WO2017107159A1 - 一种数字装备工业控制方法、装置及系统 - Google Patents

一种数字装备工业控制方法、装置及系统 Download PDF

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Publication number
WO2017107159A1
WO2017107159A1 PCT/CN2015/098813 CN2015098813W WO2017107159A1 WO 2017107159 A1 WO2017107159 A1 WO 2017107159A1 CN 2015098813 W CN2015098813 W CN 2015098813W WO 2017107159 A1 WO2017107159 A1 WO 2017107159A1
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Prior art keywords
service
data collection
function module
collection device
control
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PCT/CN2015/098813
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English (en)
French (fr)
Inventor
庞观士
沈航
邹建红
陈志列
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研祥智能科技股份有限公司
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Priority to PCT/CN2015/098813 priority Critical patent/WO2017107159A1/zh
Publication of WO2017107159A1 publication Critical patent/WO2017107159A1/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 present invention relates to the field of computers, and in particular, to a digital equipment industrial control method, apparatus and system.
  • Industrial automation control is mainly realized by a combination of electrical and electronic, mechanical and software.
  • the industrial automation control system generally consists of “industrial control platform + client hardware + application software”.
  • the industrial control platform includes at least one industrial control computer.
  • the client hardware includes sensors and other hardware for collecting data.
  • the application software is developed for specific industrial applications. software.
  • the industrial control computer is a general term for tools that use the bus structure to detect and control the production process and its electromechanical equipment and process equipment.
  • the object of the present invention is to provide a digital equipment industry control method, device and system, which can be carried out on the same control host for different service requirements, and a pair of service modules and service requirements. Should reduce development costs and improve the reusability of industrial automation control systems.
  • a first aspect of the present invention provides a digital equipment industrial control method, including:
  • the control host determines the service identifier of the function module when detecting that the extension interface is connected to the function module;
  • the control host acquires data collected by the data collection device, analyzes the collected data, and outputs the analysis processing result to an application control associated with the data collection device, so that the application control displays The analysis processing result;
  • the service request controls the data collection device by using the function module, so that the data collection device executes the service operation corresponding to the service request.
  • the method further includes:
  • the control host determines an extended interface identifier of the function module, and associates the service identifier with the extended interface identifier;
  • the control host when receiving the service request sent by the application control, controls the data collection device by using the function module by the service request, including:
  • the service request carries the service identifier
  • the control host searches for an extended interface identifier associated with the service identifier, and controls the data collection device by using the function module corresponding to the extended interface identifier.
  • the method further includes:
  • the function module is configured by the editing instruction upon receiving an editing instruction to the function module connected to the extension interface.
  • a second aspect of the present invention provides a digital equipment industrial control device, including: a main box and a power box electrically connected to the main box; the power box provides power to the main box; the main box includes an extension An interface and a function module, wherein the extension interface is connected to the function module;
  • the host box further includes: a determining module, an associating module, a downlink processing module, and an uplink processing module;
  • the determining module is configured to determine a service identifier of the function module when detecting that the extension interface is connected to the function module;
  • the association module is configured to determine, by the function module, a data collection device corresponding to the service identifier, and associate the data collection device with an application control corresponding to the service identifier;
  • the downlink processing module is configured to acquire data collected by the data collection device, analyze and process the collected data, and output the analysis processing result to an application control corresponding to the service identifier, so that the An application control displays the analysis processing result;
  • the uplink processing module is configured to, when receiving the service request sent by the application control, control, by the service module, the data collection device by the service module, so that the data collection device executes the service request Corresponding business operations.
  • the device further includes an expansion box, the expansion box includes the expansion interface and the function module; the expansion box is electrically connected to the main box, and the expansion box and the power box are electrically Connecting; the power box also provides power to the expansion box.
  • the expansion box includes the expansion interface and the function module; the expansion box is electrically connected to the main box, and the expansion box and the power box are electrically Connecting; the power box also provides power to the expansion box.
  • the association module is further configured to determine an extended interface identifier of the function module, and associate the service identifier with the extended interface identifier;
  • the uplink processing module When the uplink processing module receives the service request sent by the application control, the service is performed by the service Requesting to control the data collection device by using the function module, including:
  • the service request carries the service identifier, and searches for an extended interface identifier associated with the service identifier, and controls the data collection device by using a function module corresponding to the extended interface identifier.
  • the main chassis further includes:
  • a compiling module configured to configure the function module by the editing instruction when receiving an editing instruction to the function module connected to the expansion interface.
  • a third aspect of the present invention provides a digital equipment industrial control system, including a data collection device, further comprising: a control host and an application control; the control host is connected to the data collection device, the application control is Control host connection;
  • the control host is configured to feed back data collected by the data collection device to the application control, and feed back a service request of the application control to the data collection device.
  • control host includes an expansion interface and a function module, and the function module is disposed on the expansion interface; and the data collection device is connected to the function module.
  • the application control is configured to send the obtained service request to the control host, so that the control host controls the data collection device to perform a service operation corresponding to the service request.
  • the control host when detecting the connection between the extended interface and the function module, may determine the service identifier of the function module, and further determine the data collection device corresponding to the service identifier, and apply the data collection device to the service identifier corresponding to the service identifier. Performing association; analyzing and processing the data collected by the data collection device, and outputting the analysis processing result to the application control associated with the data collection device, so that the application control displays the analysis processing result; when receiving the service request sent by the application control, Business request
  • the over function module controls the data collection device to enable the data collection device to perform a business operation corresponding to the service request.
  • different service requirements may correspond to different functional modules, and the functional modules correspond one-to-one with the service identifiers of the service requirements.
  • the functional modules may be directly replaced without changing other hardware, and the functional modules may determine the data corresponding to the service identifiers.
  • the acquisition device associates the data collection device with the application control corresponding to the service identifier, and does not need to replace the software, only needs to change the corresponding settings, which reduces the development cost and shortens the development cycle.
  • different service requirements can be performed on the same control host, and no need to replace or add a control host, thereby improving the reusable rate of the industrial automation control system.
  • FIG. 1 is a schematic structural diagram of a digital equipment industrial control device according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of another digital equipment industrial control device according to an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of a digital equipment industrial control device according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of an extended interface according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a digital equipment industrial control system according to an embodiment of the present invention.
  • FIG. 6 is a flowchart of a digital equipment industrial control method according to an embodiment of the present invention.
  • Embodiments of the present invention provide a digital equipment industrial control method, apparatus, and system, wherein the system may include: a control host, a data collection device, and an application control.
  • the digital equipment refers to data-driven and software-controlled automated manufacturing equipment, such as a numerical control machine tool, a digital medical imaging device, a robot-based automatic production line, etc.
