Title of article :
Optimization of Cutting Parameters Based on Production Time Using Colonial Competitive (CC) and Genetic (G) Algorithms
Author/Authors :
Towsyfyan, Hossain University of Hoddersfield, UK , Adnani Salehi, Adnan Institute of Standard and Industrial Research of Iran , Mohammadi, Shahed Ayandegan Institute of Higher Education, Tonekabon, Iran , Hadipour Moradi, Sepideh Sepahan Institute of Higher Education, Isfahan, Iran , Freegah, Basim Al-Mustansiriyah University, Baghdad, Iraq
Pages :
12
From page :
47
To page :
58
Abstract :
A properly designed machining procedure can significantly affect the efficiency of the production lines. To minimize the cost of machining process as well as increasing the quality of products, cutting parameters must permit the reduction of cutting time and cost to the lowest possible levels. To achieve this, cutting parameters must be kept in the optimal range. This is a non-linear optimization with constrains and it is difficult for the conventional optimization algorithms to solve this problem. This paper presents Colonial Competitive Algorithm (CCA) approach to determine the optimal cutting parameters required to minimize the cutting time while maintaining an acceptable quality level.CCA is inspired by competition mechanism among imperialists and colonies, in contrast to evolutionary algorithms that perform the exploration and exploitation in the solution space aiming to efficiently find near optimal solutions using a finite sequence of instructions. Therefore, a case study from literature was considered and optimized using of CCA. To validate the proposed approach, the results of CCA were finally compared with the Genetic Algorithm (GA). Based on the results, CCA has demonstrated excellent capabilities such as accuracy, faster convergence and better global optimum achievement.
Keywords :
Optimization , Cutting process , Colonial Competitive Algorithm
Journal title :
Journal of Modern Processes in Manufacturing and Production
Serial Year :
2017
Record number :
2523907
Link To Document :
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