Electric power industry individual soldier emergency drilling method and system
By adopting structured emergency plan generation strategies based on SOP and EXCEL and emergency drill system with handheld terminal/wearable terminal in the power industry, the shortcomings of the existing individual emergency drill methods in the power industry have been solved, and efficient and accurate emergency management and skills improvement have been achieved.
Patent Information
- Application Number
- CN202411982569.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-05-06
AI Technical Summary
The existing individual emergency drill methods in the power industry have high participation rates, complex equipment preparation, high cost and inability to meet the needs of modern power systems for efficient and precise emergency management.
The structured emergency plan generation strategy based on SOP and EXCEL is adopted, and the drill mode and role are determined through handheld terminals and wearable terminals. Emergency drills are deduced based on the score of each instruction, and the drill rules and deduction process are displayed using a visual map.
It improves the speed and accuracy of emergency response, enhances the ability to respond to emergencies, reduces the cost of drills, and improves the practical operation skills and practical combat capabilities of emergency response personnel.
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Figure CN119940709A_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the field of electric power technology, and in particular, to a method and system for single-soldier emergency drills in the electric power industry. Background Art
[0002] In recent years, with the continuous expansion of the scale of power systems and the rapid development of technology, the security challenges faced by power grids have also increased. Natural disasters such as typhoons, floods, and earthquakes occur frequently, which not only cause serious damage to power facilities, but also cause large-scale power outages, causing huge losses to the society and economy.
[0003] In recent years, emergency drills have received more and more attention from power companies. Among them, single-soldier emergency drills have the characteristics of high participation rate and high frequency, involving many people, a large range of activities, and high mobility of personnel. Limited by the drill technology and equipment, most participants use computers and tablets to conduct drills indoors. When preparing for the drill, it is necessary to prepare a corresponding number of equipment according to the number of participants, and it is necessary to temporarily build a drill environment on site, which takes a long time and is costly.
[0004] With the continuous expansion of the scale of power grids and the increasing complexity of the operating environment, this traditional emergency drill method can no longer meet the needs of modern power systems for efficient and accurate emergency management. The rapid development of technologies such as the Internet of Things, big data, and cloud computing has provided new technical means for emergency drills in the power industry. Through these technologies, real-time monitoring and data analysis of power systems can be achieved, improving the speed and accuracy of emergency response. At present, the power industry is gradually moving towards intelligence. As intelligent devices, smart watches and handheld terminals can provide convenient operation interfaces and real-time data processing capabilities, which help to improve the intelligence level of emergency drills in power systems. Summary of the invention
[0005] In view of the defects in the prior art, the purpose of the present invention is to provide a method and system for single-soldier emergency drills in the power industry.
[0006] To achieve the above objective, according to one aspect of the present disclosure, a method for single-soldier emergency drill in the power industry is provided, comprising:
[0007] Configure basic plan information, including scenarios, behaviors, instructions, execution roles, and behavior-related resources;
[0008] Obtain a preset plan template file, wherein the preset plan template file is in EXCEL format;
[0009] Based on the structured emergency plan generation strategy of SOP and EXCEL, the basic information of the plan is configured into the preset plan template file to generate an emergency plan;
[0010] Create and configure emergency drills based on the emergency plan;
[0011] Determining a drill mode and a drill role in a handheld terminal, or in the handheld terminal and the wearable terminal;
[0012] In the handheld terminal, or in the handheld terminal and the wearable terminal, according to the drill mode and the drill role, based on the score of each instruction, the emergency drill is deduced to determine the total score of the emergency drill;
[0013] A visual mind map is used to display the drill rules of the emergency drill and the deduction process of the emergency drill.
[0014] Optionally, the obtaining of a preset plan template file includes:
[0015] Export the latest preset plan template file in EXCEL format from the system.
[0016] Optionally, the method further comprises:
[0017] Importing the prepared emergency plan into the system;
[0018] The data in the emergency plan are stored in a database of the system in a structured form.
[0019] Optionally, creating and configuring an emergency drill according to the emergency plan includes:
[0020] Reusing the basic information of the emergency plan to create the emergency drill;
[0021] The emergency drill is configured with drill rules, scoring rules and a drill process.
[0022] Optionally, the drill mode includes a single-player mode and a multiplayer mode;
[0023] Optionally, the determining of the drill mode and the drill role in the handheld terminal, or in the handheld terminal and the wearable terminal, includes:
[0024] Determining the single-player mode or the multi-player mode on the handheld terminal, or on the handheld terminal and the wearable terminal;
[0025] If the single-player mode is determined on the handheld terminal, one or more characters are determined or a new character is created on the handheld terminal;
[0026] If the single-player mode or the multiplayer mode is determined jointly on the handheld terminal and the wearable terminal, one or more characters are selected or a new character is created on the handheld terminal and one or more characters are selected or a new character is created on the wearable terminal.
