An implementation method, system and device of a gas alarm and a storage medium
By installing a positioning unit in the gas alarm to acquire and verify location information, the problem of inaccurate gas alarm installation addresses is solved, enabling timely location updates and improving positioning accuracy, thereby enhancing the safety of the gas system.
Patent Information
- Application Number
- CN202211201629.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-29
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2042-09-29
AI Technical Summary
The installation address of the gas alarm is filled in by the user, which leads to poor accuracy of the installation location, delays the repair time, and the system cannot update the location in a timely manner when the device is moved.
By installing a positioning unit in the gas alarm, a first location is obtained and compared with a second location stored in the database. If they do not match, a location change notification is sent to the owner's terminal, and feedback is received to update the second location, thus ensuring positioning accuracy.
This enables timely updates of the gas alarm location, improves positioning accuracy, and enhances the safety performance of the gas system.
Smart Images

Figure CN116504033B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of gas technology, and particularly to a gas alarm implementation method, system, device and storage medium. BACKGROUND
[0002] The gas alarm can timely find the leakage of gas and give an alarm, so that the maintenance or fire-fighting personnel can arrive at the scene first to handle the fault. However, in the related art, the installation address of the gas alarm is usually filled by the user during installation, and the installation site may be changed due to various factors, resulting in poor accuracy of the installation address and delaying the repair time. SUMMARY
[0003] The present application aims to at least partly solve one of the problems in the prior art.
[0004] To this end, the present application aims to provide a gas alarm implementation method, system, device and storage medium with high positioning accuracy.
[0005] In order to achieve the above technical purpose, the technical solutions adopted by the embodiments of the present application include:
[0006] On the one hand, the embodiments of the present application provide a gas alarm implementation method, comprising the following steps:
[0007] The gas alarm implementation method of the embodiments of the present application is used for updating the installation position of the gas alarm, and the method comprises the following steps: obtaining a first position of a target gas alarm; the first position is used to represent the planar position of the gas alarm, and the first position is obtained by a positioning unit of the gas alarm; querying a second position corresponding to the target gas alarm in a first database; the first database is used to store the position information of the gas alarm; if the first position is inconsistent with the second position, sending a position change notification to a first terminal; the first terminal is used to represent a terminal belonging to the owner of the target gas alarm; receiving feedback of an updated second position submitted by the first terminal, and updating the second position. The first position detected by the positioning unit is used to check the second position in the database, thereby improving the positioning accuracy of the gas alarm. The method of the embodiments of the present application can timely update the position change of the gas alarm, which is beneficial to improving the positioning accuracy of the gas alarm and further improving the safety performance of the gas system.
[0008] In addition, the gas alarm implementation method according to the above embodiments of the present application can also have the following additional technical features:
[0009] Further, the gas alarm implementation method of the embodiments of the present application further comprises:
[0010] acquiring a first time length;
[0011] if the first time length is equal to a first preset time length and no feedback of updating a second position submitted by the first terminal is received, issuing a position change notification to a second terminal, so that a second object verifies an installation position of the target gas alarm; the second object is used to represent a gas management personnel of a community where the target gas alarm is located, and the second terminal is used to represent a terminal of the second object.
[0012] Further, in an embodiment of the present application, the implementation method is used for gas alarm, and the method comprises:
[0013] acquiring a first gas concentration;
[0014] if the first gas concentration is greater than a first threshold value, issuing a gas leakage risk warning to the first terminal, so that the owner timely checks the use of gas.
[0015] Further, in an embodiment of the present application, the method further comprises the following steps:
[0016] if the first gas concentration is greater than a second threshold value, starting an exhaust fan and closing an electromagnetic valve to close the gas supply of the unit; the second threshold value is greater than the first threshold value;
[0017] sending the second position and gas alarm information to the second terminal, so that the second object goes to the second position for troubleshooting; the second object is used to represent a gas management personnel of a community where the target gas alarm is located, and the second terminal is used to represent a terminal of the second object.
[0018] Further, in an embodiment of the present application, the method further comprises:
[0019] acquiring a second time length;
[0020] if the second time length is equal to a second preset time length, acquiring a second gas concentration;
[0021] if the second gas concentration is greater than the first gas concentration, issuing a second-level gas leakage warning to the first terminal.
