Device cross-referencing system, method and storage medium
By introducing a cross-reference system for equipment in the power system, cross-reference between monitoring systems, visualization software, and drawing software is achieved, solving the problem of low fault location efficiency caused by independent equipment in the existing technology, and improving the operational convenience and fault handling efficiency of the power system.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-13
- Publication Date
- 2026-03-17
AI Technical Summary
In existing power systems, the visualization software and drawing software for monitoring systems, control or protection devices are independent of each other, resulting in low fault location efficiency, wasted time and prone to errors, especially affecting the availability of the power system in unattended or minimally staffed modes.
The system employs a cross-reference system to enable one-way or two-way cross-references between monitoring systems, visualization software, and drawing software. It automatically links relevant pages and signals through query commands, providing comprehensive management of equipment status.
It improves the efficiency and accuracy of equipment status monitoring and fault location, reduces unnecessary querying processes, enhances the system's operational convenience and information integration capabilities, and supports rapid power system recovery.
Smart Images

Figure CN118114331B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the industrial field, and particularly relates to a cross-reference system, method and storage medium for converter station / substation equipment in the field of power systems. Background Technology
[0002] In existing power systems, converter stations / substations use list-based event alarms, typically including event lists, alarm lists, and fault lists. When equipment malfunctions or fails, alarm events appear in these lists. For converter stations / substations using visual software-programmed control or protection devices, operators need to manually open the software, search by keywords to find relevant signals, and if the signal is an external interface signal, they also need to consult the diagrams. This process wastes a lot of time and is prone to errors.
[0003] In existing converter stations / substations, the monitoring systems, visualization software for control or protection devices, and secondary and / or primary drawing software operate independently during querying, lacking a method for establishing connections. When an anomaly or fault occurs, each system must be queried separately to locate the fault, wasting valuable power restoration time and reducing the availability of power system equipment. With the evolution of minimally staffed or unattended operation and maintenance models, monitoring systems need to be more efficient and intuitive in monitoring or handling anomalies or faults in converter stations / substations, providing technical support for rapid power system fault recovery.
[0004] For other industrial sectors, such as transportation, mining, and factories, there is currently a lack of methods for cross-referencing information between monitoring systems, visualization software, and drawing software. Summary of the Invention
[0005] The technical objective of this application is to solve the current technical problem that visualization software and drawing software for monitoring systems, control or protection devices in the industrial field are still independent of each other, and when an anomaly or malfunction occurs, it is necessary to query each system separately to locate the fault.
[0006] To achieve the above technical objectives, this application adopts the following technical solution.
[0007] In a first aspect, embodiments of this application provide a device cross-reference system, which includes at least two of a monitoring system, visualization software, and drawing software;
[0008] At least two of the monitoring system, the visualization software, and the drawing software have one-way or two-way cross-reference functionality;
[0009] The monitoring system is configured to monitor the status information, event information, and / or alarm information of the device.
[0010] The visualization software is configured to implement the monitoring, control, and protection functions of the device in a graphical interface and signal visualization manner;
[0011] The drawing software is configured to display engineering drawings of the device.
[0012] Furthermore, the equipment includes primary and / or secondary equipment in the industrial field, and particularly in the power system field, the equipment includes primary and / or secondary equipment of converter stations or substations.
[0013] Furthermore, the monitoring system includes a graphical display page and / or an event alarm page;
[0014] The graphical display page is configured to display the status information of the device, which includes digital quantity information and / or analog quantity information;
[0015] The event alarm page is configured to display event information and / or alarm information of the monitoring system.
[0016] Furthermore, the signals corresponding to the graphical display page and / or event alarm page of the monitoring system have one-way or two-way cross-referencing functionality; and / or,
[0017] The visualization software's visualization pages and corresponding signals have one-way or two-way cross-referencing capabilities; or / and,
[0018] The drawing software has a one-way or two-way cross-reference function between the drawing pages and the corresponding signals.
