WO2020202464A1 - Appareil de terminal de commande de surveillance et procédé d'affichage d'écran - Google Patents

Appareil de terminal de commande de surveillance et procédé d'affichage d'écran Download PDF

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Publication number
WO2020202464A1
WO2020202464A1 PCT/JP2019/014620 JP2019014620W WO2020202464A1 WO 2020202464 A1 WO2020202464 A1 WO 2020202464A1 JP 2019014620 W JP2019014620 W JP 2019014620W WO 2020202464 A1 WO2020202464 A1 WO 2020202464A1
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WIPO (PCT)
Prior art keywords
item
monitoring
storage unit
event
unit
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PCT/JP2019/014620
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English (en)
Japanese (ja)
Inventor
ひとみ 野崎
俊彦 廣岡
Original Assignee
三菱電機株式会社
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.)
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Publication date
Application filed by 三菱電機株式会社 filed Critical 三菱電機株式会社
Priority to JP2019546402A priority Critical patent/JP6625296B1/ja
Priority to PCT/JP2019/014620 priority patent/WO2020202464A1/fr
Publication of WO2020202464A1 publication Critical patent/WO2020202464A1/fr

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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
    • G05B23/00Testing or monitoring of control systems or parts thereof
    • G05B23/02Electric testing or monitoring
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q9/00Arrangements in telecontrol or telemetry systems for selectively calling a substation from a main station, in which substation desired apparatus is selected for applying a control signal thereto or for obtaining measured values therefrom

Definitions

  • This application relates to a monitoring control terminal device and a screen display method.
  • the timing at which an event such as the control operation performed from the monitoring control terminal device to the monitoring device and the state change of the monitoring device occurs, and the transition of the data value acquired from the monitoring device before and after the event occurrence are appropriate. It was necessary to investigate the nature and the cause of the abnormal display of the data value based on the trend graph displayed on the display screen provided in the monitoring control terminal device.
  • a user such as an operator grasps the event occurrence time by himself / herself, visually confirms the transition of the data value displayed as the trend graph, and searches for the timing when the event occurs. Then, it was necessary to confirm the data value transition and the presence / absence of the event for the related monitoring equipment that had been grasped in advance based on the search result.
  • the trend graph display screen that displays the data value of the monitoring device can only display the device assigned to the screen in advance, the user can grasp in advance which screen the data value of the monitoring device to be displayed is assigned. I had to do it.
  • Patent Document 2 a symbol is displayed, and a signal can be added to the trend graph without searching the signal list for the signal.
  • the graph display device described in Patent Document 2 is constructed so that the display format of the graph screen is constant, when it is desired to change the display format such as adding a stage to perform graph analysis. , There was a problem that it was necessary to create a screen with additional columns in advance.
  • the monitoring device is used when the user investigates related devices in order to grasp the true cause of the graph transition. There was a problem that it was necessary to grasp the relationship between the two.
  • the present application has been made to solve the above-mentioned problems, and a monitoring control terminal capable of easily grasping the occurrence of an abnormal event and easily confirming the transition of monitoring data of a monitoring device related to the abnormal event.
  • the purpose is to obtain the device.
  • the monitoring control terminal device disclosed in the present application is connected to a display unit via a network with a plurality of monitoring devices, and acquires the status of the plurality of monitoring devices and the measured values by the plurality of monitoring devices as monitoring data. It is a monitoring control terminal device provided with a monitoring control unit for displaying the monitoring data as a trend graph on the display unit, and the monitoring control unit can display a graph on the display unit for each of a plurality of monitoring devices.
  • An item list storage unit that stores the item of the monitoring data acquired from the monitoring device in association with the equipment name to which the monitoring device related to the item belongs, a monitoring data storage unit that stores the monitoring data, and a monitoring data storage unit.
  • An abnormality cause diagram storage unit that associates an abnormal event that can occur in each of the above items with a monitoring device that causes the abnormality and stores it as an abnormality cause diagram, and an event that occurs in the plurality of monitoring devices at the time when the event occurs.
  • An event information storage unit that stores the items together, a control scenario storage unit that stores control scenarios related to the control of each of the plurality of monitoring devices, and an item candidate image generation unit that generates image data for displaying the items on the display unit.
