References
- Ahrari, A., Atai, A.A. and Deb, K. (2014), "Simultaneous topology, shape and sizing optimization of truss structures by fully stressed design on evolutionary strategy", Eng. Optim., 47(8), 1063-1084. https://doi.org/10.1080/0305215X.2014.947972
- Balling, R.J., Briggs, R.R. and Gillman, K. (2006), "Multiple optimum size/shape/topology designs for skeletal structures using a genetic algorithm", J. Struct. Eng., 132(7), 1158-1165. https://doi.org/10.1061/(ASCE)0733-9445(2006)132:7(1158)
- Camp, C.V. and Farshchin, M. (2014), "Design of space trusses using modified teaching-learning based optimization", Eng. Struct., 62, 87-97.
- Christensen, P.W. and Klarbring, A. (2009), An Introduction to Structural Optimization, Solid Mechanics and Its Applications, Springer.
- Deb, K. and Gulati, S. (2001), "Design of truss-structures for minimum weight using genetic algorithms", Fin. Elem. Analy. Des., 447-465.
- Degertekin, S.O. and Hayalioglu, M.S. (2013), "Sizing truss structures using teaching-learning-based optimization", Comput. Struct., 119, 177-188. https://doi.org/10.1016/j.compstruc.2012.12.011
- Dorn, W.S. (1964), "Automatic design of optimal structures", J. Mecan., 3, 25-52.
- Ferreira, A.J.M. (2009), MATLAB Codes for Finite Element Analysis, Solids and Structures, Springer.
- Ghosh and Mallik. (1988), Theory of Mechanisms and Machines, East-West Press, New Delhi, India.
- Grierson, D.E. and Pak, W.H. (1993), "Optimal sizing, geometrical and topological design using a genetic algorithm", Struct. Optim., 6(3), 151-159. https://doi.org/10.1007/BF01743506
- Hajela, P., Lee, E. and Lin, C.Y. (1993), Genetic Algorithms in Structural Topology Optimization, Topology Design of Structures, Springer, the Netherlands.
- Hajela, P. and Lee, E. (1995), "Genetic algorithms in truss topological optimization", J. Sol. Struct., 32(22), 3341-3357. https://doi.org/10.1016/0020-7683(94)00306-H
- Hasancebi, O. and Erbatur, F. (2002), "Layout optimisation of trusses using simulated annealing", Adv. Eng. Softw., 33(7), 681-696. https://doi.org/10.1016/S0965-9978(02)00049-2
- Kawamura, H., Ohmori, H. and Kito, N. (2002), "Truss topology optimization by a modified genetic algorithm", Struct. Multidiscipl. Optim., 23(6), 467-472. https://doi.org/10.1007/s00158-002-0208-0
- Kuo, H.C., Chiu, J.T. and Lin, C.H. (2012), "Intelligent garbage can decision-making model evolution algorithm for optimization of structural topology of plane trusses", Appl. Soft Comput., 12(9), 2719-2727. https://doi.org/10.1016/j.asoc.2012.03.011
- Li, L. and Liu, F. (2011), "Group search optimization for applications in structural design", Adapt. Learn. Optim., 9, 97-157.
- Luh, G.C. and Lin, C.Y. (2008), "Optimal design of truss structures using ant algorithm", Struct. Multidiscipl. Optim., 36(4), 365-379. https://doi.org/10.1007/s00158-007-0175-6
- Martini, K. (2011), "Harmony search method for multimodal size, shape, and topology optimization of structural frameworks", J. Struct. Eng., 137(11), 1332-1339. https://doi.org/10.1061/(ASCE)ST.1943-541X.0000378
- Miguel, L.F.F., Lopez, R.H. and Miguel, L.F.F. (2013), "Multimodal size, shape, and topology optimisation of truss structures using the firefly algorithm", Adv. Eng. Softw., 56, 23-37. https://doi.org/10.1016/j.advengsoft.2012.11.006
- Patel, V.K. and Savsani, V.J. (2014), "A multi-objective improved teaching-learning based optimization algorithm (MO-TLBO)", Informat. Sci., 357, 182-200.
- Rahami, H., Kaveh, A. and Gholipour, Y. (2008), "Sizing, geometry and topology optimization of trusses via force method and genetic algorithm", Eng. Struct., 30(9), 2360-2369. https://doi.org/10.1016/j.engstruct.2008.01.012
- Rajan, S.D. (1995), "Sizing, shape and topology design optimization of trusses using genetic algorithm", J. Struct. Eng., 121(10), 1480-1487. https://doi.org/10.1061/(ASCE)0733-9445(1995)121:10(1480)
- Rao, R.V. and Patel, V. (2012), "An elitist teaching-learning-based optimization algorithm for solving complex constrained optimization problems", J. Industr. Eng. Comput., 3(4), 535-560.
- Rao, R.V., Savsani, V.J. and Vakharia, D.P. (2011), "Teaching-learning-based optimization: A novel method for constrained mechanical design optimization problems", Comput.-Aid. Des., 43(3), 303-315. https://doi.org/10.1016/j.cad.2010.12.015
- Rao, R.V., Savsani, V.J. and Vakharia, D.P. (2012a), "Teaching-learning-based optimization: An optimization method for continuous nonlinear large-scale problems", Informat. Sci., 183(1), 1-15. https://doi.org/10.1016/j.ins.2011.08.006
- Rao, R.V., Savsani, V.J. and Balic, J. (2012b), "Teaching-learning-based optimization algorithm for unconstrained and constrained real parameter optimization problems", Eng. Optim., 44(12), 1447-1462. https://doi.org/10.1080/0305215X.2011.652103
- Richardson, J.N., Adriaenssens, S., Bouillard, P. and Coelho, R.F. (2012), "Multiobjective topology optimization of truss structures with kinematic stability repair", Struct. Multidiscipl. Optim., 46(4), 513-532. https://doi.org/10.1007/s00158-012-0777-5
- Savsani, V.J., Tejani, G.G., Patel, V.K. and Savsani, P. (2017), "Modified meta-heuristics using random mutation for truss topology optimization with static and dynamic constraints", J. Comput. Des. Eng., 4(2), 106-130. https://doi.org/10.1016/j.jcde.2016.10.002
- Tang, W., Tong, L. and Gu, Y. (2005), "Improved genetic algorithm for design optimization of truss structures with sizing, shape and topology variables", J. Numer. Meth. Eng., 62(13), 1737-1762. https://doi.org/10.1002/nme.1244
- Tejani, G.G., Bhensdadia, V.H. and Bureerat, S. (2016a), "Examination of three meta-heuristic algorithms for optimal design of planar steel frames", Adv. Comput. Des., 1(1), 79-86. https://doi.org/10.12989/acd.2016.1.1.079
- Tejani, G.G., Savsani, V.J. and Patel, V.K. (2016b), "Modified sub-population teaching-learning-based optimization for design of truss structures with natural frequency constraints", Mech. Bas. Des. Struct. Mach., 44(4), 495-513. https://doi.org/10.1080/15397734.2015.1124023
- Tejani, G.G., Savsani, V.J. and Patel, V.K. (2016c), "Adaptive symbiotic organisms search (SOS) algorithm for structural design optimization", J. Comput. Des. Eng., 3(3), 226-249. https://doi.org/10.1016/j.jcde.2016.02.003
- Wu, C.Y. and Tseng, K.Y. (2010), "Truss structure optimization using adaptive multi-population differential evolution", Struct. Multidiscipl. Optim., 42(4), 575-590. https://doi.org/10.1007/s00158-010-0507-9
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