[0022] Further, in an embodiment of the present application, the method further comprises:
[0023] acquiring a first height of the target gas alarm; the first height is used to represent an altitude position of the gas alarm, and the first height is obtained by a positioning unit of the gas alarm;
[0024] inquiring a second height corresponding to the target gas alarm in a first database;
[0025] If the first height is inconsistent with the second height, a height change notification is sent to the first terminal.
[0026] Further, in an embodiment of the present application, the implementation method is used for recording of gas data, and the method further comprises:
[0027] A plurality of third gas concentrations are stored according to generation time; the plurality of third gas concentrations are used for representing concentration information acquired at different times;
[0028] A third time length is acquired;
[0029] If the third time length is equal to a third preset time length, the plurality of third gas concentrations are sequentially uploaded to a server.
[0030] On the other hand, an embodiment of the present application proposes an implementation system of a gas alarm, which is used for updating of an installation position of the gas alarm, and the system comprises:
[0031] A first module is configured to acquire a first position of a target gas alarm; the first position is used for representing a plane position of the gas alarm, and the first position is acquired by a positioning unit of the gas alarm;
[0032] A second module is configured to query a second position corresponding to the target gas alarm in a first database; the first database is used for storing position information of the gas alarm;
[0033] A third module is configured to send a position change notification to a first terminal if the first position is inconsistent with the second position; the first terminal is used for representing a terminal belonging to an owner of the target gas alarm;
[0034] A fourth module is configured to receive feedback of updating of the second position submitted by the first terminal, and update the second position.
[0035] On the other hand, an embodiment of the present application provides an implementation device of a gas alarm, which comprises:
[0036] At least one processor;
[0037] At least one memory is configured to store at least one program;
[0038] When the at least one program is executed by the at least one processor, the at least one processor is caused to implement any of the above-mentioned implementation methods of the gas alarm.
[0039] On the other hand, an embodiment of the present application provides a storage medium, wherein a program executable by a processor is stored, and the program executable by the processor is used for implementing any of the above-mentioned implementation methods of the gas alarm when executed by the processor.
[0040] The method provided by the embodiment of the present application can update the position change of the gas alarm in time, which is beneficial to improving the positioning accuracy of the gas alarm and further improving the safety performance of the gas system. BRIEF DESCRIPTION OF DRAWINGS
[0041] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following introduces the drawings of the related technical solutions in the embodiments of the present application or the prior art. It should be understood that the drawings in the following introduction are only for facilitating the clear description of some embodiments in the technical solutions of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the premise that the drawings are not limited.
[0042] Figure 1 The flowchart of one embodiment of the implementation method of the gas alarm provided by the present application is shown in the figure.
[0043] Figure 2 The flowchart of another embodiment of the implementation method of the gas alarm provided by the present application is shown in the figure.
[0044] Figure 3 The application scenario diagram of the implementation method of the gas alarm provided by the present application is shown in the figure.
[0045] Figure 4 The structural diagram of one embodiment of the implementation system of the gas alarm provided by the present application is shown in the figure.
[0046] Figure 5 The structural diagram of another embodiment of the implementation system of the gas alarm provided by the present application is shown in the figure.
[0047] Figure 6 The structural diagram of one embodiment of the implementation device of the gas alarm provided by the present application is shown in the figure. DETAILED DESCRIPTION
[0048] The embodiments of the present application are described in detail below, and the examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements with the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present application, and cannot be understood as a limitation of the present application. For the step numbers in the following embodiments, they are only set for facilitating the description and explanation, and the order between the steps is not limited in any way, and the execution order of each step in the embodiments can be adaptively adjusted according to the understanding of those skilled in the art.
[0049] The gas alarm is a small gas safety protection product suitable for home or commercial use. It can effectively prevent explosion, fire, poisoning and other serious accidents caused by gas leakage, and is widely used. The gas alarm increases the communication module to realize data uploading, alarm reporting and other functions, and cooperates with the mobile phone APP and WeChat public number to realize information push to the user; realize the sending and management of alarm or other information. The existing gas alarm has the following problems:
[0050] 1. After the installation of the device, the installation address is generally filled by the user or by the relevant personnel, and the address filled may be incorrect.
