CN113032206A - Method, device and terminal for displaying data for nuclear power station and storage medium - Google Patents

Method, device and terminal for displaying data for nuclear power station and storage medium Download PDF

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Publication number
CN113032206A
CN113032206A CN202110210350.0A CN202110210350A CN113032206A CN 113032206 A CN113032206 A CN 113032206A CN 202110210350 A CN202110210350 A CN 202110210350A CN 113032206 A CN113032206 A CN 113032206A
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China
Prior art keywords
abnormal data
equipment
data
displayed
manager
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CN202110210350.0A
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CN113032206B (en
Inventor
要云飞
夏根
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China General Nuclear Power Corp
CGN Power Co Ltd
Daya Bay Nuclear Power Operations and Management Co Ltd
Lingdong Nuclear Power Co Ltd
Guangdong Nuclear Power Joint Venture Co Ltd
Lingao Nuclear Power Co Ltd
Original Assignee
China General Nuclear Power Corp
CGN Power Co Ltd
Daya Bay Nuclear Power Operations and Management Co Ltd
Lingdong Nuclear Power Co Ltd
Guangdong Nuclear Power Joint Venture Co Ltd
Lingao Nuclear Power Co Ltd
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Application filed by China General Nuclear Power Corp, CGN Power Co Ltd, Daya Bay Nuclear Power Operations and Management Co Ltd, Lingdong Nuclear Power Co Ltd, Guangdong Nuclear Power Joint Venture Co Ltd, Lingao Nuclear Power Co Ltd filed Critical China General Nuclear Power Corp
Priority to CN202110210350.0A priority Critical patent/CN113032206B/en
Publication of CN113032206A publication Critical patent/CN113032206A/en
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F11/00Error detection; Error correction; Monitoring
    • G06F11/30Monitoring
    • G06F11/32Monitoring with visual or acoustical indication of the functioning of the machine
    • G06F11/324Display of status information
    • G06F11/327Alarm or error message display
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F11/00Error detection; Error correction; Monitoring
    • G06F11/30Monitoring
    • G06F11/3055Monitoring arrangements for monitoring the status of the computing system or of the computing system component, e.g. monitoring if the computing system is on, off, available, not available
    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E30/00Energy generation of nuclear origin

Abstract

The application relates to the technical field of nuclear power plant informatization construction, and discloses a method, a device, a terminal and a storage medium for displaying data of a nuclear power plant. The method comprises the following steps: if the current time meets a page refreshing condition, highlighting the first equipment abnormal data in a preset rendering mode under the condition that the first equipment abnormal data exists and the current time does not reach a target time point, wherein the target time point refers to a time point changed by an equipment manager, the first equipment abnormal data refers to equipment abnormal data which is not displayed, in the process of highlighting the first equipment abnormal data, equipment manager information needing to confirm the first equipment abnormal data is displayed on the current page, and if the confirmation operation of the equipment manager corresponding to the displayed equipment manager information is detected, the highlighting of the first equipment abnormal data is cancelled. The application improves the effectiveness of management.

Description

Method, device and terminal for displaying data for nuclear power station and storage medium
Technical Field
The present application relates to the technical field of nuclear power plant information-based construction, and in particular, to a method, an apparatus, a terminal, and a storage medium for displaying data for a nuclear power plant.
Background
In a nuclear safety management system, when an unavailable event occurs in a device, it is usually required to record device exception data by a device manager (such as a reactor operator), for example, the device exception data is nuclear safety device unavailable event data (or I0 event data). When an unavailable event occurs in a nuclear power generating unit, other equipment management personnel are generally required to know the event, for example, all on-duty personnel are required to know the event, so that corresponding relieving measures can be taken in time.
In the related art, the recorded device abnormality data is usually printed out by a device manager and then signed and confirmed by another device manager. However, since the printed paper plate may have the situations of signature untimely, missed signature, loss, damage and the like, the effectiveness of management is easily reduced.
Disclosure of Invention
The embodiment of the application provides a method, a device, a terminal and a storage medium for displaying data of a nuclear power station, and can solve the problem that the effectiveness of management is reduced due to the fact that a signature needs to be printed in the related art. The technical scheme is as follows:
in a first aspect, a method for displaying data for a nuclear power plant is provided, the method comprising:
if the current time meets a page refreshing condition, highlighting the first equipment abnormal data in a preset rendering mode under the condition that the first equipment abnormal data exists and the current time does not reach a target time point, wherein the target time point is a time point changed by an equipment manager, and the first equipment abnormal data is equipment abnormal data which is not displayed;
in the process of highlighting the abnormal data of the first equipment, displaying equipment manager information needing to confirm the abnormal data of the first equipment on a current page;
and if the confirmation operation of the equipment manager corresponding to the displayed equipment manager information is detected, canceling the highlight display of the abnormal data of the first equipment.
Therefore, the first equipment abnormal data are highlighted automatically, and the highlight of the first equipment abnormal data is cancelled under the condition that the equipment management personnel check and confirm the first equipment abnormal data, so that the equipment management personnel are prevented from overlooking the first equipment abnormal data, and the management effectiveness is improved.