[0019] Secondly, embodiments of this application provide a device cross-reference method, applied to a device cross-reference system as provided in any possible implementation of the first aspect, the method comprising:
[0020] The monitoring system receives query commands for target information and, through cross-referencing, links to the visualization software page containing the target information and the corresponding signal; or / and,
[0021] The visualization software receives query commands for target information and, through cross-referencing, links to the corresponding drawing software's drawing page containing the target information and the corresponding signal; or / and,
[0022] The monitoring system receives query commands for the target information and, through cross-referencing, links to the corresponding drawing page in the drawing software where the target information is located and the corresponding signal; or / and,
[0023] The drawing software receives a query command for the target information and, through cross-referencing, links to the visualization software page containing the target information and the corresponding signal; or / and,
[0024] The drawing software receives a query command for the target information and, through cross-referencing, links to the signal corresponding to the graphic display page and / or event alarm page of the monitoring system where the target information is located; and / or,
[0025] The visualization software receives query commands for the target information and, through cross-referencing, links to the signals corresponding to the graphical display page and / or event alarm page of the target information in the monitoring system.
[0026] Furthermore, the target information includes digital quantity information and / or analog quantity information.
[0027] Furthermore, the monitoring system receives query commands for target information and, through cross-referencing, links to the visualization software page containing the target information and the corresponding signals, including:
[0028] In response to the query command, the monitoring system automatically starts the visualization software and sends visualization software link parameter information to the visualization software. The visualization software link parameter information includes the device name, IP address and / or signal index corresponding to the target information in the visualization software.
[0029] The visualization software receives the visualization software link parameter information and queries the corresponding visualization software page and corresponding signal based on the visualization software link parameter information.
[0030] Furthermore, the visualization software receives query commands for target information and, through cross-referencing, links to the corresponding drawing page in the drawing software where the target information is located and the corresponding signal, including:
[0031] In response to a query command, the visualization software automatically launches the drawing software and sends drawing link parameter information to the drawing software. The drawing link parameter information includes the device name and / or signal index corresponding to the target information in the drawing.
[0032] The drawing software receives the drawing link parameter information and queries the corresponding drawing page and corresponding signal based on the drawing link parameter information.
[0033] Furthermore, the monitoring system receives query commands for the target information and, through cross-referencing, links to the corresponding drawing page in the drawing software where the target information is located and the corresponding signal, including:
[0034] In response to a query command, the monitoring system automatically launches the drawing software and sends drawing link parameter information to the drawing software. The drawing link parameter information includes the device name and / or signal index corresponding to the target information in the drawing.
[0035] The drawing software receives the drawing link parameter information and queries the corresponding drawing page and corresponding signal based on the drawing link parameter information.
[0036] Furthermore, the drawing software receives a query command for the target information and, through cross-referencing, links to the visualization software page containing the target information and the corresponding signal, including:
[0037] In response to the query command, the drawing software automatically starts the visualization software and sends visualization software link parameter information to the visualization software. The visualization software link parameter information includes the device name, IP address and / or signal index corresponding to the target information in the visualization software.
[0038] The visualization software receives the visualization software link parameter information and queries the corresponding visualization software page and corresponding signal based on the visualization software link parameter information.
[0039] Furthermore, the drawing software receives a query command for the target information and, through cross-referencing, links to the signal corresponding to the graphic display page and / or event alarm page where the target information is located in the monitoring system, including:
[0040] In response to the query command, the drawing software automatically starts the monitoring system and sends monitoring system link parameter information to the monitoring system. The monitoring system link parameter information includes the device name and / or signal index corresponding to the target information in the monitoring system.
[0041] The monitoring system receives the monitoring system link parameters and queries the graphic display page and / or event alarm page corresponding to the target information based on the monitoring system link parameter information.
[0042] Furthermore, the visualization software receives query commands for the target information and, through cross-referencing, links to signals corresponding to the graphical display page and / or event alarm page where the target information is located in the monitoring system, including:
[0043] In response to a query command, the visualization software automatically starts the monitoring system and sends monitoring system link parameter information to the monitoring system. The monitoring system link parameter information includes the device name and / or signal index corresponding to the target information in the monitoring system.