  • the input item reception unit that searches the item list storage unit for the selected item selected from the items displayed on the display unit, and the selection item that is extracted by searching the item list storage unit.
  • the graph display image generation unit that acquires the monitoring data to be acquired from the monitoring data storage unit and displays the graph on the display unit, and the event information and the control scenario related to the selection item are stored in the event information.
  • the occurrence of an abnormal event is determined from the event / scenario display image generation unit that generates image data acquired from the unit and the control scenario storage unit and displayed on the display unit, and the event stored in the event information storage unit.
  • the abnormality event display image generation unit that generates image data for displaying the abnormality event on the display unit and the abnormality cause diagram storage unit are searched to extract items related to the monitoring device related to the generated abnormality event. It is provided with a related graph display image generation unit that acquires the monitoring data for the extracted related items from the monitoring data storage unit and generates image data to be displayed on the display unit.
  • the occurrence of an abnormal event can be easily grasped, and the transition of monitoring data related to the abnormal event can be easily confirmed.
  • FIG. 5 is a diagram showing an example of an item table of an abnormality cause diagram storage unit of the monitoring control terminal device according to the first embodiment.
  • FIG. 5 is a flowchart showing a process related to display of the monitoring control terminal device according to the first embodiment. It is a block diagram which shows an example of the hardware of a monitoring control terminal apparatus.
  • FIG. 5 is a flowchart showing a process related to registration of related items of the monitoring control terminal device according to the third embodiment.
  • FIG. 5 is a flowchart showing a process related to display of the monitoring control terminal device according to the fifth embodiment.
  • FIG. 1 is a schematic diagram showing a configuration outline of the monitoring control terminal device 100 and the monitoring device 103 according to the first embodiment.
  • the monitoring control terminal device 100 includes a monitoring control unit 101 and a trend graph screen 102.
  • the monitoring control unit 101 is connected to the plurality of monitoring devices 103 via the network 104, acquires the status of the plurality of monitoring devices 103 and the measured values by the plurality of monitoring devices 103 as monitoring data, and is a display unit, the trend graph screen 102.
  • the monitoring data acquired in is displayed as a trend graph.
  • the monitoring equipment 103 is grouped as equipment 1000 for each place where it is installed.
  • FIG. 2 is a block diagram showing the configuration of the monitoring control terminal device 100 according to the first embodiment.
  • the monitoring control unit 101 includes five storage units, an item list storage unit 21, a monitoring data storage unit 22, an abnormality cause diagram storage unit 23, an event information storage unit 24, and a control scenario storage unit 25, and an item candidate image generation unit 1. It is composed of an input item reception unit 2, a graph display image generation unit 3, an event / scenario display image generation unit 4, an abnormal event display image generation unit 5, and a related graph display image generation unit 6.
  • the configuration of each part of the monitoring control unit 101 and a specific example of the trend graph screen 102 will be described by taking the case where the monitoring control terminal device 100 is applied to the monitoring control system of the water treatment system as an example.
  • the water treatment system monitoring and control system is a system that can monitor and control the amount of water sent from the pumping station to the reservoir and the amount of water stored in the reservoir distributed to each household.
  • Each storage unit stores the contents of individual data and the like in the form of an item table.
  • FIG. 3 is a diagram showing an example of an item table of the item list storage unit 21 of the monitoring control terminal device 100 according to the first embodiment
  • FIG. 4 is a diagram showing an example of an item table of the monitoring data storage unit 22
  • FIG. 5 is an abnormality.
  • FIG. 6 is a diagram showing an example of an item table of the event information storage unit 24, and FIG.
  • the item list storage unit 21 can display a graph on the trend graph screen 102 for each of the plurality of monitoring devices 103, and includes items of monitoring data acquired from the monitoring device 103 and equipment to which the monitoring device 103 related to the items belongs. Store in association with the name.
  • FIG. 3 it is shown that the three items having the item numbers 0001 to 0003 belong to the equipment of the reservoir 1, and the items having the item number 0004 belong to the equipment of the pumping station.
  • the monitoring data storage unit 22 stores monitoring data acquired from a plurality of monitoring devices 103.