  • the control host in the embodiment of the present invention can be used to control digital equipment and data.
  • the collecting device can be disposed on the digital device.
  • the data collecting device can include a sensor, the sensor can be set on the numerical control machine tool, the application control can realistically state the data state of the digital equipment, and the service request can be sent through the application control to control the host according to the service request.
  • the data acquisition device is controlled to control the digital equipment.
  • the existing industrial automation control system when the business requirements of the industrial application are changed, the underlying hardware needs to be modified, for example, the existing functions of the industrial control computer are added or reduced, and further, as the original industrial control computer only provides the standard bus. Expansion, unable to match the hardware of the client, so that the industrial control computer is replaced or added, the modification of the underlying hardware is such that the upper software needs to be replaced, the development cost is increased, the development cycle is extended, and the reusability of the industrial automation control system is low.
  • different service requirements may correspond to different functional modules, and the functional modules correspond one-to-one with the service identifiers of the service requirements.
  • the functional modules may be directly replaced without changing other hardware, and the service modules may be determined by the functional modules.
  • the corresponding data collection device is identified, and the data collection device is associated with the application control corresponding to the service identifier. No need to replace the software, only the corresponding settings are changed, the development cost is reduced, and the development cycle is shortened.
  • different service requirements can be performed on the same control host, and no need to replace or add a control host, thereby improving the reusable rate of the industrial automation control system. The following is detailed by way of specific examples.
  • the digital equipment industrial control device provided by the embodiment of the present invention may include: a main chassis 11 and a power box 12 electrically connected to the main chassis 11.
  • the power box 12 provides power to the main chassis 11 .
  • the main chassis 11 includes an expansion interface 111 and a function module 112, and the expansion interface 111 is connected to the function module 112. Further, the mainframe 11 further includes: a determining module 113, an associating module 114, a downlink processing module 115, and an uplink processing module 116. among them:
  • the determining module 113 is configured to determine the service identifier of the function module 112 when detecting that the extension interface 111 is connected to the function module 112.
  • the association module 114 is configured to determine, by the function module 112, the data collection device corresponding to the service identifier, and associate the data collection device with the application control corresponding to the service identifier.
  • the downlink processing module 115 is configured to acquire data collected by the data collection device, analyze and process the collected data, and output the analysis processing result to an application control corresponding to the service identifier, so that the application control displays the analysis processing result.
  • the uplink processing module 116 is configured to, when receiving the service request sent by the application control, control the data collection device by the service module 112 by the service request, so that the data collection device performs the service operation corresponding to the service request.
  • the determining module 113 may determine the service identifier of the function module 112 when detecting that the extension interface 111 is connected to the function module 112.
  • the expansion interface 111 can include at least one card slot
  • the function module 112 is a pluggable module
  • the function module 112 can be separately inserted and removed for installation and removal
  • the function module 112 can be inserted into the expansion interface 111, so that the determination module 113 can detect
  • the expansion interface 111 is connected to the function module 112, and the determination module 113 activates the read function module 112 to determine the service identifier of the function module 112.
  • the service identifier may be an identifier corresponding to the service requirement.
  • the different service requirements may correspond to different functional modules 112, and the functional modules 112 correspond to the service identifiers of the service requirements. Different functional modules 112 can be customized for different business needs.
  • the association module 114 may determine, by the function module 112, the data collection device corresponding to the service identifier, and associate the data collection device with the application control corresponding to the service identifier.
  • the configuration information of the function module 112 is obtained when the function module 112 is read, and the configuration information is, for example, a one-to-one correspondence between the function module 112 and the data collection device, and the function module 112 can determine the data collection device corresponding to the service identifier, and the association is performed.
  • the module 114 is further configured to associate the data collection device with the application control corresponding to the service identifier, so that the data collected by the data collection device can be displayed in an intuitive and dynamic manner through the application control for convenient viewing and monitoring.
  • the application control may be industrial control software, such as configuration software for data acquisition and monitoring control, etc., and is not specifically limited by the embodiments of the present invention.
  • association module 114 is further configured to determine an extended interface identifier of the function module 112, and associate the service identifier with the extended interface identifier.
  • the apparatus shown in the embodiment of the present invention may include multiple extended interfaces, and each extended interface corresponds to one extended interface identifier.
  • the downlink processing module 115 may acquire data collected by the data collection device, analyze and process the collected data, and output the analysis processing result to an application control corresponding to the service identifier, so that the application control displays the analysis processing result.
  • the data collection device can collect data, and the collected data can be transmitted to the function module 112.
  • the function module 112 can transmit the collected data to the downlink processing module 115, and the downlink processing module 115 can analyze the data collected by the data collection device. Processing, and outputting the analysis processing result to the application control corresponding to the business identifier, and then applying the control can display the analysis processing result.
  • the uplink processing module 116 controls the data collection device by the service module 112 by the service request, so that the data collection device performs the service operation corresponding to the service request. Specifically, the user can operate the page of the application control, thereby triggering the service request.
  • Business requests include operational requests for business needs, such as raising device temperatures, stopping monitoring, rebooting devices, and the like.
  • the application control may transmit the service request to the uplink processing module 116, and the uplink processing module 116 may receive the service request, where the service request may carry the service identifier.
  • the uplink processing module 116 can search for the extended interface identifier associated with the service identifier, and control the data collection device by using the function module corresponding to the extended interface identifier, and the data collection device can perform the service operation corresponding to the service request.
  • the main chassis 11 may further include a compiling module 117.
  • the compiling module 117 is configured to configure the function module 112 by an editing command when receiving an editing instruction to the function module 112 connected to the expansion interface 111.
  • a Field-Programmable Gate Array (FPGA) chip can be embedded in the host box, and the compiling module 117 can compile the function module 112 on the extended interface 111.
  • FPGA Field-Programmable Gate Array
  • the main chassis can support a dual controller architecture, and can also support a CPU (Central Processing Unit) hot standby function composed of dual controllers.
  • a CPU Central Processing Unit
  • the main chassis can support a dual controller architecture, and can also support a CPU (Central Processing Unit) hot standby function composed of dual controllers.
  • another controller can be quickly started and automatically handled by the I/O (input/output, input/output port) program, which can be used without the user having to write a program. Can effectively improve the reliability of critical applications.
  • I/O input/output, input/output port
  • the embodiment of the present invention provides a digital equipment industrial control device, including a mainframe box and a power box, wherein the mainframe includes an expansion interface and a function module. Further, the mainframe further includes: a determination module, an association module, a downlink processing module, and an uplink. Processing module. When the determining module detects that the extended interface is connected with the function module, the service module may determine the service identifier of the function module, and the association module determines the number corresponding to the service identifier.
