CN103632222A - Manufacturing resource service state monitoring system - Google Patents

Manufacturing resource service state monitoring system Download PDF

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Publication number
CN103632222A
CN103632222A CN201310577493.0A CN201310577493A CN103632222A CN 103632222 A CN103632222 A CN 103632222A CN 201310577493 A CN201310577493 A CN 201310577493A CN 103632222 A CN103632222 A CN 103632222A
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Prior art keywords
data
manufacture
resource
monitoring system
database
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CN201310577493.0A
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Chinese (zh)
Inventor
曹岩
姚慧
范庆明
曹森
杜江
白瑀
杨丽娜
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Xian Technological University
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Xian Technological University
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/30Computing systems specially adapted for manufacturing

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  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)
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Abstract

The invention discloses a manufacturing resource service state monitoring system, which comprises a GUI and graphics display module, a data calculation and data-graphics conversion module and a database operation module; the GUI and graphics display module is used for drawing graphics by using an MFC-packed GDI function, distinguishing different states of a working procedure by virtue of different colors and the graphics, and drawing according to a real time for displaying a time coordinate; the data calculation and data-graphics conversion module can be used for convenient operation of dates by using an embedded calculation function in a database, and a complicated algorithm does not need to be designed by self; the database operation module comprises an equipment information management function sub module and an equipment state information management function sub module. Based on the research on a system structure of the manufacturing resource service state monitoring system, a simple workshop manufacturing resource model is created; the preliminary manufacturing resource service state monitoring system is designed, and basic function modules are realized; based on the system, an enterprise can develop the function of the system, the goal of lean production and manufacturing is realized, and optimal configuration and dynamic scheduling of resources can be facilitated.