As an example of the present application, the method further comprises:
acquiring device abnormal data in the preset duration which is newly stored in a server from the server every other preset duration;
comparing the acquired equipment abnormal data with historical equipment abnormal data, wherein the historical equipment abnormal data refers to equipment abnormal data which is displayed and confirmed by equipment management personnel;
and when the acquired device abnormal data comprises device abnormal data which is different from the historical device abnormal data, taking the device abnormal data which is different from the historical device abnormal data as the first device abnormal data.
In this manner, the device anomaly data obtained from the server is compared with the historical device anomaly data to determine new device anomaly data, thereby facilitating the highlighting of the device anomaly data if page refresh conditions are met.
As an example of the present application, if the current time meets the page refresh condition, the method further includes:
acquiring second equipment abnormal data from the server under the condition that the current time reaches the target time point, wherein the second equipment abnormal data refers to the equipment abnormal data existing in the server at present;
and highlighting the second device abnormal data in a preset rendering mode.
The target time point may refer to a shift time point. Therefore, if the current time meets the page refreshing condition and the current time reaches the shift switching time point, the abnormal data of the second equipment existing in the current server can be obtained from the server, namely the abnormal data of the equipment existing in the server currently and not removed is obtained, and then the abnormal data of the second equipment is highlighted so that the abnormal data of the second equipment can be conveniently known by the equipment management personnel after the shift switching.
As an example of the present application, the method for canceling the highlight of the first device abnormal data when the confirmation operation of the device manager corresponding to the displayed device manager information is detected includes:
when the card swiping operation is detected, acquiring first equipment manager information corresponding to the card swiping operation;
if the displayed plurality of pieces of equipment manager information comprise the first equipment manager information, determining that the confirmation operation of the equipment manager corresponding to the first equipment manager information is detected;
and if the confirmation operation of the equipment manager corresponding to each piece of equipment manager information in the plurality of pieces of equipment manager information is detected, canceling the highlight display of the first equipment abnormal data.
Therefore, the card swiping information is matched with the displayed equipment management personnel information by detecting the card swiping operation, so that whether the equipment management personnel needing to confirm the abnormal data of the first equipment confirm is confirmed, and the management effectiveness can be ensured. Moreover, compared with the signature confirmation mode, the card swiping operation can improve the convenience of operation.
As an example of the present application, after the detection of the confirmation operation of the device administrator corresponding to the displayed device administrator information, the method further includes:
and storing the first equipment abnormal data as historical equipment abnormal data.
Therefore, repeated display of abnormal data of the same equipment can be avoided subsequently, and the effectiveness of data display is improved.
In a second aspect, there is provided an apparatus for displaying data for a nuclear power plant, the apparatus comprising:
the first display module is used for highlighting the first equipment abnormal data in a preset rendering mode under the condition that the first equipment abnormal data exists and the current time does not reach a target time point if the current time meets a page refreshing condition, wherein the target time point is a time point changed by an equipment manager, and the first equipment abnormal data is equipment abnormal data which is not displayed;
the second display module is used for displaying the information of the equipment management personnel needing to confirm the abnormal data of the first equipment on the current page in the process of highlighting the abnormal data of the first equipment;
and the canceling module is used for canceling the highlight display of the abnormal data of the first equipment if the confirmation operation of the equipment manager corresponding to the displayed equipment manager information is detected.
As an example of the present application, the first display module is further configured to:
acquiring device abnormal data in the preset duration which is newly stored in a server from the server every other preset duration;
comparing the acquired equipment abnormal data with historical equipment abnormal data, wherein the historical equipment abnormal data refers to equipment abnormal data which is displayed and confirmed by equipment management personnel;
and when the acquired device abnormal data comprises device abnormal data which is different from the historical device abnormal data, taking the device abnormal data which is different from the historical device abnormal data as the first device abnormal data.
As an example of the present application, the first display module is further configured to:
if the current time meets a page refreshing condition, acquiring second equipment abnormal data from the server under the condition that the current time reaches the target time point, wherein the second equipment abnormal data refers to equipment abnormal data currently existing in the server;
and highlighting the second device abnormal data in a preset rendering mode.
As an example of the present application, the number of the presented device administrator information is multiple, and the cancellation module is configured to:
when the card swiping operation is detected, acquiring first equipment manager information corresponding to the card swiping operation;
if the displayed plurality of pieces of equipment manager information comprise the first equipment manager information, determining that the confirmation operation of the equipment manager corresponding to the first equipment manager information is detected;
and if the confirmation operation of the equipment manager corresponding to each piece of equipment manager information in the plurality of pieces of equipment manager information is detected, canceling the highlight display of the first equipment abnormal data.
As an example of the present application, the cancellation module is further configured to:
and storing the first equipment abnormal data as historical equipment abnormal data.
In a third aspect, a control terminal is provided, which includes a memory, a processor, and a computer program stored in the memory and executable on the processor, and the processor implements the method for displaying data of a nuclear power plant according to the first aspect when executing the computer program.
In a fourth aspect, a computer-readable storage medium is provided, which has instructions stored thereon, and which when executed by a processor, implement the method for displaying data for a nuclear power plant according to the first aspect.
In a fifth aspect, there is provided a computer program product containing instructions which, when run on a computer, cause the computer to perform the method for displaying data for a nuclear power plant as described in the first aspect above.
It is understood that the beneficial effects of the second aspect to the fifth aspect can be referred to the related description of the first aspect, and are not described herein again.