  • the data collecting device is associated with the application control corresponding to the service identifier;
  • the downlink processing module can analyze and process the data collected by the data collecting device, and output the analysis processing result to the application control associated with the data collecting device,
  • the application control device displays the analysis processing result;
  • the uplink processing module can control the data collection device through the function module by the service request when the service request sent by the application control is received, so that the data collection device performs the business operation corresponding to the service request.
  • different service requirements may correspond to different functional modules, and the functional modules correspond one-to-one with the service identifiers of the service requirements.
  • the functional modules may be directly replaced without changing other hardware, and the functional modules may determine the data corresponding to the service identifiers.
  • the acquisition device associates the data collection device with the application control corresponding to the service identifier, and does not need to replace the software, only needs to change the corresponding settings, which reduces the development cost and shortens the development cycle.
  • different service requirements can be performed on the same control host, and no need to replace or add a control host, thereby improving the reusable rate of the industrial automation control system.
  • the digital equipment industrial control device may include: a main box 21, an expansion box 22, and a power box 23.
  • the expansion box 22 is electrically connected to the main box 21, and the expansion box 22 is electrically connected to the power box 23.
  • the power box 23 supplies power to the main chassis 21 and the expansion box 22.
  • the expansion box 22 can include an expansion interface 221 and a function module 222.
  • the main chassis 21 may also include an expansion interface 211 and a function module 212.
  • mainframe 21 may further include a determining module 213, an associating module 214, a downlink processing module 215, and an uplink processing module 216. among them:
  • the determining module 213 is configured to determine the function when detecting that the expansion interface 221 is connected to the function module 222 The service identifier of the module 212.
  • the association module 214 is configured to determine, by the function module 222, the data collection device corresponding to the service identifier, and associate the data collection device with the application control corresponding to the service identifier.
  • the downlink processing module 215 is configured to acquire data collected by the data collection device, analyze and process the collected data, and output the analysis processing result to an application control corresponding to the service identifier, so that the application control displays the analysis processing result.
  • the uplink processing module 216 is configured to, when receiving the service request sent by the application control, control the data collection device by the service module 222 by the service request, so that the data collection device performs the service operation corresponding to the service request.
  • the structure and function of the determining module 213, the associating module 214, the downlink processing module 215, and the uplink processing module 216 are shown in FIG. 1 and are not repeated here.
  • the expansion box 22 may include at least one expansion interface 221, and the expansion interface 221 may be connected to the function module 222 to adapt to interface standards of different service requirements.
  • the digital equipment industrial control device provided by the embodiment of the present invention may include multiple expansion boxes 22, which are not specifically limited by the embodiments of the present invention.
  • FIG. 3 is a schematic diagram of a digital equipment industrial control device according to an embodiment of the present invention.
  • 31 is a main chassis
  • 32 is an expansion box
  • 33 is a power box
  • a main box 31 is an expansion box
  • 32 can be disposed on the support frame
  • the control host 31 and the expansion box 32 form a sliding connection with the support frame.
  • the control host 31, the expansion box 32 and the power box 33 are provided with engaging members
  • the support frame is provided with the engaging member.
  • the engaging portion of the fitting, the control main body 31, the expansion box 32 and the power box 33 are engaged with the support frame by the engaging members.
  • FIG. 4 is a schematic diagram of an extended interface according to an embodiment of the present invention. Specifically, it may be in the expansion box 32 shown in FIG. 3. The specific structure is as shown in the figure.
  • the card slot 321 is an expansion interface, and the function module can be inserted into the card slot 321 .
  • the power supply is separately installed in a box, and the components of the main box are all components that can be pulled by a card type, which can realize cable-free assembly, and is convenient for assembly and maintenance. Fast, thus reducing the cost of after-sales service.
  • the power box can be connected to the main box or the expansion box through the electrical connector respectively, and the different module combinations can be selected (that is, the main box + power box, or the combination of the main box + the expansion box + the power box) Form), responding quickly to different customization requirements, and enabling multi-functional expansion for different industrial sites.
  • the embodiment of the present invention further discloses a control host.
  • the control host provided by the embodiment of the present invention includes the apparatus shown in FIG. 1 and FIG. 2, and the structure and function of the control host can participate in FIG. 1 and FIG. The related description of the embodiments is not described herein.
  • FIG. 5 is a schematic structural diagram of a digital equipment industrial control system according to an embodiment of the present invention.
  • the digital equipment industrial control system provided by the embodiment of the present invention includes: a control host 51, a data collection device 52, and an application. Control 53.
  • the control host 51 is connected to the data collection device 52, and the application control 53 is connected to the control host 51.
  • the control host 51 can be an industrial control computer.
  • the data collection device 52 is a variety of devices for collecting data, such as sensors, cameras, microphones, and the like.
  • the application control 53 may be industrial control software, such as configuration software for data acquisition and monitoring control, etc., and is not specifically limited by the embodiments of the present invention.
  • control host 51 is configured to feed back the data collected by the data collection device 52 to the application control 53, and feed back the service request of the application control 53 to the data collection device 52.
  • main control Machine 51 includes the apparatus shown in Figure 1 or Figure 2.
  • control host 51 includes an expansion interface and a function module.
  • the function module is disposed on the expansion interface, and the data collection device 52 is connected to the function module.
  • the application control 53 is configured to send the obtained service request to the control host 51, so that the control host 51 controls the data collection device 52 to perform a service operation corresponding to the service request.
  • the digital equipment industrial control system may include a control host, a data collection device and an application control.
  • the function module in the control host may be directly replaced, without changing other hardware, and the application control may be performed.
  • Correlation no need to replace software, just change the corresponding settings, reducing development costs and shortening the development cycle.
  • different service requirements can be performed on the same control host, and no need to replace or add a control host, thereby improving the reusable rate of the industrial automation control system.
  • FIG. 1 or FIG. 2 is the execution body of the method shown in FIG. It is to be noted that only the parts related to the embodiments of the present invention are shown, and the specific technical details are not disclosed. Please refer to the embodiments shown in FIG. 1 and FIG. 2 of the embodiment of the present invention.
  • FIG. 6 is a flowchart of a digital equipment industrial control method according to an embodiment of the present invention. As shown in the figure, the digital equipment industrial control method provided by the embodiment of the present invention may include the following steps: S601-S604.
  • the service identifier of the function module may be determined.
  • the expansion interface may include at least one card slot
  • the function module is a pluggable module
  • the function module may be separately inserted and removed for installation and disassembly
  • the function module may be inserted into the expansion interface.
  • the determining module can detect the connection between the extended interface and the function module, determine that the module starts the reading function module, and determines the service identifier of the function module.
