CN106292617B - Method and equipment for providing and controlling production process information - Google Patents

Method and equipment for providing and controlling production process information Download PDF

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Publication number
CN106292617B
CN106292617B CN201610991249.2A CN201610991249A CN106292617B CN 106292617 B CN106292617 B CN 106292617B CN 201610991249 A CN201610991249 A CN 201610991249A CN 106292617 B CN106292617 B CN 106292617B
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production
information
virtual
equipment
devices
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CN201610991249.2A
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CN106292617A (en
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刘秋江
栗菲
栗晋升
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Beijing Huajin Hengsheng Technology Co ltd
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Dongguan Count Basic Industrial Technology Co Ltd
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS], computer integrated manufacturing [CIM]
    • G05B19/41865Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS], computer integrated manufacturing [CIM] characterised by job scheduling, process planning, material flow
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/30Nc systems
    • G05B2219/32Operator till task planning
    • G05B2219/32252Scheduling production, machining, job shop
    • 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
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

Abstract

The application aims to provide a method and equipment for providing and controlling production process information. The providing method comprises the following steps: a, acquiring a production query request submitted by a user through user equipment; b, determining corresponding first virtual production line information according to the production query request, wherein the first virtual production line information comprises a plurality of first production devices belonging to the same production process; c providing the first virtual production line information to the user device. The control method comprises the following steps: providing one or more production devices with spare capacity to a user device; acquiring a production execution instruction which is submitted by a user and relates to second virtual production line information, wherein the second virtual production line information comprises one or more second production devices screened by the user from the one or more production devices; and instructing the second production equipment to execute the corresponding production operation according to the production execution instruction. This application has effectively improved production line management and control efficiency and production line configuration efficiency.

Description

Method and equipment for providing and controlling production process information
Technical Field
The present application relates to the field of computers, and more particularly, to a technique for providing and controlling production process information.
Background
With the continuous enhancement of domestic product innovation and the continuous emergence of personalized products, the requirements of customer orders face the conditions of unstable batch, large small batch and the like. The traditional mass production manufacturing model of a factory cannot be adapted gradually, and a new flexible manufacturing model is needed to be adapted and matched. In this case, new challenges are faced in equipment management, production line allocation management, and capacity management. In order to meet the requirement of order change, most of the manufacturing enterprises with a certain scale adopt a manual monitoring mode to upload production data information of production equipment at regular time/irregular time when performing factory management, and factory production line adjustment and allocation are performed uniformly by factory equipment management personnel. Traditional manual operation mode easily causes the error in a plurality of manual links such as statistics, type, gather, analysis, and the high-rise unable convenient, accurate production line equipment information that obtains of mill.
Therefore, there is a need for improvements over existing manual approaches.
Disclosure of Invention
It is an object of the present application to provide a method for providing production process information, wherein the method comprises: a, acquiring a production query request submitted by a user through user equipment; b, determining corresponding first virtual production line information according to the production query request, wherein the first virtual production line information comprises a plurality of first production devices belonging to the same production process; c providing the first virtual production line information to the user device.
According to another aspect of the present application, there is also provided a method for controlling a production process, wherein the method comprises: providing one or more production devices with spare capacity to a user device; acquiring a production execution instruction which is submitted by a user and relates to second virtual production line information, wherein the second virtual production line information comprises one or more second production devices screened by the user from the one or more production devices; and instructing the second production equipment to execute corresponding production operation according to the production execution instruction.
According to another aspect of the present application, there is also provided an apparatus for providing production process information, wherein the apparatus comprises: the system comprises a first device, a second device and a third device, wherein the first device is used for acquiring a production query request submitted by a user through user equipment; the third device is used for determining corresponding first virtual production line information according to the production query request, wherein the first virtual production line information comprises a plurality of first production devices belonging to the same production process; fifth means for providing the first virtual production line information to the user equipment.
According to another aspect of the present application, there is also provided an apparatus for controlling a production process, wherein the apparatus comprises: second means for providing one or more production facilities having spare capacity to the user facility; a fourth device, configured to obtain a production execution instruction submitted by a user regarding second virtual production line information, where the second virtual production line information includes one or more second production devices screened by the user from the one or more production devices; and the sixth device is used for instructing the second production equipment to execute corresponding production operation according to the production execution instruction.
