Sri Raharno
Teknik Mesin, Fakuktas Teknik Mesin dan Dirgantata, Institut Teknologi Bandung

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Rancangan konsep sistem pemantauan dan pengelolaan data produksi berbasis configurable virtual workstation (CVWs) Andi Arif Isyanto; Sri Raharno
Jurnal Teknik Mesin Indonesia Vol. 17 No. 2 (2022): Jurnal Teknik Mesin Indonesia
Publisher : Badan Kerja Sama Teknik Mesin Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36289/jtmi.v17i2.388

Abstract

Management of production data that is excessively big and varied is difficult to do manually, so the system that can be used to easily monitor and manage the production data during the process is needed. This study proposes a framework of monitoring and managing production data based on Configurable Virtual Workstation (CVWs) in the rollingstock industry in Indonesia, with a case study of the flat wagon assembly process. The methodology used in this study is by creating a virtual model of assembly elements according to real conditions on the shopfloor. Each of these virtual elements will be connected to each other to get the update information on the shopfloor accurately and transparently to build a cyber-physical system as the first step towards Industry 4.0. Some of the information that can be obtained from the implementations of this system includes: 1) operator working hours; 2) ongoing operation; 3) product completion status; 3) material supply status; 4) product traceability. Based on this information, the actual conditions on the shopfloor can be known and monitored easily and accurately.
Analisis dampak penerapan sistem pengelolaan perkakas berbasis paradigma Industry 4.0: Studi kasus industri padat karya Laulia Ariyani Rangkuti; Sri Raharno
Jurnal Teknik Mesin Indonesia Vol. 17 No. 2 (2022): Jurnal Teknik Mesin Indonesia
Publisher : Badan Kerja Sama Teknik Mesin Indonesia

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.36289/jtmi.v17i2.389

Abstract

In general, production orders will not be completed according to the production schedule if there are obstacles in the production process, such as damaged production machines, material shortages, lack of operators and poor tool management. Solution for this problem, namely tool management, is to use the industry 4.0 paradigm through the development of a cyber physical system. Cyber physical system concept for the tool management system is carried out by giving identity to all tools. At the time the tool will be distributed, the tool must first be scanned using hardware. Through this scanning process, data is obtained in the form of the number of tools that have been distributed and available. The tool availability data is not only used to control tool distribution but also very influential in determining tool requirements plans. The next step after designing a tool management system is to analyze the impact that occurs from the application of a tool management system applied to a labor-intensive industry. The method applied in this analysis is the collection and analysis of current conditions and then compared with conditions that will occur as a consequence of implementing the system. In addition, an analysis of the need for the application of a tool management system is also carried out in terms of hardware requirements and systems for data processing.