Fire-fighting equipment inspection system

By designing a fire protection facility inspection system, the problem of insufficient standardization in the inspection system was solved, the accuracy of equipment data and the standardization of inspection plans were achieved, the reliability and management efficiency of inspections were improved, and the safety of fire protection facilities was ensured.

CN121884475APending Publication Date: 2026-04-17JILIN TOBACCO IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
JILIN TOBACCO IND CO LTD
Filing Date
2026-02-14
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The existing fire protection facility inspection system is not standardized enough, and the inspection data is inaccurate, which can easily lead to oversights and affect fire safety.

Method used

A fire protection facility inspection system was designed, including a system login module, an equipment management module, an area management module, an inspection plan module, an inspection task module, an inspection statistics module, and a system management module. These modules enable data interaction and management, ensuring the accuracy and traceability of equipment data, formulating standardized inspection plans, allocating operating permissions, and providing precise inspection area division and task assignment.

Benefits of technology

It improved the standardization and reliability of inspections, reduced inspection oversights, enhanced fire safety, and improved the efficiency and accuracy of equipment management and data.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a fire-fighting equipment inspection system, relates to the technical field of fire-fighting safety, and aims to improve the input efficiency and reliability of equipment data by setting an equipment management module to store and manage basic information of fire-fighting equipment to which the equipment management module belongs, ensure the clearness and traceability of an equipment ledger, and avoid mistakes, omissions and untimely updating of a traditional manual ledger. Identity verification and operation authority distribution are carried out through the system login module, operation authorities in different ranges are provided for different users, the operation range is defined, normalization and standardization of inspection operation are improved, full-life-cycle management of an inspection area is achieved through the area management module, area division is carried out according to functions, floors, parks and the like, and the inspection efficiency is improved. The system provides an accurate basis for equipment classification and task allocation, adapts to inspection requirements of scenes of different scales, finally formulates a standardized inspection plan through the inspection plan module, defines an inspection range and a person in charge, realizes data interaction of different modules through the system management module, and improves the management efficiency.
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Description

Technical Field

[0001] This invention relates to the field of fire safety technology, and in particular to a fire protection facility inspection system. Background Technology

[0002] With the rapid development of society and economy, fire protection has become increasingly important in social security, which in turn has placed higher demands on fire prevention and firefighting work.

[0003] The role of fire protection facilities in fires becomes even more prominent. Numerous case studies illustrate that the severe consequences of major fires are caused by the inability of fire protection facilities to function properly. From this perspective, the characteristics of urban fire protection are also gradually changing. The increasingly complex and massive modern urban systems require more advanced and intelligent fire protection facilities and systems to support and ensure a higher level of safety.

[0004] However, the existing inspection system still has the following technical problems when in use:

[0005] The existing inspection system lacks standardization during inspections and the data obtained is not accurate enough, which can easily lead to oversights in the inspection of fire protection facilities and affect their safety.

[0006] Therefore, a fire protection facility inspection system is proposed to address the aforementioned problems. Summary of the Invention

[0007] The purpose of this invention is to provide a fire protection facility inspection system that obtains standardized inspection data, improves the reliability of the inspection system, reduces inspection omissions, and enhances fire safety.

[0008] To address the aforementioned technical problems, this invention provides a fire protection facility inspection system, comprising a system login module, an equipment management module, a region management module, an inspection plan module, an inspection task module, an inspection statistics module, and a system management module. The system login module is used for user login, verification of user identity, and allocation of operation permissions. The equipment management module stores and manages basic information of the assigned fire protection equipment. The region management module divides all inspection areas into multiple regions, each region including region information and information about the fire protection equipment within that region. The inspection plan module is used to develop standardized inspection plans. The inspection task module acquires and controls the entire process data during the execution of the inspection task. The inspection statistics module analyzes the inspection data generated by the inspection task module and generates and outputs inspection reports. The system management module is connected to the system login module, the equipment management module, the inspection plan module, the inspection task module, and the inspection statistics module to enable data interaction.

[0009] The equipment management module includes an equipment list unit, an equipment information import unit, an equipment information export unit, an equipment information printing unit, and an equipment binding unit. The equipment list unit is used for adding, editing, and deleting equipment. The equipment information import unit is used for importing equipment data. The equipment information export unit is used for exporting the equipment data to a specified format. The equipment information printing unit is used for printing labels and ledgers for the fire protection equipment. The equipment binding unit is used for binding unbound fire protection equipment after quick filtering based on conditions.

[0010] The system also includes a permission management module connected to the system login module. The permission management module includes a permission storage unit, a role management unit, and a permission modification unit. The permission storage unit is used to store the operation permissions of different users. The role management unit is used to set operation permissions according to user roles. The permission modification unit is used by the administrator to modify or set the permissions of users entering the system management module and to modify the role permission level according to changes in the user's responsibilities.

[0011] The system also includes a region list unit, a new region unit, an edit region unit, and a delete region unit set in the region management module. The region list unit is used to store and display all inspectable regions of the region management module. The new region unit is used to add region information outside the existing management regions to the region list unit to become regions that can be inspected. The delete region unit is used to delete at least one non-inspectable region in the region list unit. The edit region unit is used to edit the region information of the inspectable regions managed by the region list. The region information includes region unit and region field.

[0012] The system also includes a planning unit, an inspection plan editing unit, an inspection plan deletion unit, and an inspection plan timing unit, all located within the inspection plan module. The planning unit is used to determine the inspection targets and formulate inspection plans based on the inspection targets. The inspection plan editing unit is used to edit the inspection operators and their inspection paths based on the inspection targets in the inspection plan. The inspection plan deletion unit is used to review the inspection plan specified by the planning unit and delete it if it is determined to be an unexecutable inspection plan or a completed inspection plan. The inspection plan timing unit is used to set the start time and execution time for each stage of the inspection plan.