[0051] 2. When the device alarms, the maintenance unit or the fire unit cannot quickly confirm the exact location of the alarm source, and needs to contact the user. If the user fills in the information incorrectly, it may not be contacted.
[0052] 3. The device may be replaced after installation due to various factors; the device is replaced, and the system cannot sense it.
[0053] 4. After the installation of the device, it cannot be known whether it is abnormal (such as disassembly, power failure, etc.).
[0054] The implementation method and system of the gas alarm according to the embodiments of the present application will be described in detail below with reference to the accompanying drawings. First, the implementation method of the gas alarm according to the embodiments of the present application will be described with reference to the accompanying drawings.
[0055] Referring to Figure 1 , the present application provides an implementation method of a gas alarm. The implementation method of the gas alarm in the present application can be applied in a terminal, can be applied in a server, and can also be software running in a terminal or a server. The terminal can be a tablet computer, a notebook computer, a desktop computer, etc., but is not limited thereto. The server can be a stand-alone physical server, can be a server cluster or a distributed system composed of multiple physical servers, or can be a cloud server providing cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communication, middleware services, domain name services, security services, CDNs, and basic cloud computing services such as big data and artificial intelligence platforms. The implementation method in the present application is used for updating the installation position of the gas alarm, and the method comprises the following steps:
[0056] S110: Obtain the first position of the target gas alarm; the first position is used to represent the planar position of the gas alarm, and the first position is obtained by a positioning unit of the gas alarm;
[0057] In this step, the first position can be acquired by the Beidou positioning module, or by the GPS positioning module, or by other positioning modules. The application does not limit the specific model of the positioning module. In some possible implementations, after the gas alarm is installed, the user may want to move the gas equipment for personal reasons, and in general, the gas management department is not notified to update the installation position of the gas equipment. This results in that the gas maintenance unit or the fire unit cannot acquire the installation position of the gas equipment in the first time when the gas alarm occurs, and the repair or rescue opportunity is missed. The application realizes the positioning of the gas alarm or the gas equipment by adding a positioning module to the gas alarm.
[0058] In some possible implementations, the first position of the target gas alarm can be acquired by a periodic operation mode, and verified with the second position. For a period of time, it can be real-time, or a fixed local time period, or a non-fixed time period. According to the use frequency or importance of the system in different time periods, different interval lengths of time periods are set to meet the system requirements and provide diversified choices.
[0059] S120: querying a second position corresponding to the target gas alarm in a first database; the first database is used to store position information of the gas alarm;
[0060] S130: if the first position is inconsistent with the second position, issuing a position change notification to a first terminal; the first terminal is used to represent a terminal belonging to the owner of the target gas alarm;
[0061] In the embodiment of the application, the first position detected by the positioning unit is checked with the second position of the target gas alarm stored in the first database. If the two positions are inconsistent, the installation position stored in the database can be incorrect. The position change notification is issued to the first terminal of the owner to remind the owner to fill in the accurate installation position of the gas equipment. Specifically, the position change notification can be a short message reminder, a voice / phone reminder, or an APP / miniprogram reminder.
[0062] S140: receiving feedback of the updated second position submitted by the first terminal, and updating the second position.
[0063] In this step, the owner can feed back the update information of the second position through the first terminal to update and calibrate the second position, so as to provide correct positioning information when the gas alarm occurs. By updating the second position information in the database, the loss of function when the positioning unit is damaged or fails is avoided, and the positioning accuracy of the gas equipment is improved.
[0064] Optionally, in one embodiment of the present application, the method further comprises:
[0065] acquiring a first time length;
[0066] if the first time length is equal to a first preset time length and no feedback of updating the second position submitted by the first terminal is received, issuing a position change notification to the second terminal to make a second object verify the installation position of the target gas alarm; the second object is used to represent a gas management personnel of a community where the target gas alarm is located, and the second terminal is used to represent a terminal of the second object.
[0067] In some possible implementations, if the first time length is not received for a long time, the gas management personnel of the community can be notified to make an on-site verification. Specifically, the first time length can be determined according to the gas use frequency of the owner. For a high use frequency, a shorter first time length is set; for a low use frequency, a longer first time length is set. Through the double protection of the gas management personnel of the community, the accuracy of the second position information is improved.
