WO2020192301A1 - 设备参数的配置方法、装置和***、终端设备和计算机可读存储介质 - Google Patents

设备参数的配置方法、装置和***、终端设备和计算机可读存储介质 Download PDF

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Publication number
WO2020192301A1
WO2020192301A1 PCT/CN2020/075462 CN2020075462W WO2020192301A1 WO 2020192301 A1 WO2020192301 A1 WO 2020192301A1 CN 2020075462 W CN2020075462 W CN 2020075462W WO 2020192301 A1 WO2020192301 A1 WO 2020192301A1
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parameter
information
information corresponding
current
server
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PCT/CN2020/075462
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English (en)
French (fr)
Inventor
韩松卫
生海峰
孙双成
张书楠
俞培玉
朱桂娟
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京东方科技集团股份有限公司
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Publication of WO2020192301A1 publication Critical patent/WO2020192301A1/zh

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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] or computer integrated manufacturing [CIM]
    • 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]

Definitions

  • the embodiments of the present disclosure relate to the field of information processing technology, and in particular to a method, device, and system for configuring device parameters, terminal devices, and computer-readable storage media.
  • the equipment parameters of the equipment are set by the engineer on the production line one by one. Due to the large number of equipment in the workshop, the workload and time to configure the equipment parameters are large, which will cost a lot of money. Time and labor costs, and error-prone.
  • a method for configuring device parameters in at least one embodiment of the present disclosure includes: acquiring target information corresponding to a device parameter of at least one device to be configured; generating a device corresponding to the at least one device to be configured according to the target information corresponding to the device parameter Parameter batch configuration command; sending the parameter batch configuration command corresponding to the at least one device to be configured to the at least one device to be configured, so that the at least one device to be configured will at least The current information corresponding to one device parameter is adjusted to the target information corresponding to the at least one device parameter.
  • obtaining target information of the device parameters of the at least one device to be configured includes: obtaining a filter condition corresponding to the device parameter, wherein the The screening conditions include the device identification of the at least one device to be configured, the product identification of the product corresponding to the at least one device to be configured, and the production line identification of the production line to which the at least one device to be configured belongs;
  • the target information corresponding to the device parameters of the at least one device to be configured is filtered out in the database, wherein the device parameter database stores the device identification, product identification, production line identification, and target of the device parameter of each device to be configured Correspondence of information.
  • the configuration method further includes: for each device to be configured, comparing the Whether the product identification of the product corresponding to the device to be configured is consistent with the product identification bound to the production line to which the device to be configured belongs; responding to that the product identification of the product corresponding to the device to be configured is bound to the production line to which the device to be configured belongs If the product identifiers are consistent with each other, a confirmation is issued to send the parameter batch configuration command corresponding to the device to be configured to the first feedback information of the device to be configured, and in response to receiving the first feedback information, it will be The parameter batch configuration command corresponding to the configuration device is sent to the device to be configured.
  • the The configuration method further includes: in response to the product identification of the product corresponding to the device to be configured being inconsistent with the product identification bound to the production line to which the device to be configured belongs, outputting prompt information to prompt the product corresponding to the device to be configured.
  • the product identification is inconsistent with the product identification bound to the production line to which the device to be configured belongs, and an inquiry request is output to confirm whether to send the parameter batch configuration command corresponding to the device to be configured to the device to be configured; response Upon receiving the first feedback information confirming that the parameter batch configuration command corresponding to the device to be configured is sent to the device to be configured, the parameter batch configuration command corresponding to the device to be configured is sent to the device to be configured Configure the device; in response to receiving the second feedback information that refuses to send the parameter batch configuration command corresponding to the
  • the method for configuring device parameters further includes: determining check information of the device to be checked, wherein the check information includes the device identification of the device to be checked and the second item to be checked.
  • a parameter identification of a device parameter generating an inspection instruction according to the inspection information; sending the inspection instruction to the equipment to be inspected according to the equipment identification, so that the equipment to be inspected can be
  • the inspection instruction reads the information of the parameters of the first equipment to be inspected to obtain the first inspection information; receives the first inspection information sent by the equipment to be inspected; receives the input second inspection information to be inspected Information about the equipment parameters to obtain the second inspection information, wherein the information of the second equipment parameters to be inspected is obtained through an on-site test by a inspector; the first inspection information and the second inspection information And the identification information of the inspector is associated and saved.
  • the method for configuring device parameters further includes: determining check information of the device to be checked, wherein the check information includes the device identification of the device to be checked and the second item to be checked.
  • a parameter identification of a device parameter generating an inspection instruction according to the inspection information; sending the inspection instruction to the equipment to be inspected according to the equipment identification, so that the equipment to be inspected can be
  • the inspection instruction reads the information of the parameters of the first equipment to be inspected to obtain first inspection information; receives the first inspection information sent by the equipment to be inspected; performs the first inspection information save.
  • the method for configuring device parameters further includes: obtaining target information corresponding to the first device parameter of the current device input on the display interface of the current device and the identification information of the modifying person;
  • the target information corresponding to the first device parameter updates the current information corresponding to the first device parameter; reads the current information corresponding to the second device parameter of the current device, where the current information corresponding to the second device parameter is the above Information obtained from the second field test; the updated current information corresponding to the first device parameter, the current information corresponding to the second device parameter, and the identification information of the modifier are associated and saved.
  • the device parameter configuration method further includes: receiving input target information corresponding to the second device parameter of the current device and modifying the identification information of the person, wherein the target information corresponding to the second device parameter Obtained through on-site testing; generate a report instruction according to the target information corresponding to the second device parameter and the identification information of the modifier; send a read instruction of the first device parameter to the current device according to the report instruction; receive all The current information corresponding to the first device parameter read by the current device according to the read instruction; the target information corresponding to the second device parameter, the current information corresponding to the first device parameter, and the modifier The identification information for the associated storage.
  • At least one embodiment of the present disclosure provides a method for configuring device parameters, including: a device to be configured receives a parameter batch configuration command, wherein the parameter batch configuration command is determined by the server according to target information corresponding to the device parameter of the device to be configured Generate; the device to be configured adjusts current information corresponding to at least one device parameter to target information corresponding to the at least one device parameter according to the parameter batch configuration command.
  • the method for configuring device parameters further includes: the device to be inspected receives an inspection instruction, wherein the inspection instruction is generated by the server according to the inspection information of the device to be inspected Generated, the check information includes the device identification of the device to be checked and the parameter identifier of the first device parameter to be checked; the device to be checked reads the to-be-checked device according to the check instruction To obtain the first check information; send the first check information to the server so that the server can compile the first check information, the second check information, and The identification information of the inspector is associated and stored, wherein the second inspection information is the information of the second device parameter to be inspected obtained by the spot inspector through the field test received by the server.
  • the method for configuring device parameters further includes: the device to be inspected receives an inspection instruction, wherein the inspection instruction is generated by the server according to the inspection information of the device to be inspected Generated, the check information includes the device identification of the device to be checked and the parameter identifier of the first device parameter to be checked; the device to be checked reads the to-be-checked device according to the check instruction To obtain the first check information; send the first check information to the server for storage.
  • the device parameter configuration method further includes: receiving target information corresponding to the first device parameter of the current device and the identification information of the modifying person on the display interface of the current device; sending the first device parameter identification information;
  • the target information corresponding to the device parameters and the identification information of the modifier are sent to the server, so that the server updates the first device parameter corresponding to the current device according to the target information corresponding to the first device parameter Read the current information corresponding to the second device parameter of the current device, and update the current information corresponding to the first device parameter, the current information corresponding to the second device parameter, and the modification
  • the identification information of the person is associated and saved, wherein the current information corresponding to the second device parameter is the information obtained from the last field test.
  • the method for configuring device parameters further includes: sending target information corresponding to the second device parameters of the current device and the identification information of the modifier to the server, so that the server can follow the
  • the target information corresponding to the second device parameter and the identification information of the modifier generate a report instruction, and according to the report instruction, a read instruction of the first device parameter is sent, wherein the target information corresponding to the second device parameter passes on-site Test obtained; receive the read instruction of the first device parameter, and read the current information corresponding to the first device parameter according to the read instruction; send the current information corresponding to the first device parameter to the service Terminal for the server to associate and store the target information corresponding to the second device parameter, the current information corresponding to the first device parameter, and the identification information of the modifier.
  • At least one embodiment of the present disclosure provides a device parameter configuration method, which is applied to a device parameter configuration system, wherein the device parameter configuration system includes: a server and a device to be configured; the server and the device to be configured Device communication connection; the configuration method includes: the server obtains target information corresponding to the device parameter of at least one device to be configured; the server generates the target information corresponding to the at least one device to be configured according to the target information corresponding to the device parameter Corresponding parameter batch configuration command; the server sends the parameter batch configuration command corresponding to the at least one device to be configured to the at least one device to be configured; the at least one device to be configured is batched according to the parameter The configuration command adjusts the current information corresponding to the at least one device parameter to target information corresponding to the at least one device parameter.
  • At least one embodiment of the present disclosure provides a device parameter configuration device, including: an acquisition circuit for acquiring target information corresponding to a device parameter of at least one device to be configured; a generating circuit for acquiring target information corresponding to the device parameter Generating a parameter batch configuration command corresponding to the at least one device to be configured; a sending circuit for sending the parameter batch configuration command corresponding to the at least one device to be configured to the at least one device to be configured for The at least one device to be configured adjusts current information corresponding to at least one device parameter to target information corresponding to the at least one device parameter according to the parameter batch configuration command.
  • At least one embodiment of the present disclosure provides a system for configuring device parameters, including: a server and at least one device to be configured; wherein the server is in communication connection with the at least one device to be configured; and the server is used to obtain Target information corresponding to the device parameters of the at least one device to be configured; generating parameter batch configuration commands corresponding to the at least one device to be configured according to the target information corresponding to the device parameters; corresponding to the at least one device to be configured The parameter batch configuration command is sent to the at least one device to be configured; the at least one device to be configured is used to adjust current information corresponding to at least one device parameter to the at least one device parameter according to the parameter batch configuration command The corresponding target information.
  • At least one embodiment of the present disclosure provides a terminal device, including a processor and a memory; wherein the memory is used to store a computer program; the processor is used to execute the computer program stored in the memory to implement any of the foregoing implementations The configuration method described in the example.
  • At least one embodiment of the present disclosure provides a computer-readable storage medium, wherein a computer program is stored in the computer-readable storage medium, and when the computer program is executed by a processor, the method described in any of the foregoing embodiments is implemented.
  • Fig. 1A is a schematic structural diagram of a system for configuring device parameters according to an embodiment of the present disclosure
  • Fig. 1B is a flowchart of a PLM-ESB interface module according to an embodiment of the present disclosure
  • Fig. 1C is a flowchart of an ESB-MES interface module according to an embodiment of the present disclosure
  • Fig. 1D is a schematic diagram showing a workflow of a delivery module according to an embodiment of the present disclosure
  • Fig. 2 is a flowchart showing a method for configuring device parameters according to an embodiment of the present disclosure
  • Fig. 3 is a flow chart showing another method for configuring device parameters according to an embodiment of the present disclosure
  • Fig. 4 is a flowchart showing another method for configuring device parameters according to an embodiment of the present disclosure
  • Fig. 5A is a flow chart showing another method for configuring device parameters according to an embodiment of the present disclosure
  • Fig. 5B is a flow chart of an automatic check according to an embodiment of the present disclosure.
  • Fig. 6A is a flow chart showing another method for configuring device parameters according to an embodiment of the present disclosure
  • Fig. 6B is a flow chart showing a record of automatic parameter modification history according to an embodiment of the present disclosure
  • Fig. 7 is a flowchart showing another method for configuring device parameters according to an embodiment of the present disclosure.
  • Fig. 8 is a flowchart showing another method for configuring device parameters according to an embodiment of the present disclosure.
  • Fig. 9 is a block diagram showing a device parameter configuration device according to an embodiment of the present disclosure.
  • Fig. 10 is a block diagram showing a system for configuring device parameters according to an embodiment of the present disclosure
  • Fig. 11 is a block diagram showing a terminal device according to an embodiment of the present disclosure.
  • the process of sending the equipment parameters of the equipment to the equipment is not systematically controlled.
  • the equipment parameters of the equipment are set by the engineer on the production line equipment by equipment, which will consume a lot of time and labor costs, and is prone to errors.
  • the inspection operation of the equipment also needs to be completed manually by the engineer, and during the inspection operation, missed inspections and false inspections often occur.
  • the modification history of the device parameters of the device has not been recorded or manually recorded, and the recording and analysis of the device parameters cannot be realized, and when the modification of the device parameters is wrong, the device parameters cannot be restored to the original values, but the device needs to be restored Factory settings, resulting in a delay of one to two days to reset the equipment parameters one by one to the original value, therefore, it causes a great waste of manpower and material resources and affects production capacity.
  • the device parameter configuration method can be applied to the device parameter configuration system shown in FIG. 1A.
  • the device parameter configuration system may include a PLM (Product Lifecycle Management) server 11, an MES (Manufacturing Execution System, manufacturing enterprise production process execution system) server 12, a controller 13, and at least one Devices to be configured, for example, Figure 1A shows four devices to be configured.
  • the four devices to be configured are the first device to be configured 14, the second device to be configured 15, the third device to be configured 16, and the fourth device to be configured. 17.
  • all components in the device parameter configuration system (that is, the PLM server 11, the MES server 12, the controller 13 and the device to be configured) will determine whether the message is successfully received, and all components There is a mechanism to resend the message after receiving the message that failed to send the message.
  • the controller 13 may be a computer, and a device module control system (Block Control System, BC for short, also called a device interface system) may be installed on the controller 13.
  • the PLM server 11 is used to provide services to clients installed with the PLM system
  • the MES server 12 is used to provide services to clients installed with the MES system.
  • the PLM server 11 communicates with the MES server 12.
  • the PLM server 11 can communicate with the MES server 12 through ESB (Enterprise Service Bus), the MES server 12 communicates with the controller 13, and the controller 13 communicates with the configuration to be configured.
  • Equipment 14-17 communication connection For example, each MES server 12 may realize a communication connection with at least one controller 13, and each controller 13 may realize a communication connection with at least one device to be configured.
  • a user can enter the target information of the device parameter into the PLM server 11 in advance.
  • the process parameter maintenance interface of the equipment in the PLM system may include information such as serial numbers, parameter names, parameter descriptions, and parameter values.
  • the PLM server 11 may verify the target information of the device parameter. For example, if the target information of the device parameter does not meet (for example, exceed) a preset threshold or the format is incorrect, the PLM The server 11 will output prompt information to remind the engineer to make corrections.
  • the error prompt interface may include prompt information such as target information of device parameters that do not meet preset thresholds and parameter type errors.
  • the prompt information includes: Line 3: Parameter value must Between X1 and X2; line 21: the parameter value must be numeric and line 23: the parameter value must be between X1 and X2, X1 and X2 can both be positive integers, and X1 is less than X2.
  • the prompt information can include multiple pieces of information (for example, three, five, ten, etc.), or only one piece of information; in addition, the prompt information can include multiple types of error information, such as , The prompt information includes two types of error information, namely that the target information of the device parameter does not meet the preset threshold and the parameter type is wrong.
  • the PLM server 11 can synchronize the target information of the device parameters that have passed the verification to the designated portal website for approval. After the approval is completed, the PLM server 11 can transfer the target information through the Webservice protocol.
  • the target information of the device parameters is transmitted to the ESB interface module in the form of an XML file.
  • the ESB interface module can send (ie transmit) the received XML file to the MES server 12 through the Webservice protocol, so that the MES server 12 can generate the target information according to the device parameters.
  • the parameter batch configuration command is sent to multiple devices to be configured so that the device to be configured can adjust the current information of the device parameters to target information according to the parameter batch configuration command.
  • the MES server 12 can also store the XML file file.
  • the MES system is the core module of the equipment parameter configuration system. Therefore, first introduce the functions of the MES system.
  • the MES system mainly includes three parts, which are the interface module, the storage module and the issuing module (the verification and re-sending mechanism of all modules below are automatically completed by the system).
  • the interface module can include the following four interfaces: Processflow (process route) data interface, SOP (Standard Operating Procedure) data interface, device parameter data interface, BOM (Bill of Material, material) List) data interface.
  • Processflow processing route
  • SOP Standard Operating Procedure
  • device parameter data interface device parameter data interface
  • BOM Bill of Material, material
  • the issuance (ie transmission) of the target information of the device parameters is realized through the device parameter data interface.
  • the interface mode of the device parameter data interface is PLM-ESB-MES.
  • the interface module is divided into PLM-ESB interface Module and ESB-MES interface module in two parts.
  • the workflow of the PLM-ESB interface module is as follows: First, the PLM system sends a list of registered device parameters and target information to the ESB interface module in the form of an XML file through the Webservice protocol. send. Next, the ESB interface module receives the XML file and verifies the received XML file, that is, it determines whether the ESB interface module successfully receives the XML file.
  • the ESB interface module If the verification result is yes, that is, the ESB interface module successfully receives the XML file, then The ESB interface module sends a message that the XML file is successfully received to the PLM system; if the check result is no, that is, the ESB interface module has not successfully received the XML file, the ESB interface module sends a message that the XML file has not been received, that is, the reception failed to the PLM system. (The PLM system will trigger an automatic retransmission after receiving this message). Then, the PLM system receives the information returned by the ESB interface module and judges the information. If the XML file fails to be sent, the PLM system sends the XML file to the ESB interface module again; if the XML file is sent successfully, the process ends.