  • the service identifier may be an identifier corresponding to the service requirement.
  • different service requirements may correspond to different functional modules, and the functional modules correspond one-to-one with service identifiers of service requirements. Different functional modules can be customized for different business needs.
  • the function module determines a data collection device corresponding to the service identifier, and associates the data collection device with an application control corresponding to the service identifier.
  • configuration information of the function module may be obtained when the function module is read, and the configuration information is, for example, a one-to-one correspondence between the function module and the data collection device, and then the function module may determine the data collection device corresponding to the service identifier.
  • the data collection device can also be associated with the application control corresponding to the service identifier, and the data collected by the data collection device can be displayed in an intuitive and dynamic manner through the application control for convenient viewing and monitoring.
  • the application control may be industrial control software, such as configuration software for data acquisition and monitoring control, etc., and is not specifically limited by the embodiments of the present invention.
  • the data collection device can collect data, and the collected data can be transmitted to the function module, and the control host analyzes and processes the data collected by the data collection device, and outputs the analysis processing result to the application corresponding to the service identifier. Controls, and in turn application controls, display the results of the analysis process.
  • the service request controls the data collection device by using the function module, so that the data collection device performs the service operation corresponding to the service request.
  • the user can operate the page of the application control, thereby triggering the service
  • the business request includes an operation request for the business demand, such as raising the device temperature, stopping monitoring, restarting the device, and the like.
  • Application controls can transfer business requests to the control host.
  • the method provided by the embodiment of the present invention may further include: after step S601:
  • the service request carries the service identifier
  • the step S604 may include: searching for the extended interface identifier associated with the service identifier, and controlling the data collection device by using the function module corresponding to the extended interface identifier.
  • the apparatus shown in the embodiment of the present invention may include multiple extended interfaces, and each extended interface corresponds to one extended interface identifier.
  • the extended interface identifier associated with the service identifier can be searched, and the data collection device is controlled by the function module corresponding to the extended interface identifier, and the data collection device can perform the service operation corresponding to the service request.
  • the method provided by the embodiment of the present invention further includes the following steps:
  • the function module is configured by the edit command.
  • the field programmable logic gate array (FPGA) chip can be embedded in the mainframe, and then the functional modules on the extended interface can be compiled. Specifically, when an editing instruction for a function module connected to the expansion interface is received, the function module is configured by the editing instruction.