[0013] It also includes a timed task module connected to the inspection task module. The timed task module includes a timed task search unit, a timed list unit, and a task timed unit. The timed list unit is used to display the timed period of all inspection plans. The task timed unit is used to set the timed period of the inspection plan. The timed task search unit is used to search for and locate the timed inspection plan in the timed list unit according to the name of the timed inspection plan.

[0014] The inspection task module includes a task list unit and a task filtering unit. The task list unit is used to display all inspection tasks, and the inspection tasks include task details, execution progress, and inspection results. The task filtering unit is used to locate target tasks according to filtering conditions, which include at least one of time, region, and person in charge.

[0015] The inspection statistics module includes a regional statistics unit, a personnel statistics unit, and an equipment type statistics unit. The regional statistics unit is used to summarize the equipment inspection completion rate, number of abnormal equipment, and rectification rate of each region, and generate bar charts, pie charts, and table reports. It also establishes hyperlinks between the region name and the detailed data corresponding to the region name. The personnel statistics unit is used to analyze the task completion volume, completion time, and anomaly detection rate of inspectors to quantify work efficiency and output data reports and visualization charts. The equipment type statistics unit is used to count the inspection coverage rate, anomaly rate, and inspection frequency of different types of fire protection equipment and generate an equipment type distribution map.

[0016] The system management module includes a user management unit, a department management unit, a job management unit, and a dictionary management unit. The user management unit is used to add new users, delete invalid users, and modify user information. The department management unit is used to add departments, edit department information, and delete obsolete departments. The job management unit is used to create jobs, update job configurations, and remove invalid jobs. The dictionary management unit is used to maintain the system's general code table and data dictionary, enabling the addition, editing, and deletion of dictionary items to ensure system data consistency.

[0017] The system also includes a remote communication module and a mobile terminal connected to the system management module. The remote communication module is used for remote control and remote information acquisition of the system management module. The remote communication module includes at least one of a 4G communication unit, a 5G communication unit, and a WiFi unit. The mobile terminal includes a system login unit, a synchronous inspection task unit, a start inspection unit, and a personal center unit. The system login unit is used for identity verification and to synchronize permissions with the PC. The synchronous inspection task unit is used to synchronize inspection tasks issued by the PC to the mobile terminal and cache them locally. The synchronous inspection task unit can be used offline. The start inspection unit is used to automatically extract the equipment information of the fire-fighting equipment by bringing the handheld device close to the NFC identification tag card of the fire-fighting equipment as prompted, and to associate the inspection task. The personal center unit is used to display the user's basic information, executed task information, pending task list, and inspection record information.

[0018] The fire protection facility inspection system provided in this invention has the following advantages compared with the prior art:

[0019] The fire protection facility inspection system provided in this embodiment of the invention improves the efficiency and reliability of equipment data entry by setting up an equipment management module to store and manage the basic information of the fire protection equipment. It also ensures clear and traceable equipment records, avoiding errors and untimely updates common in traditional manual records. The system login module performs identity verification and operation permission allocation, providing different users with different scopes of operation permissions, clarifying the scope of operation, and improving the standardization and normalization of inspection operations. The area management module enables full lifecycle management of inspection areas, dividing areas by function, floor, and park, providing accurate basis for equipment classification and task allocation, adapting to the inspection needs of different scale scenarios. Finally, the inspection plan module formulates standardized inspection plans, clarifying the inspection scope and responsible persons. The system management module enables data interaction between different modules, improving management efficiency. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 A schematic diagram of a structure of an embodiment of the fire protection facility inspection system provided by the present invention;

[0022] Figure 2A schematic diagram of the structure of a yaw bearing, representing another embodiment of the fire protection facility inspection system provided by the present invention;

[0023] Among them, 10--System Login Module, 20--Regional Management Module, 30--Equipment Management Module, 40--Inspection Plan Module, 50--Inspection Task Module, 60--Inspection Statistics Module, 70--System Management Module, 80--Scheduled Task Module, 90--Permission Management Module, 100--Mobile Terminal. Detailed Implementation

[0024] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0025] Please refer to Figures 1-2 , Figure 1 A schematic diagram of a structure of an embodiment of the fire protection facility inspection system provided by the present invention; Figure 2 A schematic diagram of the structure of a yaw bearing, which is another embodiment of the fire protection facility inspection system provided by the present invention.

[0026] In one specific embodiment, the fire protection facility inspection system includes a system login module 10, an equipment management module 30, an inspection plan module 40, an area management module 20, an inspection task module 50, an inspection statistics module 60, and a system management module 70. The system login module 10 is used for users to log in to the system, verify the user's identity, and assign operation permissions to the user. The equipment management module 30 is used to store and manage the basic information of the fire protection equipment. The area management module 20 is used to divide all inspection areas into multiple areas, each area including area information and information of the fire protection equipment within the area. The inspection plan module 40 is used to formulate standardized inspection plans. The inspection task module 50 is used to acquire and control the entire process data during the execution of the inspection task. The inspection statistics module 60 is used to analyze the inspection data generated by the inspection task module 50 and generate and output inspection reports. The system management module 70 is connected to the system login module 10, the equipment management module 30, the inspection plan module 40, the inspection task module 50, and the inspection statistics module 60 to realize data interaction.

[0027] By setting up the equipment management module 30 to store and manage the basic information of the fire protection equipment, the efficiency and reliability of equipment data entry are improved. At the same time, the equipment ledger is ensured to be clear and traceable, avoiding errors and omissions and untimely updates of traditional manual ledgers. The system login module 10 is used for identity verification and operation permission allocation, providing different users with different scopes of operation permissions, clarifying the scope of operation, and improving the standardization and normalization of inspection operations. The area management module 20 realizes the full life cycle management of the inspection area, dividing the area according to function, floor, park, etc., providing a precise basis for equipment classification and task allocation, adapting to the inspection needs of different scale scenarios. Finally, the inspection plan module 40 is used to formulate standardized inspection plans, clarifying the inspection scope and responsible persons. The system management module 70 realizes data interaction between different modules, improving management efficiency.

