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Abstract Topic: Industrial and Manufacturing Engineering

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Drivers of Logistics Service Innovation in Third Party Logistics Business
Yeni Sumantri

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Corresponding Author
Yeni Sumantri

Institutions
School of Industrial Engineering, Engineering Faculty, Universitas Brawijaya, Indonesia
yeni[at]ub.ac.id

Abstract
The desire to focus on the companys core business processes has led many companies to outsource their logistics functions to Third Party Logistics (TPL). These conditions create the demand for logistics services so that the TPL business grows significantly. Service innovation from TPL plays an important role in the development of logistics business clusters because TPL is a new growth source from the regional and national economy. What factors drive TPL business to innovate has not been much studied in the logistics research literature. Few studies have addressed drivers of logistics service innovation. Lack of empirical research on the drivers of logistics service innovation in TPL business, so that this paper provides empirical studies on the factors that influence innovation in TPL business. This study aims to identify the factors that drive innovative logistics services from TPL business so that they can provide the basis for developing innovation in TPL. Content analysis of extant literature was conducted. This study found that a lot of knowledge about innovation drivers in TPL was identified in theoretical based, but many of these components were not implemented yet. This study shows that TPL will achieve successful operational performance if innovation is implemented with proper knowledge management so the TPL can achieve effective communication networks.

Keywords
Logistics Service Innovation, Logistics Service Providers, Third Party Logistics, Innovation

Topic
Industrial and Manufacturing Engineering

Link: https://ifory.id/abstract/UH8LbRndk9vJ


Implementation of Programmable Logic Controller In Multi Machine Operation With Product Sorting and Packaging Based on Color Detection
Fathahillah (a*), Meilana Siswanto (b), Mila Fauziyah(c), Robinsar Parlindungan(d), Ratna Ika Putri(c), Yong-Gi, Roh (e)

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Corresponding Author
Fathahillah Fathahillah

Institutions
(a) Dept. of Electrical Engineering, Universitas Negeri Makassar, Makassar, Indonesia
*) fathahillah[at]unm.ac.id
(b) Dept. of Renewable Energy Engineering, Politeknik Negeri Jember, Jember, Indonesia
(c) Dept. of Electrical Engineering, Politeknik Negeri Malang, Malang, Indonesia
(d) Dept. of Electronics Engineering, Politeknik Negeri Bandung, Bandung, Indonesia
(e) Electricity System Control , Jeonbuk Human Resources Development Institute, Gunsan, Republic of Korea

Abstract
Automation is widely used in various industries to increase the speed, accuracy, and effectiveness of production and reduce the risk of hazards. Generally, the manufacturing industry has a product packaging and sorting process based on size, weight, shape, height and color. At present, the sorting process carried out manually that produces human errors, so it is necessary to develop accurate low-cost automation. Industrial automation requires an automation system having low costs, low maintenance and user-friendly. Programmable Logic Controller (PLC) is one of the most widely used automation equipment in the industry and can be programmed to control the operation of a machine. Advantages of PLC are favored this trend, instead of using custom-made controller systems, quality parts at a reasonable cost, specialized maintenance support. In this paper, PLC has been developed to control multi machine operation with product sorting and packaging based on product color. The multi machine operation consists of three DC motors used for conveyors, two single solenoids, proximity sensors, inductive sensors and limit switches. PLC uses Melsec Mitsubishi with ladder diagram programming using GX work2. The proximity sensor is used to detect the product color. The system is equipped with emergency button and alarm systems to facilitate the implementation of troubleshooting. To facilitate communication with operators and user-friendly systems, human machine interfaces (HMI) are used as interfaces for the system monitoring and controlling. HMI uses Pro-face from Schneider programmed using GP-Pro EX4.0. The ladder diagram has been implemented in PLC and tested on hardware to simulate the system. Based on the test results, Melsec PLC can communicate with HMI and control multi operation machine with product sorting and packaging. The machine can separate and package the metal product based on the color. By using Pro-face Human Machine Interface (HMI), the packaging system can be remotely monitored and controlled automatically.

Keywords
PLC, HMI, Automation, Multi operation machine

Topic
Industrial and Manufacturing Engineering

Link: https://ifory.id/abstract/U36gevwzb8Lp


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