  • the workflow of the ESB-MES interface module is as follows: First, the ESB interface module can send XML files to the MES system through the Webservice protocol. Next, the MES system receives the XML file and checks the received XML file, that is, the MES system determines whether the XML file is successfully received. If the MES system successfully receives the XML file, the MES system sends the XML file to the ESB interface module. A successful message; if the MES system fails to receive the XML file successfully, the MES system sends a message that the XML file failed to be sent to the ESB interface module.
  • the ESB interface module receives the information returned by the MES system and judges the information, that is, judges whether the XML file is sent successfully based on the information, if the XML file fails to be sent, the ESB interface module sends the XML file to the MES system again; if the XML file If the transmission is successful, the MES system parses the XML file into a parameter list, and stores the parameter list in the corresponding database table of the MES server 12, and finally the process ends.
  • the database table of the MES server 12 may include attributes such as device identification, parameter identification (for example, parameter name), parameter value range, and application line body.
  • the application line is the production line for the application of equipment parameters. Due to equipment limitations, some equipment parameters cannot be uploaded automatically, and some parameters, such as temperature, require engineers to measure and upload on-site at the location of the equipment. In order to ensure the integrity of the parameters, the spot inspection parameters are divided into two parts: automatic equipment upload and manual upload. The MES system will automatically verify the two parts and merge the two parts together to form a unified version and upload it to the database table. The MES system will automatically record the latest manual inspection parameter list and automatic inspection parameter list.
  • Engineers can filter requirements in the MES system based on the equipment identification of the delivered device (device to be configured), the production line identification of the delivery line (ie the line to which the device to be configured belongs), and the product identification (FGCode)
  • the issued parameter list (the parameter list of all production lines and all equipment is stored in the MES system), that is, the target information of the device parameters is obtained, and the issuing instruction is issued, for example, by clicking the "Recipe Set" button to achieve the issuing instruction Function, and then, the issuing module will automatically perform fool-proof verification of the product identification. After the verification is successful, the target information of the device parameters will be issued to the device to be configured.
  • the main process of the issuing module includes: the engineer filters the list of parameters to be issued according to the device ID of the issued device, the production line ID of the issuing line, and the product ID on the parameter issuing interface corresponding to the MES system. ; The engineer clicks the "Recipe Set” button to issue the operation; then performs fool-proof verification, that is, to determine whether the product identifier to be issued in the parameter list is consistent with the product identifier of the product bound to the current line (because each The line body can be bound to multiple models of products), if the product ID to be issued in the parameter list is inconsistent with the product ID of the product bound to the current line body, a warning prompt will pop up.
  • the warning message is: "Parameter list The product ID to be issued is inconsistent with the product ID of the product bound to the current line body. Do you want to continue to issue" for the engineer to confirm. If the engineer confirms that the issue needs to be continued, the MES system will continue to perform the issue operation. If the engineer confirms that the delivery cannot be continued, it will automatically return to the parameter delivery interface for re-selecting product identification and other attributes. The engineer will recheck and fill in the correct product identification in the parameter delivery interface; if the parameter list is to be delivered The product identification is consistent with the product identification of the product bound to the current line body, then the MES system sends the target information of the device parameters to the corresponding device to be configured through the Tibco protocol, and finally, the process ends.
  • the configuration system for device parameters is described above, and the method for configuring device parameters provided by the embodiments of the present disclosure is described below.
  • the device parameter configuration method provided by the embodiments of the present disclosure is simple, efficient, intelligent, and easy to operate, which can greatly improve the user’s work efficiency and reduce labor costs. At the same time, it can shorten the time of mass production and increase the equipment utilization rate. Capacity.
  • the configuration method can realize the issuance and return of equipment parameters through the MES system, and efficiently realize the automatic batch issuance, spot inspection and record modification history of equipment parameters of multiple production lines, saving labor costs, Increase equipment utilization and increase production capacity. At the same time, by recording and analyzing the memory rules of equipment parameters, it can better guide production and improve product yield.
  • the embodiment of the present disclosure provides a method for configuring device parameters, which is applied to the MES server 12.
  • the device parameter configuration method may include the following steps 201 to 203:
  • step 201 target information corresponding to device parameters of at least one device to be configured is obtained.
  • step 201 may include the following steps 301 to 302:
  • step 301 filter conditions corresponding to device parameters are obtained.
  • step 302 the target information corresponding to the device parameter of at least one device to be configured is filtered from the device parameter database according to the filter condition.
  • the device parameter database in the MES server 12 stores the device identification, product identification, production line identification, and the corresponding relationship of the target information of the device parameter of each device to be configured.
  • the target information of the device parameter is stored in the device parameter database in the form of a data list.
  • the MES server 12 can obtain the filter conditions corresponding to the device parameters according to the input information, and can filter out the target information of the device parameters of at least one device to be configured from the device parameter database according to the filter conditions corresponding to the obtained device parameters.
  • the screening conditions include at least one device identification of the device to be configured, at least one product identification of the product corresponding to the device to be configured, and at least one production line identification of the production line to which the device to be configured belongs.
  • the “input information” may be information manually input by an engineer, or information automatically input by the MES server 12.
  • a parameter batch configuration command corresponding to at least one device to be configured is generated according to the target information corresponding to the device parameter.
  • the MES server 12 may generate parameter batch configuration commands according to the target information corresponding to the device parameters after receiving the issued instruction.
  • a parameter batch configuration command can correspond to one or more devices to be configured, that is, the parameter batch configuration command can be transmitted to a device to be configured, so that the device to be configured can be configured according to the parameter batch configuration command.
  • the current information corresponding to at least one device parameter of the configuration device is adjusted to the target information corresponding to at least one device parameter; or, the parameter batch configuration command can be transmitted to multiple devices to be configured, so that each of the multiple devices to be configured
  • the configuration device adjusts the current information corresponding to at least one device parameter of each device to be configured to the target information corresponding to the at least one device parameter according to the parameter batch configuration command.
  • the parameter batch configuration command can be sent directly to all the production line devices that produce the product of the product model to achieve the production of the same product model
  • the equipment parameters of multiple equipment in multiple production lines are automatically issued in batches, which greatly improves the efficiency of product cutting and increases production capacity.
  • step 203 the parameter batch configuration command corresponding to the at least one device to be configured is sent to the at least one device to be configured, so that the at least one device to be configured can adjust the current information corresponding to the at least one device parameter to at least Target information corresponding to a device parameter.
  • the parameter batch configuration command is an instruction for controlling the device to be configured to perform parameter configuration, for example, controlling the device to be configured to adjust current information corresponding to at least one device parameter to target information corresponding to at least one device parameter.
  • the MES server 12 may send parameter batch configuration commands to at least one device to be configured.
  • the MES server 12 can send the parameter batch configuration command to the corresponding controller 13 through the Tibco protocol, and the controller 13 will determine whether the parameter batch configuration command is successfully received.
  • the controller 13 If the controller 13 successfully receives the parameter batch configuration command, the controller 13 The device identifier of the device to be configured to which the device parameter belongs can be determined according to the device parameter, and the target information of the device parameter is sent to the device to be configured through the CCIE protocol according to the device identifier of the device to be configured; if the controller 13 fails to receive When the parameter batch configuration is reached, the controller 13 returns to the MES server 12 a message that the parameter batch configuration command has failed to be sent, and then the MES server 12 resends the parameter batch configuration command to the controller 13.
  • the MES server 12 sends the parameter batch configuration command to the corresponding controller 13
  • the MES server 12 performs fool-proof verification, and after the verification is successful, the MES server 12 sends the parameter batch configuration command to the corresponding controller 13.
  • the controller 13
  • the device to be configured After receiving the parameter batch configuration command, the device to be configured determines whether the device to be configured is running. If the device to be configured is running, the device to be configured does not execute the parameter batch configuration command and ends directly (to avoid affecting production, running If the device to be configured is not in operation, the device to be configured executes the parameter batch configuration command to adjust the current information corresponding to the device parameter to the target information corresponding to the device parameter. It should be noted that the current information corresponding to the device parameters and the target information corresponding to the device parameters may be the same or different.
  • the configuration method may further include the following steps 401 to 405:
  • step 401 for each device to be configured, compare whether the product ID of the product corresponding to the device to be configured is consistent with the product ID bound to the production line to which the device to be configured belongs; if so, the product responding to the product corresponding to the device to be configured If the identifier is consistent with the product identifier bound to the production line to which the device to be configured belongs, step 402 and step 406 are executed. If not, it responds to the product identifier of the product corresponding to the device to be configured and the product identifier bound to the production line to which the device to be configured belongs If they are not consistent, perform steps 403 to 405.
  • step 402 send a confirmation to send the parameter batch configuration command corresponding to the device to be configured to the first feedback information of the device to be configured, and in step 406, in response to receiving the first feedback information, it will correspond to the device to be configured Send the parameter batch configuration command to the device to be configured.
  • a prompt message is output to indicate that the product ID of the product corresponding to the device to be configured is inconsistent with the product ID bound to the production line to which the device to be configured belongs, and an inquiry request is output to confirm whether the parameters corresponding to the device to be configured Batch configuration commands are sent to the device to be configured.
  • step 404 after receiving the first feedback message confirming that the parameter batch configuration command corresponding to the device to be configured is sent to the device to be configured, the parameter batch configuration command corresponding to the device to be configured is sent to the device to be configured.
  • step 405 in response to receiving the second feedback information that refuses to send the parameter batch configuration command corresponding to the device to be configured to the device to be configured, the adjusted filter condition corresponding to the device parameter of the device to be configured is obtained, and according to the adjustment The latter filter condition reacquires the target information of the device parameter of at least one device to be configured to update the parameter batch configuration command corresponding to the device to be configured.
  • an inquiry request is output to confirm whether to send parameter batch configuration commands to the device to be configured, so as to avoid downloading device parameters Make a mistake.
  • the engineer can filter the products to be transmitted on the system interface where the MES is installed according to the production line identification of the production line to which the equipment to be configured belongs, the product identification of the product corresponding to the equipment to be configured, and the equipment identification of the equipment to be configured.
  • the target information corresponding to the device parameter is obtained, and the parameter list to be transmitted is obtained.
  • the engineer can click the "Recipe Set” button on the system interface to send the transmission instruction.
  • MES generates parameter batch configuration commands after receiving the transmission instruction, and performs automatic fool-proof verification.
  • the fool-proof verification includes: judging the product identification to be transmitted in the parameter list to be transmitted and the product bound to the current production line corresponding to the production line identification Whether the identifiers are consistent (because the products corresponding to different product identifiers can be bound to the same production line), if the product identifier to be transmitted in the parameter list to be transmitted is inconsistent with the product identifier bound to the current production line corresponding to the production line identifier, a warning prompt will pop up, for example , The warning message is "The product ID to be transferred in the parameter list to be transferred is inconsistent with the product ID bound to the current production line, whether to continue to send it", let the engineer confirm, if the engineer confirms to send the parameter batch configuration command, then Continue to perform the delivery operation.
  • the engineer cancels, it will automatically return to the system interface that screens the target information corresponding to the equipment parameters.
  • the engineer rechecks and fills in the correct production line identification, product identification, equipment identification, etc. in the system interface to update the parameters Batch configuration commands. For example, after the verification is successful, it is determined that the product identifier to be transmitted in the parameter list to be transmitted is consistent with the product identifier bound to the current production line corresponding to the production line identifier, and the issuing operation is executed, that is, the MES server 12 batches the parameter configuration command Send to the corresponding controller 13; finally, the controller 13 can send the parameter batch configuration command to the corresponding device to be configured.
  • the target information corresponding to the device parameter of at least one device to be configured is obtained, and the parameter batch configuration command corresponding to the at least one device to be configured is generated according to the target information corresponding to the device parameter.
  • the parameter batch configuration command corresponding to the configuration device is sent to at least one device to be configured, so that the at least one device to be configured can adjust the current information corresponding to the at least one device parameter to the target information corresponding to the at least one device parameter according to the parameter batch configuration command.
  • the information of equipment parameters can be automatically issued in batches, saving labor costs, greatly improving the efficiency of product line cutting, improving equipment utilization, increasing production capacity, and improving accuracy.
  • the embodiment of the present disclosure also provides a method for configuring device parameters. Based on the embodiment shown in FIG. 1A, in this embodiment, as shown in FIG. 5A, the configuration method further includes the following steps 501 to 506:
  • step 501 the check information of the device to be checked is determined, where the check information includes the device identification of the device to be checked and the parameter identification of the first device parameter to be checked.
  • the inspection information of the equipment to be inspected may be determined according to the input information.
  • the input information includes the device identifier of the device to be inspected and the parameter identifier of the first device parameter to be inspected.
  • an engineer can log in to the MES system interface via a wireless network with terminal equipment (for example, tablet computers, mobile phones, laptops, etc.) in the workshop (that is, the physical location of the equipment), and Information such as the device identification of the device to be inspected and the parameter identification of the first device parameter to be inspected are set in the system interface for the MES server 12 to determine the inspection information of the device to be inspected.
  • step 502 a check instruction is generated based on the check information.
  • the MES server 12 may generate a check instruction according to the above check information. For example, as shown in Figure 5B, when the engineer sets the equipment identification of the equipment to be inspected and the parameter identification of the first equipment parameter to be inspected on the MES system interface, he can press the "Inspect" button, The MES server 12 can generate a check instruction based on the check information after detecting the operation of the "check" button being clicked.
  • step 503 the inspection instruction is sent to the device to be inspected according to the device identifier, so that the device to be inspected can read the information of the first device parameter to be inspected according to the inspection instruction to obtain the first inspection information.
  • the MES server 12 may send the inspection instruction to the device to be inspected according to the device identifier, so that the device to be inspected can read the information of the first device parameter to be inspected according to the inspection instruction to obtain the first Check information.
  • the first inspection information is the information of the first equipment parameter to be inspected, which is read by the device to be inspected according to the inspection instruction.
  • the first device parameter to be checked may be a parameter that the device can automatically read.
  • the check instruction is an instruction to control the device to be checked to execute the information of the first device parameter to be checked.
  • the MES server 12 can send the inspection instruction to the corresponding controller 13 through the Tibco protocol according to the device identification, and the controller 13 can determine whether the inspection instruction is received. If the controller 13 If the check instruction is not received, the controller 13 may return a check instruction reception failure message; if the controller 13 receives the check instruction, the controller 13 may select the device controlled by the controller 13 according to the device identification. Identify the corresponding equipment to be inspected, and issue inspection instructions to the equipment to be inspected through the CCIE protocol.
  • the device to be checked may read the information of the first device parameter to be checked according to the parameter identifier of the first device parameter to be checked. For example, as shown in Figure 5B, the equipment to be inspected determines whether it receives an inspection instruction. If the equipment to be inspected does not receive an inspection instruction, the equipment to be inspected returns an inspection instruction reception failure message; if the equipment to be inspected After receiving the check instruction, the device to be checked reads the information of the first device parameter to be checked according to the parameter identifier of the first device parameter to be checked.
  • step 504 the first check information sent by the device to be checked is received.
  • the MES server 12 may receive the first inspection information sent by the equipment to be inspected returned by the equipment to be inspected.
  • the device to be checked may send the read information of the first device parameter to be checked to the controller 13.
  • the controller 13 determines whether the information of the first device parameter to be inspected is successfully received.
  • the controller 13 If the controller 13 does not successfully receive the information of the first device parameter to be inspected, the controller 13 sends the information to The device to be inspected feeds back the information of the first device parameter to be inspected, a reception failure message; if the controller 13 successfully receives the information of the first device parameter to be inspected, the controller 13 temporarily stores the pending inspection of the device to be inspected The information of the first device parameter of the device to be checked is uploaded to the system interface of the MES through the Tibco protocol for display.
  • the MES server 12 determines whether the information of the first device parameter to be checked of the device to be checked is received, if the MES server 12 does not receive the first device parameter of the device to be checked Information, the MES server 12 returns the information transmission failure message of the first device parameter to be checked; if the MES server 12 receives the information of the first device parameter to be checked, the MES server 12 can output a prompt Information to prompt that the information of the first device parameter to be checked is successfully read, and prompts to enter the information of the second device parameter to be checked.
  • step 505 the input information of the second device parameter to be checked is received, and the second check information is obtained, wherein the information of the second device parameter to be checked is obtained through the spot checker's on-site test.
  • the MES server 12 may receive the input information of the second device parameter to be checked to obtain the second check information.
  • an engineer that is, an inspector
  • the MES server 12 may receive the input information of the second device parameter to be checked to obtain the second check information.
  • an engineer that is, an inspector
  • the identification information can be used to obtain information about the parameters of the second device to be inspected through field testing.
  • the engineer can view the information displayed on the MES system interface through the terminal device, for example, the information of the first device parameter to be checked and the information of the second device parameter to be checked.
  • terminal equipment accesses the system interface of MES wirelessly.
  • step 506 the first check information, the second check information, and the identification information of the checker are associated and saved.
  • the MES server 12 may, after receiving the second inspection information to be inspected, combine the first inspection information, the second inspection information, and the identification information of the inspector For example, it can be stored in the device parameter database of the MES server 12.
  • the configuration method may also only acquire the first check information.
  • the configuration method may further include: determining the point of the device to be checked Inspection information, where the inspection information includes the equipment identification of the equipment to be inspected and the parameter identification of the first equipment parameter to be inspected; the inspection instruction is generated according to the inspection information; the inspection instruction is sent to the equipment to be inspected according to the equipment identification Equipment for the equipment to be inspected to read the information of the parameters of the first equipment to be inspected according to the inspection instructions to obtain the first inspection information; to receive the first inspection information sent by the equipment to be inspected; to perform the first inspection The information is saved.
  • the first check information that can be automatically read by the equipment to be checked can be obtained according to the check instruction, and the input second check information can be received, and then the first check information and the second check information