  • FPGA field programmable logic gate array
  • the main chassis can support a dual controller architecture, and can also support a CPU hot standby function composed of dual controllers. In the event of failure of one of the controllers, another controller can be quickly started and automatically handled by the I/O program. The user can use this hot standby function without writing a program to improve the reliability of critical applications. Sex.
  • Embodiments of the present invention provide a digital equipment industrial control method, where a control host detects an extended connection When the port is connected with the function module, the service identifier of the function module can be determined, and then the data collection device corresponding to the service identifier can be determined, and the data collection device is associated with the application control corresponding to the service identifier; and the data collected by the data collection device is analyzed. Processing, and outputting the analysis processing result to the application control associated with the data collection device, so that the application control displays the analysis processing result; when receiving the service request sent by the application control, the service request controls the data collection device through the function module, so that The data collection device performs a business operation corresponding to the service request.
  • different service requirements may correspond to different functional modules, and the functional modules correspond one-to-one with the service identifiers of the service requirements.
  • the functional modules may be directly replaced without changing other hardware, and the functional modules may determine the data corresponding to the service identifiers.
  • the acquisition device associates the data collection device with the application control corresponding to the service identifier, and does not need to replace the software, only needs to change the corresponding settings, which reduces the development cost and shortens the development cycle.
  • different service requirements can be performed on the same control host, and no need to replace or add a control host, thereby improving the reusable rate of the industrial automation control system.

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Abstract

一种数字装备工业控制方法、装置及系统。该方法包括:控制主机(51)在检测到扩展接口(111)与功能模块(112)连接时,可确定功能模块(112)的业务标识(S601),确定业务标识对应的数据采集装置(52),并将数据采集装置(52)与业务标识对应的应用控件(53)进行关联(S602);对数据采集装置(52)采集的数据进行分析处理,将分析处理结果输出到与数据采集装置(52)关联的应用控件,以使应用控件显示分析处理结果(S603);在接收到应用控件发送的业务请求时,由业务请求通过功能模块(112)控制数据采集装置(52),以使数据采集装置(52)执行业务请求对应的业务操作(S604)。对不同业务需求,可在同一控制主机(51)上进行,可直接更换功能模块(112),降低了开发成本,缩短了开发周期,提高了工业自动化控制系统的可重复使用率。

Description

一种数字装备工业控制方法、装置及系统 技术领域
本发明涉及计算机领域,尤其涉及一种数字装备工业控制方法、装置及系统。
背景技术
工业自动化控制主要利用电子电气、机械、软件组合实现。工业自动化控制系统一般由“工控平台+客户端硬件+应用软件”组成,工控平台包括至少一台工业控制计算机,客户端硬件包括传感器等采集数据的硬件,应用软件为针对具体工业应用开发的应用软件。其中,工业控制计算机是一种采用总线结构,对生产过程及其机电设备、工艺装备进行检测与控制的工具总称。
现有工业自动化控制系统,在工业应用的业务需求变更时,需修改底层硬件,例如增加或减少工业控制计算机已有的功能,进一步又如因原有的工业控制计算机仅提供标准总线扩展,无法匹配客户端的硬件,以致更换或增加工业控制计算机等,底层硬件的修改以致需更换上层软件,增加了开发成本,延长了开发周期,且工业自动化控制系统的可重复使用率低。
发明内容
本发明的目的在于提供一种数字装备工业控制方法、装置及系统,对不同业务需求,可在同一控制主机上进行,功能模块与业务需求的业务标识一一对 应,可降低开发成本,提高了工业自动化控制系统的可重复使用率。
本发明第一方面提供了一种数字装备工业控制方法,包括:
控制主机在检测到扩展接口与功能模块连接时,确定所述功能模块的业务标识;
所述控制主机由所述功能模块确定所述业务标识对应的数据采集装置,并将所述数据采集装置与所述业务标识对应的应用控件进行关联;
所述控制主机获取所述数据采集装置采集的数据,对所述采集的数据进行分析处理,并将所述分析处理结果输出与所述数据采集装置关联的应用控件,以使所述应用控件显示所述分析处理结果;
所述控制主机在接收到所述应用控件发送的业务请求时,由所述业务请求通过所述功能模块控制所述数据采集装置,以使所述数据采集装置执行所述业务请求对应的业务操作。
优选地,所述控制主机在检测到扩展接口与功能模块连接时,确定所述功能模块的业务标识之后,所述方法还包括:
所述控制主机确定所述功能模块的扩展接口标识,并将所述业务标识与所述扩展接口标识进行关联;
所述控制主机在接收到所述应用控件发送的业务请求时,由所述业务请求通过所述功能模块控制所述数据采集装置,包括:
所述业务请求携带所述业务标识,所述控制主机查找与所述业务标识关联的扩展接口标识,通过所述扩展接口标识对应的功能模块控制所述数据采集装置。
优选的,所述方法还包括:
在接收到对与所述扩展接口连接的所述功能模块的编辑指令时,由所述编辑指令对所述功能模块进行配置。