[0028] The system login module 10, equipment management module 30, inspection plan module 40, inspection task module 50, inspection statistics module 60, and system management module 70 in this application are a unified system that is realized by different functional modules through data interaction and mutual access. Multiple modules can be integrated in the same area or connected in different areas through transmission lines or wireless networks.

[0029] The equipment management module 30 in this application is used to store and manage the basic information of the fire-fighting equipment and the basic information of the fire-fighting facilities, ensuring that the equipment data is accurate and traceable. No specific limitations are made on its structure or management method.

[0030] In one embodiment, the device management module 30 includes a device list unit, a device information import unit, a device information export unit, a device information printing unit, and a device binding unit. The device list unit is used for adding, editing, and deleting devices. The device information import unit is used for importing device data. The device information export unit is used for exporting the device data into a specified format. The device information printing unit is used for printing labels and ledgers for the fire protection equipment. The device binding unit is used for binding unbound fire protection equipment after quick conditional filtering.

[0031] The equipment list unit can display the real-time status of all managed equipment in the system, such as which fire-fighting equipment is present, the import time of its information, and its effective period. This provides data support for subsequent inspection plans and improves reliability. For example, if the production date, import date, and usage date of a fire extinguisher in the fire equipment room are close to the current time, the frequency of inspection can be reduced. Conversely, if the production date and import date are older than the current time, the reliability will be lower, and the frequency of inspection needs to be increased to increase the possibility of discovering problems.

[0032] By setting up an equipment information import unit, equipment information data can be quickly imported, enabling batch import of equipment, improving data entry efficiency and management efficiency. By enabling automatic import of equipment information, errors and slow efficiency caused by manual import can be reduced.

[0033] The device information export unit exports the device data to a specified format, such as Excel / PDF, for easy archiving or report creation, achieving efficient data output management. Device data can be exported in the required format as needed.

[0034] The equipment information printing unit enables the printing of labels and ledgers for the fire-fighting equipment, eliminating the need for other equipment to create and print labels and ledgers, thus achieving integrated and automated management and improving management efficiency.

[0035] The device binding unit quickly filters and binds unbound fire-fighting equipment, ensuring that the equipment information matches the actual fire-fighting equipment. This extends the management beyond internally stored fire-fighting equipment information to include unrelated fire-fighting equipment, thus expanding the management authority over fire-fighting equipment.

[0036] The management of equipment in this application includes, but is not limited to, equipment list unit, equipment information import unit, equipment information export unit, equipment information printing unit, and equipment binding unit. Other functional units may also be added, such as the integrity information management of fire-fighting equipment, which equipment has minor damage, usage count, etc.

[0037] The device list unit can display information using a display screen, the device information import unit can be implemented using a scanner, chip recognition device, RFID device, etc., the device information export unit can use the corresponding data interface, the device information printing unit can be implemented using a printer, and the device binding unit can use an image recognition module to automatically obtain device information and bind the device through image recognition.

[0038] If people at different management levels can fully use the entire system and its management functions, it will increase the system's management load and may also lead to misoperation. In actual use, the frequency of use of functional modules by different personnel is fundamentally different. For example, the personnel responsible for equipment data management and the personnel responsible for inspection plans are very unlikely to use each other's functional modules, and in most cases, it is completely unnecessary.

[0039] Therefore, to improve the management efficiency of the entire system, in one embodiment, the fire protection facility inspection system further includes a permission management module 90 connected to the system login module 10. The permission management module 90 includes a permission storage unit, a role management unit, and a permission modification unit. The permission storage unit is used to store the operation permissions of different users. The role management unit is used to set operation permissions according to user roles. The permission modification unit is used by the administrator to modify or set the permissions of users entering the system management module 70 and modify the role permission level according to changes in the user's responsibilities.

[0040] The access control module 90 utilizes access control storage, role management, and access control modification units to set different access ranges, data input ranges, and data modification ranges for different personnel, thereby improving management efficiency.

[0041] The access control module 90 in this application can be a circuit board. After logging into the system, users at different levels are automatically assigned paths in the access control module 90, which connects the relevant functional modules. For example, some lower-level administrators can only access one or two limited functional modules related to themselves, while top-level administrators can access all functional modules and even modify the access permissions of different users, such as upgrading or downgrading access permissions, or adding or deleting users who can enter the system.

[0042] The structure of the permission management module 90 is not limited in this application. It includes, but is not limited to, the permission storage unit, the role management unit, and the permission modification unit. Other permission management modules 90 can also be used. The permission storage unit can be a storage device to record the permission information of relevant personnel. The role management unit is a list of personnel who can log in to the system. It can add or remove different IP accesses, turn on or off relevant circuits, or add new access circuits. The permission modification unit controls the opening or closing of access circuits for different personnel to different modules through circuit modification.

[0043] The area management module 20 in this application supports full lifecycle management of areas. Its structure and management method are not limited. To improve management efficiency, in one embodiment, the fire protection facility inspection system further includes an area list unit, a new area unit, an edit area unit, and a delete area unit set in the area management module 20. The area list unit stores and displays all inspectable areas of the area management module 20. The new area unit adds area information outside the existing management areas to the area list unit to become areas that can be inspected. The delete area unit deletes at least one non-inspectable area from the area list unit. The edit area unit edits the area information of the inspectable areas managed by the area list, and the area information includes area units and area fields.

[0044] With the regional management module 20, the management of fire-fighting equipment will become simpler. It will no longer be limited to a specific fire hydrant or each fire extinguisher, but will be localized, reducing the need to divide the equipment into different areas. During the management process, management will be carried out according to the blocks, which will improve management efficiency. This will also make the inspection process no longer directly target the fire-fighting equipment, but target the managed area, thus improving management efficiency.