The technical scheme provided by the embodiment of the application has the following beneficial effects:
if the current time meets the page refreshing condition, when the first device abnormal data which are not displayed exist and the current time does not reach the time point changed by the device management personnel, the first device abnormal data are highlighted in a preset rendering mode, so that the first device abnormal data are more striking in the current page, and the device management personnel can conveniently check the first device abnormal data. In addition, in the highlighting process, the information of the device management personnel is displayed on the current page, so that the device management personnel can be prompted to check and confirm the abnormal data of the first device. When the confirmation operation of the device manager corresponding to the displayed device manager information is detected, it can be described that the displayed device managers all have checked and confirmed the first device abnormal data, and in this case, the highlight display of the first device abnormal data is cancelled. Therefore, the first equipment abnormal data are highlighted automatically, and the highlight of the first equipment abnormal data is cancelled under the condition that the equipment management personnel check and confirm the first equipment abnormal data, so that the equipment management personnel are prevented from overlooking the first equipment abnormal data, and the management effectiveness is improved.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 is a schematic diagram illustrating a system architecture in accordance with an exemplary embodiment;
FIG. 2 is a flow diagram illustrating a method for displaying data for a nuclear power plant in accordance with an exemplary embodiment;
fig. 3 is a schematic diagram of a display interface of an electronic whiteboard according to an exemplary embodiment;
FIG. 4 is a schematic block diagram illustrating an apparatus for displaying data for a nuclear power plant in accordance with an exemplary embodiment;
fig. 5 is a schematic diagram illustrating a structure of a control terminal according to an exemplary embodiment.
Detailed Description
To make the objects, technical solutions and advantages of the present application more clear, embodiments of the present application will be described in further detail below with reference to the accompanying drawings.
It should be understood that reference to "a plurality" in this application means two or more. In the description of the present application, "/" indicates an OR meaning, for example, A/B may indicate A or B; "and/or" herein is merely an association describing an associated object, and means that there may be three relationships, e.g., a and/or B, which may mean: a exists alone, A and B exist simultaneously, and B exists alone. In addition, for the convenience of clearly describing the technical solutions of the present application, the terms "first", "second", and the like are used to distinguish the same items or similar items having substantially the same functions and actions. Those skilled in the art will appreciate that the terms "first," "second," etc. do not denote any order or quantity, nor do the terms "first," "second," etc. denote any order or importance.
Before describing the method for displaying data for a nuclear power plant provided in the embodiment of the present application in detail, a system architecture related to the embodiment of the present application is briefly described.
Referring to fig. 1, fig. 1 is a schematic diagram of a system architecture provided in accordance with an exemplary embodiment. The system architecture mainly comprises an electronic whiteboard 110, a control terminal 120, a server 130 and a user input device 140.
The electronic whiteboard 110 is used to display some important operational information of the equipment in the nuclear power plant, such as to display equipment abnormality data. The number of the electronic whiteboards 110 can be one or more, and can be set according to actual requirements, and fig. 1 only shows two electronic whiteboards 110 by way of example. In one embodiment, the electronic whiteboard 110 may be a liquid crystal display screen, and illustratively, both electronic whiteboards 110 in fig. 1 may be 63-inch liquid crystal display screens.
The control terminal 120 is configured to obtain the device abnormality data from the server 130, and display the obtained device abnormality data on the electronic whiteboard 110. A multi-screen display control card is installed in the control terminal 120 to control the display of the electronic whiteboards 110 through the multi-screen display control card. As an example, the control terminal may include, but is not limited to, a tablet computer, a notebook computer, a desktop computer, and the like.
In one embodiment, the control terminal 120 is connected to a card reader, which can be used for a card-reading operation by a device administrator, so that the control terminal 120 determines whether the device administrator has referred and confirmed the data displayed by the electronic whiteboard 110 by detecting whether the card is being read. In one embodiment, the card scanner may use a key card scanner model SAAT-D331F.
The server 130 is used for storing data related to the system architecture, such as device exception data, device administrator information, and the like. The server 130 may be a single server, or may be a server cluster composed of a plurality of servers. In one embodiment, when the server 130 is a server cluster consisting of a plurality of servers, the server cluster may include, but is not limited to, a log server, a database server, and an information management server. The log server is used for storing an operator log, and the operator log comprises equipment abnormal data. The database server may be used to store data that the control terminal 120 needs to store. The information management server is configured to store device manager information of one or more shifts of device managers (i.e., attendant persons), which may include, but are not limited to, a value manager, a crew manager, an operator, and an alternate person, for example.
The user input device 140 is used for an operator to input an operator log to the server 130. In one embodiment, the operator acquires an input interface based on an IP (Internet Protocol) address and personal authority through the user input device 140, and then inputs an operator log to the server 130 based on the input interface.
As an example, the system software of the present application may adopt a B/S (Browser/Server) structure, a three-layer logical architecture development using a NET platform, a development tool may be Microsoft Visual studio. NET 2010, and the database involved in the system architecture may adopt an ORACLE database.
After the system architecture related to the embodiments of the present application is described, a method for displaying data for a nuclear power plant according to the embodiments of the present application will be described in detail with reference to the accompanying drawings.