本发明第二方面提供了一种数字装备工业控制装置,包括:主机箱和与所述主机箱电性连接的电源箱;所述电源箱为所述主机箱提供电能;所述主机箱包括扩展接口和功能模块,所述扩展接口与所述功能模块连接;
所述主机箱还包括:确定模块、关联模块、下行处理模块和上行处理模块;
所述确定模块,用于在检测到所述扩展接口与所述功能模块连接时,确定所述功能模块的业务标识;
所述关联模块,用于由所述功能模块确定所述业务标识对应的数据采集装置,并将所述数据采集装置与所述业务标识对应的应用控件进行关联;
所述下行处理模块,用于获取所述数据采集装置采集的数据,对所述采集的数据进行分析处理,并将所述分析处理结果输出至所述业务标识对应的应用控件,以使所述应用控件显示所述分析处理结果;
所述上行处理模块,用于在接收到所述应用控件发送的业务请求时,由所述业务请求通过所述功能模块控制所述数据采集装置,以使所述数据采集装置执行所述业务请求对应的业务操作。
优选的,所述装置还包括扩展箱,所述扩展箱包括所述扩展接口和所述功能模块;所述扩展箱与所述主机箱电性连接,所述扩展箱与所述电源箱电性连接;所述电源箱还为所述扩展箱提供电能。
优选的,所述关联模块,还用于确定所述功能模块的扩展接口标识,并将所述业务标识与所述扩展接口标识进行关联;
所述上行处理模块在接收到所述应用控件发送的业务请求时,由所述业务 请求通过所述功能模块控制所述数据采集装置,包括:
所述业务请求携带所述业务标识,查找与所述业务标识关联的扩展接口标识,通过所述扩展接口标识对应的功能模块控制所述数据采集装置。
优选的,所述主机箱还包括:
编译模块,用于在接收到对与所述扩展接口连接的所述功能模块的编辑指令时,由所述编辑指令对所述功能模块进行配置。
本发明第三方面提供了一种数字装备工业控制系统,包括数据采集装置,进一步的还包括:控制主机和应用控件;所述控制主机与所述数据采集装置连接,所述应用控件与所述控制主机连接;
所述控制主机,如第二方面所述的装置,用于将所述数据采集装置采集的数据反馈至所述应用控件,以及将所述应用控件的业务请求反馈至所述数据采集装置。
优选的,所述控制主机包括扩展接口和功能模块,所述功能模块设于所述扩展接口上;所述数据采集装置与所述功能模块连接。
优选的,所述应用控件,用于将获取到的业务请求发送给所述控制主机,以使所述控制主机控制所述数据采集装置执行所述业务请求对应的业务操作。
实施本发明具有以下有益效果:
本发明实施例中,控制主机在检测到扩展接口与功能模块连接时,可确定功能模块的业务标识,进而可确定业务标识对应的数据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联;对数据采集装置采集的数据进行分析处理,并将分析处理结果输出与数据采集装置关联的应用控件,以使应用控件显示分析处理结果;在接收到应用控件发送的业务请求时,由业务请求通 过功能模块控制数据采集装置,以使数据采集装置执行业务请求对应的业务操作。
进一步的,不同业务需求可对应不同功能模块,功能模块与业务需求的业务标识一一对应,在业务需求变化时,可直接更换功能模块,无需更改其他硬件,可由功能模块确定业务标识对应的数据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联,无需替换软件,只需更改对应设置,降低了开发成本,缩短了开发周期。本发明实施例中,对不同业务需求,可在同一控制主机上进行,无需更换或者增设控制主机,提高了工业自动化控制系统的可重复使用率。
附图说明
图1为本发明实施例提供的一种数字装备工业控制装置的结构示意图;
图2为本发明实施例提供的另一种数字装备工业控制装置的结构示意图;
图3为本发明实施例提供的一种数字装备工业控制装置具体示意图;
图4为本发明实施例提供的一种扩展接口示意图;
图5为本发明实施例提供的一种数字装备工业控制系统的结构示意图;
图6是为本发明实施例提供的一种数字装备工业控制方法的流程图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明实施例提供一种数字装备工业控制方法、装置及系统,其中,系统可包括:控制主机、数据采集装置和应用控件。具体的,数字装备指数据驱动和软件控制的自动化制造装备,例如应用于数控机床、数字化医疗影像设备、基于机器人的自动生产线等等,本发明实施例中的控制主机可用于控制数字装备,数据采集装置可设于数字装备上,例如数据采集装置可包括传感器,传感器可设于数控机床上,应用控件可现实数字装备的数据状态,还可通过应用控件下发业务请求,控制主机根据业务请求控制数据采集装置,进而可控制数字装备。
进一步的,现有工业自动化控制系统中,在工业应用的业务需求变更时,需修改底层硬件,例如增加或减少工业控制计算机已有的功能,进一步又如因原有的工业控制计算机仅提供标准总线扩展,无法匹配客户端的硬件,以致更换或增加工业控制计算机等,底层硬件的修改以致需更换上层软件,增加了开发成本,延长了开发周期,且工业自动化控制系统的可重复使用率低。而本发明实施例中,不同业务需求可对应不同功能模块,功能模块与业务需求的业务标识一一对应,在业务需求变化时,可直接更换功能模块,无需更改其他硬件,可由功能模块确定业务标识对应的数据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联,无需替换软件,只需更改对应设置,降低了开发成本,缩短了开发周期。本发明实施例中,对不同业务需求,可在同一控制主机上进行,无需更换或者增设控制主机,提高了工业自动化控制系统的可重复使用率。下述通过具体实施例详述。
参见图1,为本发明实施例提供的一种数字装备工业控制装置的结构示意图。 如图所示,本发明实施例提供的数字装备工业控制装置可以包括:主机箱11和与主机箱11电性连接的电源箱12。其中,电源箱12为主机箱11提供电能。
具体实现中,主机箱11包括扩展接口111和功能模块112,扩展接口111与功能模块112连接。进一步的,主机箱11还包括:确定模块113、关联模块114、下行处理模块115和上行处理模块116。其中:
确定模块113,用于在检测到扩展接口111与功能模块112连接时,确定功能模块112的业务标识。
关联模块114,用于由功能模块112确定业务标识对应的数据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联。
下行处理模块115,用于获取数据采集装置采集的数据,对采集的数据进行分析处理,并将分析处理结果输出至业务标识对应的应用控件,以使应用控件显示分析处理结果。
上行处理模块116,用于在接收到应用控件发送的业务请求时,由业务请求通过功能模块112控制数据采集装置,以使数据采集装置执行业务请求对应的业务操作。
具体实现中,确定模块113在检测到扩展接口111与功能模块112连接时,可确定功能模块112的业务标识。具体的,扩展接口111可包括至少一个卡槽,功能模块112为可插拔模块,功能模块112可单独实现插拔安装和拆卸,功能模块112可插入扩展接口111中,进而确定模块113可检测到扩展接口111与功能模块112连接,确定模块113启动读取功能模块112,确定功能模块112的业务标识。其中,业务标识可以为业务需求对应的识别码。具体的,不同业务需求可对应不同功能模块112,功能模块112与业务需求的业务标识一一对应。 对不同的业务需求,可定制不同的功能模块112。
进一步的,关联模块114可由功能模块112确定业务标识对应的数据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联。具体的,可在读取功能模块112时获得功能模块112的配置信息,配置信息例如功能模块112与数据采集装置的一一对应关系,进而可由功能模块112确定业务标识对应的数据采集装置,关联模块114还用于将数据采集装置与业务标识对应的应用控件进行关联,进而可将数据采集装置采集的数据以直观动态的形式通过应用控件展现,以方便查看和监控。其中,应用控件可以为工业控制软件,例如用于数据采集与监视控制的组态软件等,具体不受本发明实施例的限制。
进一步可选的,关联模块114还用于确定功能模块112的扩展接口标识,并将业务标识与扩展接口标识进行关联。具体的,本发明实施例所示的装置可包括多个扩展接口,每个扩展接口对应一个扩展接口标识。
进一步的,下行处理模块115可获取数据采集装置采集的数据,对采集的数据进行分析处理,并将分析处理结果输出至业务标识对应的应用控件,以使应用控件显示分析处理结果。具体的,数据采集装置可采集数据,采集的数据可传送到功能模块112,功能模块112可将采集到的数据传输至下行处理模块115,下行处理模块115可将数据采集装置采集的数据进行分析处理,并将分析处理结果输出到业务标识对应的应用控件,进而应用控件可对分析处理结果进行显示。