[0044] The monitoring system receives the monitoring system link parameter information, and queries the signals corresponding to the graphical display page where the target information is located, and / or the event alarm page according to the monitoring system link parameter information.
[0045] Thirdly, an embodiment of the present application provides a computer-readable medium, on which a computer program is stored, and when the computer program is executed by a processor, it can implement the cross-reference method for a converter station or a substation provided by any possible implementation manner of the second aspect.
[0046] The device cross-reference system provided by the embodiment of the present application enables mutual association and cross-reference among the monitoring system, the visualization software, and the drawing software, provides comprehensive and integrated management of the device status, and improves the convenience and efficiency of operation. When an abnormality or a fault occurs, there are cross-reference links among the subsystems, and the system can achieve information integration and linkage, and the processing efficiency and accuracy are significantly improved, enabling users to timely understand the operation status of the device, discover potential problems, and take corresponding measures.
[0047] The device cross-reference method provided by the embodiment of the present application provides comprehensive and integrated management of the device status. When an abnormality or a fault occurs, there are cross-reference links among the subsystems. The query results through the cross-reference links are more accurate and precise, avoiding unnecessary traversal or search, helping to improve the accuracy of data and the effectiveness of information, and can achieve information integration and linkage, and the processing efficiency and accuracy are significantly improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0048] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present application, and those skilled in the art can obtain other drawings without creative efforts based on these drawings.
[0049] Figure 1 is a converter station monitoring system in an embodiment of the present application;
[0050] Figure 2 is an event alarm page of a converter station monitoring system in an embodiment of the present application;
[0051] Figure 3 is a substation monitoring system in an embodiment of the present application;
[0052] Figure 4 is a visualization software for a converter station control or protection device in an embodiment of the present application;
[0053] Figure 5 is a drawing of secondary equipment of a converter station in an embodiment of the present application;
[0054] Figure 6 This application provides a device cross-reference system.
[0055] Figure 7 This is a device cross-reference method provided in the embodiments of this application. Detailed Implementation
[0056] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of them. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0057] The cross-reference system for equipment provided in this application can be applied to the industrial field, and the equipment includes equipment in the industrial field; the equipment in the industrial field includes equipment in the energy industry, equipment in the steel industry, equipment in the machinery industry, etc.; the equipment in the energy industry includes equipment in the coal industry, equipment in the oil and gas industry, and equipment in the power industry, and the equipment in the power industry includes primary equipment and / or secondary equipment in converter stations or substations.
[0058] For ease of description, the equipment cross-referencing system and equipment cross-referencing method provided in the following embodiments are introduced for the application field of converter stations or substations.
[0059] The converter station referred to in this application embodiment, also known as a converter substation, is mainly used to convert power of different frequencies, voltages, or DC / AC (AC / DC) forms to each other, in order to realize cross-regional power transmission, connection of AC and DC systems, and interconnection of independent power grids. Substations are used in power systems to transform voltage and current, receive electrical energy, and distribute electrical energy, such as converting high-voltage power transmitted in the grid into power suitable for distribution to low-voltage users.
[0060] Primary equipment is typically located on the high-voltage side of a power system and is responsible for the transmission and distribution of high-voltage power. Primary equipment includes transmission lines, transformers, circuit breakers, disconnect switches, automatic reclosing devices, power electronic conversion devices, etc.
[0061] Secondary Equipment is a key component in the power system, used to monitor, control, and protect the output of primary equipment, as well as to collect data and communicate for the power system. Secondary equipment mainly includes protection devices, control devices, and measurement devices, etc. By connecting with primary equipment, secondary equipment realizes real-time monitoring and protection of the power grid, ensuring the safe operation of the grid.
[0062] An equipment cross-reference system provided by an embodiment of the present application, the cross-reference system includes at least any two of a monitoring system, visualization software, and drawing software; there is a one-way or two-way cross-reference link between at least two of the monitoring system, visualization software, and drawing software; wherein, the monitoring system is configured to monitor the status information, event information, or / and alarm information of equipment (including primary equipment and secondary equipment of a converter station or a substation); the visualization software is configured to implement the monitoring, control, and protection functions of equipment in a graphical interface and signal visualization manner; the drawing software is configured to display the engineering drawings of primary equipment and secondary equipment of a converter station or a substation.