  • the abnormality cause diagram storage unit 23 stores, as an abnormality cause diagram, an abnormal event that may occur in each item and the monitoring device 103 that causes the abnormality in association with each other.
  • the abnormal event “exceeding the upper limit value” of the item “water level 1: measured value” is caused by the failure of the water valve 1 and the water valve 2 provided in the reservoir 1, and the item “water valve 1: opening degree” is displayed.
  • the abnormal event “failure” indicates that the cause is a failure of the valve provided in the reservoir 1.
  • the cause of abnormality diagram is created when the system is designed.
  • the event information storage unit 24 stores the events that have occurred in the plurality of monitoring devices 103 together with the time when the events have occurred.
  • FIG. 6 shows that the operation of each user of the water valve 1 and the water valve 2 and the state change of the water valve 1 are stored as an event. For the user's operation, both the time when the user requested the operation and the time when the control operation was actually performed are stored.
  • the control scenario storage unit 25 stores control scenarios such as conditions related to the control of each of the plurality of monitoring devices 103.
  • FIG. 7 shows a control scenario in which when water is flowed from a pumping station, the opening degree of the water valve 1 must be 100 or more before water is flowed, and water is not flowed unless the condition is satisfied. Control scenarios are created when the system is designed.
  • the monitoring control system determines the control scenario of the monitoring device 103 involved in the operation at the time of user operation, and the determination result is stored in the event information storage unit 24 as an event.
  • FIG. 8 is a diagram showing an example of a trend graph screen 102 of the monitoring control terminal device 100 according to the first embodiment.
  • the trend graph screen 102 is composed of a graph area 31, an axis item 32, an axis candidate item 33, and a display format item 34 whose horizontal axis is the time axis.
  • the item candidate image generation unit 1 generates image data for displaying the items that are the axis candidates of the trend graph 35 to be displayed in the graph area 31 in the axis candidate item 33.
  • the order of the items displayed in the axis candidate item 33 may be prioritized, for example, in descending order of the number of times selected.
  • the input item receiving unit 2 searches the item list storage unit 21 for the selected item selected from the items displayed in the axis candidate item 33.
  • the graph display image generation unit 3 acquires the monitoring data corresponding to the selected item extracted by searching the item list storage unit 21 from the monitoring data storage unit 22 and generates image data to be displayed as a graph on the trend graph screen 102.
  • the graph area 31 is rewritten to the display format selected by the user and displayed by the user selecting the item displayed in the display format item 34 and dragging and dropping it onto the graph area 31. For example, when the user selects the addition of columns, the graph area 31 is displayed in two columns, and different items can be displayed in each graph area 31.
  • the event 36 and the control scenario 37 related to the selected item are automatically displayed in the graph area 31.
  • an event 36a in which the user sends a water supply request to the pumping station an event 36b in which the monitoring control system automatically fully opens the water valve 1, and an opening degree of the water valve 1 for determining whether or not water can be sent from the pumping station.
  • the control scenario 37a determined to be 100 or more, the event 36c in which water is sent from the pumping station, and the like are displayed as the event 36 related to the selection item "water level 1: measured value" and the determined control scenario 37. Will be done.
  • the event / scenario display image generation unit 4 acquires the event 36 and the control scenario 37 related to the selected item from the event information storage unit 24 and the control scenario storage unit 25, and generates image data to be displayed on the trend graph screen 102.
  • FIG. 9 is a diagram showing another example of the trend graph screen 102 of the monitoring control terminal device 100 according to the first embodiment.
  • FIG. 9 is an example in which the item “water level 1: measured value” is selected as the selection item as in FIG.
  • the abnormal event display image generation unit 5 determines the occurrence of the abnormal event 38 from the events stored in the event information storage unit 24, and generates image data for displaying the abnormal event 38 on the trend graph screen 102.
  • the related graph display image generation unit 6 searches the abnormality cause diagram storage unit 23, extracts the item 39 related to the monitoring device 103 related to the generated abnormal event, and monitors the monitoring data for the extracted related item 39.
  • Image data acquired from the data storage unit 22 and displayed on the trend graph screen 102 is generated.