[0045] The area list displays the area currently managed by the system. This area can be custom-defined or naturally generated based on nodes. Adding or deleting area units can increase or decrease the managed areas. This allows for the management of fire-fighting equipment to be added or deleted individually or by area. When importing information, only the area needs to be imported, and the corresponding equipment information will be automatically imported, improving management efficiency.

[0046] Editing area units allows for customization of the managed area, such as floors, sub-areas, units, or even room numbers, improving management efficiency.

[0047] The region management module 20 in this application includes, but is not limited to, region list units, new region units, edit region units, and delete region units, and may also use other functional units.

[0048] The inspection plan module 40 in this application formulates standardized inspection plans. Its specific structure and inspection plan generation process are not limited. In one embodiment, the fire protection facility inspection system further includes a plan formulation unit, an inspection plan editing unit, an inspection plan deletion unit, and an inspection plan timing unit set in the inspection plan module 40. The plan formulation unit is used to determine the inspection objects and formulate inspection plans based on the inspection objects. The inspection plan editing unit is used to edit the inspection operators and their inspection paths based on the inspection objects in the inspection plan. The inspection plan deletion unit is used to review the inspection plan specified by the plan formulation unit, and delete the inspection plan if it is determined to be unexecutable or completed. The inspection plan timing unit is used to set the start time and execution time of each stage of the inspection plan.

[0049] The planning unit identifies inspection targets and formulates inspection plans based on these targets, such as determining the number of inspections and timing for different areas. This process can be automated, based on factors like service life, usage frequency, maintenance time, and maintenance frequency, or triggered by external commands such as external temperature rises or falls, or by direct input from external administrators. Inspection plans can be generated and arranged reasonably according to different needs.

[0050] After the inspection plan is generated, this application only specifies the inspection objects. However, the specific indicators and parameters to be inspected can be set as needed. The inspection plan editing unit can edit the inspection components and parameters of different fire-fighting equipment, making the inspection more targeted and clear in its objectives. This avoids deviations in inspection results caused by individual differences, improves the standardization of inspections, and enhances the quality, efficiency, and reliability of inspections.

[0051] The inspection plan deletion unit allows users to remove inspection plans that do not meet the requirements, such as those that are impossible to implement or those that are too frequent. After deletion, the system can return the reason for deletion to the user or allow the user to delete the plan and save the deletion record, ensuring that all current inspection plans are valid and improving management efficiency.

[0052] By setting the start time and execution time of the inspection plan according to the regular schedule, the inspection work becomes more scientific, no longer superficial or excessively time-consuming, thus improving the efficiency of the inspection.

[0053] The structure of the inspection plan module 40 in this application includes, but is not limited to, a plan formulation unit, an inspection plan editing unit, an inspection plan deletion unit, and an inspection plan timing unit, and other functional units may also be added.

[0054] To further improve the efficiency of inspections, in one embodiment, the fire protection facility inspection system further includes a timed task module 80 connected to the inspection task module 50. The timed task module 80 includes a timed task search unit, a timed list unit, and a task timed unit. The timed list unit is used to display the timed period of all inspection plans, the task timed unit is used to set the timed period of the inspection plan, and the timed task search unit is used to search for and locate the timed inspection plan in the timed list unit according to the name of the timed inspection plan.

[0055] By setting up the scheduled task module 80, all inspection plans can be assigned a scheduled period, such as once every three days or once every five days. The scheduled periods of all inspection plans can be displayed in a list or other way, making the inspection tasks clearer and improving inspection efficiency.

[0056] By using the scheduled task search unit to search for and locate scheduled inspection plans based on their names in the scheduled list unit, the corresponding inspection plan name can be quickly obtained.

[0057] It should be noted that the inspection plan in this application can combine fixed inspection tasks with temporary inspection tasks. Fixed inspection tasks can cover most inspection objects, while temporary inspection tasks can be carried out for specific objects, such as increasing the number of inspections, increasing the inspection duration, and increasing the inspection depth for high-risk areas.

[0058] The scheduled task module 80 in this application includes, but is not limited to, a scheduled task search unit, a scheduled list unit, and a task scheduling unit. Other types of units may also be added. The purpose is to display the scheduling cycle of all inspection plans, quickly retrieve scheduled tasks by plan name, and facilitate viewing and management.

[0059] To further improve management efficiency in tasks such as the allocation of inspection tasks, in one embodiment, the inspection task module 50 includes a task list unit and a task filtering unit. The task list unit is used to display all inspection tasks, and each inspection task includes task details, execution progress, and inspection results. The task filtering unit is used to locate target tasks according to filtering conditions, which include at least one of time, region, and person in charge.

[0060] The inspection task module 50 displays all inspection tasks, including task details, execution progress, and inspection results. Tasks can be filtered by time, region, responsible person, etc., allowing for quick location of target tasks. Different people can search for tasks based on their own names, and related inspection tasks can be automatically assigned to designated personnel. After receiving the inspection tasks, personnel can provide feedback, improving management efficiency. The inspection task module 50 allows for real-time monitoring of the inspection progress, tasks, and inspection times of many different inspection tasks, further enhancing management efficiency.

[0061] The structure of the inspection task module 50 in this application includes, but is not limited to, the task list unit and the task filtering unit. Other units can also be added, such as the inspection task distribution unit and the inspection task feedback unit, to perform refined management of different inspection tasks in real time and improve the quality of inspection.

[0062] After the inspection is completed, the inspection statistics module 60 obtains the inspection statistics results. In order to make the inspection results more standardized and normalized, in one embodiment, the inspection statistics module 60 includes a regional statistics unit, a personnel statistics unit, and an equipment type statistics unit. The regional statistics unit is used to summarize the equipment inspection completion rate, number of abnormal equipment, and rectification rate of each region, and generate bar charts, pie charts, and table reports. It also establishes hyperlinks between the region name and the detailed data corresponding to the region name. The personnel statistics unit is used to analyze the task completion amount, completion time, and abnormality detection rate of the inspectors to quantify work efficiency and output data reports and visualization charts. The equipment type statistics unit is used to count the inspection coverage, abnormality rate, and inspection frequency of different types of fire protection equipment and generate an equipment type distribution map.

