WO2014201853A1 - Procédé d'utilisation d'affichage et système de configuration pour une interface homme-machine d'un système de commande d'usine - Google Patents

Procédé d'utilisation d'affichage et système de configuration pour une interface homme-machine d'un système de commande d'usine Download PDF

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Publication number
WO2014201853A1
WO2014201853A1 PCT/CN2014/000590 CN2014000590W WO2014201853A1 WO 2014201853 A1 WO2014201853 A1 WO 2014201853A1 CN 2014000590 W CN2014000590 W CN 2014000590W WO 2014201853 A1 WO2014201853 A1 WO 2014201853A1
Authority
WO
WIPO (PCT)
Prior art keywords
control system
monitoring device
machine interface
human
monitored device
Prior art date
Application number
PCT/CN2014/000590
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English (en)
Chinese (zh)
Inventor
黎敏
安辉
梁华坤
Original Assignee
哥乐巴环保科技(上海)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
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Application filed by 哥乐巴环保科技(上海)有限公司 filed Critical 哥乐巴环保科技(上海)有限公司
Publication of WO2014201853A1 publication Critical patent/WO2014201853A1/fr

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Classifications

    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B23/00Testing or monitoring of control systems or parts thereof
    • G05B23/02Electric testing or monitoring
    • G05B23/0205Electric testing or monitoring by means of a monitoring system capable of detecting and responding to faults
    • G05B23/0259Electric testing or monitoring by means of a monitoring system capable of detecting and responding to faults characterized by the response to fault detection
    • G05B23/0267Fault communication, e.g. human machine interface [HMI]
    • G05B23/0272Presentation of monitored results, e.g. selection of status reports to be displayed; Filtering information to the user
    • 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 a factory control system, and more particularly to a human-machine interface display operation method for a wood-based panel factory control system. Background technique
  • the existing industrial control system especially the overall control system of the factory, will be equipped with an industrial human-machine interface.
  • HMI a medium for transferring and exchanging information between users and machines. Users can process or monitor the work of machines according to the needs of control and different objects.
  • the human-machine interface in the current production control system mainly displays the data related to the operation of the equipment on the production line.
  • the human-machine interface is mainly based on animation, text and data, although in the specific production. The process is very clear, but in the human-machine interface of the control system of the whole factory, the data of all production processes and control equipment objects appear, the types and points are very large, especially in the key equipment of the factory, the sensors and actuators are dense.
  • the maintenance personnel must first retrieve the sensors and actuator positions that determine the specific alarms in order to determine the damage point ( Must be familiar with the sensor, actuator device number, name, location) before subsequent repairs and inspections can be performed. It wastes time and delays maintenance. If the equipment is shut down, it will cause more damage.
  • the technical problem to be solved by the present invention is to provide a human-machine interface display operation method of a factory control system, and the human-machine interface of the existing control system is not displayed because the specific position of the monitored device is not displayed. It is not suitable for the maintenance personnel to determine the specific alarm sensor or actuator after the alarm is issued, thereby delaying the repair time and causing the loss of the equipment caused by long-term shutdown.
  • the human-machine interface includes an overall view of the control system, and includes an indication of the position of each monitored device of the monitoring system on the overall view of the control system, and the human-machine interface further includes a live-action picture corresponding to the location of each monitored device.
  • the enlarged view and the monitoring data of the monitored device show that the display method of the human-machine interface includes the steps of displaying the overall map of the control system, the step of selecting the monitored device, and the link indicating the position of each monitored device on the overall map of the control system.
  • Each of the monitoring device position indications is in the form of an indication button, and the indication buttons are displayed in different colors according to the state of each monitoring device transmitted back by the field bus.
  • the step of selecting the monitoring device is to manually select the state of each monitoring device displayed according to the overall map of the control system.
  • the step of selecting the monitoring device is to determine the real-time status of each monitoring device, and automatically select the fault monitoring device according to the status.
  • a human-machine interface configuration system of a factory control system applying the above method comprising: a configuration picture module, wherein the configuration picture module comprises an overall picture unit of the control system, and an enlarged view corresponding to the position of each monitoring device; And a monitoring data display unit of the monitoring device, a fault corresponding troubleshooting method map unit, a unit for selecting a related manual for displaying the monitoring device, and a parameter obtaining module for acquiring the monitoring device corresponding to the currently configured screen object displayed