Referring to fig. 2, fig. 2 is a flowchart illustrating a method for displaying data for a nuclear power plant according to an exemplary embodiment, which may be implemented by a control terminal in the system architecture shown in fig. 1. The method for displaying data for the nuclear power plant can include but is not limited to the following implementation steps:
step 201: if the current time meets the page refreshing condition, highlighting the first equipment abnormal data in a preset rendering mode under the condition that the first equipment abnormal data exists and the current time does not reach a target time point, wherein the target time point is a time point changed by an equipment manager, and the first equipment abnormal data is equipment abnormal data which is not displayed.
In one embodiment, the target time point is a shift time point. Illustratively, the shift time point may be any one of an early shift time point, a middle shift time point, and a late shift time point.
The preset rendering mode can be set according to actual requirements. For example, the preset rendering mode may be a rendering mode in which the background color is yellow, that is, the first device abnormal data is displayed on the current page and the background color of the first device abnormal data is set to yellow.
The first device abnormal data is new device abnormal data, that is, the first device abnormal data is device abnormal data which is not displayed and has not taken any solution. In one embodiment, the first device exception data is not yet displayed I0 event data, and the I0 event data may include information such as event terms, system or device. In addition, the number of the first device abnormal data may be one or more.
As an example of the present application, when determining whether the current time meets the page refresh condition, if the device abnormal data displayed on the electronic whiteboard before the current time includes highlighted device abnormal data and it is detected that all device managers that need to view and confirm the highlighted device abnormal data have already checked and confirmed at the current time, it is determined that the current time meets the page refresh condition.
For example, assuming that the device abnormality data displayed on the electronic whiteboard includes highlighted I0 event data and needs to be confirmed by the device manager a, the device manager B, and the device manager C, when it is detected that all the device manager a, the device manager B, and the device manager C have confirmed at the current time, it is determined that the current time satisfies the page refresh condition, and the I0 event data is not highlighted.
As another example of the present application, in determining whether the current time satisfies the page refresh condition, if the device abnormality data displayed on the electronic whiteboard before the current time does not include the highlighted device abnormality data, it is determined that the current time satisfies the page refresh condition when it is determined by timing statistics that the reaching time reaches the duration threshold. The duration threshold may be set according to actual requirements, for example, the duration threshold is 1 minute. Illustratively, assuming that the device abnormality data on the electronic whiteboard is not highlighted, when it is determined through timing statistics that the current time has reached one minute, it is determined that the current time satisfies the page refresh condition.
Under the condition that the current time meets the page refreshing condition, if the first device abnormal data exists, the fact that new device abnormal data needing to be displayed exist is indicated, at the moment, whether the current time reaches the target time point is judged, and as an example, whether the current time reaches the target time point can be judged through a JavaScript script. And if the target time point is not reached, highlighting the first equipment abnormal data in a preset rendering mode to display the new equipment abnormal data in a striking mode, and easily understanding the electronic whiteboard at the moment.
For example, if the current time meets the page refresh condition, when there is new I0 event data, if the current time does not reach the shift time point, the new I0 event data is shown on the current page, and the background color of the area showing the new I0 event data is set to yellow, and the display effect is as shown in fig. 3 (the bottom color in fig. 3 represents yellow).
It should be noted that, the above-mentioned highlighting the first device abnormal data by using the yellow background is only an example, in another embodiment, the first device abnormal data may also be highlighted by using another rendering method, for example, the first device abnormal data may also be highlighted by setting another color or another format, and the embodiment of the present application is not limited thereto.
As an example of the present application, the first device anomaly data may be determined by: and acquiring the abnormal data of the equipment within the newly stored preset time length from the server every other preset time length, and comparing the acquired abnormal data of the equipment with the abnormal data of the historical equipment, wherein the abnormal data of the historical equipment refers to the abnormal data of the equipment which is displayed and confirmed by equipment management personnel. And when the acquired device abnormal data comprises device abnormal data different from the historical device abnormal data, taking the device abnormal data different from the historical device abnormal data as first device abnormal data.
The preset duration may be set by a user according to actual needs, or may be set by a default of the control terminal, which is not limited in the embodiment of the present application. For example, the predetermined time period is 1 minute.
The number of historical device anomaly data may be one or more. In one embodiment, the historical device anomaly data is stored in the first storage file corresponding to the first tag, where the first tag is used to indicate that the device anomaly data stored in the first storage file is old device anomaly data, that is, device anomaly data that has been displayed and confirmed, for example, the first tag is old. Illustratively, the first stored file may be a txt text file of the project root directory.
In one embodiment, the control terminal sends a first acquisition request to the server, and the first acquisition request is used for requesting the server to feed back the latest stored abnormal data of the equipment within the preset duration. Illustratively, after receiving the first acquisition request, the server acquires and feeds back a newly stored operator log to the control terminal, wherein the operator log comprises equipment abnormal data. And after receiving the operator log, the control terminal acquires equipment abnormal data from the operator log. The number of pieces of acquired device abnormality data may be one or more. For any abnormal equipment data in the acquired at least one abnormal equipment data, the control terminal matches the abnormal equipment data with the abnormal historical equipment data to judge whether the abnormal historical equipment data identical to the abnormal equipment data exists in the abnormal historical equipment data. If the historical abnormal data of the equipment is the same as the abnormal data of the equipment, the abnormal data of the equipment is determined as the abnormal data of the first equipment, namely the abnormal data of the equipment is determined as the new abnormal data of the equipment.