[0063] The monitoring system can provide more accurate and precise real-time monitoring of equipment status to ensure the safety, stability, and reliability of the system. The visualization software visually realizes the display and visualization of equipment monitoring data, and can implement the monitoring, control, and protection functions of primary equipment and secondary equipment of a converter station or a substation by operating the control or protection device (i.e., secondary equipment) through the visualization software.
[0064] The embodiment of the present application establishes cross-reference links between the three subsystems of the equipment cross-reference system, enabling the monitoring system, visualization software, and drawing software to be interconnected with each other, providing comprehensive and integrated management of equipment status, and improving the convenience and efficiency of operation. When an abnormality or fault occurs, with the cross-reference links between subsystems, the system can integrate and link information, significantly improving the processing efficiency and accuracy, enabling users to timely understand the operation status of equipment, discover potential problems, and take corresponding measures.
[0065] According to some embodiments, the monitoring system includes a Supervisory Control And Data Acquisition (SCADA) system, and the control or protection devices of a converter station or a substation interact with the monitoring system through a Local Area Network (LAN).
[0066] According to some embodiments, visualization software can be deployed in the control center. The control and protection device (i.e., secondary equipment) is configured to make judgments and take actions based on preset protection and control logic to realize the function of controlling and protecting the primary equipment; the visualization software is configured to implement the logic of controlling and / or protecting the primary equipment.
[0067] According to some embodiments, the communication protocol between the protection or control device and the monitoring system may be IEC61850, or / and IEC104, or / and IEC103, or / and DNP3, or / and MODBUS, or / and ICCP, or / and OPC.
[0068] The present application will be further described below with reference to the accompanying drawings and specific embodiments.
[0069] Figure 1 This is a converter station monitoring system in a specific embodiment, including a graphical display page and / or an event alarm page. The graphical display page includes AC field, filter field, station power supply, DC field, sequence control, valve group status, and valve cooling status. Different pages can be accessed by switching the tabs of AC field, filter field, station power supply, DC field, sequence control, valve group status, and valve cooling status. The event alarm page includes event alarms. The valve group status displays AC voltage, DC voltage, DC current, DC power, and valve group operating status.
[0070] According to some embodiments, there is a one-way or two-way cross-referencing function between the signals corresponding to the graphical display page and / or event alarm page of the monitoring system; or / and, there is a one-way or two-way cross-referencing function between the visualization page of the visualization software and its corresponding signals; or / and, there is a one-way or two-way cross-referencing function between the drawing page of the drawing software and its corresponding signals. The status information of the graphical display page and alarm page is represented by different signals, which refer to data or information related to the converter station or substation equipment. This data or information may include equipment status information, event information, alarm information, switch quantities (usually representing the on / off state of the equipment, such as on or off), and analog quantities (usually representing the physical quantity of the equipment, such as temperature, pressure, etc.). The visualization software and drawing software can also represent information through signals and can be linked to relevant visualization pages or drawing pages respectively through signals.
[0071] Figure 2This is an event alarm page for a converter station monitoring system. The event alarm page includes separate pages for event lists, alarm lists, fault lists, system events, historical events, and historical system events. Users can switch between different pages by toggling the tabs for these pages. The event list displays all alarm events. The alarm list shows all alarm events with severity levels of minor, severe, and urgent. The fault list shows all non-reset alarm events with severity levels of minor, severe, and urgent. Events in the lists are time-stamped, distinguishing between host, event level, and alarm group. Fault levels are also differentiated by color: green for minor faults, yellow for severe faults, and red for urgent faults.
[0072] Figure 3 Another specific embodiment is a substation monitoring system, including a graphical display page and / or an event alarm page. Figure 3 The display shows the status of switches and disconnectors, AC voltage, AC current, active power, and reactive power. Alarm events are displayed as indicator lights. When an alarm event is false, the corresponding indicator light is green; when an alarm event is true, the indicator light flashes, displaying red and the original color (green) at regular time intervals.