  • the information and the identification information of the inspector are associated and stored, so that automatic inspection can be realized, which greatly reduces inspection workload and improves inspection efficiency.
  • the embodiment of the present disclosure also provides a method for configuring device parameters.
  • the configuration method further includes the following steps 601 to 604:
  • step 601 the target information corresponding to the first device parameter of the current device input on the display interface of the current device and the identification information of the modifying person are obtained.
  • the engineer can modify the device parameters on the display interface of the current device.
  • the current device may receive the input target information of the first device parameter and the identification information of the modifier, and send the received target information of the first device parameter and the identification information of the modifier to the MES server 12 for the MES server 12 Obtain the target information of the first device parameter input on the display interface of the current device and the identification information of the modifier.
  • the current device can send the received information, for example, the target information of the first device parameter and the identification information of the modification person, to the controller 13 through the CCIE protocol, and the controller accepts And temporarily store the target information of the first device parameter and the identification information of the modifier 13 to verify the received information, that is, to determine whether the controller 13 successfully receives the target information of the first device parameter and the identification information of the modifier and other parameter information, If the controller 13 successfully receives the target information of the first device parameter and the parameter information such as the identification information of the modification person, the controller 13 uploads the target information of the first device parameter and the modification person's identification information and other parameter information to the system interface of the MES ; If the controller 13 does not receive parameter information such as the target information of the first device parameter and the identification information of the modification person, the controller 13 feeds back the target information of the first device parameter and the modification person's identification information to the current device.
  • the current device can send the received target information of the first device parameter and the identification information of the
  • step 602 the current information corresponding to the first device parameter is updated according to the target information corresponding to the first device parameter.
  • the MES server 12 receives the target information of the first device parameter and the parameter information such as the identification information of the modifier and performs the reception status verification, that is, determines whether the MES server 12 successfully receives the first device If the MES server 12 successfully receives the target information of the first device parameter and the modification person’s identification information and other parameter information, the MES server 12 will use the target information corresponding to the first device parameter. Update the current information corresponding to the first device parameter, and control the system interface of the MES to display the updated current information of the first device parameter.
  • the MES server 12 fails to receive the target information of the first device parameter and the identification information of the modifier and other parameter information, the MES server 12 feeds back to the controller 13 the target information of the first device parameter and the modifier’s identification information and other parameter information. Failure message.
  • step 603 the current information corresponding to the second device parameter of the current device is read, where the current information corresponding to the second device parameter is the information obtained from the last field test.
  • the MES server 12 can read the second device parameter corresponding to the current device stored in the device parameter database.
  • the current information and the updated current information of the first device parameter and the current information corresponding to the second device parameter are combined.
  • the current information corresponding to the second device parameter is the last on-site test (for example, when performing the configuration of this device parameter)
  • the second device parameter is a parameter that the current device cannot automatically read.
  • the second device parameter may be temperature.
  • step 604 the current information corresponding to the updated first device parameter, the current information corresponding to the second device parameter, and the identification information of the modifier are associated and saved.
  • the MES server 12 may associate and save the updated current information of the first device parameter, the current information of the second device parameter, and the identification information of the modifier, for example, it may be saved in In the device parameter database of the MES server 12.
  • the target information corresponding to the first device parameter input on the display interface of the current device and the identification information of the modifying person can be obtained, and the current corresponding to the first device parameter can be updated according to the target information corresponding to the first device parameter. Then, the current information corresponding to the second device parameter of the current device obtained from the last field test can be read, and the current information corresponding to the updated first device parameter, the current information corresponding to the second device parameter, and the modifier can be read In this way, the parameter modification history of the equipment can be automatically recorded, and the workload of maintaining equipment parameters can be reduced.
  • the embodiment of the present disclosure also provides a method for configuring device parameters. Based on the embodiment shown in FIG. 1A, in this embodiment, as shown in FIG. 7, the following steps 701 to 705 are further included:
  • step 701 the input target information of the second device parameter corresponding to the current device and the identification information of the modifier are received, where the target information corresponding to the second device parameter is obtained through field testing.
  • the MES server 12 may receive the input target information corresponding to the second device parameter of the current device and the identification information of the modifier.
  • the current device cannot automatically read the target information corresponding to the second device parameter.
  • the target information corresponding to the equipment parameters needs to be obtained by the engineer through on-site testing.
  • the engineer can log in to the MES through a terminal device (for example, a tablet computer, etc.), and can input the target information corresponding to the second device parameter of the current device and the identification information of the modification person on the system interface of the MES, and then, You can click the "Report" button to report to the MES server 12.
  • a terminal device for example, a tablet computer, etc.
  • a report instruction is generated according to the target information corresponding to the second device parameter and the identification information of the modifier.
  • the MES server 12 may generate a report instruction according to the target information of the second device parameter and the identification information of the modifier after detecting the operation of the "report" button being clicked.
  • step 703 a read instruction of the first device parameter is sent to the current device according to the report instruction.
  • the MES server 12 may send the read instruction of the first device parameter to the current device according to the report instruction.
  • the first device parameter is a parameter that the current device can automatically read.
  • the read instruction includes the device identification of the current device.
  • the MES server 12 may send the first device parameter read instruction to the controller 13 through the Tibco protocol according to the device identifier of the current device.
  • the controller 13 judges whether it receives a read instruction of the first device parameter, if the controller 13 does not receive the read instruction of the first device parameter, the controller 13 returns a message that the reception of the read instruction of the first device parameter failed; If the controller 13 receives the instruction to read the first device parameter, the controller 13 selects the current device from the devices controlled by the controller 13 according to the device identifier of the current device, and reads the first device parameter through the CCIE protocol The command is sent to the current device. The current device judges whether the read instruction of the first device parameter is received.
  • the current device judges that it has not received the read instruction of the first device parameter, the current device returns the first device parameter read instruction reception failure message; if the current device If it is determined that the read instruction of the first device parameter is received, the current device reads the current information corresponding to the first device parameter and sends the current information corresponding to the first device parameter to the controller 13.
  • step 704 the current information corresponding to the first device parameter read by the current device according to the read instruction is received.
  • the MES server 12 may receive the current information corresponding to the first device parameter read by the current device according to the read instruction. For example, after the current device sends the current information corresponding to the first device parameter to the controller 13, the controller 13 determines whether the current information corresponding to the first device parameter is successfully received, if the controller 13 does not successfully receive the current information corresponding to the first device parameter , The controller 13 feeds back to the current device a message that the current information corresponding to the first device parameter has failed to be received through the CCIE protocol; if the controller 13 successfully receives the current information corresponding to the first device parameter, the controller 13 temporarily stores the first device parameter Corresponding current information.
  • the controller 13 can upload the current information corresponding to the first device parameter to the system interface of the MES through the Tibco protocol for display (the terminal device can wirelessly access the MES in the workshop).
  • the MES server 12 determines whether the current information corresponding to the first device parameter is received. If the MES server 12 does not receive the current information corresponding to the first device parameter, the MES server 12 returns a message that the current information corresponding to the first device parameter has failed to be sent. So that the controller 13 resends; if the MES server 12 receives the current information corresponding to the first device parameter, the MES server 12 displays the current information corresponding to the first device parameter.
  • step 705 the target information corresponding to the second device parameter, the current information corresponding to the first device parameter, and the identification information of the modifier are associated and stored.
  • the MES server 12 may store the target information corresponding to the second device parameter, the current information corresponding to the first device parameter, and the identification information of the modifier in association, for example, it may be stored in the device parameter database of the MES server 12 in.
  • the input target information corresponding to the second device parameter of the current device and the identification information of the modifier obtained through the field test can be received, and generated according to the target information corresponding to the second device parameter and the identification information of the modifier Report the instruction, and then send the read instruction of the first device parameter to the current device according to the report instruction, and receive the current information corresponding to the first device parameter read by the current device according to the read instruction, and then set the second device parameter to
  • the target information, the current information corresponding to the first device parameter, and the identification information of the modifier are associated and stored.
  • the embodiments of the present disclosure also provide a method for configuring device parameters, which can be applied to the device side.
  • the method for configuring device parameters includes: the device to be configured receives a parameter batch configuration command, where the parameter batch configuration command is generated by the server according to the target information corresponding to the device parameter of the device to be configured; The current information corresponding to one device parameter is adjusted to target information corresponding to at least one device parameter.
  • the method for configuring device parameters can also implement automatic inspection of the device.
  • the device parameter configuration method further includes: the device to be inspected receives an inspection instruction, where the inspection instruction is generated by the server according to the inspection information of the device to be inspected, and the inspection information includes the inspection information to be inspected.
  • the device identification of the check equipment and the parameter identification of the first device parameter to be checked; the device to be checked reads the information of the first device parameter to be checked according to the check instruction to obtain the first check information;
  • the check information is sent to the server for the server to associate and save the first check information, the second check information, and the identification information of the checker, where the second check information is the pass check received by the server Information about the parameters of the second device to be inspected obtained by a person performing on-site testing.
  • the device parameter configuration method further includes: the device to be inspected receives an inspection instruction, where the inspection instruction is generated by the server according to the inspection information of the device to be inspected, and the inspection information includes The device identification of the device to be inspected and the parameter identification of the first device parameter to be inspected; the device to be inspected reads the information of the first device parameter to be inspected according to the inspection instruction to obtain the first inspection information; Check the information to the server for storage.
  • the device parameter configuration method can also realize automatic recording of parameter modification history.
  • the device parameter configuration method further includes: receiving the target information corresponding to the first device parameter of the current device and the identification information of the modifying person on the display interface of the current device; sending the target information corresponding to the first device parameter and the modification The identification information of the person is sent to the server, so that the server updates the current information corresponding to the first device parameter of the current device according to the target information corresponding to the first device parameter, reads the current information corresponding to the second device parameter of the current device, and The current information corresponding to the updated first device parameter, the current information corresponding to the second device parameter, and the identification information of the modifier are associated and saved, where the current information corresponding to the second device parameter is the information obtained from the last field test.
  • the device parameter configuration method further includes: sending target information corresponding to the second device parameter of the current device and the identification information of the modifier to the server, so that the server can use the target according to the second device parameter
  • the information and the identification information of the modifier generate a report instruction, and according to the report instruction, send a read instruction of the first device parameter, where the target information corresponding to the second device parameter is obtained through field testing; receive the read instruction of the first device parameter, And read the current information corresponding to the first device parameter according to the read instruction; send the current information corresponding to the first device parameter to the server, so that the server can convert the target information corresponding to the second device parameter and the current information corresponding to the first device parameter
  • the information and the identification information of the modifying person are stored in association.
  • the embodiment of the present disclosure also provides a device parameter configuration method, which can be applied to a device parameter configuration system.
  • the device parameter configuration system includes: a server and a device to be configured; the server communicates with the device to be configured.
  • the device parameter configuration method may include the following steps 801 to 804:
  • step 801 the server obtains target information corresponding to the device parameters of at least one device to be configured.
  • step 802 the server generates a parameter batch configuration command corresponding to at least one device to be configured according to the target information corresponding to the device parameter.
  • step 803 the server sends the parameter batch configuration command corresponding to at least one device to be configured to at least one device to be configured.
  • step 804 at least one device to be configured adjusts the current information corresponding to the at least one device parameter to target information corresponding to the at least one device parameter according to the parameter batch configuration command.
  • the server in this embodiment may be the aforementioned MES server 12, and the at least one device to be configured may be any one or more of the aforementioned devices 14-17.
  • the method for configuring device parameters in this embodiment is similar to the method for configuring device parameters as shown in FIG. 2 and will not be repeated here.
  • the configuration device includes:
  • the acquiring circuit 901 is configured to acquire target information corresponding to a device parameter of at least one device to be configured;
  • the generating circuit 902 is configured to generate a parameter batch configuration command corresponding to at least one device to be configured according to the target information corresponding to the device parameter;
  • the sending circuit 903 is configured to send the parameter batch configuration command corresponding to the at least one device to be configured to the at least one device to be configured, so that the at least one device to be configured can adjust the current information corresponding to the at least one device parameter to Target information corresponding to at least one device parameter.
  • the acquiring circuit 901, the generating circuit 902, and/or the sending circuit 903 may include codes and programs stored in a memory; the processor may execute the codes and programs to implement the acquiring circuit 901,
  • the generating circuit 902 and/or the transmitting circuit 903 may have some or all of the functions.
  • the acquiring circuit 901, the generating circuit 902, and/or the sending circuit 903 may be one circuit board or a combination of multiple circuit boards, and are used to implement the functions described above.
  • the one circuit board or the combination of multiple circuit boards may include: (1) one or more processors; (2) one or more non-transitory computer-readable computers connected to the processors And (3) the processor executable firmware stored in the memory.
  • the embodiment of the present disclosure also provides a device parameter configuration system.
  • the device parameter configuration system includes: a server end 1001 and at least one device to be configured 1002; a server end 1001 and at least one device to be configured 1002 Communication connection.
  • the server 1001 may be the aforementioned MES server 12, and the at least one device to be configured 1002 can be any one or more of the aforementioned devices 14-17.
  • the server 1001 is configured to obtain target information corresponding to device parameters of at least one device to be configured.
  • the server 1001 is further configured to generate parameter batch configuration commands corresponding to at least one device to be configured according to the target information corresponding to the device parameters.
  • the server 1001 is further configured to send parameter batch configuration commands corresponding to at least one device to be configured to at least one device to be configured.
  • the at least one device to be configured 1002 is configured to adjust current information corresponding to at least one device parameter to target information corresponding to at least one device parameter according to the parameter batch configuration command.
  • the server 1001 is provided with an MES system.
  • the configuration system may further include an input system, and the input system may include the aforementioned terminal devices, such as a tablet computer, a smart phone, a notebook computer, and the like.
  • the network may include a wireless network, a wired network, and/or any combination of a wireless network and a wired network.
  • the network may include a local area network, the Internet, a telecommunication network, the Internet of Things based on the Internet and/or a telecommunication network, and/or any combination of the above networks, and so on.
  • the wired network may, for example, use twisted pair, coaxial cable, or optical fiber transmission for communication, and the wireless network may use, for example, a 3G/4G/5G mobile communication network, Bluetooth, Zigbee, or WiFi.
  • the present disclosure does not limit the types and functions of the network here.
  • the detailed description of the device parameter configuration method using the device parameter configuration system can refer to the relevant description in the embodiment of the device parameter configuration method.
  • the technical effects of the device parameter configuration device may refer to the technical effects of the above-mentioned device parameter configuration method.
  • Fig. 11 is a block diagram showing a terminal device according to an exemplary embodiment.
  • the terminal device 1100 may be provided as a server.
  • the terminal device 1100 includes a processing component 1122 and a memory resource represented by a memory 1132.
  • the processing component 1122 includes one or more processors.
  • the memory 1132 is used to store instructions that can be executed by the processing component 1122, such as application programs.
  • the application program stored in the memory 1132 may include one or more modules, and each module corresponds to a set of instructions.
  • the processing component 1122 is configured to execute the instructions stored in the memory 1132 to execute the above-mentioned device parameter configuration method.
  • the processor may control other components in the terminal device to perform desired functions.
  • the processor 730 may be a central processing unit (CPU), a tensor processor (TPU), or other devices with data processing capabilities and/or program execution capabilities.
  • the central processing unit (CPU) can be an X86 or ARM architecture.
  • the memory 1132 may include any combination of one or more computer program products, and the computer program products may include various forms of computer-readable storage media, such as volatile memory and/or non-volatile memory.
  • Volatile memory may include random access memory (RAM) and/or cache memory (cache), for example.
  • the non-volatile memory may include, for example, read only memory (ROM), hard disk, erasable programmable read only memory (EPROM), portable compact disk read only memory (CD-ROM), USB memory, flash memory, etc.
  • ROM read only memory
  • EPROM erasable programmable read only memory
  • CD-ROM portable compact disk read only memory
  • USB memory flash memory, etc.
  • One or more computer-readable instructions may be stored in the memory 1132, and the processor may run the computer-readable instructions to implement various functions of the terminal device.
  • the terminal device 1100 may further include a power supply component 1126 configured to perform power management of the terminal device 1100, a wired or wireless network interface 1150 configured to connect the terminal device 1100 to the network, and an input output (I/O) interface 1158.
  • the terminal device 1100 may operate based on an operating system stored in the memory 1132, for example, Windows ServerTM, Mac OS XTM, UnixTM, LinuxTM, FreeBSDTM or similar operating systems.
  • various components in the terminal device 1100 may communicate with each other through a network and/or a system bus connection.
  • the embodiment of the present disclosure also provides a computer-readable storage medium including instructions.
  • the computer-readable storage medium may be the foregoing memory 1132 including instructions, and the foregoing instructions may be executed by the processing component 1122 of the terminal device 1100 to complete the foregoing configuration method. .
  • the computer-readable storage medium may be a non-transitory computer-readable storage medium.
  • the non-transitory computer-readable storage medium may be ROM, random access memory (RAM), CD-ROM, magnetic tape, floppy disk, optical data storage device, etc.
  • first and second are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance.
  • plurality refers to two or more, unless specifically defined otherwise.