Description

A kind of manufacture resource service condition monitoring system
Technical field
The invention belongs to and manufacture resource administration field, relate in particular to a kind of manufacture resource service condition monitoring system.
Background technology
The enterprise information system of past manufacturing enterprise's use, mainly refers to the system-Level software that these class administration and supervision authorities of MRP/MRPII/ERP are used.A most important function of the management information system such as MRP/MRPII/ERP is exactly according to the manufacture resource situation of producing order and enterprise, process calculating generation MPS ( master Production Schedule, be called for short MPS).To a certain extent, it can effectively utilize Enterprise Resource be enterprise more low-cost, complete order more efficiently.Yet many units that implement this class management information system in enterprise in fact, can not bring into play the function of system completely.Here there are many reasons, yet have any not ignore: the management information system of most of enterprise can not be effectively, follow the tracks of in real time, obtain the information that current enterprise manufactures resource service state.Enterprise manufactures resource situation and constantly changes along with the time, and it is extremely crucial that it generates correct MPS for management information system.If the management information system on upper strata can not obtain the information of effective Service Source state in time, so whole management information system cannot play due effect.
Can dynamic coordinate resource sharing and the responding to height customization market demand fast in order to make MIS up and to manufacture information breach ,Shi enterprise between resource (data of the departments such as workshop, warehouse), modern enterprise information system increased be called manufacturing execution system ( manufacturing Executive System, be called for short MES) software section.This system is at length distributed to the MPS of tension management infosystem each manufacturing sector of enterprise and each manufacturing equipment on the one hand; On the other hand, all manufacturing resource informations of system You Jiang enterprise are uploaded to the management information system on upper strata, for it, calculate and generate MPS.
Summary of the invention
The object of the present invention is to provide a kind of manufacture resource service condition monitoring system, be intended to carry out resource evaluation, optimization and dynamic debugging configuration, realize the target that lean production is manufactured, promote distributing rationally and dynamic dispatching of resource.
The present invention is realizing like this, and a kind of manufacture resource service condition monitoring system comprises GUI figure and display module, data calculate and data-figure modular converter, database manipulation module.
GUI and image display module are used for: with the GDI function that MFC has encapsulated, carry out graphing, distinguish the different conditions of operation with different colors and figure, draw with displaying time coordinate actual time.
Data calculate and data-figure modular converter usage data storehouse in built-in computing function (being mainly the calculating of time period), can carry out easily the computing of date aspect, and without the algorithm of designed, designed complexity.
Database manipulation module comprises equipment information management function sub-modules and status information of equipment management function submodule.
The realization of equipment information management function:
According to the result of manufacturing Resource Modeling, take engine lathe and plain milling machine to set up data model as example, and added C615 wherein, C618, C620, the supplemental characteristic of the Multiple Type of several lathes such as X61.In database, the lathe that each is actual, has a model field to point to the parameter in this tables of data, and user can be by checking that different list items obtains the static parameter of certain lathe.And task maker can, as reference, assign different task arranges.
The realization of status information of equipment management function:
The data of Input of Data of take are basis, by " data calculate and the conversion of data-figure " module and " GUI and image display module ", on screen, generate colored statistical graph, user can check the work at present state of equipment intuitively, and the mutual relationship of task, operation in equipment and manufacturing system.
The mode of the statistical graph that further, status information of equipment management function submodule generates is at present by following two kinds:
A. take the time as horizontal ordinate, each lathe be ordinate, draw that all lathes are processing with operation and the relevant information of operation of subscribing processing.
B. all workpiece that the time is horizontal ordinate, a task of take are ordinate, draw processing situation and the operation relevant information of the corresponding operation of all workpiece.
Further, the implementation method of database and the renewal of data comprise:
A. the foundation of data model.For a general job shop, set up a less manufacture resource model, wherein should include conventional machine tool type, comprise car, milling etc.Meanwhile, modeling should be considered expansion requirement from now on.
B. the conversion of data model.The manufacture resource model establishing, need to just can be applied among program through two kinds of conversions.The first, be that manufacture resource model is converted to database structure, to facilitate system queries; The second, be manufacture resource model to be converted to the data structure of program, make user can in program, use neatly these to manufacture resource, with generating report forms, even be that it is optimized to calculating.
C. the renewal of database data.Database Systems, as the central real-time data base of enterprise, by workshop level computer system or by manufacturing equipment computer control, are carried out renewal and the modification of data in real time to it.
Further, obtaining of the implementation method of software and raw data comprises:
A. raw data obtains.
B. manufacture monitoring resource.In the task amount that enterprise-level management system (as ERP) is assigned and enterprise, available manufacture stock number is compared, if do not mate, returns task requests and revises, and report current available manufacture stock number.