Compared with the prior art, the production condition of each production device is efficiently managed and controlled by the device, and the production condition is timely fed back to the user equipment, so that production management personnel can quickly obtain the equipment running condition of the production line. In addition, the production equipment with spare production capacity can be provided for the user equipment, so that production management personnel can conveniently construct a production line of new order products, flexible configuration of the new production line is achieved, and the contradiction of production delay caused by various actual changes of orders such as order demand diversification and batch instability is effectively solved.
Drawings
Other features, objects and advantages of the present application will become more apparent upon reading of the following detailed description of non-limiting embodiments thereof, made with reference to the accompanying drawings in which:
FIG. 1 is a flow chart of a method for providing production process information provided herein;
FIG. 2 is a flow chart of a method for controlling production process information provided herein;
FIG. 3 is a flow chart of another method provided herein for controlling production process information;
FIG. 4 is a block diagram of an apparatus for providing production process information provided herein;
FIG. 5 is a block diagram of another apparatus for providing production process information provided herein;
FIG. 6 is a block diagram of an apparatus for controlling production process information as provided herein.
The same or similar reference numbers in the drawings identify the same or similar elements.
Detailed Description
The present application is described in further detail below with reference to the attached figures.
As shown in fig. 1, the present application provides a method for providing production process information. The method provides a mode convenient for inquiring the information of the production process for production line management personnel aiming at the real-time inquiry requirement of the production line management personnel on each production device on the production line. The method is mainly based on the fact that production line management personnel send production query requests to equipment of a service network by utilizing operated user equipment, corresponding query/analysis is carried out through the equipment of the service network, corresponding first virtual production line information is determined, wherein the first virtual production line information comprises a plurality of first production equipment belonging to the same production process, and the first virtual production line information is provided to the user equipment.
In a typical configuration of the present application, the terminal, the production information management platform (hereinafter, referred to as a management platform), and the trusted party each include one or more processors (CPUs), input/output interfaces, network interfaces, and memories.
The management platform mainly comprises software and hardware of a cloud server. The Cloud Service end comprises a Public Cloud (Public Cloud) Service end and a Private Cloud (Private Cloud) Service end, wherein the Public or Private Cloud Service end comprises Software-as-a-Service (SaaS), Platform-as-a-Service (PaaS), Infrastructure as a Service (IaaS), and Infrastructure as a Service (IaaS). The memory may include forms of volatile memory in a computer readable medium, Random Access Memory (RAM) and/or non-volatile memory, such as Read Only Memory (ROM) or flash memory (flash RAM). Memory is an example of a computer-readable medium.
Computer-readable media, including both non-transitory and non-transitory, removable and non-removable media, may implement information storage by any method or technology. The information may be computer readable instructions, data structures, modules of a program, or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), Static Random Access Memory (SRAM), Dynamic Random Access Memory (DRAM), other types of Random Access Memory (RAM), Read Only Memory (ROM), Electrically Erasable Programmable Read Only Memory (EEPROM), flash memory or other memory technology, compact disc read only memory (CD-ROM), Digital Versatile Discs (DVD) or other optical storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices, or any other non-transmission medium that can be used to store information that can be accessed by a computing device. As defined herein, computer readable media does not include non-transitory computer readable media (transient media), such as modulated data signals and carrier waves.
The main steps of the method are executed by a management platform. The specific implementation is as follows:
step S110, acquiring a production query request submitted by a user through user equipment. Wherein the user equipment includes but is not limited to: tablet computers, personal computers, mobile phones, etc. The production query request mainly comprises: and inquiring at least one of production line information concerned by production management personnel, order information of the managed order, intermediate product information of the managed order and identity information of the management personnel. For example, a production manager sends a production query request containing information on a certain product model number to a device of the service network by operating the user device. For another example, a production manager sends a production query request including order number information and identity information to a device of the service network by operating the user device.
Step S120, determining corresponding first virtual production line information according to the production query request, where the first virtual production line information includes a plurality of first production devices belonging to the same production process.
Specifically, the management platform may directly determine, from a database, first virtual production line information corresponding to the production query request, where the first virtual production line information includes a plurality of first production devices belonging to the same production process. The first virtual production line information also includes the execution sequence, equipment information, equipment operation state of each first production equipment belonging to the same production process, the comprehensive operation condition of the corresponding production line formed by connecting each first production equipment, and the like.
For example, the management platform asynchronously updates the operation status of each production device in the factory building, the current production line information, the production line scheduling information, the device information, and other operation conditions. When the management platform acquires a production query request, acquiring the production line corresponding to the production line number information and the operation condition of each first production device from a database according to the production line number information in the production query request, and determining corresponding first virtual production line information according to the acquired operation condition.