进一步的,上行处理模块116在接收到应用控件发送的业务请求时,由业务请求通过功能模块112控制数据采集装置,以使数据采集装置执行业务请求对应的业务操作。具体的,用户可操作应用控件的页面,进而可触发业务请求, 业务请求包括对业务需求的操作请求,例如升高设备温度、停止监控、重启设备等等。应用控件可将业务请求传输到上行处理模块116,上行处理模块116可接收到业务请求,其中,业务请求可携带业务标识。进一步的,上行处理模块116可查找与业务标识关联的扩展接口标识,通过扩展接口标识对应的功能模块控制数据采集装置,进而数据采集装置可执行业务请求对应的业务操作。
进一步可选的,本发明实施例提供的装置中,主机箱11还可以包括编译模块117。
编译模块117,用于在接收到对与扩展接口111连接的功能模块112的编辑指令时,由编辑指令对功能模块112进行配置。具体实现中,现场可编程逻辑门阵列(FPGA,Field-Programmable Gate Array)芯片可内嵌主机箱中,进而编译模块117可对扩展接口111上的功能模块112进行编译。具体的,在接收到对与扩展接口111连接的功能模块112的编辑指令时,由编辑指令对功能模块112进行配置。
进一步可选的,主机箱可支持双控制器架构,还可支持双控制器组成的CPU(Central Processing Unit,中央处理器)热备功能。在其中一台控制器发生故障时,可快速启动另一控制器,并自动接手I/O(input/output,输入输出端口)程序的处理,用户无需自行编写程序则可使用这种热备功能,可有效提升关键应用场合的可靠性。
本发明实施例提供一种数字装备工业控制装置,包括主机箱和电源箱,其中,主机箱包括扩展接口和功能模块,进一步的,主机箱还包括:确定模块、关联模块、下行处理模块和上行处理模块。确定模块在检测到扩展接口与功能模块连接时,可确定功能模块的业务标识,关联模块由确定业务标识对应的数 据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联;下行处理模块可对数据采集装置采集的数据进行分析处理,并将分析处理结果输出与数据采集装置关联的应用控件,以使应用控件显示分析处理结果;上行处理模块可在接收到应用控件发送的业务请求时,由业务请求通过功能模块控制数据采集装置,以使数据采集装置执行业务请求对应的业务操作。
进一步的,不同业务需求可对应不同功能模块,功能模块与业务需求的业务标识一一对应,在业务需求变化时,可直接更换功能模块,无需更改其他硬件,可由功能模块确定业务标识对应的数据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联,无需替换软件,只需更改对应设置,降低了开发成本,缩短了开发周期。本发明实施例中,对不同业务需求,可在同一控制主机上进行,无需更换或者增设控制主机,提高了工业自动化控制系统的可重复使用率。
参见图2,为本发明实施例提供的另一种数字装备工业控制装置的结构示意图。如图所示,本发明实施例提供的数字装备工业控制装置可以包括:主机箱21、扩展箱22以及电源箱23。其中,扩展箱22与主机箱21电性连接,扩展箱22与电源箱23电性连接。电源箱23为主机箱21和扩展箱22提供电能。具体的,扩展箱22可包括扩展接口221和功能模块222。进一步的,主机箱21也可包括扩展接口211和功能模块212。
进一步的,主机箱21还可以包括确定模块213、关联模块214、下行处理模块215和上行处理模块216。其中:
确定模块213,用于在检测到扩展接口221与功能模块222连接时,确定功 能模块212的业务标识。
关联模块214,用于由功能模块222确定业务标识对应的数据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联。
下行处理模块215,用于获取数据采集装置采集的数据,对采集的数据进行分析处理,并将分析处理结果输出至业务标识对应的应用控件,以使应用控件显示分析处理结果。
上行处理模块216,用于在接收到应用控件发送的业务请求时,由业务请求通过功能模块222控制数据采集装置,以使数据采集装置执行业务请求对应的业务操作。
具体实现中,确定模块213、关联模块214、下行处理模块215和上行处理模块216的结构和功能参见图1所示,在此不重复。
本发明实施例中,扩展箱22可包括至少一个扩展接口221,扩展接口221可与功能模块222连接,可适应不同业务需求的接口标准。
进一步可选的,本发明实施例提供的数字装备工业控制装置可以包括多个扩展箱22,具体不受本发明实施例的限制。
参见图3,是本发明实施例提供的一种数字装备工业控制装置的具体示意图,如图所示,31为主机箱,32为扩展箱,33为电源箱,主机箱31、扩展箱32以及电源箱33可设于支撑架上,控制主机31和扩展箱32与支撑架形成滑动连接,控制主机31、扩展箱32及电源箱33上设有卡合件,支撑架上设有与卡合件配合的卡合部,控制主机31、扩展箱32及电源箱33通过卡合件卡合于支撑架上。
进一步可选的,以扩展箱中的扩展接口为例进行描述。参见图4,是本发明实施例提供的一种扩展接口示意图,具体的,可以为图3所示的扩展箱32中的 具体结构示意图,如图所示,卡槽321为扩展接口,功能模块可插于卡槽321上。
结合图1~图4所示的实施例,电源单独安装在一个箱体之内,主机箱的部件均为可采用板卡式抽拉设计的部件,可实现无线缆装配,装配和维修方便快捷,从而降低产品售后服务成本。且由于采用模块化设计,电源箱通过电连接器可分别与主机箱或扩展箱连接,可以通过选用不同的模块组合(即选用主机箱+电源箱,或者主机箱+扩展箱+电源箱的组合形式),快速响应不同的客制化要求,并能实现多功能扩展,应用于不同的工业现场。
本发明实施例还公开了一种控制主机,具体的,本发明实施例提供的控制主机包括图1以及图2所示的装置,该控制主机的结构和功能可参加图1和图2所示实施例的相关描述,在此不累述。
参见图5,为本发明实施例提供的一种数字装备工业控制系统的结构示意图,如图所示,本发明实施例提供的数字装备工业控制系统包括:控制主机51、数据采集装置52以及应用控件53。其中,控制主机51与数据采集装置52连接,应用控件53与控制主机51连接。
其中,控制主机51可以为工业控制计算机。数据采集装置52例如传感器、摄像头、麦克风等各种用于采集数据的装置。应用控件53可以为工业控制软件,例如用于数据采集与监视控制的组态软件等,具体不受本发明实施例的限制。
具体的,控制主机51用于将数据采集装置52采集的数据反馈至应用控件53,以及将应用控件53的业务请求反馈至数据采集装置52。进一步的,控制主 机51包括图1或图2所示的装置。
进一步的,控制主机51包括扩展接口和功能模块,功能模块设于扩展接口上,数据采集装置52与功能模块连接。
进一步的,应用控件53,用于将获取到的业务请求发送给控制主机51,以使控制主机51控制数据采集装置52执行业务请求对应的业务操作。
本发明实施例提供的数字装备工业控制系统,可包括控制主机、数据采集装置以及应用控件,对不同业务需求,可直接更换控制主机中的功能模块,无需更改其他硬件,还可与应用控件进行关联,无需替换软件,只需更改对应设置,降低了开发成本,缩短了开发周期。本发明实施例中,对不同业务需求,可在同一控制主机上进行,无需更换或者增设控制主机,提高了工业自动化控制系统的可重复使用率。
下面将结合附图6,对本发明实施例提供的数字装备工业控制方法进行详细介绍,需要说明的是,图1或图2所述的装置为附图6所示的方法的执行主体,为了便于说明,仅示出了与本发明实施例相关的部分,具体技术细节未揭示的,请参照本发明实施例图1和图2所示的实施例。
参见图6,是本发明实施例提供的一种数字装备工业控制方法的流程图,如图所示,本发明实施例提供的数字装备工业控制方法可包括步骤:S601~S604。
S601,在检测到扩展接口与功能模块连接时,确定功能模块的业务标识。
作为一种可选的实施方式,在检测到扩展接口与功能模块连接时,可确定功能模块的业务标识。具体的,扩展接口可包括至少一个卡槽,功能模块为可插拔模块,功能模块可单独实现插拔安装和拆卸,功能模块可插入扩展接口中, 进而确定模块可检测到扩展接口与功能模块连接,确定模块启动读取功能模块,确定功能模块的业务标识。其中,业务标识可以为业务需求对应的识别码。具体的,不同业务需求可对应不同功能模块,功能模块与业务需求的业务标识一一对应。对不同的业务需求,可定制不同的功能模块。
S602,由功能模块确定业务标识对应的数据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联。
作为一种可选的实施方式,可在读取功能模块时获得功能模块的配置信息,配置信息例如功能模块与数据采集装置的一一对应关系,进而可由功能模块确定业务标识对应的数据采集装置,还可将数据采集装置与业务标识对应的应用控件进行关联,进而可将数据采集装置采集的数据以直观动态的形式通过应用控件展现,以方便查看和监控。其中,应用控件可以为工业控制软件,例如用于数据采集与监视控制的组态软件等,具体不受本发明实施例的限制。