  • the parameter determining and processing module is configured to determine the real-time status of the monitoring device obtained from the parameter obtaining module and display the status display or the data display or the fault corresponding elimination method corresponding to the current configuration screen.
  • the system of the invention inserts the scene picture, and links the state of the electrical appliance to the scene picture, so that the personnel can recognize the position of each controller, sensor and equipment, and facilitate the training, operation and fault finding; insert the fault detection step, which is convenient for the engineering personnel to solve according to the steps. Fault; Insert the operation manual (including the whole system, sensor, motor, inverter, electronic control components, etc.), which is convenient for personnel to quickly maintain and reduce the equipment failure rate; the invention can not only reduce the reaction time of maintenance, but also speed up the maintenance. Reduce maintenance error rates and reduce training time for maintenance personnel, especially for new plants or for installation of new control systems.
  • FIG. 1 is a schematic structural view of a configuration system of the present invention
  • each white dot corresponds to one sensor, and white dots may be displayed in yellow or red depending on the state;
  • Fig. 4 is a schematic enlarged view of the field in the embodiment of the present invention.
  • the white dots in the figure are sensors, and M represents the motor. According to the state and parameters, the troubleshooting step is displayed next to it.
  • the industrial human-machine interface is generally connected to at least one industrial controller PLC and other industrial devices with fieldbus interfaces via a fieldbus, as shown in Figure 3, which is a schematic diagram of an embodiment of the overall system control of the wood-based panel factory, in order to solve The current human-machine interface display is not clear, the location definition is not The problem of clearing, the present invention proposes to use it as the entrance of the man-machine interface of the overall control system of the factory.
  • the entrance of the industrial human-machine interface at least three to four large-scale equipments, related pipelines and monitoring are connected. Equipment, etc.
  • the industrial man-machine interface shown in the figure is realized by the configuration software to realize the functions of the control system.
  • the configuration system of the ⁇ 1 configuration system can generate a lot of configuration pictures, that is, the on-site magnified view of each sub-section or each monitoring device is taken as
  • the generated configuration screens have a single or multiple screen objects on each configuration screen.
  • Each screen object corresponds to an external variable that is communicated by a device such as a monitoring device or sensor.
  • the HMI configuration system will monitor the device or sensor. The latest variable values obtained on the device are displayed.
  • the invention provides a man-machine interface configuration system of a wood-based panel factory control system, comprising a configuration picture module, wherein the configuration picture module comprises an overall picture unit of the control system, an enlarged picture of the live scene picture corresponding to the position of each sensor, and the The monitoring data display unit of the sensor and the fault corresponding troubleshooting method map unit; and a parameter obtaining module, configured to acquire parameters of the sensor corresponding to the currently configured screen object; the determining and processing module is configured to determine the obtained from the parameter obtaining module The real-time status of the sensor is displayed corresponding to the current configuration screen for status display or data display or fault corresponding exclusion method.
  • the system domain relationship is shown in Figure 1.
  • FIG 3 is a schematic view of an embodiment of the overall system control of the wood-based panel factory.
  • Each white dot in the figure corresponds to a sensor, and the white dots may be displayed in yellow or red depending on the state, such as Figure 4 shows an enlarged view of the field of one of the sensors.
  • the white dot is the sensor and the M is the motor. According to the returned status and parameters, the corresponding troubleshooting step screen is displayed next to it.
  • the human-machine interface includes an overall view of the control system, and the overall control map includes the sensor position indication of the monitoring system and the monitoring data display of the main device, and the human-machine The interface further includes an enlarged view of the live scene image corresponding to the location of each sensor and a monitoring data display of the sensor, the method including displaying the overall map of the control system Step of selecting a sensor, indicating, from each sensor position on the overall map of the control system, a step of zooming in on the live view image linked to the location of the selected sensor and displaying the monitoring data of the sensor, determining the state of the selected sensor Step, if the status warning is faulty, the steps corresponding to the troubleshooting method are displayed.
  • the step of selecting the sensor is to manually select the state of each sensor displayed according to the overall map of the control system.
  • the step of selecting a sensor may also determine the real-time status of each sensor, and then automatically select a fault sensor according to the state.
  • a manual for displaying the related device may also be selected.
  • Each sensor position indication is in the form of an indication button. According to the state of each sensor transmitted back on the field bus, the indication button is displayed in different colors, such as white indicating no operation, yellow indicating normal operation, red indicating abnormal state, etc. .