In an alternative, the production query request provided by the production manager does not include the production line information, but includes the identity information, the order information, or the identity information and the order information. The management platform can inquire the first virtual production line information of each production line or the production line of the appointed order in the authority range according to the identity information. Specifically, the step S120 includes: steps S121 and S122.
Step S121, determining a plurality of corresponding first production devices according to the production query request, where the plurality of first production devices belong to the same production process.
Here, the management platform may query, according to the order information in the production query request, production process information, such as device information of the plurality of first production devices marked with corresponding order information and a middleware transfer relationship between the production devices, in the database, and then perform step S122 based on the obtained production process information.
Or, the management platform determines a corresponding production process according to the production query request, where the production process includes a plurality of first production devices, and then performs step S22.
For example, the management platform queries, according to the order information in the obtained production query request, a production process detail table for producing the corresponding order from the database, where the device information of each first production device and the production sequence of each first production device required for producing the corresponding order are described in the detail table, and then performs step S122 according to the detail table.
And S122, generating first virtual production line information corresponding to the production process according to the plurality of first production devices.
The management platform may describe the device information of each first production device obtained in step S121 and the execution order of each first production device as first virtual production line information, and execute step S130.
In order to vividly provide first virtual production line information for production management personnel, at least two first production devices in the first virtual production line information are connected through indicating information, and the indicating information represents production process information of the production process. The indication information may be an arrow indicating a production process, or a colored connection line indicating a production sequence of each first production device and an execution condition of each first production device at the same time, or the like.
In some embodiments, in order to obtain the operation condition of each first production device in real time, the method further includes: and acquiring the production data information of the first production equipment. Wherein the production data information includes, but is not limited to: intermediate product information, load information, abnormal/normal operation information, scheduling information, and the like, which are produced based on the currently executed order information. The production data information is provided by a collection device installed on the first production equipment.
When a user initiates production information query, the management platform determines corresponding indication information according to production data information of at least two first production devices in the plurality of first production devices, and the indication information represents production flow information of the production process.
When the management platform acquires a production query request containing order information, the acquisition device acquires the device information of each first production device containing the order information from the database, acquires the production data information of each first production device from the corresponding device acquisition device based on the acquired device information, and determines corresponding indication information according to intermediate products output and input by each first production device.
The management platform uses the indication information to connect the two first production devices in the first virtual production line information. That is, the management platform determines the connection relationship of each first production device in the first virtual production line information using the instruction information, and performs step S130.
Step S130, providing the first virtual production line information to the user equipment.
Here, the management platform may provide the first virtual production line information to the user device using a wired or wireless internet.
In some embodiments, the management platform may further obtain production statistics of the production process according to the production data information of the first production device. Specifically, the management platform obtains production statistical information of the production process according to production data information provided by the acquisition device. Wherein the production statistics include, but are not limited to: at least one of order progress, work order completion rate, equipment usage rate, production efficiency, and plant capacity.
In this way, the management platform may provide the first virtual production line information and the production statistics information to the user equipment.
Production management personnel can master the production condition of the production line in real time according to the received first virtual production line information and the production statistical information so as to schedule production equipment, adjust the first production equipment and the like in time.
As shown in fig. 2, the management platform may also perform a method for controlling the production process on the basis of being able to perform the above-described method for providing production process information. Alternatively, the method for controlling the production process is performed by another dedicated management platform.
In particular, the method for controlling a production process comprises steps S210, S220.
Step S210, obtaining a production execution instruction related to second virtual production line information submitted by the user, where the second virtual production line information includes one or more second production devices with spare capacity.
Here, the second virtual line information refers to a second production facility required for producing a product and production process information constituted by the second production facilities. The production execution instruction comprises the second virtual production line information, even order information, identity information and the like. The order information comprises the type of the product to be produced, the specification of the product, the total amount of the product and the like. After obtaining the production execution instruction, the management platform executes step S220.
And step S220, instructing the second production equipment to execute corresponding production operation according to the production execution instruction.
Specifically, the management platform selects corresponding second production equipment according to the second production equipment and the production flow described in the second virtual production line information in the production execution instruction, and configures the execution sequence of each second production equipment according to the production flow, so that each second production equipment produces corresponding products accordingly.
Further, the management platform may determine, according to the order information, the number of second production devices for executing each stage in the production flow and an execution sequence between the second production devices in the production flow.