[0027] Optionally, in the handheld terminal, or in the handheld terminal and the wearable terminal, according to the drill mode and the drill role, based on the score of each instruction, the emergency drill is deduced to determine the total score of the emergency drill, including:
[0028] Determine the score of each instruction according to the instructions issued by the training role within the preset time in the training mode and the score points corresponding to each instruction;
[0029] If the score of each of the instructions is not less than the preset threshold value corresponding to each of the instructions, the next scenario of the emergency drill is deduced until the emergency drill is completed;
[0030] The total score of the emergency drill is determined based on the score of each instruction in each scenario and the score weight corresponding to each instruction.
[0031] Optionally, the handheld terminal, or the handheld terminal and the wearable terminal, deducing the emergency drill according to the drill mode and the role and based on the instruction score, and determining the total score of the emergency drill further includes:
[0032] If the single-player mode is adopted, the emergency drill is conducted according to the drill role;
[0033] If the multiplayer mode is adopted, the emergency drill is performed according to the drill roles after forming a team.
[0034] Optionally, an application server is deployed inside the handheld terminal.
[0035] Optionally, the deduction process of the emergency drill using the handheld terminal and the wearable terminal includes:
[0036] The commander issues instructions on the interface of the handheld terminal;
[0037] The handheld terminal sends the instruction to the application server;
[0038] The application server saves the received instruction to a message queue;
[0039] The application server pushes the instructions in the message queue to the operation interface of the wearable terminal through the SSE protocol;
[0040] The on-site handling personnel operate the push message on the operation interface of the wearable terminal to check the instruction;
[0041] The on-site disposal personnel carry out on-site disposal according to the instruction and send feedback information on the operation interface of the wearable terminal, wherein the feedback information includes the total score of the emergency drill and the on-site situation;
[0042] The wearable terminal sends the feedback information to the application server;
[0043] The application server saves the received feedback information to the message queue;
[0044] The application server pushes the feedback information in the message queue to the interface of the handheld terminal through the SSE protocol;
[0045] The commander operates the push message on the interface of the handheld terminal to check the feedback information;
[0046] The deduction process of the emergency drill using the handheld terminal includes:
[0047] Selecting a single-player mode on the handheld terminal and selecting all the practice roles;
[0048] Selecting the exercise role for issuing instructions on the interface of the handheld terminal and issuing instructions;
[0049] The handheld terminal sends the instruction to the application server;
[0050] The application server saves the received instruction to a message queue;
[0051] The application server pushes the instructions in the message queue to the interface of the handheld terminal through the SSE protocol;
[0052] Selecting the training role to receive the instruction on the interface of the handheld terminal and operating the push message on the interface of the handheld terminal to check the instruction;
[0053] The application server records the effective instructions issued within a preset time or the random events generated to determine the subsequent scenarios.
[0054] According to a second aspect of the present disclosure, a single-soldier emergency drill system for the electric power industry is provided, comprising:
[0055] A plan information configuration module is used to configure basic plan information, including scenarios, behaviors, instructions, execution roles, and behavior-related resources;
[0056] A plan template file acquisition module is used to acquire a preset plan template file, wherein the preset plan template file is in the form of EXCEL;
[0057] An emergency plan generation module is used to configure the basic information of the plan into the preset plan template file based on the structured emergency plan generation strategy of SOP and EXCEL to generate an emergency plan;
[0058] An emergency drill creation and configuration module, used to create and configure an emergency drill according to the emergency plan;
[0059] A mode and role determination module, used to determine a drill mode and a drill role in a handheld terminal, or in the handheld terminal and the wearable terminal;
[0060] An emergency drill deduction module is used to deduce the emergency drill in the handheld terminal, or the handheld terminal and the wearable terminal, according to the drill mode and the drill role, based on the score of each instruction, and determine the total score of the emergency drill;
[0061] The visualization display module is used to display the drill rules of the emergency drill and the deduction process of the emergency drill by using a visualization map.
[0062] According to a third aspect of the present disclosure, there is provided a power industry emergency drill system, comprising:
[0063] A handheld terminal and a wearable terminal, wherein an application server is deployed in the handheld terminal, and the wearable terminal accesses the application server deployed in the handheld terminal through a local area network;
[0064] The handheld terminal is operated by the commander for plan creation and generation, plan management and browsing, plan-based command decision response execution, and linkage with the wearable terminal;
[0065] The wearable terminal is operated by on-site disposal personnel to prepare for drills, determine drill modes and roles, simulate emergency drills, and receive and provide feedback on information.
[0066] Compared with the prior art, the embodiments of the present disclosure have at least one of the following beneficial effects:
[0067] Through the above technical solution, a structured emergency plan generation strategy based on SOP and EXCEL is adopted to generate an emergency plan, which is convenient for users to edit, simple to operate and easy to implement; based on the emergency plan, an emergency drill is created and configured, and a handheld terminal, or a handheld terminal and a wearable terminal are used to determine the drill mode and the drill role, and a handheld terminal, or a handheld terminal and a wearable terminal are used to deduce the emergency drill based on the score of each instruction according to the drill mode and the drill role. The handheld terminal or the wearable terminal provides real-time data access, efficient communication, rapid decision support and on-site operation guidance for emergency responders in the power industry. Through emergency drills, emergency responders can practice responding to emergencies in a risk-free environment, improve practical operation skills and actual combat capabilities, significantly improve the efficiency and effectiveness of emergency response in the power industry, enhance the ability to respond to emergencies, and ensure the safe operation of the power grid; the deduction process of the emergency drill is controlled based on the instruction scoring method, which effectively improves the practical operation skills of the emergency responders; a visual mind map is also used to display the drill rules and deduction process of the emergency drill, which is convenient for understanding and reviewing the scenes and behaviors triggered during the actual emergency drill as well as the details and instructions of the behaviors.