[0063] The regional statistics unit in the inspection statistics module 60 summarizes the equipment inspection completion rate, number of abnormal equipment, and rectification rate for each region, and generates bar charts, pie charts, and table reports. By establishing hyperlinks between region names and their corresponding detailed data, the module provides equipment inspection results from a regional perspective and generates inspection reports in a specific format, thereby improving management efficiency.

[0064] By analyzing the task completion volume, completion time, and anomaly detection rate of inspectors through the personnel statistics unit, work efficiency can be quantified, and data reports and visualization charts can be output. This is conducive to quantifying and obtaining real-time information on the work progress of each inspector, improving management efficiency, and making the work of each inspector more intuitive and direct.

[0065] The inspection coverage rate, abnormality rate, and inspection frequency of different types of fire-fighting equipment are statistically analyzed by the equipment type statistics unit, and an equipment type distribution map is generated. By obtaining the inspection effect from the perspective of equipment, the results of this inspection are directly based on the results of this inspection and provide data support for the next inspection task. The structure of the inspection statistics module 60 is not limited in this application, but includes area statistics unit, personnel statistics unit, and equipment type statistics unit. The corresponding different statistics units can be automatically and independently statistically analyzed based on keywords, or statistically analyzed based on other methods. The statistical method and display results can be set and output as needed.

[0066] To further improve management efficiency, in one embodiment, the system management module 70 includes a user management unit, a department management unit, a job management unit, and a dictionary management unit. The user management unit is used to add new users, delete invalid users, and modify user information. The department management unit is used to add departments, edit department information, and delete obsolete departments. The job management unit is used to create jobs, update job configurations, and remove invalid jobs. The dictionary management unit is used to maintain the system's general code table and data dictionary, enabling the addition, editing, and deletion of dictionary items to ensure system data consistency.

[0067] The system management module 70 enables the integration and unification of data from different units. The user management unit allows for operations such as adding, deleting, and modifying users, as well as modifying user information, which improves the convenience of management. For the same person, there is no need to delete and add again, and modification records can be saved, thus improving management efficiency.

[0068] This application uses a department management unit for partial management, which allows for quick corrections even if the management team or structure changes. It enables operations such as adding departments, editing department information, and deleting obsolete departments.

[0069] The job management unit allows for real-time updates of jobs, enabling dynamic management by creating jobs, updating job configurations, and removing invalid jobs.

[0070] The dictionary management unit maintains the system's general code table and data dictionary, enabling the addition, editing, and deletion of dictionary items. This ensures that the system data remains consistent and avoids recognition errors caused by using different names and codes for the same keywords in different modules, thus guaranteeing the efficiency and consistency of information interaction and recognition.

[0071] This application does not limit the results of the system management module 70, including but not limited to user management unit, department management unit, job management unit, dictionary management unit, and other system management units can be added to make system management smoother.

[0072] To further enhance the efficiency of the entire system, in one embodiment, the fire protection facility inspection system also includes a remote communication module and a mobile terminal 100 connected to the system management module 70. The remote communication module is used for remote control and remote information acquisition of the system management module 70. The remote communication module includes at least one of a 4G communication unit, a 5G communication unit, and a WiFi unit. The mobile terminal 100 includes a system login unit, a synchronous inspection task unit, a start inspection unit, and a personal center unit. The system login unit is used for identity verification and to synchronize permissions with the PC. The synchronous inspection task unit is used to synchronize inspection tasks issued by the PC to the mobile terminal 100 and cache them locally. The synchronous inspection task unit can be used offline. The start inspection unit is used to automatically extract the equipment information of the fire protection equipment by bringing the handheld device close to the NFC identification tag card of the fire protection equipment according to the prompts, and to realize the association of inspection tasks. The personal center unit is used to display the user's basic information, executed task information, pending task list, and inspection record information.

[0073] Remote operation can be achieved through the remote communication module. Users can log in to the system from different nodes through the mobile terminal 100. The system login unit is synchronized with the system login module 10 on the PC to perform identity verification and achieve synchronization of permissions with the PC.

[0074] The inspection task unit synchronizes the inspection tasks issued by the PC to the mobile terminal 100 and caches them locally, enabling users to receive and respond to remote patrol tasks on the mobile terminal 100, thereby improving management efficiency.

[0075] By following the prompts, the handheld device is brought close to the NFC identification tag of the fire-fighting equipment through the start inspection unit. The equipment information of the fire-fighting equipment is automatically extracted, the inspection task is associated, the inspection process is simplified, and the inspection efficiency is improved. This eliminates the need to save inspection nodes by taking pictures, thus improving the efficiency of inspection and making the inspection data more standardized.

[0076] The personal center unit displays the user's basic information, completed task information, pending task list, inspection record information, and even permissions, making it convenient to manage personal information and inspection information, and improving management efficiency.

[0077] This application does not limit the structure of the mobile terminal 100, including but not limited to the unified login unit, synchronous inspection task unit, start inspection unit, and personal center unit, and may also add other functional units.

[0078] In one embodiment, the facility inspection system includes a system login module 10, an area management module 20, an equipment management module 30, an inspection plan module 40, a scheduled task module 80, an inspection task module 50, an inspection statistics module 60, an access control module 90, a system management module 70, and a mobile terminal 100.

[0079] The system login module 10 serves as the system entry point, responsible for verifying user identity, supporting permission matching, and ensuring system access security. For example, by opening Google Chrome or Baidu Browser, entering the corresponding URL of this system in the address bar, accessing the system login address, and filling in the names of the inspection administrator, inspector, and rectification personnel, as well as the login password.