C. the statistics of data.By enterprise-class tools, assign statistics instruction, generate Enterprise Resource form.
D. operational mode.Select C/S, i.e. customer end/server mode.
effect gathers
Manufacture resource service condition monitoring system of the present invention, manufactures in research on the basis of system architecture of resource service condition monitoring system, and take a virtual workshop is example, has set up a simple workshop and has manufactured resource model; Designed a preliminary manufacture resource service condition monitoring system, realized its basic functional module, enterprise may be calculated once for basis and expands its function, realizes the target that lean production is manufactured, and promotes distributing rationally and dynamic dispatching of resource.
Accompanying drawing explanation
Fig. 1 is the functional module structure figure of the manufacture resource service condition monitoring system that provides of the embodiment of the present invention.
Embodiment
In order to make object of the present invention, technical scheme and advantage clearer, below in conjunction with drawings and Examples, the present invention is further elaborated.Should be appreciated that specific embodiment described herein, only in order to explain the present invention, is not intended to limit the present invention.
Fig. 1 shows the functional module structure figure of manufacture resource service condition monitoring system of the present invention, as shown in the figure, the present invention is realizing like this, and a kind of manufacture resource service condition monitoring system comprises GUI figure and display module 1, data calculate and data-figure modular converter 2, database manipulation module 3.
GUI and image display module 1, carry out graphing for the GDI function having encapsulated with MFC, distinguishes the different conditions of operation with different colors and figure, draws with displaying time coordinate actual time.
Data are calculated and data-figure modular converter 2, and built-in computing function (being mainly the calculating of time period) in usage data storehouse, can carry out the computing of date aspect easily, and without the algorithm of designed, designed complexity.
Database manipulation module 3, comprises equipment information management function sub-modules and status information of equipment management function submodule.
The realization of equipment information management function:
According to the result of manufacturing Resource Modeling, take engine lathe and plain milling machine to set up data model as example, and added C615 wherein, C618, C620, the supplemental characteristic of the Multiple Type of several lathes such as X61.In database, the lathe that each is actual, has a model field to point to the parameter in this tables of data, and user can be by checking that different list items obtains the static parameter of certain lathe.And task maker can, as reference, assign different task arranges.
The realization of status information of equipment management function:
The data of Input of Data of take are basis, by " data calculate and the conversion of data-figure " module and " GUI and image display module ", on screen, generate colored statistical graph, user can check the work at present state of equipment intuitively, and the mutual relationship of task, operation in equipment and manufacturing system.
The mode of the statistical graph that further, status information of equipment management function submodule generates is at present by following two kinds:
A. take the time as horizontal ordinate, each lathe be ordinate, draw that all lathes are processing with operation and the relevant information of operation of subscribing processing.
B. all workpiece that the time is horizontal ordinate, a task of take are ordinate, draw processing situation and the operation relevant information of the corresponding operation of all workpiece.
Further, the implementation method of database and the renewal of data comprise:
A. the foundation of data model.For a general job shop, set up a less manufacture resource model, wherein should include conventional machine tool type, comprise car, milling etc.Meanwhile, modeling should be considered expansion requirement from now on.
B. the conversion of data model.The manufacture resource model establishing, need to just can be applied among program through two kinds of conversions.The first, be that manufacture resource model is converted to database structure, to facilitate system queries; The second, be manufacture resource model to be converted to the data structure of program, make user can in program, use neatly these to manufacture resource, with generating report forms, even be that it is optimized to calculating.
C. the renewal of database data.Database Systems, as the central real-time data base of enterprise, by workshop level computer system or by manufacturing equipment computer control, are carried out renewal and the modification of data in real time to it.
Further, obtaining of the implementation method of software and raw data comprises:
A. raw data obtains.
B. manufacture monitoring resource.In the task amount that enterprise-level management system (as ERP) is assigned and enterprise, available manufacture stock number is compared, if do not mate, returns task requests and revises, and report current available manufacture stock number.
C. the statistics of data.By enterprise-class tools, assign statistics instruction, generate Enterprise Resource form.
D. operational mode.Select C/S, i.e. customer end/server mode.
Manufacture resource service condition monitoring system of the present invention, manufactures in research on the basis of system architecture of resource service condition monitoring system, and take a virtual workshop is example, has set up a simple workshop and has manufactured resource model; Designed a preliminary manufacture resource service condition monitoring system, realized its basic functional module, enterprise may be calculated once for basis and expands its function, realizes the target that lean production is manufactured, and promotes distributing rationally and dynamic dispatching of resource.
Although above-mentioned, by reference to the accompanying drawings the specific embodiment of the present invention is described; but be not limiting the scope of the invention; one of ordinary skill in the art should be understood that; on the basis of technical scheme of the present invention, those skilled in the art do not need to pay various modifications that performing creative labour can make or distortion still within protection scope of the present invention.