As an example and not by way of limitation, after determining the first device abnormal data, the first device abnormal data may be stored in a second storage file corresponding to a second tag, where the second tag is used to indicate that the device abnormal data stored in the second storage file is new device abnormal data, and for example, the second tag may be new. Thus, at the moment when the page refresh condition is satisfied, whether the first device abnormal data exists or not can be inquired from the second storage file.
It should be noted that, in one case, the device abnormal data obtained from the server may be the device abnormal data obtained last time, because there may not be new device abnormal data in the preset time period, that is, there may not be newly stored device abnormal data in the server in the preset time period. In this case, after comparing the acquired device abnormality data with the historical device abnormality data, it may be determined that the acquired device abnormality data does not include the first device abnormality data that is the same as the historical device abnormality data, and in this case, the control terminal does not perform the storing operation but performs the acquiring operation again after waiting for the next preset time period. Therefore, the first device abnormal data may not exist in the second storage file, that is, new device abnormal data may not exist.
For example, if the device anomaly data obtained from the server last time is between 3:00 and 3:10, and there is no device anomaly data newly stored in the server between 3:10 and 3:20, the device anomaly data obtained at 3:20 is between 3:00 and 3: 10. At this time, after comparing the currently acquired device abnormal data with the historical device abnormal data, it can be determined that the first device abnormal data does not exist, that is, the new device abnormal data does not exist.
Step 202: in the process of highlighting the abnormal data of the first equipment, equipment management personnel information needing to confirm the abnormal data of the first equipment is displayed on the current page.
In one embodiment, the device manager information that needs to be confirmed for the first device abnormal data includes device manager information of a current shift of operators on duty. The information of the device manager of the current shift may be obtained from the server, for example, an information management interface may be called in a JavaScript script, so as to obtain the information of the device manager of the current shift from the information management server through the information management interface. As an example, if the device management person information of the current shift is not acquired, the control device may call the information management interface every preset time period until the device management person information of the current shift is acquired.
In one embodiment, the current shift of the device manager may be changed, and in this case, the control terminal may acquire the current shift of the device manager information from the server every preset time period in order to ensure the accuracy of the acquired device manager.
In another embodiment, the device manager of the current shift does not change, in which case, the device manager information of the current shift may be acquired at the starting time of the current shift, and the operation of acquiring the device manager information may be performed until the next shift time is reached, so that the control terminal may be prevented from acquiring the device manager information from the server frequently, thereby saving the operation power consumption of the control terminal.
In one embodiment, if the information of the device management staff of the current shift is not acquired after multiple times of acquisition, a prompt message may be displayed on the electronic whiteboard to prompt that there is an event that the information of the device management staff of the current shift is not acquired temporarily. For example, the prompt message may be "temporarily without attendant information for a shift! And no prompt message is displayed until the information of the equipment management personnel is acquired.
As an example, the control terminal may display the information of the device manager of the current shift in a table manner in a preset area of the electronic whiteboard. Therefore, the displayed abnormal data of the first device can be prompted to be checked and confirmed by the device management personnel.
The preset area may be set according to actual requirements, for example, the preset area may be a certain area at a lower left corner of the electronic whiteboard, which is not limited in this embodiment of the application.
Step 203: and if the confirmation operation of the equipment manager corresponding to the displayed equipment manager information is detected, canceling the highlight display of the abnormal data of the first equipment.
In an embodiment, the number of the displayed device manager information is multiple, when the card swiping operation is detected, first device manager information corresponding to the card swiping operation is acquired, if the displayed multiple pieces of device manager information include the first device manager information, it is determined that the confirmation operation of the device manager corresponding to the first device manager information is detected, and if the confirmation operation of the device manager corresponding to each piece of device manager information in the multiple pieces of device manager information is detected, the highlighting of the first device abnormal data is cancelled.
The control terminal can determine whether the equipment manager checks and confirms the abnormal data of the first equipment by detecting the card swiping condition of the equipment manager. For example, the card reader may be connected to the control terminal through a data line, and may be connected to the control terminal through a USB (Universal Serial Bus) interface. And installing a card reader tool and an application program in the control terminal, wherein the card reader tool is used for driving the card reader to run, and the application program is used for reading card reading information. After the card reader tool is installed in the control terminal, a GUID (global Unique Identifier) is generated, and a link is established between the application program and the card reader driver through the GUID. In this way, when the card swiping operation is detected by the card swiping device, the card swiping information (i.e. the first device management personnel information) can be obtained through the application program, and if the card swiping information includes the displayed device management personnel information, the confirmation operation of the displayed device management personnel is determined to be detected. When the card swiping operations of all the displayed device managers are detected, it can be shown that the device managers needing to be confirmed all have checked and confirmed the abnormal data of the first device.
For example, the control terminal displays the information of the device administrator who needs to confirm the abnormal data of the first device in a form of a table, and the information displayed in the table includes, but is not limited to, a post name, a name of a card reader, a card reader number, and a card reading time. And when the card swiping operation is detected, acquiring card swiping information of a card swiping person, matching the card swiping information with equipment management person information needing to confirm the abnormal data of the first equipment, and if the card swiping person is determined to be one of the equipment management persons needing to confirm the abnormal data of the first equipment through matching, determining that the card swiping person has checked and confirms the abnormal data of the first equipment.