[0068] The embodiments of the present disclosure use handheld terminals and wearable terminals to achieve data synchronization, ensuring that emergency response personnel can receive the latest information and instructions in a timely manner, reducing emergency response time, and can also conduct emergency drills in a portable manner, enabling emergency response personnel to communicate and query data anytime and anywhere without being restricted by fixed workstations, and make accurate and effective decisions through real-time data analysis and expert system recommendations. BRIEF DESCRIPTION OF THE DRAWINGS
[0069] Other features, objects and advantages of the present disclosure will become more apparent by reading the detailed description of non-limiting embodiments with reference to the following drawings:
[0070] Figure 1 The present invention is a flow chart showing a method for single-soldier emergency drill in the power industry according to an exemplary embodiment.
[0071] Figure 2 The present invention is a flow chart showing another method for single-soldier emergency drill in the power industry according to an exemplary embodiment.
[0072] Figure 3 The present invention is a visualization map of a method for single-soldier emergency drill in the power industry according to an exemplary embodiment.
[0073] Figure 4 The present invention is a flowchart of a simulation method of an emergency drill according to an exemplary embodiment.
[0074] Figure 5It is a schematic diagram of a simulation process of an emergency drill according to an exemplary embodiment.
[0075] Figure 6 It is a block diagram of a single-soldier emergency drill system for the power industry according to an exemplary embodiment.
[0076] Figure 7 It is a schematic diagram of the architecture of another individual emergency drill system for the power industry according to an exemplary embodiment. DETAILED DESCRIPTION
[0077] The present disclosure is described in detail below in conjunction with specific embodiments. The following embodiments will help those skilled in the art to further understand the present disclosure, but are not intended to limit the present disclosure in any form. It should be noted that, for those of ordinary skill in the art, several variations and improvements may be made without departing from the concept of the present disclosure. These all fall within the scope of protection of the present disclosure.
[0078] Figure 1 The present invention is a flow chart showing a method for single-soldier emergency drill in the power industry according to an exemplary embodiment. Figure 2 The present invention is a flow chart showing another method for single-soldier emergency drill in the power industry according to an exemplary embodiment.
[0079] like Figure 1 , Figure 2 As shown, the present disclosure provides a single-soldier emergency drill method in the power industry, including S11 to S17.
[0080] The present disclosure provides a method for single-soldier emergency drill in the power industry, which can be applied to a single-soldier emergency drill system in the power industry constructed by using a handheld terminal, such as a tablet computer, and a wearable terminal, such as a wearable watch. An application server is deployed inside the handheld terminal, and the wearable terminal uses a Web browser or an APP client to access the application server deployed inside the handheld terminal through a local area network.
[0081] S11, configure basic information of the plan.
[0082] The basic information of the plan includes scenarios, behaviors, instructions, execution roles, and behavior-related resources. The basic information of the plan is configured in advance to the power industry individual emergency drill system composed of handheld terminals and wearable terminals.
[0083] S12, obtaining a preset plan template file.
[0084] The preset emergency plan template file is in EXCEL format and is a template file pre-set in the single-soldier emergency drill system of the power industry.
[0085] The preset emergency plan template file is configured with items such as scenarios, behaviors, instructions, and associated resources between execution roles and behaviors that trigger emergency responses.
[0086] S13, based on the structured emergency plan generation strategy of SOP and EXCEL, the basic information of the plan is configured into the preset plan template file to generate the emergency plan.
[0087] The configuration can be done by selecting basic plan information or by directly inputting text.
[0088] The structured emergency plan generation strategy based on SOP and EXCEL can reduce the complexity of users' emergency plan configuration. It can use the user's commonly used office software EXCEL to edit and modify the preset plan template file to integrate the basic plan information into the latest preset plan template file exported from the power industry's individual emergency drill system. Users can configure the basic plan information in a selected manner, arrange and set the preset plan template file, reduce the user's text input workload, and retain information other than the newly added presets to achieve rapid generation of emergency plans.
[0089] S14. Create and configure emergency drills based on the emergency plan.
[0090] S15, determining a drill mode and a drill role in the handheld terminal, or in the handheld terminal and the wearable terminal.
[0091] Among them, the handheld terminal can be operated independently to perform emergency drills, and the wearable terminal needs to be operated simultaneously with the handheld terminal to perform emergency drills.
[0092] S16, in the handheld terminal, or in the handheld terminal and the wearable terminal, according to the drill mode and the drill role, based on the score of each instruction, the emergency drill is performed to determine the total score of the emergency drill.
[0093] Among them, during the emergency drill, users can issue instructions through text input, and after the emergency drill is completed, the power industry individual emergency drill system can score the emergency drill process.