[0073] Figure 4 This is visualization software for a converter station control or protection device in a specific embodiment, used to control or protect the primary equipment of the converter station. According to some embodiments, the visualization software connects to the control and protection devices via IP addresses and has online variable debugging capabilities. According to some embodiments, the blue numbers in the visualization software's visualization page are cross-reference labels; clicking on a cross-reference label links to other visualization pages for that signal.
[0074] Figure 5 This is a drawing of a single cabinet of the secondary equipment of the converter station in a specific embodiment. The cabinet contains two control devices. The drawing of each control device includes a DC power supply circuit drawing, input / output drawing, and input drawing.
[0075] Figure 6This application provides a cross-reference system for equipment, comprising at least two of a monitoring system, visualization software, and drawing software; the monitoring system, visualization software, and drawing software have one-way or two-way cross-reference links; wherein, the monitoring system is configured to monitor the status information of primary and secondary equipment in a converter station or substation, event information of the monitoring system, and / or alarm information, including system software; the visualization software is configured to operate control or protection devices in a graphical interface and signal visualization manner to realize the monitoring, control, and protection functions of primary and secondary equipment in a converter station or substation, including system software, application software, and program files; the drawing software is configured to provide engineering drawings of primary and secondary equipment in a converter station or substation, including drawing viewing software and drawing files.
[0076] According to some embodiments, the monitoring system includes a graphical display page and / or an event alarm page; the graphical display page includes primary equipment status information and secondary equipment status information, the primary equipment status information includes the voltage, current and power of the primary equipment, and the secondary equipment status information includes the host status of the control and / or protection devices; the event alarm page is a light bar type or a list type alarm page, the light bar type alarm page includes light bars, and the list type alarm page includes an event list, and / or an alarm list, and / or a fault list.
[0077] According to some embodiments, the control and / or protection device is used to control and / or protect the primary equipment of the converter station or substation; the visualization software is used to implement the logical functions of controlling and / or protecting the primary equipment of the converter station or substation; the visualization software includes a visualization page for implementing the logic of controlling and / or protecting the primary equipment of the converter station or substation.
[0078] According to some embodiments, the secondary equipment drawings include secondary cabinet drawings of control and / or protection devices in converter stations or substations; the primary equipment drawings include primary equipment drawings in converter stations or substations.
[0079] According to some embodiments, there is a one-way or two-way cross-referencing function between the visualization page of the visualization software and the corresponding signal.
[0080] Figure 6In the monitoring system, right-clicking on an alarm event in the event alarm page will bring up "Online Debugging" and "Offline Debugging." Selecting "Online Debugging" launches the visualization software and opens the visualization page for the alarm event, automatically connecting to the IP address of the corresponding control or protection device (i.e., secondary equipment). Selecting "Offline Debugging" only launches the visualization software for the control or / or protection device and opens the visualization page for the alarm event. Left-clicking on the signal index (or index number) of the visualization page for the alarm event links to the visualization page for the board interface in the drawing software. Right-clicking on an external interface symbol brings up "Index Drawing." Selecting "Index Drawing" launches the drawing software and opens the board page in the corresponding secondary equipment drawing. If the visualization software was already open before selecting "Online Debugging" or "Offline Debugging," there's no need to launch the control or / or protection device's visualization software again; the visualization page for the alarm event will open directly. If the drawing software was already open before selecting "Index Drawing," there's no need to launch the drawing software again; the board page in the corresponding secondary equipment drawing will open directly.