Landscapes

  • Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Testing And Monitoring For Control Systems (AREA)

Abstract

Dans le champ technique de la commande automatique, la présente invention porte sur un système de commande d'usine, et en particulier un procédé d'utilisation d'affichage pour une interface homme-machine du système de commande d'usine. L'interface homme-machine comprend un schéma du système de commande global, et le schéma du système de commande global comprend une indication de localisation de chaque dispositif contrôlé par un système de contrôle; l'interface homme-machine comprend en outre un schéma élargi d'une image de scène dans le monde réel du lieu auquel chaque dispositif contrôlé est situé et un affichage de données de contrôle des dispositifs contrôlés. Le procédé d'utilisation d'affichage pour l'interface homme-machine comprend : une étape consistant à afficher un schéma de système de commande global; une étape consistant à sélectionner un dispositif contrôlé; une étape consistant à relier à partir d'une indication de localisation de chaque dispositif contrôlé sur le schéma de système de commande global un schéma élargi de détail de scène du lieu auquel le dispositif contrôlé sélectionné est situé et un affichage de données de contrôle du dispositif contrôlé; une étape consistant à déterminer l'état du dispositif contrôlé sélectionné; une étape consistant à afficher un procédé de correction de défaut correspondant si l'état indique un défaut; et une étape consistant à sélectionner pour afficher une spécification associée au dispositif contrôlé.
PCT/CN2014/000590 2013-06-18 2014-06-17 Procédé d'utilisation d'affichage et système de configuration pour une interface homme-machine d'un système de commande d'usine WO2014201853A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201310241678.4A CN103309334B (zh) 2013-06-18 2013-06-18 一种工厂控制系统的人机界面显示操作方法及组态系统
CN201310241678.4 2013-06-18

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WO2014201853A1 true WO2014201853A1 (fr) 2014-12-24

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CN (1) CN103309334B (fr)
WO (1) WO2014201853A1 (fr)

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CN103309334B (zh) * 2013-06-18 2016-01-20 哥乐巴环保科技(上海)有限公司 一种工厂控制系统的人机界面显示操作方法及组态系统
CN103838223A (zh) * 2014-03-25 2014-06-04 徐州天之源新能源科技有限公司 基于实景图的光伏监控系统及其使用方法
CN104267677B (zh) * 2014-09-10 2017-08-25 上海电气电站设备有限公司 一种燃气轮机顺控步序及信息的实时显示方法
CN104777783A (zh) * 2015-04-16 2015-07-15 上海冉能自动化科技有限公司 带图形化用户界面的消防设备电源监控系统
CN104954167B (zh) * 2015-04-27 2019-04-19 深信服网络科技(深圳)有限公司 一种维护物理设备的方法和系统
CN106292604A (zh) * 2016-09-09 2017-01-04 深圳市智物联网络有限公司 一种应用于工业物联网的控制终端
CN106444427B (zh) * 2016-10-24 2018-08-28 北京亚控科技发展有限公司 基于组态的物理对象展示方法
CN108037722A (zh) * 2017-12-25 2018-05-15 山东星火科学技术研究院 五位一体新能源销售示范中心前庭设备控制系统
CN108646675B (zh) * 2018-05-04 2021-03-16 上海罗湖斯自动化技术有限公司 存储介质、工厂控制系统、人机界面显示操作方法及其组态系统
CN111736539B (zh) * 2020-02-21 2022-09-06 北京沃东天骏信息技术有限公司 一种监控数据显示方法、装置、系统、服务器及存储介质

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