[0094] S17, uses visual mind maps to display the emergency drill rules and emergency drill simulation process.
[0095] Figure 3 The present invention is a visualization map of a method for single-soldier emergency drill in the power industry according to an exemplary embodiment.
[0096] like Figure 3As shown, the visual map is displayed in a tree structure. Each node represents a possible event scenario or activity behavior. The blue-marked nodes and paths indicate the behaviors triggered during the actual emergency drill. Clicking the node allows you to view the details of the behavior corresponding to the node and the instructions issued during the drill.
[0097] Through the above technical solution, a structured emergency plan generation strategy based on SOP and EXCEL is adopted to generate an emergency plan, which is convenient for users to edit, simple to operate and easy to implement; based on the emergency plan, an emergency drill is created and configured, and a handheld terminal, or a handheld terminal and a wearable terminal are used to determine the drill mode and the drill role, and a handheld terminal, or a handheld terminal and a wearable terminal are used to deduce the emergency drill based on the score of each instruction according to the drill mode and the drill role. The handheld terminal or the wearable terminal provides real-time data access, efficient communication, rapid decision support and on-site operation guidance for emergency responders in the power industry. Through emergency drills, emergency responders can practice responding to emergencies in a risk-free environment, improve practical operation skills and actual combat capabilities, significantly improve the efficiency and effectiveness of emergency response in the power industry, enhance the ability to respond to emergencies, and ensure the safe operation of the power grid; the deduction process of the emergency drill is controlled based on the instruction scoring method, which effectively improves the practical operation skills of the emergency responders; a visual mind map is also used to display the drill rules and deduction process of the emergency drill, which is convenient for understanding and reviewing the scenes and behaviors triggered during the actual emergency drill as well as the details and instructions of the behaviors.
[0098] In a possible embodiment, S12, obtaining a preset plan template file, may include:
[0099] Export the latest preset plan template file in EXCEL format from the system.
[0100] Among them, the system represents the individual emergency drill system of the power industry composed of handheld terminals and wearable terminals.
[0101] In a possible embodiment, a method for single-soldier emergency drill in the power industry may also include S18 to S19.
[0102] S18, import the prepared emergency plan into the system.
[0103] Among them, the prepared emergency plan will be imported into the power industry's individual emergency drill system composed of handheld terminals and wearable terminals.
[0104] S19, storing the data in the emergency plan in a structured form in the system database.
[0105] Among them, the power industry's individual emergency drill system reads the data number (selected data) in the emergency plan and information other than the newly added preset plan template file, and stores the associated resources between scenarios, behaviors, instructions, execution roles and behaviors in a structured form in the tables and fields of the database, so as to quickly generate emergency plans.
[0106] The emergency plan stored in the database can visualize the process and information of the emergency plan through the Web.
[0107] Steps S18 to S19 of the present disclosure are performed after step S13, so as to realize rapid generation of emergency plans and store them in a database of a single-soldier emergency drill system for the electric power industry composed of a handheld terminal and a wearable terminal.
[0108] In a possible embodiment, S14, creating and configuring an emergency drill according to the emergency plan, including S21 to S22.
[0109] S21, reuse the basic information of the emergency plan and create an emergency drill.
[0110] Among them, the reused scenarios, behaviors, instructions, execution roles and behavior-related resources in the emergency plan can also include evaluation items, scoring points and the relationship between scenarios and behaviors.
[0111] S22, configure the drill rules, scoring rules and simulation process for the emergency drill.
[0112] By configuring the drill rules, scoring rules and deduction process, the rules, scoring and reference instructions for jumping to other behaviors are configured for each behavior, so as to control the process of emergency drills. At the same time, the evaluation points of each behavior can be classified and counted.
[0113] In a possible embodiment, the training mode includes a single-player mode and a multiplayer mode.
[0114] As an example, the handheld terminal runs the single-player mode alone.
[0115] As another example, the handheld terminal cooperates with one or more wearable terminals to jointly run a single-player mode or a multi-player mode.
[0116] S15, determining a drill mode and a drill role in a handheld terminal, or a handheld terminal and a wearable terminal, may include: S31 to S33.
[0117] S31, determining a single-player mode or a multi-player mode on a handheld terminal, or a handheld terminal and a wearable terminal.
[0118] Among them, the user conducts emergency drills on a handheld terminal alone and selects single-player mode on the handheld terminal; or, the handheld terminal and the wearable terminal are used together to conduct emergency drills, and the user selects single-player mode or multi-player mode on both the handheld terminal and the wearable terminal.
[0119] S32: If the single-player mode is determined on the handheld terminal, one or more roles are determined or a new role is created on the handheld terminal.
[0120] S33, if the single-player mode or the multi-player mode is jointly determined on the handheld terminal and the wearable terminal, one or more characters are selected or a new character is created on the handheld terminal and one or more characters are selected or a new character is created on the wearable terminal.
[0121] During the emergency drill, users can play one or multiple roles and conduct the drill simultaneously.