S603,获取数据采集装置采集的数据,对采集的数据进行分析处理,并将分析处理结果输出与数据采集装置关联的应用控件,以使应用控件显示分析处理结果。
作为一种可选的实施方式,数据采集装置可采集数据,采集的数据可传送到功能模块,控制主机将数据采集装置采集的数据进行分析处理,并将分析处理结果输出到业务标识对应的应用控件,进而应用控件可对分析处理结果进行显示。
S604,在接收到应用控件发送的业务请求时,由业务请求通过功能模块控制数据采集装置,以使数据采集装置执行业务请求对应的业务操作。
作为一种可选的实施方式,用户可操作应用控件的页面,进而可触发业务 请求,业务请求包括对业务需求的操作请求,例如升高设备温度、停止监控、重启设备等等。应用控件可将业务请求传输控制主机。
进一步可选的,本发明实施例提供的方法在步骤S601之后还可包括:
确定功能模块的扩展接口标识,并将业务标识与扩展接口标识进行关联。
进一步的,业务请求携带业务标识,步骤S604具体可以包括:查找与业务标识关联的扩展接口标识,通过扩展接口标识对应的功能模块控制数据采集装置。
具体的,本发明实施例所示的装置可包括多个扩展接口,每个扩展接口对应一个扩展接口标识。可查找与业务标识关联的扩展接口标识,通过扩展接口标识对应的功能模块控制数据采集装置,进而数据采集装置可执行业务请求对应的业务操作。
进一步可选的,本发明实施例提供的方法数字装备工业控制还包括步骤:
在接收到对与扩展接口连接的功能模块的编辑指令时,由编辑指令对功能模块进行配置。
具体实现中,现场可编程逻辑门阵列(FPGA)芯片可内嵌主机箱中,进而可对扩展接口上的功能模块进行编译。具体的,在接收到对与扩展接口连接的功能模块的编辑指令时,由编辑指令对功能模块进行配置。
进一步可选的,主机箱可支持双控制器架构,还可支持双控制器组成的CPU热备功能。在其中一台控制器发生故障时,可快速启动另一控制器,并自动接手I/O程序的处理,用户无需自行编写程序则可使用这种热备功能,可有效提升关键应用场合的可靠性。
本发明实施例提供一种数字装备工业控制方法,控制主机在检测到扩展接 口与功能模块连接时,可确定功能模块的业务标识,进而可确定业务标识对应的数据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联;对数据采集装置采集的数据进行分析处理,并将分析处理结果输出与数据采集装置关联的应用控件,以使应用控件显示分析处理结果;在接收到应用控件发送的业务请求时,由业务请求通过功能模块控制数据采集装置,以使数据采集装置执行业务请求对应的业务操作。
进一步的,不同业务需求可对应不同功能模块,功能模块与业务需求的业务标识一一对应,在业务需求变化时,可直接更换功能模块,无需更改其他硬件,可由功能模块确定业务标识对应的数据采集装置,并将数据采集装置与业务标识对应的应用控件进行关联,无需替换软件,只需更改对应设置,降低了开发成本,缩短了开发周期。本发明实施例中,对不同业务需求,可在同一控制主机上进行,无需更换或者增设控制主机,提高了工业自动化控制系统的可重复使用率。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对本发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (10)

  1. 一种数字装备工业控制方法,其特征在于,包括:
    控制主机在检测到扩展接口与功能模块连接时,确定所述功能模块的业务标识;
    所述控制主机由所述功能模块确定所述业务标识对应的数据采集装置,并将所述数据采集装置与所述业务标识对应的应用控件进行关联;
    所述控制主机获取所述数据采集装置采集的数据,对所述采集的数据进行分析处理,并将所述分析处理结果输出与所述数据采集装置关联的应用控件,以使所述应用控件显示所述分析处理结果;
    所述控制主机在接收到所述应用控件发送的业务请求时,由所述业务请求通过所述功能模块控制所述数据采集装置,以使所述数据采集装置执行所述业务请求对应的业务操作。
  2. 如权利要求1所述的方法,其特征在于,所述控制主机在检测到扩展接口与功能模块连接时,确定所述功能模块的业务标识之后,所述方法还包括:
    所述控制主机确定所述功能模块的扩展接口标识,并将所述业务标识与所述扩展接口标识进行关联;
    所述控制主机在接收到所述应用控件发送的业务请求时,由所述业务请求通过所述功能模块控制所述数据采集装置,包括:
    所述业务请求携带所述业务标识,所述控制主机查找与所述业务标识关联的扩展接口标识,通过所述扩展接口标识对应的功能模块控制所述数据采集装置。
  3. 如权利要求1或2所述的方法,其特征在于,所述方法还包括:
    在接收到对与所述扩展接口连接的所述功能模块的编辑指令时,由所述编辑指令对所述功能模块进行配置。
  4. 一种数字装备工业控制装置,其特征在于,包括:主机箱和与所述主机箱电性连接的电源箱;所述电源箱为所述主机箱提供电能;所述主机箱包括扩展接口和功能模块,所述扩展接口与所述功能模块连接;
    所述主机箱还包括:确定模块、关联模块、下行处理模块和上行处理模块;
    所述确定模块,用于在检测到所述扩展接口与所述功能模块连接时,确定所述功能模块的业务标识;
    所述关联模块,用于由所述功能模块确定所述业务标识对应的数据采集装置,并将所述数据采集装置与所述业务标识对应的应用控件进行关联;
    所述下行处理模块,用于获取所述数据采集装置采集的数据,对所述采集的数据进行分析处理,并将所述分析处理结果输出至所述业务标识对应的应用控件,以使所述应用控件显示所述分析处理结果;
    所述上行处理模块,用于在接收到所述应用控件发送的业务请求时,由所述业务请求通过所述功能模块控制所述数据采集装置,以使所述数据采集装置执行所述业务请求对应的业务操作。
  5. 如权利要求4所述的装置,其特征在于,所述装置还包括扩展箱,所述扩展箱包括所述扩展接口和所述功能模块;所述扩展箱与所述主机箱电性连接,所述扩展箱与所述电源箱电性连接;所述电源箱还为所述扩展箱提供电能。
  6. 如权利要求4所述的装置,其特征在于,所述关联模块,还用于确定所述功能模块的扩展接口标识,并将所述业务标识与所述扩展接口标识进行关联;
    所述上行处理模块在接收到所述应用控件发送的业务请求时,由所述业务 请求通过所述功能模块控制所述数据采集装置,包括:
    所述业务请求携带所述业务标识,查找与所述业务标识关联的扩展接口标识,通过所述扩展接口标识对应的功能模块控制所述数据采集装置。
  7. 如权利要求4或6所述的装置,其特征在于,所述主机箱还包括:
    编译模块,用于在接收到对与所述扩展接口连接的所述功能模块的编辑指令时,由所述编辑指令对所述功能模块进行配置。
  8. 一种数字装备工业控制系统,包括数据采集装置,其特征在于,还包括:控制主机和应用控件;所述控制主机与所述数据采集装置连接,所述应用控件与所述控制主机连接;
    所述控制主机,如权利要求4~7任一所述的装置,用于将所述数据采集装置采集的数据反馈至所述应用控件,以及将所述应用控件的业务请求反馈至所述数据采集装置。
  9. 如权利要求8所述的系统,其特征在于,所述控制主机包括扩展接口和功能模块,所述功能模块设于所述扩展接口上;所述数据采集装置与所述功能模块连接。
  10. 如权利要求8所述的系统,其特征在于,所述应用控件,用于将获取到的业务请求发送给所述控制主机,以使所述控制主机控制所述数据采集装置执行所述业务请求对应的业务操作。
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CHEN PENGPENG ET AL.: "Standardization of sensing module interfaces and design of reusable data collection middleware", JOURNAL OF COMPUTER RESEARCH AND DEVELOPMENT, vol. 47, no. S2, 31 December 2010 (2010-12-31), pages 288 - 292, ISSN: 1000-1239 *

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110287143A (zh) * 2019-07-24 2019-09-27 北京慧眼智行科技有限公司 一种数据采集方法及设备
CN111665761A (zh) * 2020-06-23 2020-09-15 上海一旻成锋电子科技有限公司 工业控制系统及控制方法

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