Vol. 2, 5th edn., GITTL, Moscow, 1955.
Lowell, J & McKell, H. D. 1982 The stability of bicycles. American Journal of Physics 50(12), 1106-1112.
Maddox, J. 1990 Bicycling about to be explained? Nature 346, 2 Aug 1990, pp. 407. (Mad90.pdf)
McCaw, G. T. 1898 On the steering of the bicycle. The Engineer, Dec 9, pp. 557.(McCaw1898.pdf)
Mears, B. C. 1988
Open loop aspects of two wheeled vehicle stability characteristics.
Ph.D. thesis, University of Illinois at Urbana-Champaign, IL.
Meijaard, J. P. 1991 Direct determination of periodic solutions of the dynamical equations of flexible mechanisms and manipulators. International Journal for Numerical Methods in Engineering 32, 1691-1710.
Meijaard, J. P. 2004 Derivation of the linearized equations for an uncontrolled bicycle. Internal report University of Nottingham, UK. (Mei04b.pdf)
Neimark, Ju. I. & Fufaev, N. A. 1972 Dynamics of Nonholonomic Systems. Providence, RI: A.M.S. (Transl. from the Russian edition, Nauka, Moscow, 1967.)
Papadopoulos, J. M. 1987
Bicycle steering dynamics and self-stability:
A summary report on work in progress.
Technical report, Cornell Bicycle Research Project, Cornell
University, pp. 1-23.
(availabe with other related reports at:
http://ruina.tam.cornell.edu/research/).
Pearsall, R. H. 1922 The stability of a bicycle. The Institution of Automobile Engineers, Proceeding Session 1922-23 Part I, Vol. XVII, p 395-404.
Psiaki, M. L. 1979 Bicycle stability: A mathematical and numerical analysis. Undergradute thesis, Physics Dept., Princeton University, NJ.
Rankine, W. J. M. 1869 On the dynamical principles of the motion of velocipedes. The Engineer 28, pp. 79, 129, 153, 175. (Ran1869pp79.pdf, Ran1869pp129.pdf, Ran1869pp153.pdf, Ran1869pp175.pdf, Ran1870pp2.pdf)
Rice, R. S. 1974 Bicycle dynamics – simplified steady state response characteristics and stability indices, Cornell Aero. Lab. Report no. ZN-5431-V-1
Rice, R. S. 1975 Accident avoidance capabilities of motorcycles. In Proceedings International Motorcycle Safety Conference, Dec 16 & 17 , 1975 USDOT, National Highway Traffic Safety Administration, Washington, DC, pp. 121-134
Rice, R. S. (?) 1976 Bicycle dynamics – simplified dynamic stability analysis, Cornell Aero. Lab. Report no. ZN-5921-V-2
Rice, R. S. 1978 Rider skill influences on motorcycle maneuvering. SAE paper 780312, SAE-SP 428.
Rice, R. S., Davis, J. A. & Kunkel, D. T. 1975 : Accident avoidance capabilities of motorcycles, Cornell Aero. Lab. Report no. ZN-5571-V-1 and ZN-5571-V-2
Rice, R. S. & Kunkel, D. T. 1976 Accident Avoidance Capabilities of Motorcycles - Lane Change Maneuver Simulation and Full-Scale Tests, Cornell Aero. Lab. Report no. ZN-5899-V-1
Rice, R. S. & Roland, R. D. 1970 An evaluation of the performance and handling qualities of bicycles. Cornell Aero. Lab. Report no. VJ-2888-K.(RicRol70.pdf)
Rice, R. S. & Roland, R. D. 1972 An evaluation of the safety performance of tricycles and minibikes, Cornell Aero. Lab. Report no. ZN-5144-K-1.
Roland, R. D. 1973 Computer simulation of bicycle dynamics. Mechanics and Sport 4, ASME, pp. 35-83.
Roland, R. D. 1973 Simulation study of motorcycle stability at high speed, SAE paper 73020, Proc. Second International Congress on Automotive Safety, July 16-18, San Francisco.
Roland, R. D. 1974 Performance Tests of Harley-Davidson Electra Glide FLH-1200 Motorcycle Tires, Cornell Aero. Lab. Report no. ZN-5438-V-1
Roland, R. D. & Massing, D. E. 1971 A digital computer simulation of bicycle dynamics. Cornell Aero. Lab. Report no. YA-3063-K-1.
Roland, R. D. & Lynch, J. P. 1972 Bicycle dynamics tire characteristics and rider modeling. Cornell Aero. Lab. Report no. YA-3063-K-2.
Roland, R. D. & Rice, R. S. 1973 Bicycle dynamics – rider guidance modeling and disturbance response. Cornell Aero. Lab. Report no. ZS-5157-K-1
Roland, R. D. & Kunkel, D. T. 1973 Motorcycle dynamics, the effects of design on high speed weave, Cornell Aero. Lab. Report no. ZN-5259-K-1
G.R.R. Routh, 1899, "On the Motion of a Bicycle", The Messenger of Mathematics, Vol 28 (May 1898-April 1899), pp 151-169. (pdf) (Note G.R.R. Routh is the son of the famous E.J. Routh and grandson of Airy.).