  • the abnormal event 38 in FIG. 9 exceeds the upper limit of the water level 1, and the water supply flow rate 39a of the pumping station and the opening degree 39b of the water valve 1 are automatically additionally displayed in the shaft item 32 as related items 39, and the added related items.
  • the monitoring data of item 39 is automatically additionally displayed in the graph area 31 as the trend graph 35a and the trend graph 35b.
  • the individual trend graphs 35a and 35b are shown by broken lines and alternate long and short dash lines corresponding to the borders of the related items 39, but are not limited to these and are displayed in different colors. You can let me do it.
  • FIG. 10 is a flowchart showing a process related to the display of the monitoring control terminal device 100 according to the first embodiment.
  • the user selects an item to be displayed as a graph as a selection item and drags and drops it onto the axis item 32 (step S1).
  • the input item reception unit 2 searches the item list storage unit 21 for the selected item (step S2).
  • the graph display image generation unit 3 acquires the monitoring data corresponding to the selected item extracted by searching the item list storage unit 21 from the monitoring data storage unit 22 and generates image data to be displayed as a graph on the trend graph screen 102. Display a graph (step S3).
  • the event / scenario display image generation unit 4 acquires the event 36 related to the searched selection item from the event information storage unit 24, generates and displays the image data to be displayed on the trend graph screen 102 (step S4).
  • the event / scenario display image generation unit 4 acquires the control scenario 37 determined in relation to the searched selection item from the event information storage unit 24 and the control scenario storage unit 25, and displays the image data to be displayed on the trend graph screen 102.
  • Generate and display step S5
  • the abnormal event display image generation unit 5 determines the occurrence of the abnormal event 38 from the events stored in the event information storage unit 24, and generates and displays the image data to be displayed on the trend graph screen 102 for the abnormal event 38 (step S6). ).
  • the related graph display image generation unit 6 searches the abnormality cause diagram storage unit 23, extracts items related to the monitoring device 103 related to the generated abnormal event 38, and extracts the items.
  • the monitoring data for the related item 39 is acquired from the monitoring data storage unit 22, the image data to be displayed on the trend graph screen 102 is generated, and the graph is displayed (step S7).
  • the item candidate image generation unit 1 acquires another item belonging to the equipment of the related item 39 displayed in step S7 from the item list storage unit 21, generates and displays image data to be displayed in the axis candidate item 33. (Step S8).
  • Step S8 is provided because the user may want to display an item other than the related item 39 as a trend graph 35.
  • the display of the water level of the pumping station may be required for the water supply flow rate 39a of the pumping station of FIG.
  • an example of the hardware of the monitoring control unit 101 includes a processor 110 and a storage device 111.
  • the storage device 111 including the program executed by the monitoring control unit 101 and the data stored in each storage unit includes, for example, a volatile storage device such as a random access memory and a non-volatile auxiliary storage device such as a flash memory. Equipped with. Further, an auxiliary storage device of a hard disk may be provided instead of the flash memory.
  • the processor 110 executes a program input from the storage device 111, and each image generation unit included in the monitoring control unit 101 generates image data to be displayed on the trend graph screen 102. In this case, a program is input from the auxiliary storage device to the processor 110 via the volatile storage device. Further, the processor 110 may output data such as a calculation result to the volatile storage device of the storage device 111, or may store the data in the auxiliary storage device via the volatile storage device.
  • the abnormal event display image generation unit 5 determines the occurrence of the abnormal event
  • the related graph display image generation unit 6 is the monitoring device 103 related to the abnormal event 38. Since the monitoring data for the related item 39 is displayed on the trend graph screen 102, the user can easily grasp the occurrence of the abnormal event and easily confirm the transition of the monitoring data related to the abnormal event. .. Further, since the event 36 and the control scenario 37 related to the selected item are automatically displayed in the graph area 31, the user can easily grasp the reason for the change of the graph data in association with the related event 36 and the control scenario 37. be able to.
  • the graph area 31 can be easily rewritten to the display format selected by the user. Further, since the abnormality cause diagram storage unit 23 and the control scenario storage unit 25 are provided, the transition of monitoring data related to the abnormality event can be easily confirmed without the user having to grasp the relationship between the monitoring devices in advance. be able to.