[0122] Among them, the roles preset on the handheld terminal in the emergency plan include the commander-in-chief and the commander, and the roles preset on the wearable terminal in the emergency plan include on-site disposal personnel. In addition to selecting the preset roles in the emergency plan, you can also freely create new roles. Users can play multiple roles during an emergency drill.
[0123] In a possible embodiment, S16, in a handheld terminal, or a handheld terminal and a wearable terminal, according to the drill mode and the drill role, based on the score of each instruction, an emergency drill is performed to determine the total score of the emergency drill, which may include S41 to S42.
[0124] S41. If single-player mode is used, conduct emergency drills according to the drill roles.
[0125] In single player mode, start the drill directly after selecting the drill character.
[0126] S42, if multiplayer mode is used, conduct emergency drills according to the drill roles after forming a team.
[0127] In multiplayer mode, after selecting the role to practice, you need to form a team before starting the practice.
[0128] In the present disclosure, a scoring method is used to control the deduction of emergency drills.
[0129] In a possible embodiment, S16, in a handheld terminal, or in a handheld terminal and a wearable terminal, according to the drill mode and the drill role, based on the score of each instruction, an emergency drill is performed to determine the total score of the emergency drill, which may include S43 to S45.
[0130] S43, determining a score for each instruction according to the instructions issued by the training character within a preset time in the training mode and the score points corresponding to each instruction.
[0131] Among them, during the emergency drill process, the drill character can issue instructions by inputting text, or select the instructions to be issued in the generated emergency plan. The power industry individual emergency drill system composed of handheld terminals and wearable terminals will score each instruction issued by each drill character within the specified preset time and determine the sub-item score for each instruction.
[0132] S44, if the score of each instruction is not less than the preset threshold value corresponding to each instruction, the next scenario of the emergency drill is deduced until the emergency drill is completed.
[0133] Among them, entering the next scene according to the system score. When the score of each instruction is not less than the preset threshold corresponding to each instruction, it means that the current instruction has achieved the preset drill requirements and can be advanced to the next scene. In this way, emergency drills are performed back and forth to ensure that users are fully trained in each scene of the emergency drill until the end of the emergency drill.
[0134] S45, determining a total score of the emergency drill according to the score of each instruction in each scenario and the score weight corresponding to each instruction.
[0135] After the emergency drill is completed, the score of each instruction item and the total score of the emergency drill can be obtained, and the effectiveness of the emergency drill can be evaluated based on the total score of the emergency drill.
[0136] In the present disclosure, the instructions issued during the drill can be browsed through a visual mind map, which is convenient for review and summary after the drill.
[0137] In a possible embodiment, an application server is deployed inside a handheld terminal, and emergency drills can be performed using the handheld terminal and a wearable terminal.
[0138] Figure 4 The present invention is a flowchart of a simulation method of an emergency drill according to an exemplary embodiment. Figure 5 It is a schematic diagram of a simulation process of an emergency drill according to an exemplary embodiment.
[0139] like Figure 4 , Figure 5 As shown, specifically, the deduction process of the emergency drill using the handheld terminal and the wearable terminal includes steps S101 to S110.
[0140] S101, the commander issues instructions on the interface of the handheld terminal.
[0141] S102, the handheld terminal sends a command to the application server.
[0142] S103, the application server saves the received instruction to a message queue.
[0143] S104, the application server pushes the instructions in the message queue to the operation interface of the wearable terminal through the SSE protocol.
[0144] Among them, the SSE protocol is represented by the Server-Sent Events protocol.
[0145] S105, the on-site handling personnel operate the push message viewing instruction on the operation interface of the wearable terminal.
[0146] S106: On-site handling personnel perform on-site handling according to the instructions and send feedback information on the operation interface of the wearable terminal.
[0147] Among them, the feedback information includes the overall score of the emergency drill and the on-site situation.
[0148] S107, the wearable terminal sends feedback information to the application server.
[0149] S108, the application server saves the received feedback information to a message queue.
[0150] S109, the application server pushes the feedback information in the message queue to the interface of the handheld terminal through the SSE protocol.
[0151] Among them, the SSE protocol is represented by the Server-Sent Events protocol.
[0152] S110, the commander operates the push message on the interface of the handheld terminal to check the feedback information.
[0153] like Figure 5 As shown, between steps S103 and S104, the deduction process of the emergency drill using the handheld terminal and the wearable terminal may also include S201 and S202.
[0154] S201, the application server returns the sending result to the interface of the handheld terminal.
[0155] S202, the commander operates the interface of the handheld terminal to receive the push result.
[0156] like Figure 5 As shown, between steps S105 and S106, the deduction process of the emergency drill using the handheld terminal and the wearable terminal may also include S203.
[0157] S203, the operation interface of the wearable terminal returns the push result to the application server.
[0158] like Figure 5 As shown, between steps S108 and S109, the deduction process of the emergency drill using the handheld terminal and the wearable terminal may also include S204 to S205.
[0159] S204: The application server returns a push result to the operation interface of the wearable terminal.
[0160] S205: On-site handling personnel operate the operation interface of the wearable terminal to receive the push result.
[0161] like Figure 5 As shown, between steps 109 to S110, the deduction process of the emergency drill using the handheld terminal and the wearable terminal may further include S206.