[0068] Optionally, in one embodiment of the present application, the implementation method is used for gas alarm, and the method comprises:
[0069] acquiring a first gas concentration;
[0070] if the first gas concentration is greater than a first threshold value, issuing a gas leakage risk warning to the first terminal to make the owner check the use of gas in time.
[0071] Referring to Figure 2 if the first gas concentration is greater than the first threshold value, when it is not yet in the threshold range of alarm, it indicates that there is a possibility of gas leakage, a gas leakage risk warning is issued to inform the user to check the use of gas. Further, a gas leakage checking strategy or steps can be sent to the first terminal to guide the operation of the user.
[0072] Optionally, in one embodiment of the present application, the method further comprises the following steps:
[0073] if the first gas concentration is greater than a second threshold value, opening an exhaust fan and closing an electromagnetic valve to close the gas supply of the unit; the second threshold value is greater than the first threshold value;
[0074] sending the second position and the gas alarm information to the second terminal to make a second object go to the second position for troubleshooting; the second object is used to represent a gas management personnel of a community where the target gas alarm is located, and the second terminal is used to represent a terminal of the second object.
[0075] In this step, if the first gas concentration is greater than the second threshold value, it indicates that the threshold value of the alarm is reached, and measures need to be taken. Specifically, referring to Figure 3 The exhaust fan is opened, and the electromagnetic valve is closed, thereby reducing the probability of fire occurrence, reducing the concentration of harmful gases in the space, and avoiding damage to the human body. Specifically, the first threshold value and the second threshold value are set according to the actual situation, and at the same time, they can also be set according to the accuracy of the sensor.
[0076] Optionally, in an embodiment of the present application, the method further comprises:
[0077] acquiring a second duration;
[0078] if the second duration is equal to a second preset duration, acquiring a second gas concentration;
[0079] if the second gas concentration is greater than the first gas concentration, issuing a secondary gas leakage warning to the first terminal.
[0080] Specifically, if the gas concentration measured twice in succession shows an upward trend, it indicates that the equipment is leaking and the fault has not been resolved, at which time a secondary gas leakage warning is sent to remind the importance of the owner. At the same time, relevant information can also be sent to the gas management personnel of the community to cooperate in troubleshooting.
[0081] Optionally, in an embodiment of the present application, the method further comprises:
[0082] acquiring a first height of a target gas alarm; the first height is used to represent the altitude position of the gas alarm, and the first height is obtained by a positioning unit of the gas alarm;
[0083] querying a second height corresponding to the target gas alarm in the first database;
[0084] if the first height and the second height are inconsistent, issuing a height change notification to the first terminal.
[0085] In this step, the height information detected by the positioning unit can be used to determine whether the height / floor data in the database is accurate. The existing positioning unit can satisfy the positioning of the floor, and for the case that the user transfers the gas equipment to the same building but belongs to different floors, the installation position can be updated, and the positioning accuracy of the gas device is improved.
[0086] Optionally, in an embodiment of the present application, the implementation method is used for recording gas data, and the method further comprises:
[0087] storing a plurality of third gas concentrations according to generation time; the plurality of third gas concentrations are used to represent concentration information acquired at different times;
[0088] acquire a third time length;
[0089] If the third time length is equal to a third preset time length, sequentially upload the third gas concentration to the server.
[0090] Specifically, the gas concentration information collected by the embodiment of the application is first stored in the local storage, and when the set upload time is reached, the collected gas concentration information is sequentially uploaded to the cloud server. It is convenient for gas-related management or maintenance personnel to call and view historical data.
[0091] Secondly, referring to the attached Figure 4 The implementation system of the gas alarm is described according to the embodiment of the application.
[0092] Figure 4 It is the implementation system structure diagram of the gas alarm of one embodiment of the application, the implementation system is used for updating the installation position of the gas alarm, the system includes:
[0093] The first module 410 is used for acquiring the first position of the target gas alarm; the first position is used to represent the plane position of the gas alarm, and the first position is obtained by the positioning unit of the gas alarm;
[0094] The second module 420 is used for querying the second position corresponding to the target gas alarm in the first database; the first database is used to store the position information of the gas alarm;
[0095] The third module 430 is used for sending a position change notification to the first terminal if the first position is inconsistent with the second position; the first terminal is used to represent the terminal belonging to the owner of the target gas alarm;
[0096] The fourth module 440 is used for receiving the feedback of updating the second position submitted by the first terminal, and updating the second position.