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  • Testing And Monitoring For Control Systems (AREA)

Abstract

一种设备参数的配置方法、装置和***。方法包括:获取至少一个待配置设备(14-17)的设备参数对应的目标信息(201);根据设备参数对应的目标信息生成与至少一个待配置设备(14-17)对应的参数批量配置命令(202);将与至少一个待配置设备(14-17)对应的参数批量配置命令发送给至少一个待配置设备(14-17),以供至少一个待配置设备(14-17)根据参数批量配置命令将至少一个设备参数的当前信息调整为至少一个设备参数对应的目标信息(203)。该设备参数的配置方法可以实现设备参数的信息批量自动下发,大大提升产品切线的效率,提高产能。

Description

设备参数的配置方法、装置和***、终端设备和计算机可读存储介质
本申请要求于2019年03月26日递交的中国专利申请第201910231395.9号的优先权,在此全文引用上述中国专利申请公开的内容以作为本申请的一部分。
技术领域
本公开的实施例涉及信息处理技术领域,尤其涉及一种设备参数的配置方法、装置和***、终端设备和计算机可读存储介质。
背景技术
目前,在相关技术中,在切换线路时,设备的设备参数都是由工程师在生产线上逐台设备进行设置,由于车间设备众多,配置设备参数工作量大、时间长,这样,会耗费大量的时间及人工成本,且容易出错。
发明内容
本公开至少一个实施例一种设备参数的配置方法,包括:获取至少一个待配置设备的设备参数对应的目标信息;根据所述设备参数对应的目标信息生成与所述至少一个待配置设备对应的参数批量配置命令;将与所述至少一个待配置设备对应的所述参数批量配置命令发送给所述至少一个待配置设备,以供所述至少一个待配置设备根据所述参数批量配置命令将至少一个设备参数对应的当前信息调整为所述至少一个设备参数对应的目标信息。
例如,在本公开一实施例提供的设备参数的配置方法中,获取所述至少一个待配置设备的所述设备参数的目标信息,包括:获取所述设备参数对应的筛选条件,其中,所述筛选条件包括所述至少一个待配置设备的设备标识、所述至少一个待配置设备对应的产品的产品标识以及所述至少一个待配置设备所属的生产线的生产线标识;根据所述筛选条件从设备参数数据库中筛选出所述至少一个待配置设备的所述设备参数对应的目标信息,其中,所述设备参数数据库中存储有每个待配置设备的设备标识、产品标识、生产线标识以及设备参数的目标信息的对应关系。
例如,在本公开一实施例提供的设备参数的配置方法中,在根据所述设备 参数的目标信息生成参数批量配置命令之后,所述配置方法还包括:针对每个待配置设备,对比所述待配置设备对应的产品的产品标识与所述待配置设备所属的生产线绑定的产品标识是否一致;响应于所述待配置设备对应的产品的产品标识与所述待配置设备所属的生产线绑定的产品标识一致,则发出确认将与所述待配置设备对应的参数批量配置命令发送至所述待配置设备的第一反馈信息,响应于接收到所述第一反馈信息,将与所述待配置设备对应的参数批量配置命令发送至所述待配置设备。
例如,在本公开一实施例提供的设备参数的配置方法中,在对比所述待配置设备对应的产品的产品标识与所述待配置设备所属的生产线绑定的产品标识是否一致之后,所述配置方法还包括:响应于所述待配置设备对应的产品的产品标识与所述待配置设备所属的生产线绑定的产品标识不一致,则输出提示信息,以提示所述待配置设备对应的产品的产品标识与所述待配置设备所属的生产线绑定的产品标识不一致,并输出询问请求,以确认是否将与所述待配置设备对应的所述参数批量配置命令发送至所述待配置设备;响应于接收到确认将与所述待配置设备对应的参数批量配置命令发送至所述待配置设备的所述第一反馈信息,将与所述待配置设备对应的参数批量配置命令发送至所述待配置设备;响应于接收到拒绝将与所述待配置设备对应的参数批量配置命令发送至所述待配置设备的第二反馈信息,获取所述待配置设备的设备参数对应的调整后的筛选条件,根据所述调整后的筛选条件重新获取所述待配置设备的设备参数的目标信息,以更新与所述待配置设备对应的参数批量配置命令。
例如,本公开一实施例提供的设备参数的配置方法还包括:确定待点检设备的点检信息,其中,所述点检信息包括所述待点检设备的设备标识以及待点检的第一设备参数的参数标识;根据所述点检信息生成点检指令;根据所述设备标识将所述点检指令发送至所述待点检设备,以供所述待点检设备根据所述点检指令读取所述待点检的第一设备参数的信息,得到第一点检信息;接收所述待点检设备发送的所述第一点检信息;接收输入的待点检的第二设备参数的信息,得到第二点检信息,其中,所述待点检的第二设备参数的信息通过点检人现场测试得到;将所述第一点检信息、所述第二点检信息以及所述点检人的标识信息进行关联保存。
例如,本公开一实施例提供的设备参数的配置方法还包括:确定待点检设备的点检信息,其中,所述点检信息包括所述待点检设备的设备标识以及待点 检的第一设备参数的参数标识;根据所述点检信息生成点检指令;根据所述设备标识将所述点检指令发送至所述待点检设备,以供所述待点检设备根据所述点检指令读取所述待点检的第一设备参数的信息,得到第一点检信息;接收所述待点检设备发送的所述第一点检信息;将所述第一点检信息进行保存。
例如,本公开一实施例提供的设备参数的配置方法还包括:获取在当前设备的显示界面上输入的所述当前设备的第一设备参数对应的目标信息以及修改人的标识信息;根据所述第一设备参数对应的目标信息更新所述第一设备参数对应的当前信息;读取所述当前设备的第二设备参数对应的当前信息,其中,所述第二设备参数对应的当前信息为上次现场测试得到的信息;将更新后的所述第一设备参数对应的当前信息、所述第二设备参数对应的当前信息以及所述修改人的标识信息进行关联保存。
例如,本公开一实施例提供的设备参数的配置方法还包括:接收输入的当前设备的第二设备参数对应的目标信息以及修改人的标识信息,其中,所述第二设备参数对应的目标信息通过现场测试得到;根据所述第二设备参数对应的目标信息与所述修改人的标识信息生成上报指令;根据所述上报指令向所述当前设备发送第一设备参数的读取指令;接收所述当前设备根据所述读取指令读取的所述第一设备参数对应的当前信息;将所述第二设备参数对应的目标信息、所述第一设备参数对应的当前信息以及所述修改人的标识信息进行关联存储。
本公开至少一实施例提供一种设备参数的配置方法,包括:待配置设备接收参数批量配置命令,其中,所述参数批量配置命令由服务端根据所述待配置设备的设备参数对应的目标信息生成;所述待配置设备根据所述参数批量配置命令将至少一个设备参数对应的当前信息调整为所述至少一个设备参数对应的目标信息。
例如,本公开一实施例提供的设备参数的配置方法还包括:待点检设备接收点检指令,其中,所述点检指令由所述服务端根据所述待点检设备的点检信息而生成的,所述点检信息包括所述待点检设备的设备标识以及待点检的第一设备参数的参数标识;所述待点检设备根据所述点检指令读取所述待点检的第一设备参数的信息,得到第一点检信息;发送所述第一点检信息至所述服务端,以供所述服务端将所述第一点检信息、第二点检信息以及点检人的标识信息进行关联保存,其中,所述第二点检信息为所述服务端接收到的通过所述点检人进行现场测试得到的待点检的第二设备参数的信息。
例如,本公开一实施例提供的设备参数的配置方法还包括:待点检设备接收点检指令,其中,所述点检指令由所述服务端根据所述待点检设备的点检信息而生成的,所述点检信息包括所述待点检设备的设备标识以及待点检的第一设备参数的参数标识;所述待点检设备根据所述点检指令读取所述待点检的第一设备参数的信息,得到第一点检信息;发送所述第一点检信息至所述服务端进行保存。
例如,本公开一实施例提供的设备参数的配置方法还包括:在当前设备的显示界面上接收所述当前设备的第一设备参数对应的目标信息以及修改人的标识信息;发送所述第一设备参数对应的目标信息以及所述修改人的标识信息至所述服务端,以使所述服务端根据所述第一设备参数对应的目标信息更新所述当前设备的所述第一设备参数对应的当前信息,读取所述当前设备的第二设备参数对应的当前信息,以及将更新后的所述第一设备参数对应的当前信息、所述第二设备参数对应的当前信息以及所述修改人的标识信息进行关联保存,其中,所述第二设备参数对应的当前信息为上次现场测试得到的信息。
例如,本公开一实施例提供的设备参数的配置方法还包括:发送当前设备的第二设备参数对应的目标信息以及修改人的标识信息至所述服务端,以供所述服务端根据所述第二设备参数对应的目标信息与所述修改人的标识信息生成上报指令,并根据所述上报指令发送第一设备参数的读取指令,其中,所述第二设备参数对应的目标信息通过现场测试得到;接收所述第一设备参数的读取指令,并根据所述读取指令读取所述第一设备参数对应的当前信息;发送所述第一设备参数对应的当前信息至所述服务端,以供所述服务端将所述第二设备参数对应的目标信息、所述第一设备参数对应的当前信息以及所述修改人的标识信息进行关联存储。
本公开至少一实施例提供一种设备参数的配置方法,应用于设备参数的配置***,其中,所述设备参数的配置***包括:服务端与待配置设备;所述服务端与所述待配置设备通信连接;所述配置方法包括:所述服务端获取至少一个待配置设备的设备参数对应的目标信息;所述服务端根据所述设备参数对应的目标信息生成与所述至少一个待配置设备对应的参数批量配置命令;所述服务端将与所述至少一个待配置设备对应的所述参数批量配置命令发送给所述至少一个待配置设备;所述至少一个待配置设备根据所述参数批量配置命令将至少一个设备参数对应的当前信息调整为所述至少一个设备参数对应的目标 信息。
本公开至少一实施例提供一种设备参数的配置装置,包括:获取电路,用于获取至少一个待配置设备的设备参数对应的目标信息;生成电路,用于根据所述设备参数对应的目标信息生成与所述至少一个待配置设备对应的参数批量配置命令;发送电路,用于将与所述至少一个待配置设备对应的所述参数批量配置命令发送给所述至少一个待配置设备,以供所述至少一个待配置设备根据所述参数批量配置命令将至少一个设备参数对应的当前信息调整为所述至少一个设备参数对应的目标信息。
本公开至少一实施例提供一种设备参数的配置***,包括:服务端与至少一个待配置设备;其中,所述服务端与所述至少一个待配置设备通信连接;所述服务端用于获取所述至少一个待配置设备的设备参数对应的目标信息;根据所述设备参数对应的目标信息生成与所述至少一个待配置设备对应的参数批量配置命令;将与所述至少一个待配置设备对应的所述参数批量配置命令发送给所述至少一个待配置设备;所述至少一个待配置设备用于根据所述参数批量配置命令将至少一个设备参数对应的当前信息调整为所述至少一个设备参数对应的目标信息。
本公开至少一实施例提供一种终端设备,包括处理器和存储器;其中,所述存储器用于存储计算机程序;所述处理器用于执行所述存储器上所存储的计算机程序,实现上述任一实施例所述的配置方法。
本公开至少一实施例提供一种计算机可读存储介质,其中,所述计算机可读存储介质内存储有计算机程序,所述计算机程序被处理器执行时实现上述任一实施例所述的方法。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性和解释性的,并不能限制本公开。
附图说明
为了更清楚地说明本公开实施例的技术方案,下面将对实施例的附图作简单地介绍,显而易见地,下面描述中的附图仅仅涉及本公开的一些实施例,而非对本公开的限制。
图1A是根据本公开实施例示出的一种设备参数的配置***的结构示意图;
图1B是根据本公开实施例示出的一种PLM-ESB接口模块的流程图;
图1C是根据本公开实施例示出的一种ESB-MES接口模块的流程图;
图1D是根据本公开实施例示出的一种下发模块的工作流程的示意图;
图2是根据本公开实施例示出的一种设备参数的配置方法的流程图;
图3是根据本公开实施例示出的另一种设备参数的配置方法的流程图;
图4是根据本公开实施例示出的另一种设备参数的配置方法的流程图;
图5A是根据本公开实施例示出的另一种设备参数的配置方法的流程图;
图5B是根据本公开实施例示出的一种自动点检的流程图;
图6A是根据本公开实施例示出的另一种设备参数的配置方法的流程图;
图6B是根据本公开实施例示出的一种记录自动参数修改历史的流程图;
图7是根据本公开实施例示出的另一种设备参数的配置方法的流程图;
图8是根据本公开实施例示出的另一种设备参数的配置方法的流程图;
图9是根据本公开实施例示出的一种设备参数的配置装置的框图;
图10是根据本公开实施例示出的一种设备参数的配置***的框图;
图11是根据本公开实施例示出的一种终端设备的框图。
具体实施方式
为了使得本公开实施例的目的、技术方案和优点更加清楚,下面将结合本公开实施例的附图,对本公开实施例的技术方案进行清楚、完整地描述。显然,所描述的实施例是本公开的一部分实施例,而不是全部的实施例。基于所描述的本公开的实施例,本领域普通技术人员在无需创造性劳动的前提下所获得的所有其他实施例,都属于本公开保护的范围。
除非另外定义,本公开使用的技术术语或者科学术语应当为本公开所属领域内具有一般技能的人士所理解的通常意义。本公开中使用的“第一”、“第二”以及类似的词语并不表示任何顺序、数量或者重要性,而只是用来区分不同的组成部分。“包括”或者“包含”等类似的词语意指出现该词前面的元件或者物件涵盖出现在该词后面列举的元件或者物件及其等同,而不排除其他元件或者物件。“连接”或者“相连”等类似的词语并非限定于物理的或者机械的连接,而是可以包括电性的连接,不管是直接的还是间接的。“上”、“下”、“左”、“右”等仅用于表示相对位置关系,当被描述对象的绝对位置改变后,则该相对位置关系也可能相应地改变。