For example, a production manager sends a production execution instruction including order information and second virtual production line information to a management platform according to a product requirement of a new order, and the management platform determines second production equipment and a production flow thereof, which are configured to produce the order product, according to a total product amount in the order information and preset capacity of the second production equipment corresponding to the second virtual production line information. And instructing the corresponding second production equipment to execute corresponding production operation according to the determined second production equipment and the production flow thereof.
In some embodiments, in order to enable the production manager to accurately determine whether to send the production execution command and determine that the sent production execution command can be executed smoothly, the management platform further performs step S200 before performing step S210. As shown in fig. 3.
Step S200, one or more production devices with spare production energy are provided to the user device.
Specifically, the management platform determines the spare capacity of each production device by acquiring production data information provided by the acquisition device configured on each production device. Wherein the spare capacity includes but is not limited to: the current production equipment is in an idle state, and the load of the current production equipment is lower than a preset load threshold. The management platform provides the determined production devices with spare energy to the user device. In some embodiments, the acquisition device further provides scheduling information of the corresponding production equipment, and the management platform determines the load condition of the production equipment according to the acquired scheduling information. For example, the scheduling information of the production equipment acquired by the management platform includes: the information of each production line which is scheduled to be produced, the target capacity corresponding to each production line information, the current execution condition of each production line information and the like. And the management platform evaluates the acquired scheduling information and determines the load condition of the corresponding production equipment according to the matching of the evaluation value and a preset threshold value. The production manager can determine whether to send the production execution instruction according to the capacity condition of each production device.
When the production manager sends the production execution instruction through the user device, step S210 further includes: obtaining a production execution instruction submitted by the user about second virtual production line information, wherein the second virtual production line information comprises one or more second production devices screened by the user from the one or more production devices. That is, the management platform determines the corresponding second production equipment according to the second virtual production line information in the production execution instruction without checking or judging the corresponding second production equipment according to the second virtual production line information.
For example, a production manager obtains the capacity conditions of all production devices through user equipment, selects at least one production device capable of producing a corresponding order product from the production devices with spare capacity according to order information, sets the selected production device as a second production device in second virtual production line information, stores the second virtual production line information, production processes among the second production devices, specifications of intermediate products produced by the second production devices and the like, and submits the second virtual production line information to a management platform. And the management platform instructs the corresponding second production equipment to execute the production of the corresponding order product according to the second virtual production line information.
After the management platform increases the production load of the corresponding second production device, the management platform further needs to execute step S230.
Step S230, updating the capacity status information of the second production equipment.
Specifically, the management platform may update the capacity status information of the corresponding second production equipment from idle to busy. Or, after instructing the second production equipment to execute the corresponding ordered product, the management platform reacquires the load information acquired by the acquisition device of the second production equipment, so as to update the capacity state information of the corresponding second production equipment.
As shown in fig. 4, the present application also provides an apparatus for providing production process information. The device 1 is primarily referred to as a management platform capable of communicating with user equipment. The management platform can be a single server, a server cluster and the like. The management platform mainly comprises software and hardware of a cloud server. The Cloud Service end comprises a public Cloud (public Cloud) Service end and a Private Cloud (Private Cloud) Service end, wherein the public or Private Cloud Service end comprises Software-as-a-Service (SaaS), Platform-as-a-Service (PaaS), Infrastructure as a Service (IaaS), and the like. The user equipment includes but is not limited to: mobile phones, tablet computers, personal computers, and the like. And the user equipment is used for sending a production query request to the management platform according to the operation of production management personnel. The management platform is used for determining corresponding first virtual production line information according to the production query request; and providing the first virtual production line information to the user device. Wherein the first virtual production line information includes a plurality of first production devices belonging to the same production process.
In order to implement the above execution process, the management platform specifically includes: a first device 11, a third device 12 and a fifth device 13.
The first device 11 is configured to obtain a production query request submitted by a user through user equipment. Wherein, the production inquiry request mainly comprises: and inquiring at least one of production line information concerned by production management personnel, order information of the managed order, intermediate product information of the managed order and identity information of the management personnel. For example, a production manager sends a production query request containing information on a certain product model number to a device of the service network by operating the user device. For another example, a production manager sends a production query request including order number information and identity information to a device of the service network by operating the user device.
The third device 12 is configured to determine, according to the production query request, corresponding first virtual production line information, where the first virtual production line information includes a plurality of first production devices belonging to the same production process.