[0080] The area management module 20 enables standardized management of fire protection facility inspection areas, laying the foundation for equipment classification and inspection task allocation. The equipment management module 30 centrally manages basic information on fire protection facilities, ensuring accurate and traceable equipment data. The inspection planning module 40 develops standardized inspection plans, providing a basis for inspection task execution. The scheduled task module 80 provides visual management of the timing rules for inspection plans, ensuring automatic task triggering. The inspection task module 50 manages the entire process of inspection task execution, tracking task progress and results. The inspection statistics module 60 analyzes inspection data from multiple dimensions, generating visual reports to support management decisions. The access control module 90 provides fine-grained control over user operation permissions, ensuring system data security. The system management module 70 maintains the system's basic configuration, ensuring stable system operation.

[0081] The mobile terminal 100 supports on-site inspection operations, enabling offline operation and data synchronization, thus improving the flexibility of inspections.

[0082] The region management module 20 includes a region list unit, which supports full lifecycle management of regions. The region list unit includes adding regions, editing regions, and deleting regions.

[0083] The equipment management module 30 includes an equipment list unit, an equipment information import unit, an equipment information export unit, and an equipment information printing unit. The equipment list unit is used to add, edit, and delete equipment. The equipment information import unit supports batch import of equipment data, improving data entry efficiency. The equipment information export unit exports equipment data to Excel / PDF format for easy archiving or report creation. The equipment information printing unit supports printing equipment labels and ledgers. The device search criteria can be switched to an unbound state, enabling quick filtering and binding of unbound inspection task equipment.

[0084] The specific steps for adding equipment to the equipment list unit are as follows: After entering the equipment management page (which defaults to querying abnormal and lost equipment, clicking Clear will query all equipment), click the Add button to start registering new fire extinguishers or other fire protection equipment. Fill in the basic information of the equipment in the form, such as equipment type, number, location, etc., associate the equipment with a specific inspection area, and set its corresponding RFID / NFC tag. Click Save to complete the equipment registration.

[0085] The specific steps to edit a device are as follows: Go to the device management page, find the device row whose information needs to be updated, click the edit icon, modify the device information, and click update to save the changes after the update is complete.

[0086] To delete a device, go to the device management page, find the row of devices that have been scrapped or no longer need management, click the delete icon, and confirm the removal of the device record.

[0087] The inspection plan module 40 includes a plan formulation unit for creating, editing, deleting, and scheduling plans.

[0088] The specific details of the plan creation are as follows:

[0089] Entering the inspection plan page, the default view shows data in progress and in temporary status. Clicking "Clear" will allow you to view all data. Clicking the "Create Plan" button allows you to define a new inspection cycle and set parameters such as the plan name, type (e.g., once every two weeks or once a month), start time, equipment to be inspected, and inspector. For a two-week plan, clicking "Save" will activate the new plan, while clicking "Temporary" will only save the data and will not publish the plan.

[0090] The specific details of the editing plan are as follows:

[0091] On the inspection plan page, locate the plan row that needs adjustment, click the edit icon, modify the various parameters in the plan, and after making the changes, click "Save" to save the changes and then click "Save" to activate the plan.

[0092] The details of the deletion plan are as follows:

[0093] Locate the inspection plan line that is no longer being executed, click the delete icon, and confirm to cancel the plan.

[0094] The specific details of the scheduled time are as follows:

[0095] On the inspection plan page, select the plan that needs to be executed on a scheduled basis, click Schedule Configuration, select the date on which the plan needs to be executed on a scheduled basis, and click Confirm.

[0096] The scheduled task module 80 includes a scheduled list unit that displays the scheduled cycles of all inspection plans, allowing for quick retrieval of scheduled tasks by plan name for easy viewing and management.

[0097] The inspection task module 50 includes a task list unit that presents all inspection tasks, including task details, execution progress, and inspection results. Tasks can be filtered by time, region, person in charge, and other conditions to quickly locate the target task.

[0098] The inspection statistics module 60 includes a regional statistics unit, a personnel statistics unit, and an equipment type statistics unit. The regional statistics unit summarizes the equipment inspection completion rate, number of abnormal equipment, and rectification rate for each region, generating bar charts, pie charts, and table reports, and supports clicking on the region name to view detailed data. The personnel statistics unit analyzes the inspectors' task completion volume, completion time, and anomaly detection rate, quantifying work efficiency and providing data reports and visualization charts. The equipment type statistics unit counts the inspection coverage rate, anomaly rate, and inspection frequency of different types of fire-fighting equipment, generating an equipment type distribution map to provide a basis for equipment maintenance plans.

[0099] The specific operation of the regional statistics unit is as follows: Enter the inspection statistics unit, select the "Statistics by Region" sub-option, and the system will summarize the inspection status of the equipment in each region and generate reports in the form of charts and tables. You can view detailed data by clicking on the specific region name.

[0100] The specific operational steps for the personnel statistics unit are as follows:

[0101] On the inspection statistics page, select the "Statistics by Personnel" sub-option. The system will analyze the workload and efficiency of each inspector and provide statistical data and visualization charts.

[0102] The specific operating steps for the equipment type statistics unit are as follows:

[0103] By selecting the "Statistics by Equipment Type" sub-option, the system will collect statistics on the inspection status of different types of fire protection equipment, providing a detailed equipment type distribution map and inspection frequency statistics.

[0104] The permission management module 90 includes a role management unit, which sets operation permissions according to user roles and modifies role permission levels according to changes in responsibilities.

[0105] The system management module 70 includes a user management unit, a department management unit, a position management unit, and a dictionary management unit.

[0106] The user management unit is used to add new users, delete invalid users, and modify user information; the department management unit is used to add departments, edit department information, and delete obsolete departments; the job management unit is used to create jobs, update job configurations, and remove invalid jobs; the dictionary management unit is used to maintain the system's general code table and data dictionary, supporting the addition, editing, and deletion of dictionary items to ensure system data consistency.