Further, when the card swiping operation of the device management personnel needing to confirm the first device abnormal data is detected, the device management personnel information of the device management personnel swiped with the card can be displayed on the corresponding row in the table, for example, the post name, the name of the person swiped with the card, the card number of the person swiped with the card and the card swiping time of the device management personnel swiped with the card are displayed. Therefore, other device managers can conveniently check which device managers already confirm the abnormal data of the first device.
When the equipment management personnel needing to confirm check and confirm the abnormal data of the first equipment, the first equipment abnormal data does not need to be highlighted, so that the highlight of the abnormal data of the first equipment can be cancelled, and the electronic whiteboard restores to normal display. After all the device managers needing to be confirmed check and confirm the abnormal data of the first device, the current page can be refreshed, so that the situation that the current moment meets the page refreshing condition can be determined, at the moment, whether new abnormal data of the device needing to be highlighted exist can be detected again, and the next display is continued according to the mode.
Therefore, the card swiping information is matched with the displayed equipment management personnel information by detecting the card swiping operation, so that whether the equipment management personnel needing to confirm the abnormal data of the first equipment confirm is confirmed, and the management effectiveness can be ensured. Moreover, compared with the signature confirmation mode, the card swiping operation can improve the convenience of operation.
Further, after the highlighting of the first device abnormality data is canceled, the first device abnormality data is stored as history device abnormality data. That is, after the first device abnormal data is confirmed by the device administrator, the first device abnormal data may be set as historical device abnormal data, and may be stored in a first storage file corresponding to the first tag, for example.
As an example of the application, if the current time meets the page refresh condition, when the current time reaches the target time point, acquiring second device abnormal data from the server, where the second device abnormal data is device abnormal data currently existing in the server, and highlighting the second device abnormal data in a preset rendering manner.
The number of the second device abnormal data may be one or more.
The second device exception data may be understood as device exception data that is not currently cleared in the server. In general, after some device managers confirm the device abnormal data, corresponding solutions may be taken, and after the device abnormal event corresponding to a certain device abnormal data is resolved, the device managers end the corresponding device abnormal event through the user input device, for example, delete the device abnormal data from a server (e.g., a log server). Of course, there may be some problems that the device abnormal event is not solved, and accordingly, the corresponding device abnormal data in the server will not be cleared.
As an example, after the second device abnormal data is highlighted in a preset rendering manner, device administrator information that needs to confirm the second device abnormal data may be displayed, and when a confirmation operation of a device administrator corresponding to the displayed device administrator information is detected, the highlight of the second device abnormal data is cancelled.
It should be noted that, in the above description, when the current time meets the page refresh condition, and the current time reaches the target time point, the second device abnormal data is obtained from the server. In another embodiment, as long as the current time reaches the target time point, the control terminal obtains the abnormal data of the second device from the server, that is, whether the current time meets the page refresh condition or not may not be considered.
It should be noted that, if there is no abnormal data of the first device, that is, there is no abnormal data of the new device, the page refresh operation is not executed, that is, the control terminal does not refresh the display of the electronic whiteboard.
In the embodiment of the application, if the current time meets the page refreshing condition, when the first device abnormal data which is not displayed exists and the current time does not reach the time point changed by the device administrator, the first device abnormal data is highlighted in a preset rendering mode, so that the first device abnormal data is more striking in the current page, and the device administrator can conveniently check the first device abnormal data. In addition, in the highlighting process, the information of the device management personnel is displayed on the current page, so that the device management personnel can be prompted to check and confirm the abnormal data of the first device. When the confirmation operation of the device manager corresponding to the displayed device manager information is detected, it can be described that the displayed device managers all have checked and confirmed the first device abnormal data, and in this case, the highlight display of the first device abnormal data is cancelled. Therefore, the first equipment abnormal data are highlighted automatically, and the highlight of the first equipment abnormal data is cancelled under the condition that the equipment management personnel check and confirm the first equipment abnormal data, so that the equipment management personnel are prevented from overlooking the first equipment abnormal data, and the management effectiveness is improved.
In addition, the embodiment of the application can strengthen the management of the device management personnel on the core security I0. Moreover, the technical specification of paper does not need to be printed for signature confirmation, so that the working efficiency is improved, and the cost is saved.
It should be understood that, the sequence numbers of the steps in the foregoing embodiments do not imply an execution sequence, and the execution sequence of each process should be determined by its function and inherent logic, and should not constitute any limitation to the implementation process of the embodiments of the present application.
Fig. 4 is a schematic configuration diagram illustrating an apparatus for displaying data of a nuclear power plant, which may be implemented by software, hardware, or a combination of both, according to an exemplary embodiment. The apparatus for displaying data for a nuclear power plant may include:
a first display module 410, configured to, if a current time meets a page refresh condition, highlight, in a preset rendering manner, first device abnormal data when the first device abnormal data exists and the current time does not reach a target time point, where the target time point is a time point changed by a device administrator, and the first device abnormal data is device abnormal data that is not displayed;
a second display module 420, configured to, in a process of highlighting the first device abnormal data, display, on a current page, device administrator information that needs to confirm the first device abnormal data;
a canceling module 430, configured to cancel highlighting of the first device abnormal data if a confirmation operation of a device administrator corresponding to the displayed device administrator information is detected.