Specifically, the third apparatus 12 may directly determine, from the database, first virtual production line information corresponding to the production query request, where the first virtual production line information includes a plurality of first production devices belonging to the same production process. The first virtual production line information further includes an execution sequence, equipment information, an equipment operation state of each first production equipment belonging to the same production process, and a comprehensive operation condition of a corresponding production line formed by connecting each first production equipment, which is shown by a diagram.
For example, the third device 12 asynchronously updates the operation status of each production equipment in the factory building, the information of the current production line, the production line scheduling information, the equipment information, and the like. When the third device 12 obtains the production query request, the production line corresponding to the production line number information and the operation conditions of each first production device thereof are obtained from the database according to the production line number information in the production query request, and the corresponding first virtual production line information is determined according to the obtained operation conditions.
In an alternative, the production query request provided by the production manager does not include the production line information, but includes the identity information, the order information, or the identity information and the order information. The third device 12 can query the first virtual production line information of each production line or the production line of the appointed order in the authority range according to the identity information. Specifically, the third device 12 includes: a first unit and a second unit (both not shown).
The first unit is used for determining a plurality of corresponding first production devices according to the production query request, wherein the plurality of first production devices belong to the same production process.
Here, the first unit may query, in the database, the production process information, such as the device information of the plurality of first production devices marked with the corresponding order information and the middleware transfer relationship between the production devices, according to the order information in the production query request, and then execute the second unit based on the obtained production process information.
Or the first unit determines a corresponding production process according to the production query request, wherein the production process comprises a plurality of first production devices, and then executes the second unit.
For example, the first unit queries, from the database, a production process detail table for producing the corresponding order according to the order information in the acquired production query request, where the device information of each first production device and the production sequence of each first production device required for producing the corresponding order are described in the detail table, and then executes the second unit according to the detail table.
The second unit is used for generating first virtual production line information corresponding to the production process according to the plurality of first production devices.
The second unit may describe as first virtual production line information according to the equipment information of the respective first production equipments obtained in the first unit and the execution order of the respective first production equipments, and execute the fifth device 13.
In order to vividly provide first virtual production line information for production management personnel, at least two first production devices in the first virtual production line information are connected through indicating information, and the indicating information represents production process information of the production process. The indication information may be an arrow indicating a production process, or a colored connection line indicating a production sequence of each first production device and an execution condition of each first production device at the same time, or the like.
In some embodiments, in order to obtain the operation condition of each first production device in real time, the management platform further includes: seventh means (not shown) for acquiring production data information of the first production apparatus. Wherein the production data information includes, but is not limited to: intermediate product information, load information, abnormal/normal operation information, scheduling information, and the like, which are produced based on the currently executed order information. The production data information is provided by a collection device installed on the first production equipment.
When the production query request is obtained, the third device 12 determines corresponding indication information according to the production data information of at least two first production devices in the plurality of first production devices, where the indication information represents the production flow information of the production process.
Here, when the production query request including the order information is acquired, the third device 12 acquires the device information of each first production device, which is queried from the database by each device acquisition device and includes the order information, acquires the production data information of each first production device from the corresponding device acquisition device based on the queried device information, and determines the corresponding instruction information according to the intermediate product output and input by each first production device.
The third means 12 connects the two first production devices in the first virtual production line information using the indication information. That is, the third device 12 determines the connection relationship of the first production equipment in the first virtual production line information using the instruction information, and executes the fifth device 13.
The fifth means 13 is configured to provide the first virtual production line information to the user equipment
Here, the fifth device 13 may provide the first virtual production line information to the user equipment using a wired or wireless internet.
In some embodiments, the management platform further comprises: ninth means (not shown) for obtaining production statistics of the production process according to the production data information of the first production equipment. Specifically, the management platform obtains production statistical information of the production process according to production data information provided by the acquisition device. Wherein the production statistics include, but are not limited to: at least one of order progress, work order completion rate, equipment usage rate, production efficiency, and plant capacity.
As such, the fifth device 13 may provide the first virtual production line information and the production statistics information to the user equipment.
Production management personnel can master the production condition of the production line in real time according to the received first virtual production line information and the production statistical information so as to schedule production equipment, adjust the first production equipment and the like in time.
The management platform may also execute techniques for controlling the production process based on being able to execute the techniques for providing production process information described above.
The management platform described in the present application further includes an eleventh means, a thirteenth means.
The eleventh means is configured to obtain a production execution instruction submitted by the user about second virtual production line information, where the second virtual production line information includes one or more second production devices with spare capacity.