[0081] Figure 7 This application provides a device cross-referencing method, comprising: (1) a monitoring system receiving a query command for target information, and through cross-referencing, linking to the visualization software page where the target information is located and the corresponding signal in the visualization software; or / and, (2) a visualization software receiving a query command for target information, and through cross-referencing, linking to the drawing page where the target information is located and the corresponding signal in the corresponding drawing software; or / and, (3) a monitoring system receiving a query command for target information, and through cross-referencing, linking to the drawing page where the target information is located and the corresponding signal in the corresponding drawing software; or / and, (4) a drawing software receiving a query command for target information, and through cross-referencing, linking to the drawing page where the target information is located and the corresponding signal in the visualization software; or / and, (5) a drawing software receiving a query command for target information, and through cross-referencing, linking to the graphic display page where the target information is located in the monitoring system and / or the signal corresponding to the event alarm page; or / and, (6) a visualization software receiving a query command for target information, and through cross-referencing, linking to the graphic display page where the target information is located in the monitoring system and / or the signal corresponding to the event alarm page.
[0082] According to some embodiments, the target information includes digital quantity information and / or analog quantity information.
[0083] According to some embodiments, the monitoring system receives a query command for target information and, through cross-referencing, links to the visualization software page where the target information is located and the corresponding signal in the visualization software. This includes: the monitoring system responding to the query command automatically starting the visualization software and sending visualization software link parameter information to the visualization software. The visualization software link parameter information includes the device name, IP address, and / or signal index corresponding to the target information in the visualization software; the visualization software receiving the visualization software link parameter information and querying the corresponding visualization software page and the corresponding signal based on the visualization software link parameter information.
[0084] According to some embodiments, after the visualization software is launched, the IP address of the control and / or protection device is directly connected.
[0085] According to some embodiments, the visualization software has an online debugging function, which displays the current value after directly connecting to the IP address of the control or / and protection device.
[0086] According to some embodiments, the visualization software receives a query command for target information and, through cross-referencing, links to the drawing page where the target information is located and the corresponding signal in the corresponding drawing software. Specifically, the visualization software responds to the query command by automatically launching the drawing software and sending drawing link parameter information to the drawing software. The drawing link parameter information includes the device name and / or signal index (such as the address of a control or protection device, board address, and / or primary device address, etc.) corresponding to the target information in the drawing. The drawing software receives the device drawing link parameter information and queries the corresponding device drawing page and the corresponding signal based on the device drawing link parameter information.
[0087] For example, by clicking the external interface quantity symbol in the visualization software, a link to the device drawing containing the cabinet name, device address, board address, and / or equipment address can be sent, and the drawing software can be launched to open the corresponding page of the drawing and query the corresponding external interface quantity.
[0088] According to some embodiments, the monitoring system receives a query command for target information and, through cross-referencing, links to the drawing page where the target information is located and the corresponding signal in the corresponding drawing software. Specifically, the monitoring system responds to the query command by automatically starting the drawing software and sending drawing link parameter information to the drawing software; the drawing software receives the device drawing link parameter information and queries the corresponding device drawing page and the corresponding signal based on the device drawing link parameter information.
[0089] According to some embodiments, the drawing software receives a query command for target information and, through cross-referencing, links to the drawing page in the visualization software where the target information is located and the corresponding signal. This includes: the drawing software responding to the query command automatically launching the visualization software and sending visualization software link parameter information to the visualization software; the visualization software receiving the visualization software link parameter information and querying the corresponding visualization software page and the corresponding signal based on the visualization software link parameter information.
[0090] According to some embodiments, the drawing software receives a query command for target information and, through cross-referencing, links to the signal corresponding to the graphic display page and / or event alarm page where the target information is located in the monitoring system. Specifically, the drawing software, in response to the query command, automatically starts the monitoring system and sends monitoring system link parameter information to the monitoring system. The monitoring system link parameter information includes the device name and signal index corresponding to the target information in the monitoring system. The monitoring system receives the monitoring system link parameter information and queries the signal corresponding to the graphic display page and / or event alarm page where the target information is located based on the monitoring system link parameter information.
[0091] According to some embodiments, the visualization software receives a query command for target information and, through cross-referencing, links to the signal corresponding to the graphical display page and / or event alarm page where the target information is located in the monitoring system. Specifically, the visualization software responds to the query command by automatically starting the monitoring system and sending monitoring system link parameter information to the monitoring system; the monitoring system receives the monitoring system link parameter information and queries the signal corresponding to the graphical display page and / or event alarm page where the target information is located based on the monitoring system link parameter information.
