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Tapan Kumar Roy
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- affiliation: Indian Institute of Engineering Science and Technology, Department of Mathematics, Howrah, India
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2020 – today
- 2023
- [j43]Prokash Mondal, Asim Kumar Das, Tapan Kumar Roy:
An EOQ model for deteriorating item with continuous linear time dependent demand with trade of credit and replenishment time being demand dependent. Int. J. Math. Oper. Res. 24(1): 104-127 (2023) - [j42]Sovan Bera, Subhas Khajanchi, Tapan Kumar Roy:
Stability analysis of fuzzy HTLV-I infection model: a dynamic approach. J. Appl. Math. Comput. 69(1): 171-199 (2023) - 2022
- [j41]Sovan Bera, Subhas Khajanchi, Tapan Kumar Roy:
Dynamics of an HTLV-I infection model with delayed CTLs immune response. Appl. Math. Comput. 430: 127206 (2022) - 2021
- [j40]Arindam Garai, Sriparna Chowdhury, Biswajit Sarkar, Tapan Kumar Roy:
Cost-effective subsidy policy for growers and biofuels-plants in closed-loop supply chain of herbs and herbal medicines: An interactive bi-objective optimization in T-environment. Appl. Soft Comput. 100: 106949 (2021) - [j39]Subhas Khajanchi, Sovan Bera, Tapan Kumar Roy:
Mathematical analysis of the global dynamics of a HTLV-I infection model, considering the role of cytotoxic T-lymphocytes. Math. Comput. Simul. 180: 354-378 (2021) - [j38]Bappa Mondal, Arindam Garai, Tapan Kumar Roy:
Optimization of generalized order-level inventory system under fully permissible delay in payment. RAIRO Oper. Res. 55(Supplement): S195-S224 (2021) - 2020
- [j37]Totan Garai, Harish Garg, Tapan Kumar Roy:
A ranking method based on possibility mean for multi-attribute decision making with single valued neutrosophic numbers. J. Ambient Intell. Humaniz. Comput. 11(11): 5245-5258 (2020) - [j36]Arindam Garai, Tapan Kumar Roy:
Multi-objective optimization of cost-effective and customer-centric closed-loop supply chain management model in T-environment. Soft Comput. 24(1): 155-178 (2020) - [j35]Dipankar Chakraborty, Dipak Kumar Jana, Tapan Kumar Roy:
Multi-warehouse partial backlogging inventory system with inflation for non-instantaneous deteriorating multi-item under imprecise environment. Soft Comput. 24(19): 14471-14490 (2020) - [j34]Totan Garai, Shyamal Dalapati, Harish Garg, Tapan Kumar Roy:
Possibility mean, variance and standard deviation of single-valued neutrosophic numbers and its applications to multi-attribute decision-making problems. Soft Comput. 24(24): 18795-18809 (2020)
2010 – 2019
- 2019
- [j33]Payel Ghosh, Tapan Kumar Roy:
Role of Distance Metric in Goal Geometric Programming Problem (G^2 P^2) Under Imprecise Environment. Int. J. Fuzzy Syst. Appl. 8(1): 65-82 (2019) - [j32]Arindam Garai, Bappa Mondal, Tapan Kumar Roy:
Optimisation of multi-objective commercial bank balance sheet management model: a parametric T-set approach. Int. J. Math. Oper. Res. 15(4): 395-416 (2019) - [j31]Totan Garai, Dipankar Chakraborty, Tapan Kumar Roy:
Fully fuzzy inventory model with price-dependent demand and time varying holding cost under fuzzy decision variables. J. Intell. Fuzzy Syst. 36(4): 3725-3738 (2019) - [j30]Suvankar Biswas, Tapan Kumar Roy:
A semianalytical method for fuzzy integro-differential equations under generalized Seikkala derivative. Soft Comput. 23(17): 7959-7975 (2019) - [c3]Asim Kumar Das, Tapan Kumar Roy, Dipak Kumar Jana:
Fractional Order Generalized EOQ Model with Demand-Dependent Unit Purchasing Cost Under Space Constraints. ICITAM 2019: 1-17 - [c2]Arindam Garai, Sriparna Chowdhury, Suvankar Biswas, Tapan Kumar Roy:
Optimization of Multi-objective Stochastic Linear Programming Problem in Fuzzy Environment: An Iterative-Interactive Optimization Process. ICITAM 2019: 270-291 - [c1]Bappa Mondal, Suvankar Biswas, Arindam Garai, Tapan Kumar Roy:
Posynomial Geometric Programming in EOQ Model with Interval Neutrosophic Number. ICITAM 2019: 434-449 - 2018
- [j29]Dipankar Chakraborty, Dipak Kumar Jana, Tapan Kumar Roy:
Two-warehouse partial backlogging inventory model with ramp type demand rate, three-parameter Weibull distribution deterioration under inflation and permissible delay in payments. Comput. Ind. Eng. 123: 157-179 (2018) - [j28]Mridula Sarkar, Tapan Kumar Roy:
Optimization of Welded Beam Structure Using Neutrosophic Optimization Technique: A Comparative Study. Int. J. Fuzzy Syst. 20(3): 847-860 (2018) - [j27]Surapati Pramanik, Shyamal Dalapati, Shariful Alam, Florentin Smarandache, Tapan Kumar Roy:
NS-Cross Entropy-Based MAGDM under Single-Valued Neutrosophic Set Environment. Inf. 9(2): 37 (2018) - [j26]Suvankar Biswas, Tapan Kumar Roy:
Generalization of Seikkala derivative and differential transform method for fuzzy Volterra integro-differential equations. J. Intell. Fuzzy Syst. 34(4): 2795-2806 (2018) - [j25]Totan Garai, Dipankar Chakraborty, Tapan Kumar Roy:
A multi-item generalized intuitionistic fuzzy inventory model with inventory level dependent demand using possibility mean, variance and covariance. J. Intell. Fuzzy Syst. 35(1): 1021-1036 (2018) - 2017
- [j24]Arindam Garai, Palash Mandal, Tapan Kumar Roy:
Multipollutant Air Quality Management Strategies: T-Sets Based Optimization Technique Under Imprecise Environment. Int. J. Fuzzy Syst. 19(6): 1927-1939 (2017) - [j23]Sanhita Banerjee, Tapan Kumar Roy:
Arithmetic Behaviors of P-Norm Generalized Trapezoidal Intuitionistic Fuzzy Numbers with Application to Circuit Analysis. Int. J. Fuzzy Syst. Appl. 6(3): 6-58 (2017) - [j22]Surapati Pramanik, Shyamal Dalapati, Shariful Alam, Tapan Kumar Roy:
NC-TODIM-Based MAGDM under a Neutrosophic Cubic Set Environment. Inf. 8(4): 149 (2017) - 2016
- [j21]Samir Dey, Tapan Kumar Roy:
Multi-objective structural design problem optimization using parameterized t-norm based fuzzy optimization programming technique. J. Intell. Fuzzy Syst. 30(2): 971-982 (2016) - [j20]Dipankar Chakraborty, Dipak Kumar Jana, Tapan Kumar Roy:
Expected value of intuitionistic fuzzy number and its application to solve multi-objective multi-item solid transportation problem for damageable items in intuitionistic fuzzy environment. J. Intell. Fuzzy Syst. 30(2): 1109-1122 (2016) - 2015
- [j19]Dipankar Chakraborty, Dipak Kumar Jana, Tapan Kumar Roy:
Multi-item integrated supply chain model for deteriorating items with stock dependent demand under fuzzy random and bifuzzy environments. Comput. Ind. Eng. 88: 166-180 (2015) - [j18]Dipankar Chakraborty, Dipak Kumar Jana, Tapan Kumar Roy:
A new approach to solve multi-objective multi-choice multi-item Atanassov's intuitionistic fuzzy transportation problem using chance operator. J. Intell. Fuzzy Syst. 28(2): 843-865 (2015) - 2014
- [j17]Dipak Kumar Jana, Kalipada Maity, Manoranjan Maiti, Tapan Kumar Roy:
A Multiobjective Multi-Item Inventory Control Problem in Fuzzy-Rough Environment Using Soft Computing Techniques. Adv. Decis. Sci. 2014: 617989:1-617989:13 (2014) - 2013
- [j16]Dipak Kumar Jana, Barun Das, Tapan Kumar Roy:
A Partial Backlogging Inventory Model for Deteriorating Item under Fuzzy Inflation and Discounting over Random Planning Horizon: A Fuzzy Genetic Algorithm Approach. Adv. Oper. Res. 2013: 973125:1-973125:13 (2013) - [j15]A. K. Shaw, Tapan Kumar Roy:
Trapezoidal intuitionistic fuzzy number with some arithmetic operations and its application on reliability evaluation. Int. J. Math. Oper. Res. 5(1): 55-73 (2013) - [j14]Dipak Kumar Jana, Kalipada Maity, Barun Das, Tapan Kumar Roy:
A fuzzy simulation via contractive mapping genetic algorithm approach to an imprecise production inventory model under volume flexibility. J. Simulation 7(2): 90-100 (2013) - 2010
- [j13]Soumen Banerjee, Tapan Kumar Roy:
Solution of Single and Multiobjective Stochastic Inventory Models with Fuzzy Cost Components by Intuitionistic Fuzzy Optimization Technique. Adv. Oper. Res. 2010: 765278:1-765278:19 (2010)
2000 – 2009
- 2007
- [j12]Sahidul Islam, Tapan Kumar Roy:
Fuzzy multi-item economic production quantity model under space constraint: A geometric programming approach. Appl. Math. Comput. 184(2): 326-335 (2007) - [j11]Surapati Pramanik, Tapan Kumar Roy:
Fuzzy goal programming approach to multilevel programming problems. Eur. J. Oper. Res. 176(2): 1151-1166 (2007) - 2006
- [j10]G. S. Mahapatra, Tapan Kumar Roy:
Fuzzy multi-objective mathematical programming on reliability optimization model. Appl. Math. Comput. 174(1): 643-659 (2006) - [j9]Sahidul Islam, Tapan Kumar Roy:
A fuzzy EPQ model with flexibility and reliability consideration and demand dependent unit production cost under a space constraint: A fuzzy geometric programming approach. Appl. Math. Comput. 176(2): 531-544 (2006) - [j8]Nirmal Kumar Mandal, Tapan Kumar Roy:
Multi-item imperfect production lot size model with hybrid number cost parameters. Appl. Math. Comput. 182(2): 1219-1230 (2006) - [j7]Nirmal Kumar Mandal, Tapan Kumar Roy, Manoranjan Maiti:
Inventory model of deteriorated items with a constraint: A geometric programming approach. Eur. J. Oper. Res. 173(1): 199-210 (2006) - [j6]Sahidul Islam, Tapan Kumar Roy:
A new fuzzy multi-objective programming: Entropy based geometric programming and its application of transportation problems. Eur. J. Oper. Res. 173(2): 387-404 (2006) - [j5]Nirmal Kumar Mandal, Tapan Kumar Roy:
A displayed inventory model with L-R fuzzy number. Fuzzy Optim. Decis. Mak. 5(3): 227-243 (2006) - 2005
- [j4]Nirmal Kumar Mandal, Tapan Kumar Roy, Manoranjan Maiti:
Multi-objective fuzzy inventory model with three constraints: a geometric programming approach. Fuzzy Sets Syst. 150(1): 87-106 (2005) - 2004
- [j3]K. Das, Tapan Kumar Roy, Manoranjan Maiti:
Multi-item stochastic and fuzzy-stochastic inventory models under two restrictions. Comput. Oper. Res. 31(11): 1793-1806 (2004) - [j2]K. Das, Tapan Kumar Roy, Manoranjan Maiti:
Buyer-seller fuzzy inventory model for a deteriorating item with discount. Int. J. Syst. Sci. 35(8): 457-466 (2004)
1990 – 1999
- 1998
- [j1]Tapan Kumar Roy, Manoranjan Maiti:
Multi-objective inventory models of deteriorating items with some constraints in a fuzzy environment. Comput. Oper. Res. 25(12): 1085-1095 (1998)
Coauthor Index
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