Cycle time minimization for the simple assembly line balancing problem under peak power constraints
Bao Gia Hoang, Tuyen Van Kieu, Khanh Van To
Abstract
Peak power limits restrict concurrent tasks and may increase assembly-line cycle time. To the best of our knowledge, this study is the first to minimize cycle time for the simple assembly line balancing problem type 2 (SALBP-2) with a fixed number of workstations and a fixed limit on total instantaneous power. An exact satisfiability (SAT) method finds feasible schedules, searches systematically for shorter cycles, and proves optimality when possible. Two reproducible formulas define looser and tighter power limits for 72 cases based on the standard SALBP library, with Gurobi and CPLEX providing commercial MIP and CP comparisons. Relative to standard SALBP-2 optima, the two limits increase the best-known cycle time by 16.49% and 61.02% on average. The best-performing SAT configurations find a feasible solution for every case, solve more cases to optimality than each commercial solver, and when both prove optimality, are almost always faster under the reported settings.
Create a lesson
Related papers
Challenging Benchmarks for Diagrammatic Equivalence of Circuits in TPTP and SMT-LIB
Julie Cailler, Noé Delorme, Sophie Tourret
Dynamic Polyhedral Logic
Nick Bezhanishvili, Laura Bussi, Vincenzo Ciancia et al.
Exact SAT and Constraint Programming for Job Shop Scheduling with Time-Varying Peak Power Constraints
Huy Tuan Nguyen, Duc Trung Kim Nguyen, Khanh To Van
Design and Empirical Characterization of a Hardware-Realized Turing Machine with Automated Card-Based Programming
Agrima Regmi, Jenish Pant, Pratistha Sapkota et al.
Comparison Invariants for Verifying Control Invariance
Promit Panja, André Platzer
On existential Büchi arithmetic in two coprime bases
Joris Nieuwveld