[0092] In specific embodiments, the device cross-reference system provided in this application can be located on a server or workstation.
[0093] This application also provides a computer-readable medium having a computer program stored thereon, which, when executed by a processor, can implement the converter station or substation cross-reference method provided in the above embodiments.
[0094] It should be noted that the aforementioned functional modules can be fully or partially integrated into a single physical entity, or they can be physically separated. These modules can be implemented entirely in software via processing element calls; they can be fully implemented in hardware; or some modules can be implemented by processing element calls to software, while others are implemented in hardware. Furthermore, these modules can be fully or partially integrated together, or implemented independently. The processing element here can be an integrated circuit with signal processing capabilities. During implementation, some or all steps of the above method, or the aforementioned functional modules, can be completed through integrated logic circuits in the hardware of the processor element or through software instructions.
[0095] In some embodiments, this application also provides a computer device, which may be a server or a terminal, including a processor, a memory, and a communication interface connected to a system bus. The processor provides the control and computing capabilities of the computer device. The memory stores a computer program, which, when executed by the processor, implements a method for handling alarm events at a converter station or substation. The memory includes a computer storage medium and internal memory. The computer storage medium is a non-volatile storage medium that stores an operating system and the computer program. The internal memory provides an environment for the operation of the operating system and the computer program. The communication interface of the computer device is used for wired or wireless communication with external terminals, such as via Wi-Fi or mobile cellular networks.
[0096] In some embodiments, all or part of the processes in the methods described above can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium. When executed, the computer program can include the processes of the embodiments of the methods described above. Any references to memory, databases, or other media used in the embodiments provided in this application can include at least one of non-volatile and volatile memory. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, optical memory, high-density embedded non-volatile memory, resistive random access memory, etc. Volatile memory can include random access memory (RAM) or external cache memory, etc. By way of illustration and not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM), etc.
[0097] The foregoing has provided a detailed description of the cross-reference system, method, and apparatus provided in the embodiments of this application. Specific examples have been used in this application to illustrate the principles and implementation methods of this application. The descriptions of the above embodiments are only for the purpose of helping to understand the technical solutions and core ideas of this application. Those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. These modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A device cross-referencing system, characterized by: The device cross-reference system comprises at least any two of a monitoring system, visualization software, and drawing software; At least two of the monitoring system, the visualization software, and the drawing software have one-way or two-way cross-reference functions; The monitoring system is configured to monitor state information, event information, or / and alarm information of the device; The visualization software is configured to realize monitoring, control, and protection functions of the device in a graphical interface and signal visualization manner; The drawing software is configured to display engineering drawings of the device; The monitoring system automatically starts the visualization software and sends visualization software link parameter information to the visualization software in response to a query command, the visualization software link parameter information comprising a device name, an IP address, or / and a signal index corresponding to target information in the visualization software; the visualization software receives the visualization software link parameter information, queries a corresponding visualization software page and corresponding signals according to the visualization software link parameter information; The visualization software automatically starts the drawing software and sends drawing link parameter information to the drawing software in response to a query command, the drawing link parameter information comprising a device name or / and a signal index corresponding to target information in the drawing; the drawing software receives the drawing link parameter information, queries a corresponding drawing page and corresponding signals according to the drawing link parameter information.
2. The device cross-reference system of claim 1, wherein: The device comprises primary equipment or / and secondary equipment in the industrial field, and the industrial field comprises a power system field, wherein the device comprises primary equipment or / and secondary equipment of a converter station or a substation.
3. The device cross-reference system of claim 1, wherein: The monitoring system comprises a graphical display page or / and an event alarm page; The graphical display page is configured to display state information of the device, and the state information comprises switch quantity information or / and analog quantity information; The event alarm page is configured to display event information or / and alarm information of the monitoring system.
4. The device cross-reference system of claim 1, wherein: There is one-way or two-way cross-reference function between signals corresponding to the graphical display page or / and the event alarm page of the monitoring system; or / and, There is one-way or two-way cross-reference function between visualization pages and corresponding signals of the visualization software; or / and, There is one-way or two-way cross-reference function between drawing pages and corresponding signals of the drawing software.