Society of Automotive Engineers 2001 Vehicle dynamics Terminology-SAE J670e. 2001 SAE Handbook, SAE international, Warrendale, PA.
Sayers, M. W. 1991a Symbolic computer language for multibody systems. Journal of Guidance, Control, and Dynamics 14, 1153-1163.
Sayers, M. W. 1991b Symbolic vector/dyadic multibody formalism for tree-topology systems. Journal of Guidance, Control, and Dynamics 14, 1240-1250.
Schoonwinkel, A. 1987 Design and test of a computer stabilized unicycle. PhD thesis, Dept. of Aeronautics and Astronautics, Stanford University, CA. (Schoonwinkel1987.pdf)
Schwab, A. L. 2002 Dynamics of flexible multibody systems. Ph.D. thesis, Delft University of Technology, Delft.
Schwab, A. L. & Meijaard, J. P. 1999a The belt, gear, bearing and hinge as special finite elements for kinematic and dynamic analysis of mechanisms and machines. In Proceedings of the Tenth World Congress on the Theory of Machines and Mechanisms, IFToMM, June 20-24, 1999, Oulu, Finland (ed. T. Leinonen), Oulu University Press, Vol 4, pp. 1375-1386.
Schwab, A. L. & Meijaard, J. P. 1999b Dynamics of flexible multibody systems having rolling contact: Application of the wheel element to the dynamics of road vehicles. Vehicle System Dynamics Supplement 33, 338-349.
Schwab, A. L. & Meijaard, J. P. 2003 Dynamics of flexible multibody systems with non-holonomic constraints: A finite element approach. Multibody System Dynamics 10, 107-123.
Schwab, A. L., Meijaard, J. P. & Papadopoulos, J. M. 2005 Benchmark results on the linearized equations of motion of an uncontrolled bicycle. KSME International Journal of Mechanical Science and Technology 19(1), 292-304.
Sharp, R. S. 1971 The stability and control of motorcycles. Journal of Mechanical Engineering Science 13(5), 316-329.
Sharp, R. S. & Jones, C. J. 1977 The straight-running stability of single track vehicles. In Proceedings of the 5th VSD, 2nd IUTAM Symposium, Vienna, Austria, Sept. 19-23, pp. 334-342.
Sharp, R. S. 1985 The lateral dynamics of motorcycles and bicycles. Vehicle System Dynamics 14, 265-283. (Sha85.pdf)
Sharp, R. S. & Limebeer, D. J. N. 2001 A motorcycle model for stability and control analysis. Multibody System Dynamics 6, 123-142.
Singh, D. V. 1964 Advanced concepts of the stability of two-wheeled vehicle-application of mathematical analysis to actual vehicles. Ph.D. Thesis, Dept. of Mechanical Engineering, University of Wisconsin.[Posted without permission](SinghDigvijai1964.pdf)
Singh, D. V. & Goel, V. K. 1971 Stability of Rajdoot Scooter. SAE Paper no. 710273.
Singh, D. V. & Goel, V. K. 1975 Stability of single track vehicles. In Proceedings of IUTAM Symposium, Delft, the Netherlands, Aug 18-22.
Steele Jr, G. L. 1990 Common Lisp, The Language, 2nd edn., Digital Press, U.S.A.
Timoshenko, S. & Young, D. H. 1948 Advanced Dynamics. New York: McGraw-Hill.
Van Zytveld, P. J. 1975
A method for the automatic stabilization of an unmannned bicycle. M.Sc.
thesis, Dept. of Aeronautics and Astronautics, Stanford University, CA.
[Posted with permission from vanzytveldp@earthlink.net, +1 650-793-7012,
+1-650-967-1163](vanZytveldPhD.pdf)
[Posted without permission from P. J. Van
Zytveld. If you know his whereabouts please let us know.]
Weir, D. H. 1972 Motorcycle handling dynamics and rider control and the effect of design configuration on response and performance. Ph.D. thesis, University of California, LA.[Posted without permission](WeirDavid1972.pdf)
Weir, D. H. & Zellner, J. W. 1978 Lateral-directional motorcycle dynamics and rider control. Technical report no. 780304, Society of Automotive Engineers, Warrendale, PA.
Whipple, F. J. W. 1899 The Stability of the Motion of a Bicycle. The Quarterly Journal of Pure and Applied Mathematics 30, 312-348. (Whipple.pdf).
Wilson, D. G. 2004 Bicycling science, 3rd edn. with contributions by Jim Papadopoulos. Cambridge, MA: MIT Press.
Updated Thursday, September 10, 2009 11:13 by Arend L. Schwab.