[0097] In some possible implementation manners, referring to Figure 5 An embodiment is shown in the figure, in which the circle represents the shape of the shell of the device. At the same time, the device can also include an audible and visual alarm device. Through the audible and visual alarm device, maintenance personnel or firefighters can quickly find the specific unit / portal after reaching the positioning position, thereby improving the troubleshooting speed and the safety of the gas equipment.
[0098] It can be seen that the contents in the above method embodiments are applicable to the system embodiments, the system embodiments specifically implement the same functions as the above method embodiments, and achieve the same beneficial effects as the above method embodiments.
[0099] Referring toFigure 6 The embodiment of the present application provides an implementation device of a gas alarm, comprising:
[0100] at least one processor 610;
[0101] at least one memory 620, used for storing at least one program;
[0102] When the at least one program is executed by the at least one processor 610, the at least one processor 610 implements the implementation method of the gas alarm.
[0103] Similarly, the contents in the above method embodiments are all applicable to the present device embodiment, the device embodiment specifically implements the functions same as those of the above method embodiments, and achieves the beneficial effects same as those of the above method embodiments.
[0104] The embodiment of the present application further provides a computer readable storage medium, wherein the computer readable storage medium stores a program executable by the processor 610, and the program executable by the processor 610 is used for executing the above implementation method of the gas alarm when the program is executed by the processor 610.
[0105] Similarly, the contents in the above method embodiments are all applicable to the present storage medium embodiment, the storage medium embodiment specifically implements the functions same as those of the above method embodiments, and achieves the beneficial effects same as those of the above method embodiments.
[0106] In some alternative embodiments, the functions / operations mentioned in the block diagram can not occur in the order mentioned in the operation diagram. For example, depending on the functions / operations involved, two blocks shown in succession can actually be executed substantially simultaneously or the blocks can be executed in reverse order at times. In addition, the embodiments presented and described in the flowcharts of the present application are provided by way of example, and the purpose is to provide a more comprehensive understanding of the technology. The disclosed method is not limited to the operations and logical flows presented herein. Alternative embodiments are contemplated in which the order of various operations is changed and in which sub-operations described as part of larger operations are independently executed.
[0107] Furthermore, although the present application is described in the context of functional modules, it is understood that one or more of the functions and / or features can be integrated in a single physical device and / or software module, or one or more functions and / or features can be implemented in separate physical devices or software modules. It is also understood that a detailed discussion of the actual implementation of each module is unnecessary to an understanding of the present application. Rather, the actual implementation is within the routine skill of engineers familiar with the property, function and internal relationships of the various functional modules disclosed herein. Accordingly, the present application is not limited to the specific details of the functional modules described herein. Rather, it is understood that the skilled artisan, using ordinary skill in the art, can implement the application as taught in the claims without undue experimentation. It is also understood that the specific concepts disclosed are merely illustrative and that the scope of the present application is determined by the appended claims and their equivalents.
[0108] If the functions are implemented in software function units and sold or used as independent products, they can be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the present application essentially or the part that contributes to the prior art or the part of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several programs used to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the methods described in the various embodiments of the present application. The aforementioned storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, and various media that can store program codes.
[0109] The logic and / or steps represented in the flowchart or otherwise described herein, for example, can be considered a list of executable instructions for implementing logic functions, and can be specifically embodied in any computer-readable medium for use by or in connection with a program execution system, apparatus or device, such as a computer-based system, a system including a processor or other system that can take programs from a program execution system, apparatus or device and execute them. For the purpose of this specification, "computer-readable medium" can be any device that can contain, store, communicate, propagate or transport programs for use by or in connection with a program execution system, apparatus or device or in conjunction with these program execution systems, apparatus or devices. The program can be in the form of a program product, storage medium or memory that can be accessed by a program execution system, apparatus or device. Accordingly, the present application is not limited to the specific details of the functional modules described herein. Rather, it is understood that the skilled artisan, using ordinary skill in the art, can implement the application as taught in the claims without undue experimentation. It is also understood that the specific concepts disclosed are merely illustrative and that the scope of the present application is determined by the appended claims and their equivalents.
