A Unified Multi-coarse Manufacturing Resource Model and Its Semantization Based on Extended OWL-S

2014 ◽  
Vol 13 (11) ◽  
pp. 1831-1836 ◽  
Author(s):  
Tan Wei ◽  
Yao Xifan ◽  
Liu Xuan
Author(s):  
P Vichare ◽  
A Nassehi ◽  
S Newman

The capability of any manufacturing system primarily depends on its available machine tools. Thus machine tool representation is a vital part of modelling any manufacturing system. With the rapid advances in computerized numerically controlled (CNC) machines, machine tool representation has become a more challenging task than ever before. Today's CNC machine tools are more than just automated manufacturing machines, as they can be considered multi-purpose, multi-tasking, and hybrid machining centres. This paper presents a versatile methodology for representing such state-of-the-art CNC machining system resources. A machine tool model is a conceptual representation of the real machine tool and provides a logical framework for representing its functionality in the manufacturing system. There are several commercial modelling tools available in the market for modelling machine tools. However, there is no common methodology among them to represent the wide diversity of machine tool configurations. These modelling tools are either machine vendor specific or limited in their scope to represent machine tool capability. In addition, the current information models of STEP-NC, namely ISO 14649, can only describe machining operations, technologies, cutting tools, and product geometries. However, they do not support the representation of machine tools. The proposed unified manufacturing resource model (UMRM) has a data model which can fill this gap by providing machine specific data in the form of an EXPRESS schema and act as a complementary part to the STEP-NC standard to represent various machine tools in a standardized form. UMRM is flexible enough to represent any type of CNC machining centre. This machine tool representation can be utilized to represent machine tool functionality and consequential process capabilities for allocating resources for process planning and machining.


2009 ◽  
Vol 25 (6) ◽  
pp. 999-1007 ◽  
Author(s):  
Parag Vichare ◽  
Aydin Nassehi ◽  
Sanjeev Kumar ◽  
Stephen T. Newman

2009 ◽  
Vol 69-70 ◽  
pp. 555-559
Author(s):  
Yuan Kun Gui ◽  
Qiao Ying Dong ◽  
Shu Lin Kan

In order to achieve the manufacturing resource sharing inside and outside the enterprise in the multistage manufacturing system, the multidimensional manufacturing resource concept model was presented from two aspects. The manufacturing resource application integration model faced application systems and the capacity manufacturing unit model faced manufacturing capacity were established respectively. The structure and modeling method of multidimensional manufacturing resource model based on meta-model was presented. The meta-model consisted of information layer, model layer and meta-model layer and unified the multidimensional model in the same model frame. Finally, the integration method of the model based on eXtensible Markup Language(XML) was established. The presented multi-dimensional manufacturing resource model can achieve the internal and exterior sharing in the networked manufacturing environment.


2013 ◽  
Vol 2013 ◽  
pp. 1-10 ◽  
Author(s):  
Linan Zhu ◽  
Yanwei Zhao ◽  
Wanliang Wang

Cloud Manufacturing and Cloud Service is currently one of the main directions of development in the manufacturing industry. Under the Cloud Manufacturing environment, the characteristics of publishing, updating, searching, and accessing manufacturing resources are massive, complex, heterogeneous, and so forth. A bilayer manufacturing resource model with separation of Cloud End and Cloud Manufacturing Platform is proposed in this paper. In Cloud End, manufacturing resources are divided into single resource and complex resource, and a basic data model of manufacturing resources oriented to enterprise interior is established to store the physical characteristics. In Cloud Manufacturing Platform, a resource service attribute model oriented to actual users is established to store the service characteristics. This model is described in detail and realized with stateful Web Service Description Language (WSDL) document. An example is provided for illustrating the implementation of the concept.


2010 ◽  
Vol 97-101 ◽  
pp. 2752-2757
Author(s):  
Qiao Ying Dong ◽  
Shu Lin Kan ◽  
Yuan Kun Gui ◽  
Chun Zhi Cai

The manufacturing capacity-oriented manufacturing resource model of multistage manufacturing system was presented to achieve the manufacturing resource sharing among the enterprises. This model abstracted various resources as capacity manufacturing unit to accommodate the manufacturing resource sharing. The manufacturing process extraction and graphical description methods based on resource were put forward, which solved the disjointedness problem between resource model and application through related information integration. This model achieves effective equipment state monitoring, personnel configuration and product man-hour tracking in the enterprise and realizes the manufacturing resource sharing based on manufacturing capacity in networked manufacturing environment, so that to make the capacity of enterprises clear and maximum.


2007 ◽  
pp. 116-132 ◽  
Author(s):  
S. Kimelman ◽  
S. Andyushin

The article basing upon estimation of the social and economic potential of Russian Federation subjects shows that the resource model of economic development is suitable for nearly half of them. The advantages of this model are described using the example of the Far Eastern Federal District subjects that could be the proof of the necessity of "resource correction" of regional economic policy in Russia.


Ergodesign ◽  
2020 ◽  
Vol 2020 (2) ◽  
pp. 58-62
Author(s):  
Alexander Anishenko ◽  
Tatyana Krotenko ◽  
Dmitriy Erokhin

A systematic analysis of the concept of "sustainable development of the region" is carried out . The classification of factors that affect the process of sustainable development is given. A three -factor resource model for the formation of sustainable development of the region , including human, financial and raw materials, is described. The necessity of systematic monitoring as an element of regional development control is substantiated.


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