  • FIG. 12 is a diagram showing an example of the trend graph screen 102 of the monitoring control terminal device 100.
  • the monitoring control terminal device 100 according to the second embodiment has a configuration in which a display item 40 and an additional candidate item 41 are provided in addition to the configuration of the trend graph screen 102 shown in the first embodiment.
  • FIG. 12 shows an example in which the item “water level 1: measured value” is selected as the selection item as in the first embodiment, and the items related to the selection item 36 and the control scenario 37 are set as display items and are classified into the display item 40. Is automatically displayed.
  • a category is a higher level of events, and multiple items related to events and control scenarios are grouped into one category.
  • the categories of four items are displayed as display items 40. For example, in the category of "water valve 1: state change", the events of "water valve 1: fully open” and “water valve 1: fully closed”
  • the "Pumping Station: Operation” category includes the “Pumping Station: Control Acquisition” and "Pumping Station: Water Supply Request” events.
  • items related to the event 36 and the control scenario 37 that can be displayed on the trend graph screen 102 are automatically displayed as additional candidate items in the additional candidate item 41 by category.
  • "water valve 2: state change” is displayed as an additional candidate item 41.
  • the item candidate image generation unit 1 generates image data for displaying the display item 40, which is a category related to the selected item, and the additional candidate item 41, which is a category that can be displayed on the trend graph screen 102, on the trend graph screen 102.
  • the event / scenario display image generation unit 4 stores the event 36 and the control scenario 37 related to the additional candidate item 41 selected from the additional candidate items 41 displayed on the trend graph screen 102 with the event information storage unit 24 and the control scenario 37.
  • Image data acquired from the control scenario storage unit 25 and displayed on the trend graph screen 102 is generated.
  • the user selects an item to be additionally displayed in the graph area 31 from the items displayed in the additional candidate item 41 as a selection item, and drags and drops it onto the display item 40 to display the event 36 and the control scenario 37 related to the selection item. It is displayed in the graph area 31.
  • FIG. 13 is a flowchart showing a process related to the display of the monitoring control terminal device 100 according to the second embodiment. Only the processing different from the flowchart of FIG. 10 shown in the first embodiment will be described.
  • the user selects an item to be displayed on the graph or an item added to the graph, and drags and drops it on the axis item 32 or the display item 40 as a selection item (step S1).
  • the input item reception unit 2 searches the item list storage unit 21 for the selected item (step S2).
  • the input item receiving unit 2 determines whether the axis item 32 or the display item 40 (step S2-1).
  • step S3 the processing after step S3 for additionally displaying the trend graph 35 is performed.
  • step S4 the processes after step S4 for additionally displaying the event 36 and the control scenario 37 related to the selected item are performed.
  • the item candidate image generation unit 1 acquires another item belonging to the equipment of the display item 40 displayed in step S4 from the item list storage unit 21, and if it is the axis item 32, it becomes the axis candidate item 33. If it is the display item 40, the image data to be displayed in the additional candidate item 41 is generated and displayed (step S8).
  • the user since the display item 40 and the additional candidate item 41 are provided on the trend graph screen 102, the user selects the item related to the trend graph 35 and the trend graph. It can be added to the screen 102, and the trend graph 35 and the item selected by the user can be easily associated and grasped.
  • FIG. 14 is a block diagram showing the configuration of the monitoring control terminal device 100
  • FIG. 15 is a diagram showing an example of an item table of the related item storage unit 26 of the monitoring control terminal device 100
  • FIG. 16 is a trend graph screen of the monitoring control terminal device 100. It is a figure which shows the example of 102.
  • the monitoring control terminal device 100 according to the third embodiment has a configuration in which a related item registration button 42 is provided in addition to the configuration of the trend graph screen 102 shown in the second embodiment.
  • the monitoring control unit 101 includes a related item registration unit 7 and a related item storage unit 26 as shown in FIG.
  • the related item registration unit 7 generates image data for displaying the related item registration button 42 on the trend graph screen 102, and registers the related item, which is the selected additional candidate item 41, in the related item storage unit 26.
  • the related item storage unit 26 stores an event related to the additional candidate item 41 as a related item.
  • FIG. 15 shows water supply from the pumping station as an event related to the additional candidate item “water valve 2: state change”.
