The Methodology of Development of the Manufacturing Information Acquisition System (MIAS) for Production Management

2014 ◽  
Vol 474 ◽  
pp. 27-32 ◽  
Author(s):  
Grzegorz Ćwikła

The acquisition of data on the state of the production process is essential in the management of a company. The ERP system, as well as company management, should be continuously supplied with up-to-date information about the state of the production system, but in many cases there is a gap between the business and manufacturing layers of a company. Data on the state of production orders, machines, materials and human resources have to be automatically acquired, transmitted, archived, pre-processed and converted to a form compatible with business layer systems. There is a need for the development of methodology, describing methods of data acquisition and pre-processing directly from the shop floor. The methodology should be universal, covering the needs of different types of technological processes (discrete, continuous, batch), branches of industry and levels of production automation, etc. This paper presents the methodology of the development of Manufacturing Information Acquisition System (MIAS) covering needs for automated data acquisition, archiving and pre-processing systems, able to provide on-line production processes information for various clients. MIAS can be used as a link between data sources, MES/ERP systems and company management. Furthermore, it can be used as a stand-alone management information tool.

2014 ◽  
Vol 1036 ◽  
pp. 852-857 ◽  
Author(s):  
Grzegorz Ćwikła ◽  
Agnieszka Sękala ◽  
Marcin Woźniak

This paper describes the expert system created to support development of Manufacturing Information Acquisition System (MIAS) for any company, regardless of companys technological processes characteristics. Proper acquisition of data describing the state of the production processes is crucial in the management of a company, because real-time information is a base for decision making and achieving operational excellence. Information on the state of production system have to be automatically acquired from various sources, pre-processed and made available for higher-layers IT systems (MES, ERP). One of the stages of development of MIAS is the synthesis of technical and organizational solutions responsible for the acquisition of various types of data. In order to support designers an expert system MIAS Advisor has been developed, supporting the choice of methods and technical means for the acquisition of data on various aspects of the operation of a company. The algorithm of the expert system operation, which allows easy updating of a set of rules of the system has been presented.


2014 ◽  
Vol 657 ◽  
pp. 808-812 ◽  
Author(s):  
Grzegorz Ćwikła ◽  
Cezary Grabowik ◽  
Witold Janik

Real-time information feed describing the state of production system is the key to successful management of any company, because up-to-date information is necessary basis for decision making in company operating on globalised market. Data describing the state of the production system should be collected in the manufacturing system, pre-processed, interpreted, filtered, archived and finally, either used in IT systems supporting company management (MES, ERP), or directly presented to crew and managers responsible for specific areas of interest. Possibility of data acquisition in companies strongly depends on specific of branch of industry, technological processes automation level, number of operations performed manually, type of production, etc. Acquisition of data on state of the production system should be carried-on automatically, without involvement of workers. This paper presents overall description of issues of data acquisition in company, proposed Manufacturing Information Acquisition System (MIAS) and the case study of data acquisition in company leading continuous, automated production processes Central Wastewater Treatment Plant (WWTP) in Gliwice, Poland.


Author(s):  
Jai-Kyung Lee ◽  
Seung-Woo Lee ◽  
So-Jeong Nam ◽  
Jong-Kweon Park

2013 ◽  
Vol 385-386 ◽  
pp. 1260-1263 ◽  
Author(s):  
Yun Lei Zhang ◽  
Xing Wu ◽  
Pan Nan ◽  
Xu Wang

In order to obtain the key parameters which required by the Vehicle-Carrying test, the multi-channel data acquisition system based on CompactRIO embedded platform was developed. This system was satisfied the requirement of high reliability, inexpensive, portable and rapid configuration, Then, synchronized control technology such as queue, FIFO, interrupt and the superior system architecture which is compare to the state machine has been introduced in detail. Finally, availability and stability of the system were proved through the pressure text of data acquisition.


2018 ◽  
Vol 27 (14) ◽  
pp. 1850225 ◽  
Author(s):  
Shijie Peng ◽  
Zhiting Zhang ◽  
Chonglong Wu ◽  
Gang Liu

This system effectively realizes the end-to-end data exchange and the data gathering from each terminal to the Geological Gathering Cloud (GGC). It is accomplished through QuantyML a private synchronization protocol reference SyncML and based on Json. It also provides high precision, high reliable positioning, navigation services to achieve meter level positioning through beidou navigation system and the visual data acquisition UI in the light of the mobile GIS map service technology. System integration and automation of scattered geological entities through the field investigation of the management, to facilitate the detailed description and accurate record of the collection content, provide rich data support for subsequent geological research. This paper introduces the design and realization of Mineral Information Acquisition System (MIAS), emphatically introduces the design principle QuantyML protocol based on Json and its implementation details.


2011 ◽  
Vol 317-319 ◽  
pp. 1219-1222
Author(s):  
Qing Song ◽  
Zi Lan Chen ◽  
Yuan Luo ◽  
Jie Li ◽  
Cun Wei Zou ◽  
...  

This article combines the virtual instrumentation with the droplet analysis technique. According to the characters of the signal collected by the fiber capacity drop analyzer, the system employs dual channel acquisition. The design of the interface program is completed by invoking the Dynamic Library files of the data acquisition card, taking the advantages of the dynamic linking technology of LABVIEW. Friendly interface is designed. And the functions, such as data acquisition, display and save, are realized. The information acquisition system for the fiber capacitive drop analyzer is finally achieved by LABVIEW.


2016 ◽  
Vol 2016 (4) ◽  
pp. 295-303
Author(s):  
Галина Коновалова ◽  
Galina Konovalova

Today at engineering companies there is the fol-lowing problem: the inconsistency in management decision-making causing high production costs, a longer duration of a production cycle and a nonobservance of timing of orders. To solve this problem the author of this paper has analyzed with system positions produc-tion and management at an engineering company. A system model is offered, there is described an enlarged structure, hierarchy and kinds of ends, a functional model of engineering company management is formed. In the functional model there are presented functions of a company, production and information flows. In the management scheme of a company there are formulated strategies, ends and indices of efficiency in the field of investigations and developments, finances, marketing, production. A production strategy, budget and orders connect the scheme of company management and the scheme of production management. In the scheme of production management there is located a development of processes for decision-making support, scheduling, online planning, production control, material procurement, resources control, servicing management, company shipments. The scheme of production management has two levels: a company level and a workshop one. Functions of online production planning at a company level provide the formation of a production program, plan-schedules of manufacturing products, parts, units, material requirements, manhours, production costs. Functions of on-line production planning at the workshop level ensure the formation of production schedule and working up urgent plan tasks for production sections (brigades). The influence of external and internal factors upon management system formation is described. The technical solutions offered are introduced at the closed company of “UK “Bryansk Engineering Plant” and have a universal character and may be used at all engineering companies of the country.


2020 ◽  
Vol 65 (1) ◽  
pp. 123-128
Author(s):  
Mihaela Molnar Molnar

The paper presents a study for a system for data acquisition in order to monitor online the state of the insulation stator winding of hydro generators, using the LabVIEW graphical programming language. The data acquisition system allows the acquisition of the quantities of interest in the process and at the same time, through it, the creation of a strong database for the current state of the hydro generator insulation.


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