Articles

type: Journal
Title DOI Date
A branch and bound algorithm for a single machine sequencing to minimize the sum of maximum earliness and tardiness with idle insert #
Optimal scheduling for a single machine to minimize the sum of maximum earliness and tardiness considering idle insert #
type: Conference
Title Date
Integrated timetable rescheduling and rolling stock reassignment for an urban rail transit system during large-scale disruptions
Analyses of the Phase I Postanesthesia Care Unit Baseline Capacity and Effect of Disruptions to its Beds or Nurse Availability on Operating Room Workflow
Operating Room Rescheduling After a Large Disruption to the Postanesthesia Care Unit Beds
Quality of Service guarantee in parallel job scheduling
Robust Identical Parallel Machines Scheduling
A Mathematical Model for Profit Maximization General Lot-sizing and Scheduling Problem (PGLSP)
An Iterated Greedy Algorithm for Solving the Blocking Flow Shop Scheduling Problem with Total Flow Time Criteria
Two-sided assembly line balancing with considering the relationships between the tasks
National and International Dimensions of Communication in domestic and foreign communities of Science Parks
Airline Crew pairing Problem A New Column Generation Approach
Finding Pareto-optima for Maximum Tardiness Maximum Earliness and Number of Tardy Jobs
ISTT s Sheikh Bahai Technopreneurship Festival A Means of Fostering Technology-based Entrepreneurship and Supporting Technopreneurs
An exact approach to minimize the sum of maximum earliness and tardiness in single machine scheduling problem with sequence-dependent setup time
A branch and bound algorithm to minimize the sum of maximum earliness and tardiness in single machine
An Exact Approach to Minimize the Sum of Maximum Earliness and Tardiness with Unequal Releease Times
The Infrastructures Programs and the Status of Tenant Companies in Steel Technology Park A Case Study in Isfahan Science Technology Town
An Integrated Multi-Objective Approach to The Flexible Job-Shop Scheduling problem Using Particle Swarm Optimization
A Methodology for Ranking Incubators Using Composite Indicator