这里将详细地对示例性实施例进行说明,实施例的示例表示在附图中。下 面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开的一些方面相一致的装置和方法的例子。
设备的设备参数发送至设备的过程并没有***进行管控,在切换线路时,设备的设备参数都是由工程师在生产线上逐台设备进行设置,会耗费大量的时间及人工成本,且容易出错。而且,设备的点检操作也需要由工程师人工完成,且在点检操作中,漏检、误检的情况时有发生。设备的设备参数的修改历史并没有被记录或是手工记录,无法实现设备参数的记录和分析等,而且当设备参数的修改有错误,则设备参数无法恢复到原始值,而是需要将设备恢复出厂设置,从而导致耽误一到两天的时间才能重新将设备参数逐个调回原始值,因此,对人力物力造成极大的浪费,影响产能。
本公开实施例提供的设备参数的配置方法可应用于如图1A所示的设备参数的配置***。在介绍设备参数的配置方法之前,先简单介绍一下设备参数的配置***。如图1A所示,该设备参数的配置***可包括PLM(Product Lifecycle Management,产品生命周期管理)服务器11、MES(Manufacturing Execution System,制造企业生产过程执行***)服务器12、控制器13以及至少一个待配置设备,例如,图1A示出了四个待配置设备,四个待配置设备分别为第一待配置设备14、第二待配置设备15、第三待配置设备16以及第四待配置设备17。需要说明的是,在至少一个实施例中,设备参数的配置***中的所有组件(即PLM服务器11、MES服务器12、控制器13以及待配置设备)均会判断是否成功接收消息,且所有组件在接收到发送消息失败的消息后均有重新发送消息的机制。
例如,控制器13可以是计算机,控制器13上可安装设备模块控制***(Block Control System,简称BC,又称为设备接口***)。PLM服务器11用于给安装有PLM***的客户端提供服务,MES服务器12用于给安装有MES***的客户端提供服务。PLM服务器11与MES服务器12通信连接,例如,PLM服务器11可以通过ESB(Enterprise Service Bus,企业服务总线)与MES服务器12通信连接,MES服务器12与控制器13通信连接,控制器13与待配置设备14~17通信连接。例如,每个MES服务器12可以与至少一个控制器13实现通信连接,每个控制器13可以与至少一个待配置设备实现通信连接。
用户,例如工程师,可以预先将设备参数的目标信息录入PLM服务器11。例如,在一些实施例中,PLM***中设备的工艺参数维护界面可以包括序号、参数名称、参数描述和参数值等信息。PLM服务器11在接收到设备参数的目标信息后,可以对设备参数的目标信息进行校验,例如,如果设备参数的目标信息不满足(例如,超过)预设阈值或者格式不正确等,则PLM服务器11会输出提示信息,以提醒工程师进行更正。在一些实施例中,报错提示界面可以包括设备参数的目标信息不满足预设阈值和参数类型错误等类型的提示信息,例如,在一些实施例中,提示信息包括:第3行:参数值必须介于X1到X2之间;第21行:参数值必须为数值型和第23行:参数值必须介于X1到X2之间,X1和X2可以均为正整数,且X1小于X2。需要说明的是,在报错提示界面中,提示信息可以包括多条信息(例如,三条、五条、十条等),也可以仅包括一条信息;此外,提示信息可以包括多种类型的报错信息,例如,提示信息包括两种类型的报错信息,分别为设备参数的目标信息不满足预设阈值和参数类型错误。
例如,在PLM服务器11完成注册设备参数的目标信息后,PLM服务器11可以将通过校验的设备参数的目标信息同步至指定的门户网站,以进行审批,待审批结束后,可以通过Webservice协议将设备参数的目标信息以XML文件形式传输到ESB接口模块,ESB接口模块可以通过Webservice协议将接收的XML文件下发(即传输)到MES服务器12,以供MES服务器12根据设备参数的目标信息生成参数批量配置命令,并发送给多个待配置设备,以供待配置设备根据参数批量配置命令将设备参数的当前信息调整为目标信息。此外,MES服务器12还能够存储该XML文件文件。
需要说明的是,MES***是设备参数的配置***的核心模块,因此,先介绍一下MES***的功能。MES***主要包括三个部分,三个部分分别为接口模块、存储模块和下发模块(下文中所有模块的发送是否成功的校验及重新发送机制均由***自动完成)。
例如,根据传输数据类型不同,接口模块可以包括如下四个接口:Processflow(工艺路线)数据接口、SOP(Standard Operating Procedure,标准作业程序)数据接口、设备参数数据接口、BOM(Bill of Material,物料清单)数据接口。设备参数的目标信息的下发(即传输)通过设备参数数据接口实现,设备参数数据接口的接口方式为PLM-ESB-MES,根据传输的设备参数的不同 类型,接口模块分为PLM-ESB接口模块及ESB-MES接口模块两部分。
例如,如图1B所示,PLM-ESB接口模块的工作流程如下:首先,PLM***将注册完成的要下发的设备参数的目标信息的列表以XML文件的形式并通过Webservice协议向ESB接口模块发送。接着,ESB接口模块接收XML文件,并对接收的XML文件进行校验,也就是说,判断ESB接口模块是否成功接收XML文件,如果校验结果为是,即ESB接口模块成功接收XML文件,则ESB接口模块向PLM***发送成功接收XML文件的消息;如果校验结果为否,即ESB接口模块未成功接收XML文件,则ESB接口模块向PLM***发送未接收XML文件,即接收失败,的消息(PLM***接收到此消息后会触发自动重发)。接着,PLM***接收到ESB接口模块返回的信息并对信息进行判断,如果XML文件发送失败,则PLM***重新向ESB接口模块发送XML文件;如果XML文件发送成功,则流程结束。
例如,如图1C所示,ESB-MES接口模块的工作流程如下:首先,ESB接口模块可通过Webservice协议,向MES***发送XML文件。接着,MES***接收XML文件,并对接收的XML文件进行校验,也就是说,MES***判断是否成功接收XML文件,如果MES***成功接收XML文件,则MES***向ESB接口模块发送XML文件发送成功的消息;如果MES***未成功接收XML文件,MES***向ESB接口模块发送XML文件发送失败的消息。接着,ESB接口模块收到MES***返回的信息并对信息进行判断,即根据该信息判断XML文件是否发送成功,如果XML文件发送失败,则ESB接口模块重新向MES***发送XML文件;如果XML文件发送成功,则MES***将XML文件解析为参数列表,并将参数列表并存储在MES服务器12的对应数据库表中,最后该流程结束。
关于存储模块:MES服务器12的数据库表可包含设备标识、参数标识(例如参数名称)、参数值范围、应用线体等属性。应用线体为设备参数应用的生产线。因设备限制,目前部分设备参数不能实现自动上传,且一些参数例如温度等需工程师在设备所处的位置进行现场测量并上传。为了保证参数的完整性,点检参数分为设备自动上传部分和手动上传两部分,MES***会自动校验该两部分并将两部分并合在一起形成统一版本上传到数据库表中,同时,MES***会自动记录最新一次手动点检参数列表和自动点检参数列表的功能。
关于下发模块:工程师可在MES***中根据下发设备(待配置设备)的 设备标识、下发线体(即待配置设备所属的线体)的生产线标识、产品标识(FGCode编码)筛选要下发的参数列表(MES***中存储有所有生产线、所有设备的参数列表),即得到设备参数的目标信息,并下达下发指令,例如通过点击“Recipe Set”按扭实现下达下发指令的功能,然后,下发模块会自动对产品标识进行防呆校验,当校验成功后,将设备参数的目标信息下发到待配置设备。如图1D所示,下发模块的主要流程包括:工程师在MES***对应的参数下发界面根据下发设备的设备标识、下发线体的生产线标识、产品标识来筛选要下发的参数列表;工程师点击“Recipe Set”按扭以进行下发操作;然后执行防呆校验,即判断参数列表中要下发的产品标识与当前线体绑定的产品的产品标识是否一致(因为每个线体可绑定多种型号产品),如果参数列表中要下发的产品标识与当前线体绑定的产品的产品标识不一致,则弹出警告提示,例如,警告提示的信息为:“参数列表中要下发的产品标识与当前线体绑定的产品的产品标识不一致,是否继续下发”,以供工程师进行确认,如果工程师确认需要继续下发,则MES***会继续执行下发操作,如果工程师确认需要不能继续下发,则自动回到重新选择产品标识等属性的参数下发界面,工程师在该参数下发界面中重新核对并填写正确的产品标识;如果参数列表中要下发的产品标识与当前线体绑定的产品的产品标识一致,则MES***通过Tibco协议将设备参数的目标信息下发到对应的待配置设备,最终,该流程结束。
以上介绍了设备参数的配置***,下面介绍本公开实施例提供的设备参数的配置方法。本公开实施例提供的设备参数的配置方法简单、高效、智能、易于操作,能极大的提高用户的工作效率、减少人工成本,同时,缩短量产切线时间,提高设备稼动率,从而提高产能。此外,该配置方法可以通过MES***实现设备参数的下发和回传,高效的实现了多条产线的设备参数的自动批量下发、点检及记录设备参数的修改历史,节约人工成本、提高设备稼动率、提高产能。同时,通过记录并分析设备参数的内存规律,可以更好的指导生产、提高产品良率。
本公开实施例提供一种设备参数的配置方法,应用于MES服务器12。如图2所示,该设备参数的配置方法可以包括以下步骤201~203:
在步骤201中,获取至少一个待配置设备的设备参数对应的目标信息。
在一个实施例中,如图3所示,步骤201可包括以下步骤301~302:
在步骤301中,获取设备参数对应的筛选条件。
在步骤302中,根据筛选条件从设备参数数据库中筛选出至少一个待配置设备的设备参数对应的目标信息。
在一个实施例中,MES服务器12中的设备参数数据库中存储有每个待配置设备的设备标识、产品标识、生产线标识以及设备参数的目标信息的对应关系。在一个实施例中,设备参数的目标信息以数据列表的形式存储在设备参数数据库。MES服务器12可以根据输入的信息获取设备参数对应的筛选条件,并可以根据获取的设备参数对应的筛选条件从设备参数数据库中筛选出至少一个待配置设备的设备参数的目标信息。例如,筛选条件包括至少一个待配置设备的设备标识、至少一个待配置设备对应的产品的产品标识以及至少一个待配置设备所属的生产线的生产线标识。需要说明是的是,“输入的信息”可以为工程师人工输入的信息,也可以为MES服务器12自动输入的信息。
在步骤202中,根据设备参数对应的目标信息生成与至少一个待配置设备对应的参数批量配置命令。
在一个实施例中,MES服务器12可以在接收到下发指令后根据设备参数对应的目标信息生成参数批量配置命令。
例如,参数批量配置命令可以与一个或多个待配置设备对应,也就是说,该参数批量配置命令可以被传输至一个待配置设备,从而该一个待配置设备根据参数批量配置命令将该一个待配置设备的至少一个设备参数对应的当前信息调整为至少一个设备参数对应的目标信息;或者,该参数批量配置命令可以被传输至多个待配置设备,从而该多个待配置设备中的每个待配置设备根据参数批量配置命令将该每个待配置设备的至少一个设备参数对应的当前信息调整为至少一个设备参数对应的目标信息。由于设备参数是针对产品型号和设备来设定的,只要待配置设备的产品型号相同,可以直接参数批量配置命令发送到所有生产该产品型号的产品的产线设备上,实现生产同产品型号的多条产线中的多个设备的设备参数批量自动下发,大大提升产品切线的效率,提高产能。
在步骤203中,将与至少一个待配置设备对应的参数批量配置命令发送给至少一个待配置设备,以供至少一个待配置设备根据参数批量配置命令将至少一个设备参数对应的当前信息调整为至少一个设备参数对应的目标信息。
例如,参数批量配置命令为控制待配置设备进行参数配置的指令,例如,控制待配置设备将至少一个设备参数对应的当前信息调整为至少一个设备参数对应的目标信息。
在一个实施例中,MES服务器12可以将参数批量配置命令发送给至少一个待配置设备。例如,MES服务器12可以通过Tibco协议将参数批量配置命令发送给对应的控制器13,控制器13会判断是否成功接收参数批量配置命令,如果控制器13成功接收到参数批量配置,则控制器13可以根据该设备参数确定与设备参数所属的待配置设备的设备标识,并根据该待配置设备的设备标识通过CCIE协议将设备参数的目标信息发送给该待配置设备;如果控制器13未成功接收到参数批量配置,则控制器13向MES服务器12返回参数批量配置命令发送失败的消息,然后MES服务器12重新发送参数批量配置命令到控制器13上。
需要说明的是,在MES服务器12将参数批量配置命令发送给对应的控制器13之前,MES服务器12进行防呆校验,并在校验成功后,MES服务器12将参数批量配置命令发送给对应的控制器13。
待配置设备在接收到参数批量配置命令后,判断待配置设备是否处于运行中,如果待配置设备处于运行中,则待配置设备不执行参数批量配置命令而直接结束(为避免影响生产,正在运行中的设备不允许进行参数设定),如果待配置设备没有处于运行中,则待配置设备执行参数批量配置命令,以将设备参数对应的当前信息调整为设备参数对应的目标信息。需要说明的是,设备参数对应的当前信息和设备参数对应的目标信息可能相同,也可能不相同。
在一个实施例中,如图4所示,在步骤202之后,配置方法还可以包括以下步骤401~405:
在步骤401中,针对每个待配置设备,对比待配置设备对应的产品的产品标识与待配置设备所属的生产线绑定的产品标识是否一致;若是,即响应于待配置设备对应的产品的产品标识与待配置设备所属的生产线绑定的产品标识一致,则执行步骤402和步骤406,若否,即响应于待配置设备对应的产品的产品标识与待配置设备所属的生产线绑定的产品标识不一致,则执行步骤403至405。
在步骤402中,发出确认将与待配置设备对应的参数批量配置命令发送至待配置设备的第一反馈信息,以及在步骤406中,响应于接收到第一反馈信息,将与待配置设备对应的参数批量配置命令发送至待配置设备。
在步骤403中,输出提示信息,以提示待配置设备对应的产品的产品标识与待配置设备所属的生产线绑定的产品标识不一致,并输出询问请求,以确认 是否将与待配置设备对应的参数批量配置命令发送至待配置设备。
在步骤404中,响应于接收到确认将与待配置设备对应的参数批量配置命令发送至待配置设备的第一反馈信息后,将与待配置设备对应的参数批量配置命令发送至待配置设备。
在步骤405中,响应于接收到拒绝将与待配置设备对应的参数批量配置命令发送至待配置设备的第二反馈信息后,获取待配置设备的设备参数对应的调整后的筛选条件,根据调整后的筛选条件重新获取至少一个待配置设备的设备参数的目标信息,以更新与待配置设备对应的参数批量配置命令。
在待配置设备对应的产品的产品标识与待配置设备所属的生产线绑定的产品标识不一致时,输出询问请求,以确认是否将参数批量配置命令发送至待配置设备,这样,可以避免设备参数下发失误。
在一个示例性实施例中,工程师可以在安装有MES的***界面上根据待配置设备所属的生产线的生产线标识、待配置设备对应的产品的产品标识、待配置设备的设备标识来筛选要传送的设备参数对应的目标信息,得到要传送的参数列表。工程师可以点击***界面上的“Recipe Set”按扭发送传送指令。MES在收到传送指令后生成参数批量配置命令,并进行自动防呆校验,防呆校验包括:判断要传送的参数列表中要传送的产品标识与生产线标识对应的当前生产线绑定的产品标识是否一致(因为同一生产线可绑定不同产品标识对应的产品),如果要传送的参数列表中要传送的产品标识与生产线标识对应的当前生产线绑定的产品标识不一致,则弹出警告提示,例如,警告提示的信息为“要传送的参数列表中要传送的产品标识与当前生产线绑定的产品标识不一致,是否继续下发”,让工程师进行确认,如果工程师确认传送该参数批量配置命令,则继续执行下发操作,如果工程师取消,则自动回到筛选设备参数对应的目标信息的***界面,工程师在该***界面中重新核对并填写正确的生产线标识、产品标识、设备标识等,以更新参数批量配置命令。例如,在校验成功后,即确定要传送的参数列表中要传送的产品标识与生产线标识对应的当前生产线绑定的产品标识一致,则执行下发操作,即MES服务器12将参数批量配置命令发送给对应的控制器13;最终,控制器13可以将参数批量配置命令发送给对应的待配置设备。
本公开实施例中,通过获取至少一个待配置设备的设备参数对应的目标信息,并根据设备参数对应的目标信息生成与至少一个待配置设备对应的参数批 量配置命令,然后将将与至少一个待配置设备对应的参数批量配置命令发送给至少一个待配置设备,以供至少一个待配置设备根据参数批量配置命令将至少一个设备参数对应的当前信息调整为至少一个设备参数对应的目标信息。这样,可以实现设备参数的信息批量自动下发,节约人工成本,大大提升产品切线的效率,提高设备稼动率,提高产能,且可以提高准确率。
本公开实施例还提供一种设备参数的配置方法,在图1A所示的实施例的基础上,在本实施例中,如图5A所示,配置方法还包括以下步骤501~506:
在步骤501中,确定待点检设备的点检信息,其中,点检信息包括待点检设备的设备标识以及待点检的第一设备参数的参数标识。
在一个实施例中,可以根据输入的信息确定待点检设备的点检信息。输入的信息中包括待点检设备的设备标识以及待点检的第一设备参数的参数标识。例如,如图5B所示,工程师可以在车间(即设备所处的物理位置)用终端设备(例如,平板电脑、手机、笔记本电脑等)通过无线网络登录MES的***界面,并在在MES的***界面中设定待点检设备的设备标识、待点检的第一设备参数的参数标识等信息,以供MES服务器12确定待点检设备的点检信息。
在步骤502中,根据点检信息生成点检指令。
在一个实施例中,MES服务器12可以根据上述的点检信息生成点检指令。例如,如图5B所示,当工程师在MES的***界面上设定待点检设备的设备标识、待点检的第一设备参数的参数标识等信息后,可以按“点检”按扭,MES服务器12在检测到“点检”按扭被点击的操作后,可以根据点检信息生成点检指令。
在步骤503中,根据设备标识将点检指令发送至待点检设备,以供待点检设备根据点检指令读取待点检的第一设备参数的信息,得到第一点检信息。
在一个实施例中,MES服务器12可以根据设备标识将点检指令发送至待点检设备,以供待点检设备根据点检指令读取待点检的第一设备参数的信息,得到第一点检信息。第一点检信息即为待点检设备根据点检指令读取得到的待点检的第一设备参数的信息。在一个实施例中,待点检的第一设备参数可以是设备可以自动读取的参数。
例如,点检指令为控制待点检设备执行读取待点检的第一设备参数的信息的指令。
在一个实施例中,如图5B所示,MES服务器12可以根据设备标识将点 检指令通过Tibco协议发送至对应的控制器13,控制器13可以判断是否接收到点检指令,如果控制器13没有接收到点检指令,则控制器13可以返回点检指令接收失败消息;如果控制器13接收到点检指令,则控制器13可以根据设备标识选择控制器13控制的设备中的与该设备标识对应的待点检设备,并通过CCIE协议,将点检指令下发到该待点检设备上。
待点检设备在接收到点检指令后,可以根据待点检的第一设备参数的参数标识读取待点检的第一设备参数的信息。例如,如图5B所示,待点检设备判断是否接收到点检指令,如果待点检设备没有接收到点检指令,则待点检设备返回点检指令接收失败消息;如果待点检设备接收到点检指令,则待点检设备根据待点检的第一设备参数的参数标识读取待点检的第一设备参数的信息。
在步骤504中,接收待点检设备发送的第一点检信息。
在一个实施例中,MES服务器12可以接收待点检设备返回的待点检设备发送的第一点检信息。例如,待点检设备可以将读取的待点检的第一设备参数的信息发送到控制器13。如图5B所示,控制器13判断是否成功接收待点检的第一设备参数的信息,如果控制器13没有成功接收待点检的第一设备参数的信息,则控制器13通过CCIE协议向待点检设备反馈待点检的第一设备参数的信息接收失败消息;如果控制器13成功接收待点检的第一设备参数的信息,则控制器13暂存待点检设备的待点检的第一设备参数的信息,并将待点检设备的待点检的第一设备参数的信息通过Tibco协议上传到MES的***界面进行显示。
如图5B所示,MES服务器12判断是否接收到待点检设备的待点检的第一设备参数的信息,如果MES服务器12没有接收到待点检设备的待点检的第一设备参数的信息,则MES服务器12返回待点检的第一设备参数的信息发送失败消息;如果MES服务器12接收到待点检设备的待点检的第一设备参数的信息,则MES服务器12可以输出提示信息,以提示待点检的第一设备参数的信息读取成功,并提示输入待点检的第二设备参数的信息。
在步骤505中,接收输入的待点检的第二设备参数的信息,得到第二点检信息,其中,待点检的第二设备参数的信息通过点检人现场测试得到。
在一个实施例中,MES服务器12可以接收输入的待点检的第二设备参数的信息,得到第二点检信息。例如,工程师,即点检人,可以通过现场测试得到待点检的第二设备参数的信息,并在MES的***界面输入现场测试得到的 待点检的第二设备参数的信息以及点检人的标识信息。
例如,如图5B所示,工程师可以通过终端设备查看在MES的***界面显示的信息,例如,待点检的第一设备参数的信息和待点检的第二设备参数的信息等。例如,终端设备通过无线访问MES的***界面。
在步骤506中,将第一点检信息、第二点检信息以及点检人的标识信息进行关联保存。
如图5B所示,在一个实施例中,MES服务器12可以在接收到待点检的第二点检信息后,可以将第一点检信息、第二点检信息以及点检人的标识信息等进行关联保存,例如,可以保存在MES服务器12的设备参数数据库中。
例如,在另一些实施例中,该配置方法还可以仅获取第一点检信息,例如,在图1A所示的实施例的基础上,该配置方法还可以包括:确定待点检设备的点检信息,其中,点检信息包括待点检设备的设备标识以及待点检的第一设备参数的参数标识;根据点检信息生成点检指令;根据设备标识将点检指令发送至待点检设备,以供待点检设备根据点检指令读取待点检的第一设备参数的信息,得到第一点检信息;接收待点检设备发送的第一点检信息;将第一点检信息进行保存。
在本实施例中,可以根据点检指令获取待点检设备能够自动读取的第一点检信息,并可以接收输入的第二点检信息,然后将第一点检信息、第二点检信息以及点检人的标识信息进行关联保存,这样,可以实现自动点检,大大减少点检工作量,提高点检效率。
本公开实施例还提供一种设备参数的配置方法,在图1A所示的实施例的基础上,在本实施例中,如图6A所示,配置方法还包括以下步骤601~604:
在步骤601中,获取在当前设备的显示界面上输入的当前设备的第一设备参数对应的目标信息以及修改人的标识信息。
在一个示例性场景中,如图6B所示,工程师可以在当前设备的显示界面上修改设备参数。例如,当前设备可以接收输入的第一设备参数的目标信息以及修改人的标识信息,并将接收的第一设备参数的目标信息以及修改人的标识信息发送给MES服务器12,以供MES服务器12获取在当前设备的显示界面上输入的第一设备参数的目标信息以及修改人的标识信息。
在一个示例性实施例中,如图6B所示,当前设备可以通过CCIE协议将接收的信息,例如,第一设备参数的目标信息以及修改人的标识信息,发送给 控制器13,控制器接受并暂存第一设备参数的目标信息以及修改人的标识信息13对接收的信息进行校验,即判断控制器13是否成功接收第一设备参数的目标信息以及修改人的标识信息等参数信息,如果控制器13成功接收第一设备参数的目标信息以及修改人的标识信息等参数信息,则控制器13将第一设备参数的目标信息以及修改人的标识信息等参数信息上传到MES的***界面;如果控制器13没有接收第一设备参数的目标信息以及修改人的标识信息等参数信息,则控制器13向当前设备反馈第一设备参数的目标信息以及修改人的标识信息等参数消息发送失败的消息,当前设备可以重新通过CCIE协议将接收的第一设备参数的目标信息以及修改人的标识信息等参数信息发送给控制器13。
在步骤602中,根据第一设备参数对应的目标信息更新第一设备参数对应的当前信息。
在一个实施例中,如图6B所示,MES服务器12接收第一设备参数的目标信息以及修改人的标识信息等参数信息并进行接收情况校验,即判断MES服务器12是否成功接收第一设备参数的目标信息以及修改人的标识信息等参数信息,如果MES服务器12成功接收第一设备参数的目标信息以及修改人的标识信息等参数信息,则MES服务器12根据第一设备参数对应的目标信息更新第一设备参数对应的当前信息,并控制MES的***界面中显示更新后的第一设备参数的当前信息。如果MES服务器12没有成功接收第一设备参数的目标信息以及修改人的标识信息等参数信息,则MES服务器12向控制器13反馈第一设备参数的目标信息以及修改人的标识信息等参数消息发送失败的消息。
在步骤603中,读取当前设备的第二设备参数对应的当前信息,其中,第二设备参数对应的当前信息为上次现场测试得到的信息。
在一个实施例中,如图6B所示,MES服务器12在接收第一设备参数的目标信息以及修改人的标识信息后,可以读取设备参数数据库中存储的当前设备的第二设备参数对应的当前信息并将更新后的第一设备参数的当前信息和第二设备参数对应的当前信息进行合并,第二设备参数对应的当前信息为上次现场测试(例如,在执行本次设备参数的配置操作之前的一次现场测试)得到的信息,第二设备参数是当前设备不能够自动读取的参数,例如,第二设备参数可以是温度等。
在步骤604中,将更新后的第一设备参数对应的当前信息、第二设备参数对应的当前信息以及修改人的标识信息进行关联保存。
在一个实施例中,如图6B所示,MES服务器12可以将更新后的第一设备参数的当前信息、第二设备参数的当前信息以及修改人的标识信息进行关联保存,例如,可以保存在MES服务器12的设备参数数据库中。
在本实施例中,可以获取在当前设备的显示界面上输入的第一设备参数对应的目标信息以及修改人的标识信息,并根据第一设备参数对应的目标信息更新第一设备参数对应的当前信息,然后,可以读取上次现场测试得到的当前设备的第二设备参数对应的当前信息,并将更新后的第一设备参数对应的当前信息、第二设备参数对应的当前信息以及修改人的标识信息进行关联保存,这样,可以实现自动记录设备的参数修改履历,减小维护设备参数的工作量。
本公开实施例还提供一种设备参数的配置方法,在图1A所示的实施例的基础上,在本实施例中,如图7所示,还包括以下步骤701~705:
在步骤701中,接收输入的当前设备对应的第二设备参数的目标信息以及修改人的标识信息,其中,第二设备参数对应的目标信息通过现场测试得到。
在一个实施例中,MES服务器12可以接收输入的当前设备的第二设备参数对应的目标信息以及修改人的标识信息,其中,当前设备不能够自动读取第二设备参数对应的目标信息,第二设备参数对应的目标信息需要工程师通过现场测试得到。
在一个实施例中,工程师可以通过终端设备(例如,平板电脑等)登录MES,并可以在MES的***界面上输入当前设备的第二设备参数对应的目标信息以及修改人的标识信息,然后,可以点击“上报”按扭,上报给MES服务器12。
在步骤702中,根据第二设备参数对应的目标信息与修改人的标识信息生成上报指令。