[0107] The specific operations for the user management unit are as follows:

[0108] Click the User Management menu item under System Management to enter the User Management page. When adding a new user, fill in the user's basic information, username, password, and role. Edit the information of existing users, including updating passwords or adjusting roles, and delete user accounts that are no longer needed.

[0109] The specific operations of the department management unit are as follows:

[0110] Select the Department Management sub-option to enter the Department Management page. When adding a new department, enter the department name, description, and other information. Modify the information of an existing department, such as its name or description, and delete department records that are no longer in use.

[0111] The specific operation of the job management unit is as follows:

[0112] On the system management page, select the job management sub-option. When creating a new job, define the job name, responsibilities, and related permissions, update the description or permission configuration of existing jobs, and remove jobs that are no longer applicable.

[0113] The specific steps for dictionary management are as follows:

[0114] Click the dictionary management menu item to enter the dictionary management page, where you can maintain commonly used code tables and data dictionaries in the system, such as equipment type and inspection status, and add, edit, or delete dictionary items to maintain data consistency and accuracy.

[0115] The mobile terminal 100 includes a system login unit, a synchronous inspection task unit, an inspection start unit, and a personal center unit.

[0116] The system login unit is used for identity verification and synchronizes with PC permissions; the synchronized inspection task unit synchronizes inspection tasks issued by the PC to the mobile device and caches them locally, supporting offline viewing and execution of tasks; the start inspection unit prompts the user to bring their handheld device close to the NFC identification tag of the fire equipment to automatically extract equipment information and quickly associate inspection tasks; the personal center unit displays basic user information, a list of executed and pending tasks, and allows querying of inspection records.

[0117] In the synchronized inspection tasks, the inspection tasks issued by the PC are cached locally through the 100 Data Synchronization on the mobile app. Even when offline, these tasks can be viewed and executed. There are two ways to synchronize the 100 Data Synchronization on the mobile app: the first way is to pull down the task list on the main interface; the second way is to switch to the personal center and click on data synchronization. While synchronizing the task data, the completed task information in the APP will be uploaded first.

[0118] In the initial inspection unit, NFC near-field reading: On the main interface, click "Start Inspection," and use your handheld device to tap the icon on the screen. A prompt will appear asking you to bring the NFC tag closer, then bring it close to the fire equipment's near-field identification tag card to extract equipment information. After identification, a prompt will appear asking you not to move the tag as it is reading data. If the current device belongs to multiple plans, a list will pop up for selection. RFID reading: On the main interface, click "Start Inspection," and use your handheld device to press the center button, then bring it close to the fire equipment's RFID tag card to extract equipment information. If the device has not yet been assigned a task, a message will appear indicating that the device has not yet been assigned a task. If only one task is detected for the current device, it will be automatically written into the information. If multiple tasks are detected, please refer to the scenario of NFC scanning a device belonging to multiple plans.

[0119] In the inspection information entry unit, when the equipment scans the information, it will automatically fill in the inspection card information into the form. Next, slide down to select the abnormal situation and fill in the inspection information, as well as the weighing information of the fire extinguisher and the water test information of the fire hydrant. Finally, upload the photos and videos of the scene. Clicking submit will clear the data entered in the current form, and the subtotal in the upper right corner will increase by 1. At the same time, you can see the completed quantity increased by 1 on the main page.

[0120] In the Personal Center section, to complete the current user's information, switch to Personal Center on the main interface, click the Personal Information button to enter the personal profile page, fill in the corresponding fields, and click "Done" in the upper right corner to complete the modification. After a successful modification notification, you will be automatically returned to the Personal Center page. To change the current user's password, switch to Personal Center on the main interface, click the Change Password button to enter the Change Password page, fill in the corresponding fields, and click the Save button to change the current user's login password. Changing the password will log you out but will not clear the task cache. If you need to switch accounts and log in again, switch to Personal Center on the main interface and click the Logout button. If there are currently any inspection tasks cached in the system, a pop-up window will appear. Click "Confirm" to log out (Note: Clicking "Confirm" will clear all cached tasks in the system. Please synchronize and upload completed tasks to the backend first).

[0121] The above technical solution has the following beneficial effects:

[0122] The equipment management module 30 supports batch import, export, label printing, and unbound equipment filtering, which not only improves the efficiency of entering massive amounts of equipment data, but also ensures that the equipment ledger is clear and traceable, avoiding the errors, omissions, and untimely updates of traditional manual ledgers. The area management module 20 realizes the full life cycle management of the inspection area, dividing the area by function, floor, and park, providing a precise basis for equipment classification and task allocation, and adapting to the inspection needs of different scale scenarios.

[0123] The inspection plan module 40 supports customizable cycles, scope, and responsible persons. The scheduled task module 80 automatically triggers the plan, reducing the tediousness of manually creating tasks and ensuring that inspection tasks are not missed or delayed. The inspection task module 50 supports multi-dimensional filtering, which can quickly locate the task status and view abnormal results, making it easier for managers to track and supervise, and improving the efficiency of task management.

[0124] In summary, the fire protection facility inspection system provided by this embodiment of the invention improves the efficiency and reliability of equipment data entry by setting up an equipment management module to store and manage the basic information of the fire protection equipment. It also ensures clear and traceable equipment records, avoiding errors and untimely updates common in traditional manual records. The system login module performs identity verification and operation permission allocation, providing different users with varying levels of access rights and clarifying the scope of operations, thus improving the standardization and normalization of inspection operations. The area management module enables full lifecycle management of inspection areas, dividing them by function, floor, and park level, providing precise basis for equipment classification and task allocation, and adapting to inspection needs in different scale scenarios. Finally, the inspection plan module formulates standardized inspection plans, clarifying the inspection scope and responsible personnel. The system management module facilitates data interaction between different modules, improving management efficiency.

[0125] The fire protection facility inspection system provided by this invention has been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of this invention. The descriptions of the embodiments above are merely for the purpose of helping to understand the method and core ideas of this invention. It should be noted that those skilled in the art can make various improvements and modifications to this invention without departing from its principles, and these improvements and modifications also fall within the protection scope of the claims of this invention.

