Title :
Ant Colony Algorithm and Simulated Annealing Algorithm Based Process Route Optimization
Author :
Dehui Zhai ; Faping Zhang ; Bo Gao ; Wenli Han ; Tiguang Zhang ; Jiajun Zhang
Author_Institution :
Sch. of Mech. Eng., Beijing Inst. of Technol., Beijing, China
Abstract :
Process route sequencing is one of the key technologies for computer aided process planning (CAPP). In this paper, manufacturing feature was divided into several feature process elements and the precedence constraint matrix was generated by fully considering the constraint relationship among feature process elements. A hybrid algorithm, based on ant colony algorithm and simulated annealing algorithm, was proposed for process route sequencing. Considering the machine tools, cutting tools and fixtures as the manufacturing resources, minimal number of manufacturing resources changes served as the objective function to optimize the process route. The ant colony algorithm was adopted to traverse under the constraint rules among all the feature process elements, and simulated annealing algorithm was introduced to update pheromones to find the optimal process route meeting the constraint rules. To verify performance of the proposed approach, experimental studies have been conducted and comparisons have been made between this approach and some previous works. The experimental results show that the proposed approach has achieved significant improvement for process route sequencing.
Keywords :
ant colony optimisation; computer aided production planning; cutting tools; fixtures; machine tools; simulated annealing; CAPP; ant colony algorithm; computer aided process planning; cutting tools; feature process elements; fixtures; hybrid algorithm; machine tools; manufacturing resources; precedence constraint; process route optimization; process route sequencing; simulated annealing algorithm; Cutting tools; Fixtures; Machine tools; Manufacturing; Simulated annealing; Turning; ant colony algorithm; feature process element; process route; simulated annealing algorithm;
Conference_Titel :
Enterprise Systems Conference (ES), 2014
Conference_Location :
Shanghai
Print_ISBN :
978-1-4799-5553-4