Majid Darehmiraki

Faculty of  Energy and Data Sciences
Department of  Mathematics and Statistics
 
PhD,Applied mathematics-Control and optimization,Ferdowsi university of Mashhad,2017
M.Sc. Applied mathematics-Operation research, University of Sistan and Balouchestan,2007
B.Sc. Pure mathematics, University of Birjand, 2005
Email: darehmiraki @bkatu.ac.ir
Phone Number: 52721191 - 061
Update: 2024/01/23

 


I am an Associate Professor of Applied Mathematics at BKAT university. I mainly work in the fields of optimal control and PDE-constrained optimization problems. My research interests include using numerical methods such as meshless methods, spectral methods, and deep learning methods to solve them. 

  • Optimization
  • PDE constrained optimization
  • Optimal control

[28]Darehmiraki, M., & Rakhshan, S. A. (2023). Radial Basis Functions for the Zero Sum Differential Game with Fractional Derivatives. International Journal of Applied and Computational Mathematics9(5), 90.

[27]Shojaeizadeh, T., & Darehmiraki, M. (2023). An optimal control approach for solving an inverse heat source problem applying shifted Legendre polynomials. Iranian Journal of Numerical Analysis and Optimization13(3, IN PROGRESS, All articles are final and fully citable.), 460-480.

[26]Mahmoudi, M., Shojaeizadeh, T., & Darehmiraki, M. (2021). Optimal control of time-fractional convection–diffusion–reaction problem employing compact integrated RBF method. Mathematical Sciences, 1-14.

[25]Behdani, Z., & Darehmiraki, M. (2022). An alternative approach to rank efficient DMUs in DEA via cross-efficiency evaluation, Gini coefficient, and Bonferroni mean. Journal of the Operations Research Society of China10(4), 763-783.‏

[24]Darehmiraki, M., Rezazadeh, A., & Ahmadian, A. (2021). An artificial neural network‐based method for the optimal control problem governed by the fractional parabolic equation. Numerical Methods for Partial Differential Equations37(3), 2296-2316.

[23]Darehmiraki, M., Rezazadeh, A., Ahmadian, A., & Salahshour, S. (2022). An interpolation method for the optimal control problem governed by the elliptic convection–diffusion equation. Numerical Methods for Partial Differential Equations38(2), 137-159.‏‏

[22]Darehmiraki, M., & Rezazadeh, A. (2020). An efficient numerical approach for solving the variable-order time fractional diffusion equation using chebyshev spectral collocation method. Journal of Mahani Mathematical Research9(2), 87-107.‏

[21]Darehmiraki, M., & Rezazadeh, A. (2020). A new solution for optimal control of fractional convection–reaction–diffusion equation using rational barycentric interpolation. Bulletin of the Iranian Mathematical Society46(5), 1307-1340.

[20]Darehmiraki, M. (2020). A solution for the neutrosophic linear programming problem with a new ranking function. In Optimization theory based on Neutrosophic and Plithogenic Sets (pp. 235-259). Academic Press.‏‏
[19] Rezazadeh, A., Mahmoudi, M., & Darehmiraki, M. (2020). A solution for fractional PDE constrained optimization problems using reduced basis method. Computational and Applied Mathematics39(2), 82.‏
[18] Rezazadeh, A., Mahmoudi, M., & Darehmiraki, M. (2020). Space–time spectral collocation method for one-dimensional PDE constrained optimisation. International Journal of Control93(5), 1231-1241.‏
[17] Darehmiraki, M. (2019). A novel parametric ranking method for intuitionistic fuzzy numbers. Iranian Journal of Fuzzy Systems, 16(1), 129-143.
[16] Darehmiraki, Majid, Mohammad Hadi Farahi, and Sohrab Effati. "Solution for fractional distributed optimal control problem by hybrid meshless method." Journal of Vibration and Control (2016): 1077546316678527.
[15] Darehmiraki, Majid. "An Efficient Solution for Stochastic Fractional Partial Differential Equations with Additive Noise by a Meshless Method." International Journal of Applied and Computational Mathematics 4.1 (2018): 14.
[14] Darehmiraki, Majid. "Reproducing kernel method for PDE constrained optimization." arXiv preprint arXiv:1611.02381 (2016).
[13] Darehmiraki, Majid, Mohammad Hadi Farahi, and Sohrab Effati. "A Novel Method to Solve a Class of Distributed Optimal Control Problems Using Bezier Curves." Journal of Computational and Nonlinear Dynamics 11.6 (2016): 061008.

[12] M. Darehmiraki, Z. Behdani, Approximate algorithm for the multi-dimensional knapsack problem by using multiple criteria decision making, International Journal of Mathematical Modelling & Computations, 3(4), 317-320, 2014.
[11] R.A. Shoureshjani, M. Darehmiraki, A parametric method to rank fuzzy number, indignations mathematics, Indagationes Mathematicae, 24(3), 518-529, 2013.
[10] M.Darehmiraki, an new heuristic algorithm to solve vehicle routing problem, operations research journal and its applications, 4, 1-7, 2013.(in Persian)
[9] Majid. Darehmiraki, Z. Behdani. A new DEA approach to rank alternatives in MCDA. Journal of Data Envelopment Analysis and Decision Science 2013. 1-7.
[8] Hossein Eghdami, Majid Darehmiraki, Application of DNA computing in graph theory, Artificial Intelligence Review 38(3), 223-235, 2012
[7] Majid Darehmiraki, Zahra Behdani, Ranking decision making units by compromise programming, TJMCS 4(4), 536-541, 2012.
[6] Majid Darehmiraki, A semi-general method to solve the combinatorial optimization problems based on nanocomputing, international journal of nanoscience, 9(5), 391-398, 2010.
[5] Majid Darehmiraki, A New Solution for Maximal Clique Problem based Sticker Model, Biosystems 95, 145-149, 2009.
[4] Majid Darehmiraki, Hasan Mishmast Nehi, Molecular solution to the 0-1 knapsack problem based on DNA computing, applied mathematics and computation, 187, 1033-1037, 2007
[3] Majid Darehmiraki, Hasan Mishmast Nehi, A surface-based DNA algorithm for the solving binary knapsack problem, applied mathematics and computation, 188, 1991-1994, 2007.
[2] Majid Darehmiraki, Hasan Mishmast Nehi, A parallel algorithm for the degree-constrained minimum spanning tree problem by using DNA computing, Research journal of biological sciences , 2(6), 658-662, 2007.
[1] Majid Darehmiraki, A parallel algorithm for solving SAT problem based DNA computing, International Journal of Computers and Applications 31(2), 128-131, 2009

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