[0162] S206, the interface of the handheld terminal returns the push result to the application server.
[0163] In the present disclosure, after determining the drill mode and drill role, users can use handheld terminals and wearable terminals to deduce emergency drills based on the above steps S111 to S110 and steps S201 to S206. After each instruction is sent, the system scores each instruction until the emergency drill is completed and the total score of the emergency drill is determined.
[0164] By using handheld terminals and wearable terminals, data synchronization is achieved to ensure that emergency response personnel can receive the latest information and instructions in a timely manner, reducing emergency response time. In addition, emergency drills can be carried out in a portable manner, enabling emergency response personnel to communicate and query data anytime and anywhere without being restricted by fixed workstations. Accurate and effective decisions can be made through real-time data analysis and expert system recommendations.
[0165] In another possible embodiment, the simulation process of the emergency drill using the handheld terminal includes S301 to S307.
[0166] In the present disclosure, the simulation process of the emergency drill using only a handheld terminal can only adopt a single-player mode.
[0167] S301, selecting a single-player mode on the handheld terminal, and selecting all the training roles.
[0168] Among them, the user selects the single-player mode on the handheld terminal and can play multiple rehearsal roles by himself.
[0169] S302, selecting the training role for issuing instructions on the interface of the handheld terminal and issuing instructions.
[0170] S303: The handheld terminal sends the instruction to the application server.
[0171] S304: The application server saves the received instruction to a message queue.
[0172] S305, the application server pushes the instructions in the message queue to the interface of the handheld terminal through the SSE protocol.
[0173] S306, selecting the training role that receives the instruction on the interface of the handheld terminal and operating the push message on the interface of the handheld terminal to check the instruction.
[0174] S307, the application server records the valid instructions issued within a preset time or the random events generated to determine the subsequent scenarios.
[0175] In the present disclosure, users can perform emergency drills in single-player mode using only a handheld terminal, and the server can perform emergency drills based on valid instructions issued within a preset time or random events generated to determine subsequent scenarios.
[0176] Figure 6 It is a block diagram of a single-soldier emergency drill system for the power industry according to an exemplary embodiment.
[0177] Based on the same concept, Figure 5 As shown, the present disclosure also provides a single-soldier emergency drill system for the power industry, including: a plan information configuration module 110, a plan template file acquisition module 120, an emergency plan generation module 130, an emergency drill creation configuration module 140, a mode and role determination module 150, an emergency drill simulation module 160, and a visualization display module 170.
[0178] The emergency plan information configuration module 110 is used to configure the basic information of the emergency plan, and the basic information of the emergency plan includes event scenarios, behaviors, instructions, execution roles and behavior-related resources;
[0179] The plan template file acquisition module 120 is used to acquire a preset plan template file, wherein the preset plan template file is in the form of EXCEL;
[0180] The emergency plan generation module 130 is used to configure the basic information of the plan into the preset plan template file based on the structured emergency plan generation strategy of SOP and EXCEL to generate an emergency plan;
[0181] An emergency drill creation and configuration module 140 is used to create and configure an emergency drill according to the emergency plan;
[0182] A mode and role determination module 150, configured to determine a drill mode and a drill role in a handheld terminal, or in the handheld terminal and the wearable terminal;
[0183] The emergency drill deduction module 160 is used to deduce the emergency drill in the handheld terminal, or the handheld terminal and the wearable terminal, according to the drill mode and the drill role, based on the score of each instruction, and determine the total score of the emergency drill;
[0184] The visualization display module 170 is used to display the drill rules of the emergency drill and the deduction process of the emergency drill by using a visualization map.
[0185] Through the above technical solution, a structured emergency plan generation strategy based on SOP and EXCEL is adopted to generate an emergency plan, which is convenient for users to edit, simple to operate and easy to implement; based on the emergency plan, an emergency drill is created and configured, and a handheld terminal, or a handheld terminal and a wearable terminal are used to determine the drill mode and the drill role, and a handheld terminal, or a handheld terminal and a wearable terminal are used to deduce the emergency drill based on the score of each instruction according to the drill mode and the drill role. The handheld terminal or the wearable terminal provides real-time data access, efficient communication, rapid decision support and on-site operation guidance for emergency responders in the power industry. Through emergency drills, emergency responders can practice responding to emergencies in a risk-free environment, improve practical operation skills and actual combat capabilities, significantly improve the efficiency and effectiveness of emergency response in the power industry, enhance the ability to respond to emergencies, and ensure the safe operation of the power grid; the deduction process of the emergency drill is controlled based on the instruction scoring method, which effectively improves the practical operation skills of the emergency responders; a visual mind map is also used to display the drill rules and deduction process of the emergency drill, which is convenient for understanding and reviewing the scenes and behaviors triggered during the actual emergency drill as well as the details and instructions of the behaviors.
[0186] Regarding the embodiment of the above system, the specific manner in which each module performs operations has been described in detail in the embodiment of the method, and will not be elaborated here.
[0187] Figure 7 It is a schematic diagram of the architecture of another individual emergency drill system for the power industry according to an exemplary embodiment.
