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A Cyber Physical Interface for Automation Systems—Methodology and Examples

MachinesPublished 14 May 2015Open access
Hung-An Kao, Wenjing Jin, David Siegel, Jay Lee
Citations52
SJR quartileQ2
SJR score0.57
SNIP1.03
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TL;DR

The outcomes from this study demonstrate that machine health state awareness is feasible, and the core technologies can aim mechanical systems systematically develop its CPS, and this can lead to additional product revenue for the manufacturers, and also a potential competitive edge in the market place.

Abstract

Cyber physical systems (CPS) in a manufacturing and automation context can be referred to different manufacturing process, including design, simulation, control, and verification. However, for data analytics, the concept of CPS is relatively new, and a standard methodology is lacking on how to incorporate this type of interface for automation applications. This study discusses a modeling methodology for a cyber physical interface and presents the five levels of information for a cyber physical system, that range from the data connection level to the system configuration level. In order to achieve this awareness and health state of the machine and system, a technical approach that uses adaptive health monitoring algorithms is presented. Lastly, an experimental study on a machine tool ball screw is highlighted, in which a predictive model and a cyber physical interface is developed for this application. The outcomes from this study demonstrate that machine health state awareness is feasible, and the core technologies can aim mechanical systems systematically develop its CPS. This can lead to additional product revenue for the manufacturers, and also a potential competitive edge in the market place.

Keywords

Engineering