Javascript must be enabled to continue!
Time and space multi-manned assembly line balancing problem using genetic algorithm
View through CrossRef
Purpose: Time and Space assembly line balancing problem (TSALBP) is the problem of balancing the line taking the area required by the task and to store the tools into consideration. This area is important to be considered to minimize unplanned traveling distance by the workers and consequently unplanned time waste. Although TSALBP is a realistic problem that express the real-life situation, and it became more practical to consider multi-manned assembly line to get better space utilization, few literatures addressed the problem of time and space in simple assembly line and only one in multi-manned assembly line. In this paper the problem of balancing bi-objective time and space multi-manned assembly line is proposedDesign/methodology/approach: Hybrid genetic algorithm under time and space constraints besides assembly line conventional constraints is used to model this problem. The initial population is generated based on conventional assembly line heuristic added to random generations. The objective of this model is to minimize number of workers and number of stations.Findings: The results showed the effectiveness of the proposed model in solving multi-manned time and space assembly line problem. The proposed method gets better results in solving real-life Nissan problem compared to the literature. It is also found that there is a relationship between the variability of task time, maximum task time and cycle time on the solution of the problem. In some problem features it is more appropriate to solve the problem as simple assembly line than multi-manned assembly line.Originality/value: It is the first article to solve the problem of balancing multi-manned assembly line under time and area constraint using genetic algorithm. A relationship between the problem features and the solution is found according to it, the solution method (one sided or multi-manned) is defined.
Omnia Publisher SL
Title: Time and space multi-manned assembly line balancing problem using genetic algorithm
Description:
Purpose: Time and Space assembly line balancing problem (TSALBP) is the problem of balancing the line taking the area required by the task and to store the tools into consideration.
This area is important to be considered to minimize unplanned traveling distance by the workers and consequently unplanned time waste.
Although TSALBP is a realistic problem that express the real-life situation, and it became more practical to consider multi-manned assembly line to get better space utilization, few literatures addressed the problem of time and space in simple assembly line and only one in multi-manned assembly line.
In this paper the problem of balancing bi-objective time and space multi-manned assembly line is proposedDesign/methodology/approach: Hybrid genetic algorithm under time and space constraints besides assembly line conventional constraints is used to model this problem.
The initial population is generated based on conventional assembly line heuristic added to random generations.
The objective of this model is to minimize number of workers and number of stations.
Findings: The results showed the effectiveness of the proposed model in solving multi-manned time and space assembly line problem.
The proposed method gets better results in solving real-life Nissan problem compared to the literature.
It is also found that there is a relationship between the variability of task time, maximum task time and cycle time on the solution of the problem.
In some problem features it is more appropriate to solve the problem as simple assembly line than multi-manned assembly line.
Originality/value: It is the first article to solve the problem of balancing multi-manned assembly line under time and area constraint using genetic algorithm.
A relationship between the problem features and the solution is found according to it, the solution method (one sided or multi-manned) is defined.
Related Results
Multi-manned assembly line balancing problem with balanced load density
Multi-manned assembly line balancing problem with balanced load density
Purpose
– The purpose of this paper is balancing multi-manned assembly lines with load-balancing constraints in addition to conventional ones Most research works ab...
Zhong-Yong as dynamic balancing between Yin-Yang opposites
Zhong-Yong as dynamic balancing between Yin-Yang opposites
Purpose
The purpose of this paper is to comment on Peter Ping Li’s understanding of Zhong-Yong balancing, presented in his article titled “Global implications of the indigenous epi...
Seditious Spaces
Seditious Spaces
The title ‘Seditious Spaces’ is derived from one aspect of Britain’s colonial legacy in Malaysia (formerly Malaya): the Sedition Act 1948. While colonial rule may seem like it was ...
Combination of Synchronised Assembly Precedence Matrices
Combination of Synchronised Assembly Precedence Matrices
Abstract
The planning of assembly lines has always been a complex task, as a large number of factors that influence and disrupt production must be taken into account. Uncer...
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract
A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
BIOMEDICAL ISSUES NECESSITATING LEGAL REGULATION OF GENETICS
BIOMEDICAL ISSUES NECESSITATING LEGAL REGULATION OF GENETICS
The article explores the various biomedical issues surrounding genetics that necessitate legal regulation. Genetics is a rapidly advancing field that holds immense potential for re...
An Assembly Line Multi-Station Assembly Sequence Planning Method Based on Particle Swarm Optimization Algorithm
An Assembly Line Multi-Station Assembly Sequence Planning Method Based on Particle Swarm Optimization Algorithm
<p>Aiming at the problem that the existing assembly sequence planning methods are difficult to meet the multi-station assembly requirements of assembly line, an assembly sequ...
Development and Applications of the SCARA Robot
Development and Applications of the SCARA Robot
In the 1980s, when the author worked for Seiko Epson Corporation as a wristwatch production engineer, consumer needs had become so diversified that wristwatches had to be assembled...