[0188] Based on the same concept, in a possible embodiment, the present disclosure also provides another single-soldier emergency drill system 1000 for the electric power industry, including: a handheld terminal 1100 and a wearable terminal 1200, wherein an application server is deployed in the handheld terminal 1100, and the wearable terminal 1200 accesses the application server deployed inside the handheld terminal through a local area network.
[0189] The handheld terminal 1100 is operated by the commander for plan creation and generation, plan management and browsing, plan-based command decision response execution, and linkage with the wearable terminal 1200.
[0190] Plan creation and generation, including: emergency response level, emergency command center configuration, scenario and behavior configuration, resource configuration, and configuration of instructions and measures matching the behavior.
[0191] Plan role configuration configures the visible menus and available operations for the roles involved in the plan.
[0192] The emergency command center is configured for the plan, and users, roles and permissions are automatically associated after the emergency plan is generated.
[0193] The scene configuration is the event / scenario description, pictures, videos involved in the plan, and the triggering sequence between multiple scenes.
[0194] Resource configuration refers to the resource configuration name, category, and quantity information involved in the plan.
[0195] The behavior configuration is the name and description of the behavior that needs to be executed in the scene, as well as the execution order between multiple behaviors.
[0196] The instruction configuration of the plan includes the instruction configuration name, description, implementing unit, notification object, measures and attachment information involved in the behavior in the plan.
[0197] The emergency plan is quickly generated by using a structured emergency plan generation strategy based on SOP and EXCEL.
[0198] Plan management and browsing, including: creating plan types, managing plan templates, and browsing and displaying plans in the form of plan behavior node flow charts.
[0199] The command decision response execution based on the plan includes: the commander starts the plan in the plan list, and the started plan is visible in the "Plan Execution" page; then the organizational structure of the plan is viewed on the "Plan Execution" page, and the plan execution flow chart and scenario diagram are browsed; finally, from the "Plan Execution" page, different roles enter different execution pages, which are mainly divided into commander page, chief commander page, and on-site disposal personnel page.
[0200] Among them, the commander / commander is responsible for submitting emergency command decision-making instructions, and has the authority to select or create instructions, and view instructions, attachments and resources. The commander is responsible for advancing the plan process, and has the authority to decide whether to complete, jump or skip a single node in the plan process. The on-site disposal personnel are responsible for the execution of the instructions, and carry out on-site disposal according to the plan in the instructions. After the disposal, they report the disposal details and disposal results, and can upload on-site pictures as needed.
[0201] The wearable terminal 1200 is operated by on-site personnel to prepare for drills, determine drill modes and roles, simulate emergency drills, and receive and provide feedback.
[0202] Drill preparation includes: selecting a drill camp or a plan drill. When selecting a drill camp, if the current user has a round in progress, the drill record is directly loaded and the drill homepage is entered; if the user does not have a round in progress, a new round of drill is created.
[0203] Determine the drill mode and role, including: using the default drill mode or selecting one of the drill modes, then inviting a team, creating / joining a team, and selecting a role.
[0204] Conduct emergency drills, including reviewing the drill process and scenario information, issuing instructions, drill operations, and drill evaluation.
[0205] Information reception and feedback include but are not limited to receiving notifications, feedback of on-site information, and review of emergency response and rescue related documents.
[0206] As an example, the handheld terminal 1100 can be a handheld tablet computer, and the wearable terminal 1200 can be a wearable smart watch. The handheld tablet computer and the wearable smart watch are interconnected through a mobile network. The wearable smart watch uses a web browser or an installed APP client to access the application server deployed on the handheld tablet computer through the mobile network.
[0207] Among them, the mobile Internet can adopt the 4G / 5G networks of China Mobile, Liandong and Telecom.
[0208] Information exchange is carried out by the commander / commander operating a tablet computer and on-site disposal personnel operating a wearable smart watch.
[0209] The above describes the specific embodiments of the present disclosure. It should be understood that the present disclosure is not limited to the above specific embodiments, and those skilled in the art can make various deformations or modifications within the scope of the claims, which does not affect the essence of the present disclosure. The above preferred features can be used in any combination without conflicting with each other.
Claims
1. A method for single-soldier emergency drill in the power industry, characterized in that: include: Configure basic plan information, including scenarios, behaviors, instructions, execution roles, and behavior-related resources; Obtain a preset plan template file, wherein the preset plan template file is in EXCEL format; Based on the structured emergency plan generation strategy of SOP and EXCEL, the basic information of the plan is configured into the preset plan template file to generate an emergency plan; Create and configure emergency drills based on the emergency plan; Determining a drill mode and a drill role in a handheld terminal, or in the handheld terminal and the wearable terminal; In the handheld terminal, or in the handheld terminal and the wearable terminal, according to the drill mode and the drill role, based on the score of each instruction, the emergency drill is deduced to determine the total score of the emergency drill; A visual mind map is used to display the drill rules of the emergency drill and the deduction process of the emergency drill.
2. The method according to claim 1, characterized in that The step of obtaining a preset plan template file includes: Export the latest preset plan template file in EXCEL format from the system.
