His main research concerns Mathematical optimization, Fuzzy logic, Artificial intelligence, Fuzzy number and Fuzzy set. While the research belongs to areas of Mathematical optimization, Behnam Vahdani spends his time largely on the problem of Fuzzy classification, intersecting his research to questions surrounding Defuzzification. The Fuzzy logic study which covers Interval that intersects with Stochastic programming.
His study in Fuzzy set operations and Artificial neural network are all subfields of Artificial intelligence. His Fuzzy number study typically links adjacent topics like TOPSIS. His Fuzzy set study combines topics in areas such as VIKOR method and Operations research.
Behnam Vahdani spends much of his time researching Mathematical optimization, Fuzzy logic, Operations research, Fuzzy set and Artificial intelligence. His Mathematical optimization research is multidisciplinary, relying on both TOPSIS and Interval. Behnam Vahdani has researched Fuzzy logic in several fields, including Ranking and Data mining.
His biological study spans a wide range of topics, including Program evaluation, Management science and Project portfolio management. His studies in Fuzzy set integrate themes in fields like VIKOR method, Hamming distance, Analytic hierarchy process, Decision problem and Project management. The study incorporates disciplines such as Machine learning and ELECTRE in addition to Artificial intelligence.
Behnam Vahdani focuses on Mathematical optimization, Operations research, Fuzzy logic, Total cost and Cross-docking. His study brings together the fields of Selection and Mathematical optimization. The Selection study combines topics in areas such as Hybrid approach, Key and Project network.
His Operations research study combines topics in areas such as Decision problem and Decision model. His research in Fuzzy logic tackles topics such as Ranking which are related to areas like Generalized entropy index. Behnam Vahdani has researched Fuzzy set in several fields, including Margin of error and Hausdorff distance.
Behnam Vahdani mostly deals with Operations research, Workload, Total cost, Cross-docking and Facility location problem. His Operations research research includes themes of Aggregate, Decision problem, Selection and Decision model. His Workload research covers fields of interest such as Quay crane, Sorting, Particle swarm optimization, Volume and Terminal.
His Total cost research incorporates Robust optimization, Redistricting, Shared resource, Petroleum industry and Transfer. His Cross-docking studies intersect with other subjects such as Time horizon, Queueing theory, Queue management system, Imperialist competitive algorithm and Energy consumption. Behnam Vahdani integrates many fields, such as Facility location problem and engineering, in his works.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
Scheduling trucks in cross-docking systems: Robust meta-heuristics
B. Vahdani;M. Zandieh.
Computers & Industrial Engineering (2010)
Reliable design of a forward/reverse logistics network under uncertainty: A robust-M/M/c queuing model
Behnam Vahdani;Reza Tavakkoli-Moghaddam;Mohammad Modarres;Armand Baboli.
(2012)
Group decision making based on novel fuzzy modified TOPSIS method
Behnam Vahdani;S. Meysam Mousavi;Reza Tavakkoli-Moghaddam.
(2011)
A novel two-phase group decision making approach for construction project selection in a fuzzy environment
S. Ebrahimnejad;S.M. Mousavi;R. Tavakkoli-Moghaddam;H. Hashemi.
(2012)
Extension of VIKOR method based on interval-valued fuzzy sets
Behnam Vahdani;Hasan Hadipour;Jamshid Salehi Sadaghiani;Maghsoud Amiri.
The International Journal of Advanced Manufacturing Technology (2010)
A new design of the elimination and choice translating reality method for multi-criteria group decision-making in an intuitionistic fuzzy environment
Behnam Vahdani;S. Meysam Mousavi;R. Tavakkoli-Moghaddam;H. Hashemi.
(2013)
A new FMEA method by integrating fuzzy belief structure and TOPSIS to improve risk evaluation process
Behnam Vahdani;M. Salimi;M. Charkhchian.
The International Journal of Advanced Manufacturing Technology (2015)
Extension of the ELECTRE method based on interval-valued fuzzy sets
Behnam Vahdani;Hasan Hadipour.
soft computing (2011)
Extension of the ELECTRE method for decision-making problems with interval weights and data
Behnam Vahdani;Amir Haji Karim Jabbari;Vahid Roshanaei;Mostafa Zandieh.
The International Journal of Advanced Manufacturing Technology (2010)
Reliable design of a closed loop supply chain network under uncertainty: An interval fuzzy possibilistic chance-constrained model
Behnam Vahdani;Reza Tavakkoli-Moghaddam;Fariborz Jolai;Armand Baboli.
(2013)
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