在一个实施例中,MES服务器12在检测到“上报”按扭被点击的操作后,可以根据第二设备参数的目标信息与修改人的标识信息生成上报指令。
在步骤703中,根据上报指令向当前设备发送第一设备参数的读取指令。
在一个实施例中,MES服务器12可以根据上报指令向当前设备发送第一设备参数的读取指令。第一设备参数是当前设备能够自动读取的参数。读取指令包括当前设备的设备标识。
在一个实施例中,MES服务器12可以根据当前设备的设备标识通过Tibco 协议向控制器13发送第一设备参数的读取指令。控制器13判断是否接到第一设备参数的读取指令,如果控制器13没有接到第一设备参数的读取指令,则控制器13返回第一设备参数的读取指令接收失败的消息;如果控制器13接到第一设备参数的读取指令,则控制器13根据当前设备的设备标识从控制器13控制的设备中选择出当前设备,并通过CCIE协议将第一设备参数的读取指令发送到当前设备上。当前设备判断是否接收到第一设备参数的读取指令,如果当前设备判断没有接收到第一设备参数的读取指令,则当前设备返回第一设备参数的读取指令接收失败消息;如果当前设备判断接收到第一设备参数的读取指令,则当前设备读取第一设备参数对应的当前信息并将第一设备参数对应的当前信息发送给控制器13。
在步骤704中,接收当前设备根据读取指令读取的第一设备参数对应的当前信息。
在一个实施例中,MES服务器12可以接收当前设备根据读取指令读取的第一设备参数对应的当前信息。例如,当前设备向控制器13发送第一设备参数对应的当前信息后,控制器13判断是否成功接收第一设备参数对应的当前信息,如果控制器13没有成功接收第一设备参数对应的当前信息,则控制器13通过CCIE协议向当前设备反馈第一设备参数对应的当前信息接收失败的消息;如果控制器13成功接收第一设备参数对应的当前信息,则控制器13暂存第一设备参数对应的当前信息。然后,控制器13可通过Tibco协议将第一设备参数对应的当前信息上传到MES的***界面进行显示(终端设备在车间可通过无线访问MES)。MES服务器12判断是否接收到第一设备参数对应的当前信息,如果MES服务器12没有接收到第一设备参数对应的当前信息,则MES服务器12返回第一设备参数对应的当前信息发送失败的消息,以使控制器13重新发送;如果MES服务器12接收到第一设备参数对应的当前信息,则MES服务器12显示第一设备参数对应的当前信息。
在步骤705中,将第二设备参数对应的目标信息、第一设备参数对应的当前信息以及修改人的标识信息进行关联存储。
在一个实施例中,MES服务器12可以将第二设备参数对应的目标信息、第一设备参数对应的当前信息以及修改人的标识信息进行关联存储,例如,可以存储在MES服务器12的设备参数数据库中。
在本实施例中,可以接收输入的通过现场测试得到的当前设备的第二设备 参数对应的目标信息以及修改人的标识信息,并根据第二设备参数对应的目标信息与修改人的标识信息生成上报指令,然后,根据上报指令向当前设备发送第一设备参数的读取指令,并接收当前设备根据读取指令读取的第一设备参数对应的当前信息,然后,将第二设备参数对应的目标信息、第一设备参数对应的当前信息以及修改人的标识信息进行关联存储,这样,在手动维护设备参数时,可以减小维护设备参数的工作量,提高参数维护效率。
本公开实施例还提供一种设备参数的配置方法,该配置方法可以应用于设备端。例如,设备参数的配置方法包括:待配置设备接收参数批量配置命令,其中,参数批量配置命令由服务端根据待配置设备的设备参数对应的目标信息生成;待配置设备根据参数批量配置命令将至少一个设备参数对应的当前信息调整为至少一个设备参数对应的目标信息。
例如,在一些实施例中,设备参数的配置方法还可以实现设备的自动点检。例如,在一些示例中,设备参数的配置方法还包括:待点检设备接收点检指令,其中,点检指令由服务端根据待点检设备的点检信息而生成的,点检信息包括待点检设备的设备标识以及待点检的第一设备参数的参数标识;待点检设备根据点检指令读取待点检的第一设备参数的信息,得到第一点检信息;发送第一点检信息至服务端,以供服务端将第一点检信息、第二点检信息以及点检人的标识信息进行关联保存,其中,第二点检信息为服务端接收到的通过点检人进行现场测试得到的待点检的第二设备参数的信息。
例如,在另一些示例中,设备参数的配置方法还包括:待点检设备接收点检指令,其中,点检指令由服务端根据待点检设备的点检信息而生成的,点检信息包括待点检设备的设备标识以及待点检的第一设备参数的参数标识;待点检设备根据点检指令读取待点检的第一设备参数的信息,得到第一点检信息;发送第一点检信息至服务端进行保存。
例如,在一些实施例中,设备参数的配置方法还可以实现自动记录参数修改历史。在一些示例中,设备参数的配置方法还包括:在当前设备的显示界面上接收当前设备的第一设备参数对应的目标信息以及修改人的标识信息;发送第一设备参数对应的目标信息以及修改人的标识信息至服务端,以使服务端根据第一设备参数对应的目标信息更新当前设备的第一设备参数对应的当前信息,读取当前设备的第二设备参数对应的当前信息,以及将更新后的第一设备参数对应的当前信息、第二设备参数对应的当前信息以及修改人的标识信息进 行关联保存,其中,第二设备参数对应的当前信息为上次现场测试得到的信息。
例如,在另一些示例中,设备参数的配置方法还包括:发送当前设备的第二设备参数对应的目标信息以及修改人的标识信息至服务端,以供服务端根据第二设备参数对应的目标信息与修改人的标识信息生成上报指令,并根据上报指令发送第一设备参数的读取指令,其中,第二设备参数对应的目标信息通过现场测试得到;接收第一设备参数的读取指令,并根据读取指令读取第一设备参数对应的当前信息;发送第一设备参数对应的当前信息至服务端,以供服务端将第二设备参数对应的目标信息、第一设备参数对应的当前信息以及修改人的标识信息进行关联存储。
需要说明的是,在不矛盾的情形下,关于该配置方法的详细说明可以参考上述结合附图1A-附图7描述的配置方法的实施例中的相关说明。
本公开实施例还提供一种设备参数的配置方法,可应用于设备参数的配置***,所述设备参数的配置***包括:服务端与待配置设备;服务端与待配置设备通信连接。如图8所示,该设备参数的配置方法可包括以下步骤801~804:
在步骤801中,服务端获取至少一个待配置设备的设备参数对应的目标信息。
在步骤802中,服务端根据设备参数对应的目标信息生成与至少一个待配置设备对应的参数批量配置命令。
在步骤803中,服务端将与至少一个待配置设备对应的参数批量配置命令发送给至少一个待配置设备。
在步骤804中,至少一个待配置设备根据参数批量配置命令将至少一个设备参数对应的当前信息调整为至少一个设备参数对应的目标信息。
本实施例中的服务端可以是上述的MES服务器12,至少一个待配置设备可以为上述待配置设备14-17中的任意一个或多个。本实施例中的设备参数的配置方法与如图2所示的设备参数的配置方法相似,在此不再赘述。
本公开的实施例还提出了一种设备参数的配置装置,如图9所示,配置装置包括:
获取电路901,用于获取至少一个待配置设备的设备参数对应的目标信息;
生成电路902,用于根据设备参数对应的目标信息生成与至少一个待配置设备对应的参数批量配置命令;
发送电路903,用于将与至少一个待配置设备对应的参数批量配置命令发 送给至少一个待配置设备,以供至少一个待配置设备根据参数批量配置命令将至少一个设备参数对应的当前信息调整为至少一个设备参数对应的目标信息。
例如,在一些实施例中,获取电路901、生成电路902和/或发送电路903可包括存储在存储器中的代码和程序;处理器可以执行该代码和程序以实现如上所述的获取电路901、生成电路902和/或发送电路903可的一些功能或全部功能。获取电路901、生成电路902和/或发送电路903可以是一个电路板或多个电路板的组合,用于实现如上所述的功能。在本申请实施例中,该一个电路板或多个电路板的组合可以包括:(1)一个或多个处理器;(2)与处理器相连接的一个或多个非暂时的计算机可读的存储器;以及(3)处理器可执行的存储在存储器中的固件。
需要说明的是,利用该设备参数的配置装置实现设备参数的配置方法的详细描述可以参考上述设备参数的配置方法的实施例中的相关说明。设备参数的配置装置的技术效果可以参考上述设备参数的配置方法的技术效果。
本公开的实施例还提供一种设备参数的配置***,如图10所示,该设备参数的配置***包括:服务端1001与至少一个待配置设备1002;服务端1001与至少一个待配置设备1002通信连接。服务端1001可以是上述的MES服务器12,至少一个待配置设备1002可以为上述待配置设备14-17中的任意一个或多个。
服务端1001用于获取至少一个待配置设备的设备参数对应的目标信息。
服务端1001还用于根据设备参数对应的目标信息生成与至少一个待配置设备对应的参数批量配置命令。
服务端1001还用于将与至少一个待配置设备对应的参数批量配置命令发送给至少一个待配置设备。
至少一个待配置设备1002用于根据参数批量配置命令将至少一个设备参数对应的当前信息调整为至少一个设备参数对应的目标信息。
例如,服务端1001设置有MES***。
例如,在一些实施例中,配置***还可以包括输入***,输入***可以包括上述终端设备,例如,平板电脑、智能手机、笔记本电脑等。
例如,配置***中的各个组件之间可以通过网络和/或***总线连接进行通信。网络可以包括无线网络、有线网络、和/或无线网络和有线网络的任意组合。网络可以包括局域网、互联网、电信网、基于互联网和/或电信网的物联网 (Internet of Things)、和/或以上网络的任意组合等。有线网络例如可以采用双绞线、同轴电缆或光纤传输等方式进行通信,无线网络例如可以采用3G/4G/5G移动通信网络、蓝牙、Zigbee或者WiFi等通信方式。本公开对网络的类型和功能在此不作限制。
需要说明的是,利用该设备参数的配置***实现设备参数的配置方法的详细描述可以参考上述设备参数的配置方法的实施例中的相关说明。设备参数的配置装置的技术效果可以参考上述设备参数的配置方法的技术效果。
图11是根据一示例性实施例示出的一种终端设备的框图。例如,终端设备1100可以被提供为一服务器。参照图11,终端设备1100包括处理组件1122,以及由存储器1132所代表的存储器资源,处理组件1122包括一个或多个处理器,存储器1132用于存储可由处理组件1122执行的指令,例如应用程序。存储器1132中存储的应用程序可以包括一个或多个模块,每个模块对应于一组指令。此外,处理组件1122被配置为执行存储器1132存储的指令,以执行上述的设备参数的配置方法。
例如,处理器可以控制终端设备中的其它组件执行期望的功能。处理器730可以是中央处理单元(CPU)、张量处理器(TPU)等具有数据处理能力和/或程序执行能力的器件。中央处理元(CPU)可以为X86或ARM架构等。
例如,存储器1132可以包括一个或多个计算机程序产品的任意组合,计算机程序产品可以包括各种形式的计算机可读存储介质,例如易失性存储器和/或非易失性存储器。易失性存储器例如可以包括随机存取存储器(RAM)和/或高速缓冲存储器(cache)等。非易失性存储器例如可以包括只读存储器(ROM)、硬盘、可擦除可编程只读存储器(EPROM)、便携式紧致盘只读存储器(CD-ROM)、USB存储器、闪存等。在存储器1132上可以存储一个或多个计算机可读指令,处理器可以运行所述计算机可读指令,以实现终端设备的各种功能。
终端设备1100还可以包括一个电源组件1126被配置为执行终端设备1100的电源管理、一个有线或无线网络接口1150被配置为将终端设备1100连接到网络和一个输入输出(I/O)接口1158。终端设备1100可以操作基于存储在存储器1132的操作***,例如,Windows ServerTM、Mac OS XTM、UnixTM、LinuxTM、FreeBSDTM或类似的操作***。
例如,终端设备1100中的各个组件之间可以通过网络和/或***总线连接 进行通信。
本公开的实施例还提供一种包括指令的计算机可读存储介质,例如,计算机可读存储介质可以为上述包括指令的存储器1132,上述指令可由终端设备1100的处理组件1122执行以完成上述配置方法。
例如,在一些实施例中,计算机可读存储介质可以为非瞬时性计算机可读存储介质。例如,非瞬时性计算机可读存储介质可以是ROM、随机存取存储器(RAM)、CD-ROM、磁带、软盘和光数据存储设备等。
在本公开中,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性。术语“多个”指两个或两个以上,除非另有明确的限定。
本领域技术人员在考虑说明书及实践这里公开的公开后,将容易想到本公开的其它实施方案。本公开旨在涵盖本公开的任何变型、用途或者适应性变化,这些变型、用途或者适应性变化遵循本公开的一般性原理并包括本公开未公开的本技术领域中的公知常识或惯用技术手段。说明书和实施例仅被视为示例性的,本公开的真正范围和精神由下面的权利要求指出。
对于本公开,还有以下几点需要说明:
(1)本公开实施例附图只涉及到与本公开实施例涉及到的结构,其他结构可参考通常设计。
(2)为了清晰起见,在用于描述本发明的实施例的附图中,层或结构的厚度和尺寸被放大。可以理解,当诸如层、膜、区域或基板之类的元件被称作位于另一元件“上”或“下”时,该元件可以“直接”位于另一元件“上”或“下”,或者可以存在中间元件。
(3)在不冲突的情况下,本公开的实施例及实施例中的特征可以相互组合以得到新的实施例。
以上所述仅为本公开的具体实施方式,应当理解的是,本公开并不局限于上面已经描述并在附图中示出的精确结构,并且可以在不脱离其保护范围进行各种修改和改变。本公开的保护范围仅由所附的权利要求来限制。