3. The method according to claim 2, characterized in that The method further comprises: Importing the prepared emergency plan into the system; The data in the emergency plan are stored in a database of the system in a structured form.
4. The method according to claim 1, characterized in that: The step of creating and configuring an emergency drill according to the emergency plan includes: Reusing the basic information of the emergency plan to create the emergency drill; The emergency drill is configured with drill rules, scoring rules and a drill process.
5. The method according to claim 1, characterized in that The drill mode includes a single-player mode and a multiplayer mode; The determining of the drill mode and the drill role in the handheld terminal, or in the handheld terminal and the wearable terminal, includes: Determining the single-player mode or the multi-player mode on the handheld terminal, or on the handheld terminal and the wearable terminal; If the single-player mode is determined on the handheld terminal, one or more characters are determined or a new character is created on the handheld terminal; If the single-player mode or the multiplayer mode is determined jointly on the handheld terminal and the wearable terminal, one or more characters are selected or a new character is created on the handheld terminal and one or more characters are selected or a new character is created on the wearable terminal.
6. The method according to claim 5, characterized in that The step of performing the emergency drill in the handheld terminal, or in the handheld terminal and the wearable terminal, according to the drill mode and the drill role and based on the score of each instruction, and determining the total score of the emergency drill includes: Determine the score of each instruction according to the instructions issued by the training role within the preset time in the training mode and the score points corresponding to each instruction; If the score of each of the instructions is not less than the preset threshold value corresponding to each of the instructions, the next scenario of the emergency drill is deduced until the emergency drill is completed; The total score of the emergency drill is determined based on the score of each instruction in each scenario and the score weight corresponding to each instruction.
7. The method according to claim 6, characterized in that The method of performing the emergency drill in the handheld terminal, or in the handheld terminal and the wearable terminal, according to the drill mode and the role and based on the instruction score, and determining the total score of the emergency drill further includes: If the single-player mode is adopted, the emergency drill is conducted according to the drill role; If the multiplayer mode is adopted, the emergency drill is performed according to the drill roles after forming a team.
8. The method according to claim 1, characterized in that An application server is deployed inside the handheld terminal; The deduction process of the emergency drill using the handheld terminal and the wearable terminal includes: The commander issues instructions on the interface of the handheld terminal; The handheld terminal sends the instruction to the application server; The application server saves the received instruction to a message queue; The application server pushes the instructions in the message queue to the operation interface of the wearable terminal through the SSE protocol; The on-site handling personnel operate the push message on the operation interface of the wearable terminal to check the instruction; The on-site disposal personnel carry out on-site disposal according to the instruction and send feedback information on the operation interface of the wearable terminal, wherein the feedback information includes the total score of the emergency drill and the on-site situation; The wearable terminal sends the feedback information to the application server; The application server saves the received feedback information to the message queue; The application server pushes the feedback information in the message queue to the interface of the handheld terminal through the SSE protocol; The commander operates the push message on the interface of the handheld terminal to check the feedback information; The deduction process of the emergency drill using the handheld terminal includes: Selecting a single-player mode on the handheld terminal and selecting all the practice roles; Selecting the exercise role for issuing instructions on the interface of the handheld terminal and issuing instructions; The handheld terminal sends the instruction to the application server; The application server saves the received instruction to a message queue; The application server pushes the instructions in the message queue to the interface of the handheld terminal through the SSE protocol; Selecting the training role to receive the instruction on the interface of the handheld terminal and operating the push message on the interface of the handheld terminal to check the instruction; The application server records the effective instructions issued within a preset time or the random events generated to determine the subsequent scenarios.
9. A single-soldier emergency drill system for the power industry, characterized in that: include: A plan information configuration module is used to configure basic plan information, including scenarios, behaviors, instructions, execution roles, and behavior-related resources; A plan template file acquisition module is used to acquire a preset plan template file, wherein the preset plan template file is in the form of EXCEL; An emergency plan generation module is used to configure the basic information of the plan into the preset plan template file based on the structured emergency plan generation strategy of SOP and EXCEL to generate an emergency plan; An emergency drill creation and configuration module, used to create and configure an emergency drill according to the emergency plan; A mode and role determination module, used to determine a drill mode and a drill role in a handheld terminal, or in the handheld terminal and the wearable terminal; An emergency drill deduction module is used to deduce the emergency drill in the handheld terminal, or the handheld terminal and the wearable terminal, according to the drill mode and the drill role, based on the score of each instruction, and determine the total score of the emergency drill; The visualization display module is used to display the drill rules of the emergency drill and the deduction process of the emergency drill by using a visualization map.
10. A single-soldier emergency drill system for the power industry, characterized in that: It comprises a handheld terminal and a wearable terminal, wherein an application server is deployed in the handheld terminal, and the wearable terminal accesses the application server deployed in the handheld terminal through a local area network; The handheld terminal is operated by the commander for plan creation and generation, plan management and browsing, plan-based command decision response execution, and linkage with the wearable terminal; The wearable terminal is operated by on-site disposal personnel to prepare for drills, determine drill modes and roles, simulate emergency drills, and receive and provide feedback on information.
Citation Information
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