  • the event / scenario display image generation unit 4 acquires the event and control scenario related to the related item from the related item storage unit 26 and the control scenario storage unit 25, and generates image data to be displayed on the trend graph screen 102.
  • FIG. 16 is an example in which the item “water level 1: measured value” is selected as the same as in the second embodiment, and the related item registration button 42 is displayed on the upper right of the trend graph screen 102.
  • the user drags and drops the selection item to the display item 40 and presses the related item registration button 42, so that the selected item is a related item storage unit. It is registered in 26.
  • the event 36 related to the selected item is displayed in the graph area 31 without the user dragging and dropping the selected item to the display item 40 each time.
  • FIG. 17 is a flowchart showing a process related to registration of related items of the monitoring control terminal device 100 according to the third embodiment.
  • the user selects an item to be displayed in the graph or an item added to the graph as a selection item and drags and drops it onto the axis item 32 or the display item 40 (step S1).
  • the user further presses the related item registration button 42, and the related item registration unit 7 determines whether the related item registration button 42 has been pressed (step S1-1). If it is not pressed, the input item receiving unit 2 searches the item list storage unit 21 for the selected item (step S2).
  • the event / scenario display image generation unit 4 may be selected as a selection item.
  • the related event 36 is also acquired from the related item storage unit 26, and the image data to be displayed on the trend graph screen 102 is generated and displayed (step S4). If it is pressed, the process proceeds to S11.
  • the input item reception unit 2 searches the item list storage unit 21 for the selected item (step S11).
  • the event / scenario display image generation unit 4 acquires the event 36 related to the selected item from the event information storage unit 24 (step S12).
  • the related item registration unit 7 registers the acquired event 36 in the related item storage unit 26 (step S13).
  • the monitoring control terminal device 100 includes the related item registration unit 7 and the related item storage unit 26, and displays the items related to the trend graph 35 without the user selecting each time. Therefore, the reason for the change in the graph data can be associated and grasped without the user specifying an event.
  • FIG. 18 is a block diagram showing the configuration of the monitoring control terminal device 100.
  • the monitoring control terminal device 100 according to the fourth embodiment has a configuration in which a drawing analysis unit 8 and a drawing information registration unit 9 are provided in the monitoring control unit 101 in addition to the configuration of the monitoring control terminal device 100 shown in the first embodiment. It has become.
  • Abnormal cause diagram and control scenario are created as drawings when designing the system. Therefore, these drawings are input to and registered in the monitoring control terminal device 100 by the system designer or the like. However, when the monitoring device to be monitored and controlled is changed due to renewal work or the like, a new drawing is created, so that it is necessary to input and register the drawing.
  • the monitoring and control terminal device 100 includes a drawing analysis unit 8 and a drawing information registration unit 9, and as long as the drawings are input to the monitoring and control terminal device 100, the hands of a system designer or the like are used. It is registered in the monitoring control terminal device 100.
  • the drawing analysis unit 8 analyzes the information of the abnormality cause diagram and the control scenario created as a drawing, and determines whether the information of the drawing is registered in the abnormality cause diagram storage unit 23 or the control scenario storage unit 25.
  • the drawing information registration unit 9 registers the information of the unregistered drawing in the abnormality cause diagram storage unit 23 or the control scenario storage unit 25.
  • the monitoring and control terminal device 100 is also updated by simply causing the drawing analysis unit 8 to read the abnormality cause diagram and the scenario drawing to be updated without the registration work by the system designer or the like.
  • FIG. 19 is a flowchart showing a process related to drawing information registration of the monitoring control terminal device according to the fourth embodiment.
  • the drawing analysis unit 8 analyzes the contents of the read drawing and determines whether or not the drawing is registered (step S0). If it is registered, the processing after step S1 is the same as the flowchart of FIG. 10 shown in the first embodiment, and thus the description thereof will be omitted. If it is not registered, the drawing information registration unit 9 registers the drawing information in the abnormality cause diagram storage unit 23 if the drawing information is an abnormality cause diagram, or in the control scenario storage unit 25 if the drawing information is a control scenario (step S0-1). .. After step S0-1, the process proceeds to step S1 and the same process shown in the first embodiment is performed.