Here, the second virtual line information refers to a second production facility required for producing a product and production process information constituted by the second production facilities. The production execution instruction comprises the second virtual production line information, even order information, identity information and the like. The order information comprises the type of the product to be produced, the specification of the product, the total amount of the product and the like. And the eleventh device starts the thirteenth device after acquiring the production execution instruction.
And the thirteenth device is used for instructing the second production equipment to execute corresponding production operation according to the production execution instruction.
Specifically, the thirteenth device selects the corresponding second production device according to the second production device and the production flow described in the second virtual production line information in the production execution instruction, and configures the execution sequence of each second production device according to the production flow, so that each second production device produces the corresponding product accordingly.
Further, the thirteenth means may determine, according to the order information, the number of second production devices for executing each stage in the production flow and an execution sequence between the second production devices in the production flow.
For example, a production manager sends a production execution instruction including order information and second virtual production line information to a management platform according to a product requirement of a new order, and an eleventh device in the management platform determines second production equipment and a production flow thereof, which are configured to produce the order product, according to a total product amount in the order information and preset capacity of the second production equipment corresponding to the second virtual production line information. And instructing the corresponding second production equipment to execute corresponding production operation according to the determined second production equipment and the production flow thereof.
In some embodiments, in order to enable a production manager to accurately determine whether to send a production execution instruction and determine that the sent production execution instruction can be executed smoothly, the management platform further includes: fifteenth means 14, executing before the eleventh means 15. As shown in fig. 5.
The fifteenth means 14 is for providing one or more production devices to the user device where there is spare production energy.
Specifically, the fifteenth device 14 determines the spare capacity of each production equipment by acquiring the production data information provided by the acquisition device configured on each production equipment. Wherein the spare capacity includes but is not limited to: the current production equipment is in an idle state, and the load of the current production equipment is lower than a preset load threshold. In some embodiments, the collecting device further provides scheduling information of the corresponding production equipment, and the fifteenth device 14 determines the load condition of the production equipment according to the obtained scheduling information. For example, the scheduling information of the production equipment acquired by the fifteenth device 14 includes: the information of each production line which is scheduled to be produced, the target capacity corresponding to each production line information, the current execution condition of each production line information and the like. The fifteenth means 14 evaluates the obtained scheduling information and determines the load condition of the corresponding production equipment according to the matching between the evaluation value and the preset threshold value. The fifteenth means 14 provides the determined presence of spare production energy to the user device. The production manager can determine whether to send the production execution instruction according to the capacity condition of each production device.
The eleventh means 15 is further configured to, when the production manager sends the production execution instruction through the user device, obtain the production execution instruction about the second virtual production line information submitted by the user, where the second virtual production line information includes one or more second production devices screened by the user from the one or more production devices. That is, the eleventh apparatus 15 does not need to check or determine to select the corresponding second production equipment according to the second virtual production line information, but determines the corresponding second production equipment according to the second virtual production line information in the production execution instruction.
For example, a production manager obtains the capacity conditions of all production devices through user equipment, selects at least one production device capable of producing a corresponding order product from the production devices with spare capacity according to order information, sets the selected production device as a second production device in second virtual production line information, stores the second virtual production line information, production processes among the second production devices, specifications of intermediate products produced by the second production devices and the like, and submits the second virtual production line information to a management platform. The thirteenth means 16 instructs the corresponding second production apparatus to perform production of the corresponding ordered product according to the second virtual production line information.
After the management platform increases the production load of the corresponding second production device, the management platform further includes: seventeenth means (not shown).
The seventeenth device is used for updating the capacity state information of the second production equipment.
Specifically, the seventeenth device may update the capacity status information of the corresponding second production equipment from idle to busy. Or, the seventeenth device re-acquires the load information acquired by the acquisition device of the second production equipment after instructing the second production equipment to execute the corresponding ordered product, so as to update the capacity state information of the corresponding second production equipment.
As shown in fig. 6, in a separate management platform, the following means are configured to perform the techniques for controlling the production process separately.
Specifically, the apparatus 2 for controlling a production process includes: a second device 21, a fourth device 22 and a sixth device 23.
Wherein the second means 21 is configured to provide one or more production devices to which spare energy is available to the user device.
The fourth means 22 is configured to obtain a production execution instruction submitted by a user regarding second virtual production line information, wherein the second virtual production line information includes one or more second production apparatuses screened by the user from the one or more production apparatuses.
The sixth means 23 is configured to instruct the second production device to perform a corresponding production operation according to the production execution instruction.