Claims (18)

  1. 一种设备参数的配置方法,包括:
    获取至少一个待配置设备的设备参数对应的目标信息;
    根据所述设备参数对应的目标信息生成与所述至少一个待配置设备对应的参数批量配置命令;
    将与所述至少一个待配置设备对应的所述参数批量配置命令发送给所述至少一个待配置设备,以供所述至少一个待配置设备根据所述参数批量配置命令将至少一个设备参数对应的当前信息调整为所述至少一个设备参数对应的目标信息。
  2. 根据权利要求1所述的设备参数的配置方法,其中,获取所述至少一个待配置设备的所述设备参数的目标信息,包括:
    获取所述设备参数对应的筛选条件,其中,所述筛选条件包括所述至少一个待配置设备的设备标识、所述至少一个待配置设备对应的产品的产品标识以及所述至少一个待配置设备所属的生产线的生产线标识;
    根据所述筛选条件从设备参数数据库中筛选出所述至少一个待配置设备的所述设备参数对应的目标信息,其中,所述设备参数数据库中存储有每个待配置设备的设备标识、产品标识、生产线标识以及设备参数的目标信息的对应关系。
  3. 根据权利要求2所述的设备参数的配置方法,其中,在根据所述设备参数的目标信息生成参数批量配置命令之后,所述配置方法还包括:
    针对每个待配置设备,对比所述待配置设备对应的产品的产品标识与所述待配置设备所属的生产线绑定的产品标识是否一致;
    响应于所述待配置设备对应的产品的产品标识与所述待配置设备所属的生产线绑定的产品标识一致,则发出确认将与所述待配置设备对应的参数批量配置命令发送至所述待配置设备的第一反馈信息,
    响应于接收到所述第一反馈信息,将与所述待配置设备对应的参数批量配置命令发送至所述待配置设备。
  4. 根据权利要求3所述的设备参数的配置方法,其中,在对比所述待配置设备对应的产品的产品标识与所述待配置设备所属的生产线绑定的产品标识是否一致之后,所述配置方法还包括:
    响应于所述待配置设备对应的产品的产品标识与所述待配置设备所属的生产线绑定的产品标识不一致,则输出提示信息,以提示所述待配置设备对应的产品的产品标识与所述待配置设备所属的生产线绑定的产品标识不一致,并输出询问请求,以确认是否将与所述待配置设备对应的所述参数批量配置命令发送至所述待配置设备;
    响应于接收到确认将与所述待配置设备对应的参数批量配置命令发送至所述待配置设备的所述第一反馈信息,将与所述待配置设备对应的参数批量配置命令发送至所述待配置设备;
    响应于接收到拒绝将与所述待配置设备对应的参数批量配置命令发送至所述待配置设备的第二反馈信息,获取所述待配置设备的设备参数对应的调整后的筛选条件,根据所述调整后的筛选条件重新获取所述待配置设备的设备参数的目标信息,以更新与所述待配置设备对应的参数批量配置命令。
  5. 根据权利要求1-4任一项所述的设备参数的配置方法,还包括:
    确定待点检设备的点检信息,其中,所述点检信息包括所述待点检设备的设备标识以及待点检的第一设备参数的参数标识;
    根据所述点检信息生成点检指令;
    根据所述设备标识将所述点检指令发送至所述待点检设备,以供所述待点检设备根据所述点检指令读取所述待点检的第一设备参数的信息,得到第一点检信息;
    接收所述待点检设备发送的所述第一点检信息;
    接收输入的待点检的第二设备参数的信息,得到第二点检信息,其中,所述待点检的第二设备参数的信息通过点检人现场测试得到;
    将所述第一点检信息、所述第二点检信息以及所述点检人的标识信息进行关联保存。
  6. 根据权利要求1-4任一项所述的设备参数的配置方法,还包括:
    确定待点检设备的点检信息,其中,所述点检信息包括所述待点检设备的设备标识以及待点检的第一设备参数的参数标识;
    根据所述点检信息生成点检指令;
    根据所述设备标识将所述点检指令发送至所述待点检设备,以供所述待点检设备根据所述点检指令读取所述待点检的第一设备参数的信息,得到第一点检信息;
    接收所述待点检设备发送的所述第一点检信息;
    将所述第一点检信息进行保存。
  7. 根据权利要求1-6任一项所述的设备参数的配置方法,还包括:
    获取在当前设备的显示界面上输入的所述当前设备的第一设备参数对应的目标信息以及修改人的标识信息;
    根据所述第一设备参数对应的目标信息更新所述第一设备参数对应的当前信息;
    读取所述当前设备的第二设备参数对应的当前信息,其中,所述第二设备参数对应的当前信息为上次现场测试得到的信息;
    将更新后的所述第一设备参数对应的当前信息、所述第二设备参数对应的当前信息以及所述修改人的标识信息进行关联保存。
  8. 根据权利要求1-6任一项所述的设备参数的配置方法,还包括:
    接收输入的当前设备的第二设备参数对应的目标信息以及修改人的标识信息,其中,所述第二设备参数对应的目标信息通过现场测试得到;
    根据所述第二设备参数对应的目标信息与所述修改人的标识信息生成上报指令;
    根据所述上报指令向所述当前设备发送第一设备参数的读取指令;
    接收所述当前设备根据所述读取指令读取的所述第一设备参数对应的当前信息;
    将所述第二设备参数对应的目标信息、所述第一设备参数对应的当前信息以及所述修改人的标识信息进行关联存储。
  9. 一种设备参数的配置方法,包括:
    待配置设备接收参数批量配置命令,其中,所述参数批量配置命令由服务端根据所述待配置设备的设备参数对应的目标信息生成;
    所述待配置设备根据所述参数批量配置命令将至少一个设备参数对应的当前信息调整为所述至少一个设备参数对应的目标信息。
  10. 根据权利要求9所述的设备参数的配置方法,还包括:
    待点检设备接收点检指令,其中,所述点检指令由所述服务端根据所述待点检设备的点检信息而生成的,所述点检信息包括所述待点检设备的设备标识以及待点检的第一设备参数的参数标识;
    所述待点检设备根据所述点检指令读取所述待点检的第一设备参数的信 息,得到第一点检信息;
    发送所述第一点检信息至所述服务端,以供所述服务端将所述第一点检信息、第二点检信息以及点检人的标识信息进行关联保存,其中,所述第二点检信息为所述服务端接收到的通过所述点检人进行现场测试得到的待点检的第二设备参数的信息。
  11. 根据权利要求9所述的设备参数的配置方法,还包括:
    待点检设备接收点检指令,其中,所述点检指令由所述服务端根据所述待点检设备的点检信息而生成的,所述点检信息包括所述待点检设备的设备标识以及待点检的第一设备参数的参数标识;
    所述待点检设备根据所述点检指令读取所述待点检的第一设备参数的信息,得到第一点检信息;
    发送所述第一点检信息至所述服务端进行保存。
  12. 根据权利要求9-11任一项所述的设备参数的配置方法,还包括:
    在当前设备的显示界面上接收所述当前设备的第一设备参数对应的目标信息以及修改人的标识信息;
    发送所述第一设备参数对应的目标信息以及所述修改人的标识信息至所述服务端,以使所述服务端根据所述第一设备参数对应的目标信息更新所述当前设备的所述第一设备参数对应的当前信息,读取所述当前设备的第二设备参数对应的当前信息,以及将更新后的所述第一设备参数对应的当前信息、所述第二设备参数对应的当前信息以及所述修改人的标识信息进行关联保存,其中,所述第二设备参数对应的当前信息为上次现场测试得到的信息。
  13. 根据权利要求9-11任一项所述的设备参数的配置方法,还包括:
    发送当前设备的第二设备参数对应的目标信息以及修改人的标识信息至所述服务端,以供所述服务端根据所述第二设备参数对应的目标信息与所述修改人的标识信息生成上报指令,并根据所述上报指令发送第一设备参数的读取指令,其中,所述第二设备参数对应的目标信息通过现场测试得到;
    接收所述第一设备参数的读取指令,并根据所述读取指令读取所述第一设备参数对应的当前信息;
    发送所述第一设备参数对应的当前信息至所述服务端,以供所述服务端将所述第二设备参数对应的目标信息、所述第一设备参数对应的当前信息以及所述修改人的标识信息进行关联存储。
  14. 一种设备参数的配置方法,应用于设备参数的配置***,其中,所述设备参数的配置***包括:服务端与待配置设备;所述服务端与所述待配置设备通信连接;所述配置方法包括:
    所述服务端获取至少一个待配置设备的设备参数对应的目标信息;
    所述服务端根据所述设备参数对应的目标信息生成与所述至少一个待配置设备对应的参数批量配置命令;
    所述服务端将与所述至少一个待配置设备对应的所述参数批量配置命令发送给所述至少一个待配置设备;
    所述至少一个待配置设备根据所述参数批量配置命令将至少一个设备参数对应的当前信息调整为所述至少一个设备参数对应的目标信息。
  15. 一种设备参数的配置装置,包括:
    获取电路,用于获取至少一个待配置设备的设备参数对应的目标信息;
    生成电路,用于根据所述设备参数对应的目标信息生成与所述至少一个待配置设备对应的参数批量配置命令;
    发送电路,用于将与所述至少一个待配置设备对应的所述参数批量配置命令发送给所述至少一个待配置设备,以供所述至少一个待配置设备根据所述参数批量配置命令将至少一个设备参数对应的当前信息调整为所述至少一个设备参数对应的目标信息。
  16. 一种设备参数的配置***,包括:服务端与至少一个待配置设备;其中,所述服务端与所述至少一个待配置设备通信连接;
    所述服务端用于获取所述至少一个待配置设备的设备参数对应的目标信息;根据所述设备参数对应的目标信息生成与所述至少一个待配置设备对应的参数批量配置命令;将与所述至少一个待配置设备对应的所述参数批量配置命令发送给所述至少一个待配置设备;
    所述至少一个待配置设备用于根据所述参数批量配置命令将至少一个设备参数对应的当前信息调整为所述至少一个设备参数对应的目标信息。
  17. 一种终端设备,包括处理器和存储器;
    其中,所述存储器用于存储计算机程序;所述处理器用于执行所述存储器上所存储的计算机程序,实现权利要求1-8任一项所述的配置方法。
  18. 一种计算机可读存储介质,其中,所述计算机可读存储介质内存储有计算机程序,所述计算机程序被处理器执行时实现权利要求1-8任一项所述的 方法。
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Families Citing this family (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109870991B (zh) * 2019-03-26 2021-08-27 京东方科技集团股份有限公司 设备参数的配置方法、装置和***
CN110661873B (zh) * 2019-09-27 2022-06-03 南京博联智能科技有限公司 物联网平台参数转换方法、装置、设备、介质及***
CN110989546A (zh) * 2019-10-18 2020-04-10 浙江合众新能源汽车有限公司 一种车辆软件数据管理方法
CN112782414B (zh) * 2019-11-11 2024-01-23 深圳迈瑞生物医疗电子股份有限公司 一种样本分析***及其设置方法
CN111531540B (zh) * 2020-05-09 2022-02-18 广州明珞汽车装备有限公司 一种机器人控制方法、***、装置和存储介质
CN113746657A (zh) * 2020-05-30 2021-12-03 华为技术有限公司 一种业务配置方法及其装置
CN112532447A (zh) * 2020-11-27 2021-03-19 锐捷网络股份有限公司 一种rdma参数配置的方法、装置及存储介质
CN112798175B (zh) * 2021-02-24 2023-01-24 北京康斯特仪表科技股份有限公司 计量装置工作参数的快速配置方法以及压力计量装置
CN113792841B (zh) * 2021-08-26 2024-07-05 深圳市几米物联有限公司 Rfid参数配置方法、设备及计算机可读存储介质
CN114298561B (zh) * 2021-12-29 2023-06-09 上海赛美特软件科技有限公司 设备生产条件的生成方法、装置、电子设备及存储介质
CN114095359A (zh) * 2022-01-11 2022-02-25 北京京东乾石科技有限公司 一种设备信息批量配置方法、信息配置方法及装置
CN114978887A (zh) * 2022-05-12 2022-08-30 盐城鸿石智能科技有限公司 一种mes***的客户端参数配置***及方法
CN114944987B (zh) * 2022-05-23 2024-04-12 西安韵通网络科技有限公司 一种通信设备的运行参数即时更新方法及通信设备
CN117784740B (zh) * 2024-02-27 2024-07-02 宁德时代新能源科技股份有限公司 参数配置方法及***

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20160229574A1 (en) * 2015-02-09 2016-08-11 Ishida Co., Ltd. Packaging system
CN106354538A (zh) * 2016-09-29 2017-01-25 郑州云海信息技术有限公司 一种整机柜服务器操作***的远程配置装置及方法
CN107797526A (zh) * 2016-08-31 2018-03-13 湖南中冶长天节能环保技术有限公司 一种现场设备检测及管理***
CN107797525A (zh) * 2016-08-31 2018-03-13 湖南中冶长天节能环保技术有限公司 一种生产参数智能管理方法、***和移动终端服务器
CN109189022A (zh) * 2018-09-13 2019-01-11 华电电力科学研究院有限公司 一种火力发电厂热工自动化***整体架构
CN109407630A (zh) * 2018-09-21 2019-03-01 中兴新通讯有限公司 参数计算的方法、装置、终端及可读存储介质
CN109870991A (zh) * 2019-03-26 2019-06-11 京东方科技集团股份有限公司 设备参数的配置方法、装置和***

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101771572B (zh) * 2010-04-07 2012-05-30 烽火通信科技股份有限公司 无源光网络设备业务批量配置的方法
US9038284B2 (en) * 2011-11-29 2015-05-26 Corning Incorporated Systems and methods for efficient microwave drying of extruded honeycomb structures
CN103200021B (zh) * 2012-01-04 2018-02-27 中兴通讯股份有限公司 网管***、客户端、服务端及实现批量配置数据的方法
CN103001797A (zh) * 2012-11-15 2013-03-27 沈阳中科博微自动化技术有限公司 一种在远端管理集成电路生产线多设备操作命令的方法
CN106603307A (zh) * 2016-12-30 2017-04-26 北京奇艺世纪科技有限公司 一种配置修改的方法及装置
CN108182479A (zh) * 2017-11-27 2018-06-19 邯郸新兴发电有限责任公司 设备点检方法、装置及服务器
CN109407986B (zh) * 2018-10-17 2021-09-10 深圳市硅格半导体有限公司 实时更新设备运行参数的方法、***、服务器及存储介质

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20160229574A1 (en) * 2015-02-09 2016-08-11 Ishida Co., Ltd. Packaging system
CN107797526A (zh) * 2016-08-31 2018-03-13 湖南中冶长天节能环保技术有限公司 一种现场设备检测及管理***
CN107797525A (zh) * 2016-08-31 2018-03-13 湖南中冶长天节能环保技术有限公司 一种生产参数智能管理方法、***和移动终端服务器
CN106354538A (zh) * 2016-09-29 2017-01-25 郑州云海信息技术有限公司 一种整机柜服务器操作***的远程配置装置及方法
CN109189022A (zh) * 2018-09-13 2019-01-11 华电电力科学研究院有限公司 一种火力发电厂热工自动化***整体架构
CN109407630A (zh) * 2018-09-21 2019-03-01 中兴新通讯有限公司 参数计算的方法、装置、终端及可读存储介质
CN109870991A (zh) * 2019-03-26 2019-06-11 京东方科技集团股份有限公司 设备参数的配置方法、装置和***

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