5. A device cross-reference method applied to the device cross-reference system of any one of claims 1-4, the method comprising: The monitoring system receives a query command for target information, links to a visualization software page and corresponding signals in the visualization software where the target information is located through cross-referencing; wherein the monitoring system automatically starts the visualization software and sends visualization software link parameter information to the visualization software in response to the query command, the visualization software link parameter information including corresponding device names, IP addresses or / and signal indexes of the target information in the visualization software; the visualization software receives the visualization software link parameter information and queries the corresponding visualization software page and corresponding signals according to the visualization software link parameter information; or / and, The visualization software receives a query command for target information, links to a drawing software page and corresponding signals in the drawing software where the target information is located through cross-referencing; wherein the visualization software automatically starts the drawing software and sends drawing link parameter information to the drawing software in response to the query command, the drawing link parameter information including corresponding device names or / and signal indexes of the target information in the drawing; the drawing software receives the drawing link parameter information and queries the corresponding drawing page and corresponding signals according to the drawing link parameter information, or / and, The monitoring system receives a query command for the target information, links to a drawing software page and corresponding signals in the drawing software where the target information is located through cross-referencing; or / and, The drawing software receives a query command for the target information, links to a visualization software page and corresponding signals in the visualization software where the target information is located through cross-referencing; or / and, The drawing software receives a query command for the target information, links to a drawing page and corresponding signals in the monitoring system where the target information is located through cross-referencing; or / and, The visualization software receives a query command for the target information, links to a drawing page and corresponding signals in the monitoring system where the target information is located through cross-referencing.
6. The device cross-referencing method of claim 5, wherein: The target information includes switch quantity information or / and analog quantity information.
7. The device cross-referencing method of claim 5, wherein: The monitoring system receives a query command for the target information, links to a drawing software page and corresponding signals in the drawing software where the target information is located through cross-referencing, including: The monitoring system automatically starts the drawing software and sends drawing link parameter information to the drawing software in response to the query command, the drawing link parameter information including corresponding device names or / and signal indexes of the target information in the drawing; The drawing software receives the drawing link parameter information and queries the corresponding drawing page and corresponding signals according to the drawing link parameter information.
8. The device cross-referencing method of claim 5, wherein: The drawing software receives a query command for the target information, links to the visualization software page where the target information is located and the corresponding signal in the visualization software through cross-referencing, including: The drawing software automatically starts the visualization software in response to the query command and sends the visualization software link parameter information to the visualization software, the visualization software link parameter information including the corresponding device name, IP address or / and signal index of the target information in the visualization software; The visualization software receives the visualization software link parameter information and queries the corresponding visualization software page and the corresponding signal according to the visualization software link parameter information.
9. The device cross-referencing method of claim 5, characterized in that: The drawing software receives a query command for the target information, links to the graphic display page where the target information is located and the corresponding signal in the monitoring system through cross-referencing, including: The drawing software automatically starts the monitoring system in response to the query command and sends the monitoring system link parameter information to the monitoring system, the monitoring system link parameter information including the corresponding device name or / and signal index of the target information in the monitoring system; The monitoring system receives the monitoring system link parameter information and queries the corresponding signal of the graphic display page where the target information is located or / and the event alarm page according to the monitoring system link parameter information.
10. The device cross-referencing method of claim 5, characterized in that: The visualization software receives a query command for the target information, links to the graphic display page where the target information is located and the corresponding signal in the monitoring system through cross-referencing, including: The visualization software automatically starts the monitoring system in response to the query command and sends the monitoring system link parameter information to the monitoring system, the monitoring system link parameter information including the corresponding device name or / and signal index of the target information in the monitoring system; The monitoring system receives the monitoring system link parameter information and queries the corresponding signal of the graphic display page where the target information is located or / and the event alarm page according to the monitoring system link parameter information.
11. A computer readable medium characterized by, A computer program is stored thereon, and the computer program is executed by a processor to implement the device cross-referencing method of any one of claims 5 to 10.