Here, it should be noted that the second device 21 performs in the same or similar manner as the fifteenth device 14; the fourth means 22 perform in the same or similar way as the eleventh means 15; the sixth means 23 perform in the same or similar way as the thirteenth means 16 described before. Here, detailed descriptions are omitted, and the implementation described in each of the aforementioned fifteenth means 14, eleventh means 15, and thirteenth means 16 may correspond to the second means 21, fourth means 22, and sixth means 23.
On this basis, the device for controlling the production process further comprises: an eighth means (not shown) for updating the capacity status information of the second production equipment.
It should be noted that the eighth device performs in the same or similar manner as the seventeenth device, and is not described in detail here, and the implementation details mentioned in the seventeenth device may correspond to the eighth device.
It should be noted that the present application may be implemented in software and/or a combination of software and hardware, for example, implemented using Application Specific Integrated Circuits (ASICs), general purpose computers or any other similar hardware devices. In one embodiment, the software programs of the present application may be executed by a processor to implement the steps or functions described above. Likewise, the software programs (including associated data structures) of the present application may be stored in a computer readable recording medium, such as RAM memory, magnetic or optical drive or diskette and the like. Additionally, some of the steps or functions of the present application may be implemented in hardware, for example, as circuitry that cooperates with the processor to perform various steps or functions.
In addition, some of the present application may be implemented as a computer program product, such as computer program instructions, which when executed by a computer, may invoke or provide methods and/or techniques in accordance with the present application through the operation of the computer. Program instructions which invoke the methods of the present application may be stored on a fixed or removable recording medium and/or transmitted via a data stream on a broadcast or other signal-bearing medium and/or stored within a working memory of a computer device operating in accordance with the program instructions. An embodiment according to the present application comprises an apparatus comprising a memory for storing computer program instructions and a processor for executing the program instructions, wherein the computer program instructions, when executed by the processor, trigger the apparatus to perform a method and/or a solution according to the aforementioned embodiments of the present application.
It will be evident to those skilled in the art that the present application is not limited to the details of the foregoing illustrative embodiments, and that the present application may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned. Furthermore, it is obvious that the word "comprising" does not exclude other elements or steps, and the singular does not exclude the plural. A plurality of units or means recited in the apparatus claims may also be implemented by one unit or means in software or hardware. The terms first, second, etc. are used to denote names, but not any particular order.

Claims (12)

1. A method for providing production process information, wherein the method comprises:
a, acquiring a production query request submitted by a production manager through user equipment, wherein the production query request comprises identity information of the production manager;
b, determining a production process in the authority range of the production manager according to the production inquiry request, wherein the production process comprises a plurality of first production devices, and generating first virtual production line information corresponding to the production process according to the first production devices;
c providing the first virtual production line information to the user device;
the first virtual production line information also comprises an execution sequence, equipment information and an equipment running state of each first production equipment belonging to the same production process;
r, acquiring a production execution instruction which is submitted by the production manager and relates to second virtual production line information, wherein the second virtual production line information comprises one or more second production equipment with spare capacity;
and s, instructing the second production equipment to execute corresponding production operation according to the production execution instruction.
2. The method of claim 1, wherein at least two of the first production devices are connected in the first virtual production line information by indicating information characterizing production flow information of the production process.
3. The method of claim 2, wherein the method further comprises:
acquiring production data information of the first production equipment;
wherein, the step b further comprises:
determining corresponding indication information according to production data information of at least two first production devices in the plurality of first production devices, wherein the indication information represents production flow information of the production process;
and connecting the two first production devices in the first virtual production line information by using the indication information.
4. The method of claim 3, wherein the method further comprises:
obtaining production statistical information of the production process according to the production data information of the first production equipment;
wherein the step c comprises:
providing the first virtual production line information and the production statistical information to the user equipment.
5. The method of claim 1, wherein the method further comprises:
providing one or more production devices with spare capacity to the user device;
wherein the step r includes:
obtaining a production execution instruction submitted by the production manager about second virtual production line information, wherein the second virtual production line information comprises one or more second production devices screened by the production manager from the one or more production devices.
6. The method of claim 1, wherein the method further comprises:
and updating the capacity state information of the second production equipment.