  • the drawing analysis unit 8 and the drawing information registration unit 9 are provided in the monitoring control unit 101, the drawings can be drawn without registration work by the system designer or the like.
  • the information is registered in the abnormality cause diagram storage unit 23 or the control scenario storage unit 25. Further, by registering, the reason for change of the trend graph 35 can be grasped in association with the newly registered scenario and the abnormality cause diagram.
  • FIG. 20 is a block diagram showing the configuration of the monitoring control terminal device 100
  • FIG. 21 is a diagram showing an example of an item table of the category display storage unit 27 of the monitoring control terminal device 100
  • FIG. 22 is a trend graph screen of the monitoring control terminal device 100. It is a figure which shows the example of 102.
  • the monitoring control terminal device 100 according to the fifth embodiment has a configuration displayed by a category legend 43 and a category marker 44 instead of the configuration of the trend graph screen 102 shown in the second embodiment.
  • the monitoring control unit 101 includes a category display storage unit 27 as shown in FIG. 20.
  • the category display storage unit 27 stores the legend corresponding to the category as the category legend 43.
  • FIG. 21 shows a category legend related to the display item “pumping station: state change”.
  • the event / scenario display image generation unit 4 generates image data for displaying the category legend 43 and the category marker 44 assigned on the trend graph 35 corresponding to the category legend 43 on the trend graph screen 102, and is selected.
  • the event 36 and the control scenario 37 classified into the display item 40 corresponding to the category legend 43, or the event 36 and the control scenario 37 corresponding to the selected category marker 44 are displayed in the event information storage unit 24 and the control scenario storage unit 25.
  • the image data acquired from the above and displayed on the trend graph screen 102 is generated.
  • FIG. 22 is an example in which the item “water level 1: measured value” is selected as the selection item as in the second embodiment, and the category legend 43 corresponding to each of the display items 40 is displayed, and the category legend 43 is displayed on the trend graph 35.
  • the category marker 44 corresponding to is displayed in place of the wording of the event 36 and the control scenario 37. Displaying a plurality of events 36 and the control scenario 37 in the same graph area 31 may result in excessive display information and reduce the visibility of the trend graph 35. However, the category legend 43 is defined and the category marker 44 is defined. By displaying with, the visibility of the trend graph 35 is not impaired even when there are many events 36 and control scenarios 37 displayed in the same graph area 31.
  • FIG. 23 shows an example in which the user selects and presses the category legend 43, and the events 36 “water valve 1: fully open” and “water valve 1: fully closed” for the pressed category legend 43 are displayed. ..
  • FIG. 24 shows an example in which the user selects and presses the category marker 44, and the event 36 “water valve 1: fully open” for the pressed category marker 44 is displayed.
  • FIG. 25 is a flowchart showing a process related to the display of the monitoring control terminal device 100 according to the fifth embodiment. Only the processing different from the flowchart of FIG. 13 shown in the second embodiment will be described.
  • the input item receiving unit 2 determines whether the user's selection is an item, a category legend 43, or a category marker 44 (step S00). When the user's selection is an item, the processing after step S1 is the same processing as the flowchart of FIG. 13 shown in the second embodiment, and thus the description thereof will be omitted. However, the event / scenario display image generation unit 4 may be used.
  • Image data for acquiring the event 36 and the control scenario 37 related to the selection item from the category display storage unit 27 and displaying them on the trend graph screen 102 is generated and displayed (steps S4 and S5).
  • the event / scenario display image generation unit 4 displays all of the event 36 and the control scenario 37 related to the pressed display item 40 in the graph area 31 in a pop-up wording ( Step S001).
  • the event / scenario display image generation unit 4 displays the event 36 or the control scenario 37 related to the pressed display item 40 in the graph area 31 in a pop-up wording (step S00). -2).
  • the category display storage unit 27 is provided to store the category legend 43 corresponding to each of the display items 40, instead of the wording of the event 36 and the control scenario 37. Since it is displayed by the category legend 43 and the category marker 44, even if there are many related events 36 and control scenarios 37, the display information does not become excessive, and the graph data, the event 36, and the control scenario 37 are displayed without impairing the visibility of the trend graph. Can be easily grasped by associating. Further, since the user can easily change the display to the wording by selecting and pressing the category legend 43 or the category marker 44, the user can easily grasp the association between the graph data and the event 36 and the control scenario 37. Can be done.