Claims (4)

1. manufacture a resource service condition monitoring system, it is characterized in that, described manufacture resource service condition monitoring system comprises: GUI figure and display module, data calculating and data-figure modular converter, database manipulation module;
GUI and image display module, carry out graphing for the GDI function having encapsulated with MFC, distinguishes the different conditions of operation with different colors and figure, draws with displaying time coordinate actual time;
Data are calculated and data-figure modular converter, are connected with GUI and image display module, for the built-in computing function in usage data storehouse, carry out the computing of date aspect;
Database manipulation module, calculates with data and data-figure modular converter is connected, and comprises equipment information management function sub-modules and status information of equipment management function submodule,
The realization of equipment information management function:
According to the result of manufacturing Resource Modeling, take engine lathe and plain milling machine sets up data model as example, and added C615, C618, C620, the supplemental characteristic of the Multiple Type of several lathes of X61, in database, the lathe that each is actual, has a model field to point to the parameter in tables of data, and user can be by checking that different list items obtains the static parameter of certain lathe;
The realization of status information of equipment management function:
The data of Input of Data of take are basis, by data, calculate and data-figure modular converter and GUI and image display module, on screen, generate colored statistical graph, user can check the work at present state of equipment intuitively, and the mutual relationship of task, operation in equipment and manufacturing system.
2. manufacture resource service condition monitoring system as claimed in claim 1, is characterized in that, the mode of the statistical graph that status information of equipment management function submodule generates is at present by following two kinds:
One, take the time as horizontal ordinate, each lathe be ordinate, draw that all lathes are processing with operation and the relevant information of operation of subscribing processing;
Two, take all workpiece that the time is horizontal ordinate, a task is ordinate, draws processing situation and the operation relevant information of the corresponding operation of all workpiece.
3. manufacture resource service condition monitoring system as claimed in claim 1, is characterized in that, the implementation method of database and the renewal of data comprise:
One, the foundation of data model, for a general job shop, sets up and manufactures resource model, includes conventional machine tool type, comprises car, milling;
Two, the conversion of data model, set up to manufacture resource model, need to just can be applied among program through two kinds of conversions, and the first, be that manufacture resource model is converted to database structure, to facilitate system queries; The second, be manufacture resource model to be converted to the data structure of program, user can use and manufacture resource neatly in program, with generating report forms, to being optimized calculating;
Three, the renewal of database data, Database Systems are as the central real-time data base of enterprise, by workshop level computer system or by manufacturing equipment computer control, in real time to carrying out renewal and the modification of data.
4. manufacture resource service condition monitoring system as claimed in claim 1, is characterized in that, obtaining of the implementation method of software and raw data comprises:
(1) raw data obtains;
(2) manufacture monitoring resource, in the task amount that enterprise-level management system is assigned and enterprise, available manufacture stock number is compared, if do not mate, returns task requests and revises, and report current available manufacture stock number;
(3) statistics instruction is assigned by the statistics ,You enterprise-class tools of data, generates Enterprise Resource form;
(4) operational mode, selects C/S, i.e. customer end/server mode.
CN201310577493.0A 2013-11-19 2013-11-19 Manufacturing resource service state monitoring system Pending CN103632222A (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104122873A (en) * 2014-07-31 2014-10-29 武钢集团昆明钢铁股份有限公司 Steel-making process data management system and method
CN111882250A (en) * 2020-06-17 2020-11-03 广东城市智慧物联网工程有限公司 Management scheduling method and system for medical resources and computer readable storage medium
CN113627759A (en) * 2021-07-30 2021-11-09 上海航天精密机械研究所 Dynamic scheduling method for manufacturing resources of mixed line manufacturing system

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CN102402218A (en) * 2011-11-10 2012-04-04 浙江工业大学 Intelligent industrial network monitoring system
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CN102402218A (en) * 2011-11-10 2012-04-04 浙江工业大学 Intelligent industrial network monitoring system
CN103165014A (en) * 2013-04-15 2013-06-19 南京航空航天大学 Monitoring teaching demonstration method and system of internet-of-things-based discrete manufacturing workshop

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104122873A (en) * 2014-07-31 2014-10-29 武钢集团昆明钢铁股份有限公司 Steel-making process data management system and method
CN104122873B (en) * 2014-07-31 2017-05-17 武钢集团昆明钢铁股份有限公司 Steel-making process data management system and method
CN111882250A (en) * 2020-06-17 2020-11-03 广东城市智慧物联网工程有限公司 Management scheduling method and system for medical resources and computer readable storage medium
CN111882250B (en) * 2020-06-17 2024-07-12 广东城市智慧物联网工程有限公司 Medical resource management scheduling method, system and computer readable storage medium
CN113627759A (en) * 2021-07-30 2021-11-09 上海航天精密机械研究所 Dynamic scheduling method for manufacturing resources of mixed line manufacturing system
CN113627759B (en) * 2021-07-30 2023-12-12 上海航天精密机械研究所 Dynamic production scheduling method for manufacturing resources of hybrid wire manufacturing system

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Application publication date: 20140312