As an example of the present application, the first display module 410 is further configured to:
acquiring device abnormal data in the preset duration which is newly stored in a server from the server every other preset duration;
comparing the acquired equipment abnormal data with historical equipment abnormal data, wherein the historical equipment abnormal data refers to equipment abnormal data which is displayed and confirmed by equipment management personnel;
and when the acquired device abnormal data comprises device abnormal data which is different from the historical device abnormal data, taking the device abnormal data which is different from the historical device abnormal data as the first device abnormal data.
As an example of the present application, the first display module 410 is further configured to:
if the current time meets a page refreshing condition, acquiring second equipment abnormal data from the server under the condition that the current time reaches the target time point, wherein the second equipment abnormal data refers to equipment abnormal data currently existing in the server;
and highlighting the second device abnormal data in a preset rendering mode.
As an example of the present application, the number of the presented device administrator information is multiple, and the cancellation module 430 is configured to:
when the card swiping operation is detected, acquiring first equipment manager information corresponding to the card swiping operation;
if the displayed plurality of pieces of equipment manager information comprise the first equipment manager information, determining that the confirmation operation of the equipment manager corresponding to the first equipment manager information is detected;
and if the confirmation operation of the equipment manager corresponding to each piece of equipment manager information in the plurality of pieces of equipment manager information is detected, canceling the highlight display of the first equipment abnormal data.
As an example of the present application, the cancellation module 430 is further configured to:
and storing the first equipment abnormal data as historical equipment abnormal data.
In the embodiment of the application, if the current time meets the page refreshing condition, when the first device abnormal data which is not displayed exists and the current time does not reach the time point changed by the device administrator, the first device abnormal data is highlighted in a preset rendering mode, so that the first device abnormal data is more striking in the current page, and the device administrator can conveniently check the first device abnormal data. In addition, in the highlighting process, the information of the device management personnel is displayed on the current page, so that the device management personnel can be prompted to check and confirm the abnormal data of the first device. When the confirmation operation of the device manager corresponding to the displayed device manager information is detected, it can be described that the displayed device managers all have checked and confirmed the first device abnormal data, and in this case, the highlight display of the first device abnormal data is cancelled. Therefore, the first equipment abnormal data are highlighted automatically, and the highlight of the first equipment abnormal data is cancelled under the condition that the equipment management personnel check and confirm the first equipment abnormal data, so that the equipment management personnel are prevented from overlooking the first equipment abnormal data, and the management effectiveness is improved.
Fig. 5 is a schematic structural diagram of a control terminal 50 according to an embodiment of the present application, where the control terminal 50 may be the control terminal described above, or may be the in-vehicle device described above. As shown in fig. 5, the control terminal 50 includes: a processor 501, a memory 502, and computer readable instructions (or computer programs) 503 stored in the memory 502 and operable on the processor 501. The processor 501, when executing the computer readable instructions 503, implements the steps in the various method embodiments described above. Alternatively, the processor 501 executes the computer readable instructions 503 to realize the functions of the units in the above embodiments.
Illustratively, the computer readable instructions 503 may be divided into one or more units, which are stored in the memory 502 and executed by the processor 501 to accomplish the present application. The one or more units may be a series of computer readable instruction segments capable of performing specific functions, which are used for describing the execution process of the computer readable instructions 503 in the control terminal 50. For example, the computer readable instructions 503 may be divided into an acquisition unit and a processing unit, each unit having the specific functions as described above.
The control terminal 50 may include, but is not limited to, a processor 501, a memory 502. It will be understood by those skilled in the art that fig. 5 is only an example of the control terminal 50, and does not constitute a limitation to the control terminal 50, and may include more or less components than those shown, or combine some components, or different components, for example, the control terminal 50 may further include an input-output terminal, a network access terminal, a bus, etc.
The Processor 501 may be a Central Processing Unit (CPU), other general purpose Processor, a Digital Signal Processor (DSP), an Application Specific Integrated Circuit (ASIC), an off-the-shelf Programmable Gate Array (FPGA) or other Programmable logic device, discrete Gate or transistor logic, discrete hardware components, etc. A general purpose processor may be a microprocessor or the processor may be any conventional processor or the like.
The memory 502 may be an internal storage unit of the control terminal 50, such as a hard disk or a memory of the control terminal 50. The memory 502 may also be an external storage terminal of the control terminal 50, such as a plug-in hard disk, a Smart Media Card (SMC), a Secure Digital (SD) Card, a Flash memory Card (Flash Card), and the like, which are equipped on the control terminal 50. Further, the memory 502 may also include both an internal storage unit and an external storage terminal of the control terminal 50. The memory 502 is used to store the computer readable instructions and other programs and data required by the terminal. The memory 502 may also be used to temporarily store data that has been output or is to be output.
It should be noted that, for the information interaction, execution process, and other contents between the above-mentioned devices/units, the specific functions and technical effects thereof are based on the same concept as those of the embodiment of the method of the present application, and specific reference may be made to the part of the embodiment of the method, which is not described herein again.