  • the present application also describes various exemplary embodiments and examples, although the various features, embodiments, and functions described in one or more embodiments are those of a particular embodiment. It is not limited to application, but can be applied to embodiments alone or in various combinations. Therefore, innumerable variations not illustrated are envisioned within the scope of the techniques disclosed herein. For example, it is assumed that at least one component is modified, added or omitted, and further, at least one component is extracted and combined with the components of other embodiments.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Automation & Control Theory (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Testing And Monitoring For Control Systems (AREA)
  • Selective Calling Equipment (AREA)

Abstract

La présente invention concerne un appareil de terminal de commande de surveillance (100) qui comprend une unité d'affichage et une unité de commande de surveillance (101). L'unité de commande de surveillance (101) comprend : une unité de stockage de liste d'éléments (21) dans laquelle sont stockés des éléments de données de surveillance et des noms d'installation ; une unité de stockage de données de surveillance (22) dans laquelle sont stockées les données de surveillance ; une unité de stockage de diagramme de cause d'anomalie (23) dans laquelle est stocké un événement anormal (38) et un dispositif de surveillance (103) qui est la cause d'une anomalie ; une unité de stockage d'informations d'événement (24) dans laquelle sont stockés un temps d'horloge et un événement ayant eu lieu dans le dispositif de surveillance (103) ; une unité de stockage de scénario de commande (25) dans laquelle est stocké un scénario de commande (37) impliqué dans la commande du dispositif de surveillance (103) ; une unité de génération d'image candidate d'élément (1) pour provoquer l'affichage d'un élément ; une unité de réception d'élément d'entrée (2) pour rechercher dans l'unité de stockage de liste d'éléments (21) un élément de sélection ; une unité de génération d'image d'affichage de graphique (3) pour provoquer l'affichage graphique de données de surveillance de l'élément de sélection ; une unité de génération d'image d'affichage d'événement/scénario (4) pour provoquer l'affichage d'un événement (36) et du scénario de commande (37) ; une unité de génération d'image d'affichage d'événement anormal (5) pour déterminer l'apparition de l'événement anormal (38) et provoquer l'affichage de l'événement anormal (38) ; et une unité de génération d'image d'affichage graphique (6) appropriée pour provoquer l'affichage de données de surveillance d'un élément associé au dispositif de surveillance (103) impliqué dans l'événement anormal (38).
PCT/JP2019/014620 2019-04-02 2019-04-02 Appareil de terminal de commande de surveillance et procédé d'affichage d'écran WO2020202464A1 (fr)

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JP2019546402A JP6625296B1 (ja) 2019-04-02 2019-04-02 監視制御端末装置および画面表示方法
PCT/JP2019/014620 WO2020202464A1 (fr) 2019-04-02 2019-04-02 Appareil de terminal de commande de surveillance et procédé d'affichage d'écran

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022080104A1 (fr) * 2020-10-14 2022-04-21 住友重機械工業株式会社 Dispositif d'affichage, procédé d'affichage, dispositif de commande et programme informatique
TWI837524B (zh) 2020-10-14 2024-04-01 日商住友重機械工業股份有限公司 運轉支援系統、運轉支援方法及電腦程式

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08152912A (ja) * 1994-11-30 1996-06-11 Toshiba Corp プラント運転支援装置
JP2006178886A (ja) * 2004-12-24 2006-07-06 Toshiba Corp 店舗管理システム

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH08152912A (ja) * 1994-11-30 1996-06-11 Toshiba Corp プラント運転支援装置
JP2006178886A (ja) * 2004-12-24 2006-07-06 Toshiba Corp 店舗管理システム

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022080104A1 (fr) * 2020-10-14 2022-04-21 住友重機械工業株式会社 Dispositif d'affichage, procédé d'affichage, dispositif de commande et programme informatique
TWI837524B (zh) 2020-10-14 2024-04-01 日商住友重機械工業股份有限公司 運轉支援系統、運轉支援方法及電腦程式

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