Claims

1. A fire protection facility inspection system, characterized in that, The system includes a system login module, an equipment management module, a region management module, an inspection plan module, an inspection task module, an inspection statistics module, and a system management module. The system login module is used for users to log in to the system, verify their identity, and assign operation permissions. The equipment management module is used to store and manage the basic information of the fire-fighting equipment. The region management module is used to divide all inspection areas into multiple regions, each region including region information and information about the fire-fighting equipment within the region. The inspection plan module is used to formulate standardized inspection plans. The inspection task module is used to acquire and control the entire process data during the execution of the inspection task. The inspection statistics module is used to analyze the inspection data generated by the inspection task module and generate and output inspection reports. The system management module is connected to the system login module, the equipment management module, the inspection plan module, the inspection task module, and the inspection statistics module to enable data interaction.

2. The fire protection facility inspection system according to claim 1, characterized in that, The equipment management module includes an equipment list unit, an equipment information import unit, an equipment information export unit, an equipment information printing unit, and an equipment binding unit. The equipment list unit is used for adding, editing, and deleting equipment. The equipment information import unit is used for importing equipment data. The equipment information export unit is used for exporting the equipment data to a specified format. The equipment information printing unit is used for printing labels and ledgers for the fire protection equipment. The equipment binding unit is used for binding unbound fire protection equipment after quick filtering based on conditions.

3. The fire protection facility inspection system according to claim 1, characterized in that, It also includes a permission management module connected to the system login module. The permission management module includes a permission storage unit, a role management unit, and a permission modification unit. The permission storage unit is used to store the operation permissions of different users. The role management unit is used to set operation permissions according to user roles. The permission modification unit is used by the administrator to modify or set the permissions of users entering the system management module and modify the role permission level according to changes in the user's responsibilities.

4. The fire protection facility inspection system according to claim 3, characterized in that, It also includes a region list unit, a new region unit, an edit region unit, and a delete region unit set in the region management module. The region list unit is used to store and display all inspectable regions of the region management module. The new region unit is used to add region information outside the existing management regions to the region list unit to become regions that can be inspected. The delete region unit is used to delete at least one non-inspectable region in the region list unit. The edit region unit is used to edit the region information of the inspectable regions managed by the region list. The region information includes region unit and region field.

5. The fire protection facility inspection system according to claim 4, characterized in that, It also includes a planning unit, an inspection plan editing unit, an inspection plan deletion unit, and an inspection plan timing unit set in the inspection plan module. The planning unit is used to determine the inspection objects and formulate inspection plans based on the inspection objects. The inspection plan editing unit is used to edit the inspection operators and the inspection paths of the inspection operators based on the inspection objects of the inspection plan. The inspection plan deletion unit is used to review the inspection plan specified by the planning unit, and delete the inspection plan if it is determined to be an unexecutable inspection plan or a completed inspection plan. The inspection plan timing unit is used to set the start time and execution time of each stage of the inspection plan.

6. The fire protection facility inspection system according to claim 5, characterized in that, It also includes a timed task module connected to the inspection task module. The timed task module includes a timed task search unit, a timed list unit, and a task timed unit. The timed list unit is used to display the timed period of all inspection plans. The task timed unit is used to set the timed period of the inspection plan. The timed task search unit is used to search for and locate the timed inspection plan in the timed list unit according to the name of the timed inspection plan.

7. The fire protection facility inspection system according to claim 6, characterized in that, The inspection task module includes a task list unit and a task filtering unit. The task list unit is used to display all inspection tasks. The inspection tasks include task details, execution progress, and inspection results. The task filtering unit is used to locate target tasks according to filtering conditions. The filtering conditions include at least one of time, region, and person in charge.

8. The fire protection facility inspection system according to claim 7, characterized in that, The inspection statistics module includes a regional statistics unit, a personnel statistics unit, and an equipment type statistics unit. The regional statistics unit is used to summarize the equipment inspection completion rate, number of abnormal equipment, and rectification rate of each region, and generate bar charts, pie charts, and table reports. It also establishes hyperlinks between the region name and the detailed data corresponding to the region name. The personnel statistics unit is used to analyze the task completion volume, completion time, and anomaly detection rate of inspectors to quantify work efficiency and output data reports and visualization charts. The equipment type statistics unit is used to count the inspection coverage rate, anomaly rate, and inspection frequency of different types of fire protection equipment and generate an equipment type distribution map.

9. The fire protection facility inspection system according to any one of claims 1-8, characterized in that, The system management module includes a user management unit, a department management unit, a job management unit, and a dictionary management unit. The user management unit is used to add new users, delete invalid users, and modify user information. The department management unit is used to add departments, edit department information, and delete obsolete departments. The job management unit is used to create jobs, update job configurations, and remove invalid jobs. The dictionary management unit is used to maintain the system's general code table and data dictionary, enabling the addition, editing, and deletion of dictionary items to ensure system data consistency.

10. The fire protection facility inspection system according to claim 9, characterized in that, It also includes a remote communication module and a mobile terminal connected to the system management module. The remote communication module is used to remotely control and remotely acquire information from the system management module. The remote communication module includes at least one of a 4G communication unit, a 5G communication unit, and a WiFi unit. The mobile terminal includes a system login unit, a synchronous inspection task unit, a start inspection unit, and a personal center unit. The system login unit is used for identity verification and to synchronize permissions with the PC. The synchronous inspection task unit is used to synchronize inspection tasks issued by the PC to the mobile terminal and cache them locally. The synchronous inspection task unit can be used offline. The start inspection unit is used to automatically extract the equipment information of the fire-fighting equipment by bringing the handheld device close to the NFC identification tag card of the fire-fighting equipment as prompted, and to associate the inspection task. The personal center unit is used to display the user's basic information, executed task information, pending task list, and inspection record information.