It will be apparent to those skilled in the art that, for convenience and brevity of description, only the above-mentioned division of the functional units and modules is illustrated, and in practical applications, the above-mentioned function distribution may be performed by different functional units and modules according to needs, that is, the internal structure of the apparatus is divided into different functional units or modules to perform all or part of the above-mentioned functions. Each functional unit and module in the embodiments may be integrated in one processing unit, or each unit may exist alone physically, or two or more units are integrated in one unit, and the integrated unit may be implemented in a form of hardware, or in a form of software functional unit. In addition, specific names of the functional units and modules are only for convenience of distinguishing from each other, and are not used for limiting the protection scope of the present application. The specific working processes of the units and modules in the system may refer to the corresponding processes in the foregoing method embodiments, and are not described herein again.
The above-mentioned embodiments are only used for illustrating the technical solutions of the present application, and not for limiting the same; although the present application has been described in detail with reference to the foregoing embodiments, it should be understood by those of ordinary skill in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some technical features may be equivalently replaced; such modifications and substitutions do not substantially depart from the spirit and scope of the embodiments of the present application and are intended to be included within the scope of the present application.

Claims (10)

1. A method of displaying data for a nuclear power plant, the method comprising:
if the current time meets a page refreshing condition, highlighting the first equipment abnormal data in a preset rendering mode under the condition that the first equipment abnormal data exists and the current time does not reach a target time point, wherein the target time point is a time point changed by an equipment manager, and the first equipment abnormal data is equipment abnormal data which is not displayed;
in the process of highlighting the abnormal data of the first equipment, displaying equipment manager information needing to confirm the abnormal data of the first equipment on a current page;
and if the confirmation operation of the equipment manager corresponding to the displayed equipment manager information is detected, canceling the highlight display of the abnormal data of the first equipment.
2. The method of claim 1, wherein the method further comprises:
acquiring device abnormal data in the preset duration which is newly stored in a server from the server every other preset duration;
comparing the acquired equipment abnormal data with historical equipment abnormal data, wherein the historical equipment abnormal data refers to equipment abnormal data which is displayed and confirmed by equipment management personnel;
and when the acquired device abnormal data comprises device abnormal data which is different from the historical device abnormal data, taking the device abnormal data which is different from the historical device abnormal data as the first device abnormal data.
3. The method of claim 1, wherein if the current time meets a page refresh condition, the method further comprises:
acquiring second equipment abnormal data from the server under the condition that the current time reaches the target time point, wherein the second equipment abnormal data refers to the equipment abnormal data existing in the server at present;
and highlighting the second device abnormal data in a preset rendering mode.
4. The method of claim 1, wherein the number of the displayed device manager information is plural, and the canceling the highlighting of the first device abnormal data if the confirmation operation of the device manager corresponding to the displayed device manager information is detected includes:
when the card swiping operation is detected, acquiring first equipment manager information corresponding to the card swiping operation;
if the displayed plurality of pieces of equipment manager information comprise the first equipment manager information, determining that the confirmation operation of the equipment manager corresponding to the first equipment manager information is detected;
and if the confirmation operation of the equipment manager corresponding to each piece of equipment manager information in the plurality of pieces of equipment manager information is detected, canceling the highlight display of the first equipment abnormal data.
5. The method of claim 1, wherein after detecting the confirmation operation of the device administrator corresponding to the displayed device administrator information, further comprising:
and storing the first equipment abnormal data as historical equipment abnormal data.
6. An apparatus for displaying data for a nuclear power plant, the apparatus comprising:
the first display module is used for highlighting the first equipment abnormal data in a preset rendering mode under the condition that the first equipment abnormal data exists and the current time does not reach a target time point if the current time meets a page refreshing condition, wherein the target time point is a time point changed by an equipment manager, and the first equipment abnormal data is equipment abnormal data which is not displayed;
the second display module is used for displaying the information of the equipment management personnel needing to confirm the abnormal data of the first equipment on the current page in the process of highlighting the abnormal data of the first equipment;
and the canceling module is used for canceling the highlight display of the abnormal data of the first equipment if the confirmation operation of the equipment manager corresponding to the displayed equipment manager information is detected.
7. The apparatus of claim 6, wherein the first display module is further to:
acquiring device abnormal data in the preset duration which is newly stored in a server from the server every other preset duration;
comparing the acquired equipment abnormal data with historical equipment abnormal data, wherein the historical equipment abnormal data refers to equipment abnormal data which is displayed and confirmed by equipment management personnel;
and when the acquired device abnormal data comprises device abnormal data which is different from the historical device abnormal data, taking the device abnormal data which is different from the historical device abnormal data as the first device abnormal data.
8. The apparatus of claim 6, wherein the first display module is further to:
if the current time meets a page refreshing condition, acquiring second equipment abnormal data from the server under the condition that the current time reaches the target time point, wherein the second equipment abnormal data refers to equipment abnormal data currently existing in the server;
and highlighting the second device abnormal data in a preset rendering mode.
9. A control terminal comprising a memory, a processor and a computer program stored in the memory and executable on the processor, characterized in that the processor implements the method according to any of claims 1 to 5 when executing the computer program.
10. A computer-readable storage medium having instructions stored thereon, wherein the instructions, when executed by a processor, implement the steps of any of the methods of claims 1-5.
CN202110210350.0A 2021-02-25 2021-02-25 Method, device and terminal for displaying data for nuclear power station and storage medium Active CN113032206B (en)

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