Numerical solution of the delay differential equations of pantograph type via Chebyshev polynomials S Sedaghat, Y Ordokhani, M Dehghan Communications in Nonlinear Science and Numerical Simulation 17 (12), 4815-4830, 2012 | 210 | 2012 |
Bernoulli wavelet operational matrix of fractional order integration and its applications in solving the fractional order differential equations E Keshavarz, Y Ordokhani, M Razzaghi Applied Mathematical Modelling 38 (24), 6038-6051, 2014 | 204 | 2014 |
A new operational matrix based on Bernoulli wavelets for solving fractional delay differential equations P Rahimkhani, Y Ordokhani, E Babolian Numerical Algorithms 74, 223-245, 2017 | 187 | 2017 |
Numerical solution of fractional pantograph differential equations by using generalized fractional-order Bernoulli wavelet P Rahimkhani, Y Ordokhani, E Babolian Journal of Computational and Applied Mathematics 309, 493-510, 2017 | 180 | 2017 |
Numerical solution of a class of two-dimensional nonlinear Volterra integral equations using Legendre polynomials S Nemati, PM Lima, Y Ordokhani Journal of Computational and Applied Mathematics 242, 53-69, 2013 | 143 | 2013 |
A numerical solution for fractional optimal control problems via Bernoulli polynomials E Keshavarz, Y Ordokhani, M Razzaghi Journal of Vibration and Control 22 (18), 3889-3903, 2016 | 122 | 2016 |
Fractional-order Bernoulli wavelets and their applications P Rahimkhani, Y Ordokhani, E Babolian Applied mathematical modelling 40 (17-18), 8087-8107, 2016 | 117 | 2016 |
Hybrid functions approach for nonlinear constrained optimal control problems S Mashayekhi, Y Ordokhani, M Razzaghi Communications in Nonlinear Science and Numerical Simulation 17 (4), 1831-1843, 2012 | 105 | 2012 |
Solution of nonlinear Volterra–Fredholm–Hammerstein integral equations via a collocation method and rationalized Haar functions Y Ordokhani, M Razzaghi Applied Mathematics Letters 21 (1), 4-9, 2008 | 98 | 2008 |
Müntz-Legendre wavelet operational matrix of fractional-order integration and its applications for solving the fractional pantograph differential equations P Rahimkhani, Y Ordokhani, E Babolian Numerical Algorithms 77, 1283-1305, 2018 | 96 | 2018 |
Optimal control of delay systems by using a hybrid functions approximation N Haddadi, Y Ordokhani, M Razzaghi Journal of Optimization Theory and Applications 153, 338-356, 2012 | 91 | 2012 |
Fractional-order Legendre–Laguerre functions and their applications in fractional partial differential equations H Dehestani, Y Ordokhani, M Razzaghi Applied Mathematics and Computation 336, 433-453, 2018 | 79 | 2018 |
The Boubaker polynomials and their application to solve fractional optimal control problems K Rabiei, Y Ordokhani, E Babolian Nonlinear Dynamics 88, 1013-1026, 2017 | 79 | 2017 |
An efficient approximate method for solving delay fractional optimal control problems P Rahimkhani, Y Ordokhani, E Babolian Nonlinear Dynamics 86, 1649-1661, 2016 | 77 | 2016 |
Fractional-order Bernoulli functions and their applications in solving fractional Fredholem–Volterra integro-differential equations P Rahimkhani, Y Ordokhani, E Babolian Applied Numerical Mathematics 122, 66-81, 2017 | 76 | 2017 |
Solution of nonlinear Volterra–Fredholm–Hammerstein integral equations via rationalized Haar functions Y Ordokhani Applied Mathematics and Computation 180 (2), 436-443, 2006 | 76 | 2006 |
The Taylor wavelets method for solving the initial and boundary value problems of Bratu-type equations E Keshavarz, Y Ordokhani, M Razzaghi Applied Numerical Mathematics 128, 205-216, 2018 | 72 | 2018 |
Fibonacci wavelets and their applications for solving two classes of time-varying delay problems S Sabermahani, Y Ordokhani, SA Yousefi Optimal Control Applications and Methods 41 (2), 395-416, 2020 | 64 | 2020 |
Solving fractional pantograph delay differential equations via fractional‑order Boubaker polynomials K Rabiei, Y Ordokhani Engineering with Computers 35 (4), 1431-1441, 2019 | 60 | 2019 |
A numerical scheme based on Bernoulli wavelets and collocation method for solving fractional partial differential equations with Dirichlet boundary conditions P Rahimkhani, Y Ordokhani Numerical Methods for Partial Differential Equations 35 (1), 34-59, 2019 | 57 | 2019 |