7. An apparatus for providing production process information, wherein the apparatus comprises:
the system comprises a first device, a second device and a third device, wherein the first device is used for acquiring a production query request submitted by a production manager through user equipment, and the production query request comprises identity information of the production manager;
a third device, configured to determine, according to the production query request, a production process within a permission range of the production manager, where the production process includes a plurality of first production devices, and generate, according to the plurality of first production devices, first virtual production line information corresponding to the production process;
fifth means for providing the first virtual production line information to the user device;
the first virtual production line information also comprises an execution sequence, equipment information and an equipment running state of each first production equipment belonging to the same production process;
eleventh means for obtaining a production execution instruction submitted by the production manager about second virtual production line information, wherein the second virtual production line information includes one or more second production devices with spare capacity;
and the thirteenth device is used for instructing the second production equipment to execute the corresponding production operation according to the production execution instruction.
8. The apparatus of claim 7, wherein at least two of the first production devices are connected in the first virtual production line information by indicating information characterizing production flow information of the production process.
9. The apparatus of claim 8, wherein the apparatus further comprises:
seventh means for acquiring production data information of the first production device;
wherein the third means is further for:
determining corresponding indication information according to production data information of at least two first production devices in the plurality of first production devices, wherein the indication information represents production flow information of the production process;
and connecting the two first production devices in the first virtual production line information by using the indication information.
10. The apparatus of claim 9, wherein the apparatus further comprises:
ninth means for obtaining production statistical information of the production process according to production data information of the first production device;
wherein the fifth means is for:
providing the first virtual production line information and the production statistical information to the user equipment.
11. The apparatus of claim 7, wherein the apparatus further comprises:
fifteenth means for providing one or more production facilities having spare capacity to the user facility;
wherein the eleventh means is for:
obtaining a production execution instruction submitted by the production manager about second virtual production line information, wherein the second virtual production line information comprises one or more second production devices screened by the production manager from the one or more production devices.
12. The apparatus of claim 7, wherein the apparatus further comprises:
and the seventeenth device is used for updating the capacity state information of the second production equipment.
CN201610991249.2A 2016-11-10 2016-11-10 Method and equipment for providing and controlling production process information Expired - Fee Related CN106292617B (en)

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Families Citing this family (3)

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CN112114568B (en) * 2020-08-06 2022-03-08 上海吉翔汽车车顶饰件有限责任公司 Design method of multi-station personalized product processing program taking data as center
CN112348389B (en) * 2020-11-16 2022-05-03 广东利元亨智能装备股份有限公司 Equipment capacity data processing method and device and electronic terminal
CN112596473A (en) * 2020-11-20 2021-04-02 首钢京唐钢铁联合有限责任公司 Hot-dip plate production control method and device

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102854855A (en) * 2012-08-21 2013-01-02 上海三一精机有限公司 Flexible production line monitoring system
CN104657835A (en) * 2013-11-20 2015-05-27 沈阳工业大学 Machining workshop scheduling and monitoring system and method
CN104914829A (en) * 2015-05-07 2015-09-16 北京星航机电装备有限公司 Concrete precast slab production line automatic monitoring system and monitoring method thereof

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TW495819B (en) * 2000-05-31 2002-07-21 Toshiba Corp Method and system for electronic commerce of semiconductor product, system and method of production, and design system, design method and manufacturing method of production equipment
US20080195413A1 (en) * 2006-01-25 2008-08-14 Jeffrey Franke Design structure for tamper sensitive warranty management for autonomic computing systems
CN101872191B (en) * 2010-05-20 2012-09-05 北京北方微电子基地设备工艺研究中心有限责任公司 Process task scheduling method and device for production line equipment
KR101373369B1 (en) * 2011-04-21 2014-03-13 주식회사 썬스타 Network-Based Production Management System And Method
CN102436236B (en) * 2011-10-26 2013-10-16 奇瑞汽车股份有限公司 Method used for planning production line and apparatus thereof
US20140236776A1 (en) * 2013-02-19 2014-08-21 Covidien Lp System and Method for Virtual Product Demonstrations
EP2829928B1 (en) * 2013-07-25 2016-12-28 Charisma Team GmbH A method and system for controlling the production process of a product
CN103914042B (en) * 2014-03-21 2018-06-12 固高科技(深圳)有限公司 Intelligent plant and its flexibly direct writing unit, flexible intelligent equipment

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102854855A (en) * 2012-08-21 2013-01-02 上海三一精机有限公司 Flexible production line monitoring system
CN104657835A (en) * 2013-11-20 2015-05-27 沈阳工业大学 Machining workshop scheduling and monitoring system and method
CN104914829A (en) * 2015-05-07 2015-09-16 北京星航机电装备有限公司 Concrete precast slab production line automatic monitoring system and monitoring method thereof

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