J.A. Alba, M. Doblaré, and L. Gracia. A simple method for the synthesis of 2D and 3D mechanisms with kinematic constraints. Mechanism and Machine Theory, 35:645-674, 2000.
R. Avilés, J. Vallejo, G. Ajuria, and J. Agirrebeitia. Second-order methods for the optimum synthesis of multibody systems. Structural and Multidisciplinary Optimization, 19:192-203, 2000.
J.A. Cabrera, A. Simon, and M. Prado. Optimal synthesis of mechanisms with genetic algorithms. Mechanism and Machine Theory, 37:1165-1177, 2002.
J.-F. Collard, P. Fisette, and P. Duysinx. Contribution to the optimization of closed-loop multibody systems: Application to parallel manipulators. Multibody System Dynamics, 13:69-84, 2005.
J.-F. Collard, P. Fisette, and P. Duysinx. Optimal synthesis of mechanisms using time-varying dimensions and natural coordinates. In Proc. of the Sixth World Congress of Structural and Multidisciplinary Optimization, 2005.
John M. Hansen. Synthesis of mechanisms using time-varying dimensions. Multibody System Dynamics, 7:127-144, 2002.
Ole Fjendbo Jensen and John M. Hansen. Treating the problem of non-assembly for dimensional synthesis of spatial mechanisms. In Schönfeld & Ziegler, editor, The Fifth World Congress of Structural and Multidisciplinary Optimization, pages 431-432. ISSMO, Italian Polytechnic Press, may 2003.
J. M. Jiméenez, G. Alvarez, J. Cardenal, and J. Cuadrado. A simple and general method for kinematic synthesis of spatial mechanisms. Mechanism and Machine Theory, 32(3):323-341, 1997.
A. Kawamoto. Path-generation of articulated mechanisms by shape and topology variations in nonlinear truss representation. International Journal for Numerical Methods in Engineering, 64:1557- 1574, 2005.
M.A. Laribi, A. Mlika, L. Romdhane, and S. Zeghloul. A combined genetic algorithm-fuzzy logic method GA-FL in mechanisms synthesis. Mechanism and Machine Theory, 39:717-735, 2004.
Mauro Da Lio, Vittore Cossalter, and Roberto Lot. On the use of natural coordinates in optimal synthesis of mechanisms. Mechanism and Machine Theory, 35:1367-1389, 2000.
Francisco T. Sànchez Marin and Antonio Pérez Gonzàlez. Global optimization in path synthesis based on design space reduction. Mechanism and Machine Theory, 38:579-594, 2003.
R.J. Minnaar, D.A. Tortorelli, and J.A. Snyman. On nonassembly in the optimal dimensional synthesis of planar mechanisms. Structural and Multidisciplinary Optimization, 21:345-354, 2001.
M.J.D. Powell. Nonlinear Programming, chapter A new algorithm for unconstrained optimization. Academic Press, 1970.
S. Pramanik. Kinematic synthesis of a six-member mechanism for automotive steering. ASME Journal of Mechanical Design, 124:642-645, dec 2002.
R. Sancibrian, F. Viadero, P. Garcia, and A. Fernandez. Gradient-based optimization of path synthesis problems in planar mechanisms. Mechanism and Machine Theory, 39:839-856, 2004.
Kai Sedlaczek, Timo Gaugele, and Peter Eberhard. Topology optimized synthesis of planar kinematic rigid body mechanisms. In Proc. of the Multibody Dynamics 2005, Eccomas Thematic Conference, 2005.
P.S. Shiakolas, D. Koladiya, and J. Kebrle. On the optimum synthesis of six-bar linkages using differential evolution and the geometric centroid of precision positions technique. Mechanism and Machine Theory, 40:319-335, 2005.
P.A. Simionescu and D. Beale. Optimum synthesis of the four-bar function generator in its symmetric embodiment: the ackermann steering linkage. Mechanism and Machine Theory, 37:1487-1504, 2002.
P.A. Simionescu, M.R. Smith, and I. Tempea. Synthesis and analysis of the two loop translational input steering mechanism. Mechanism and Machine Theory, 35:927-943, 2000.
M. Stolpe and A. Kawamoto. Design of planar articulated mechanisms using branch and bound. Mathematical Programming, 103:357-397, 2005.
J.Y. Wong. Theory of Ground Vehicles, chapter Handling characteristics of Road Vechicles, pages 335-387. John Wiley & Sons, 3rd edition, 2001.