[0110] More specific examples (a non-exhaustive list) of the computer-readable medium include the following: an electrical connection (electronic) having one or more wires, a portable computer diskette (magnetic), a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or Flash memory), an optical fiber, and a portable compact disc read-only memory (CDROM). Additionally, the computer-readable medium can also be paper or another suitable medium upon which the program is printed, as the program can be electronically captured, for example, via optical scanning of the paper or other medium, then compiled, interpreted, or otherwise processed in a suitable manner, if necessary, and then stored in a computer memory.
[0111] It should be understood that aspects of the application can be implemented in hardware, software, firmware or combinations thereof. In the above embodiments, various steps or methods can be implemented in software or firmware that is stored in memory and executed by a suitable
[0112] In the above description of the present specification, the description referring to the terms "one embodiment", "another embodiment" or "certain embodiments" or the like means that a specific feature, structure, material or characteristic described in connection with the embodiments or examples is included in at least one embodiment or example of the present specification. The illustrative expressions are not necessarily referred to the same embodiments or examples throughout the specification. Also, the specific features, structures, materials or characteristics can be combined in any one or more embodiments or examples in an appropriate manner.
[0113] Although the embodiments of the present application have been shown and described, it would be appreciated by those skilled in the art that changes, modifications, alternatives and variations to these embodiments could be made without departing from the principles and spirit of the application, the scope of which is defined by the claims and their equivalents.
[0114] The above is a specific description of the preferred embodiments of the present application, but the present application is not limited to the described embodiments, and those skilled in the art can make various equivalent modifications or replacements without departing from the spirit of the present application, and these equivalent modifications or replacements are included in the scope defined by the claims of the present application.
Claims
1. A method for implementing a gas alarm, characterized in that, The method described above is used to update the installation location of a gas alarm, and the method includes the following steps: Obtain the first position of the target gas alarm; the first position is used to characterize the planar position of the gas alarm, and the first position is obtained through the positioning unit of the target gas alarm; Query the second location corresponding to the target gas alarm in the first database; the first database is used to store the location information of gas alarms. If the first location is inconsistent with the second location, a location change notification is sent to the first terminal; the first terminal is used to identify the terminal belonging to the owner of the target gas alarm. Receive feedback from the first terminal requesting an update of the second location, and update the second location accordingly; The method further includes: determining whether the height data in the database is accurate based on the height information detected by the positioning unit.
2. The method for implementing a gas alarm according to claim 1, characterized in that, The method further includes: Get the first duration; If the first duration is equal to the first preset duration and no feedback on updating the second location is received from the first terminal, a location change notification is sent to the second terminal so that the second object can verify the installation location of the target gas alarm; the second object is used to represent the gas management personnel of the community where the target gas alarm is located, and the second terminal is used to represent the terminal belonging to the second object.
3. The method for implementing a gas alarm according to claim 1, characterized in that, The implementation method is used for gas alarm, and the method includes: Obtain the first gas concentration; If the concentration of the first gas is greater than the first threshold, a gas leak risk warning is sent to the first terminal so that the owner can check the gas usage status in a timely manner.
4. The method for implementing a gas alarm according to claim 3, characterized in that, The method further includes the following steps: If the first gas concentration is greater than the second threshold, the exhaust fan is turned on and the solenoid valve is turned off to shut off the gas supply to the unit; the second threshold is greater than the first threshold. The second location and gas alarm information are sent to the second terminal so that the second object can go to the second location to troubleshoot the fault; the second object is used to identify the gas management personnel of the community where the target gas alarm is located, and the second terminal is used to identify the terminal of the second object.
5. The method for implementing a gas alarm according to claim 3, characterized in that, The method further includes: Get the second duration; If the second duration equals the second preset duration, obtain the second gas concentration; If the concentration of the second gas is greater than the concentration of the first gas, a level two gas leak warning is issued to the first terminal.
6. The method for implementing a gas alarm according to claim 1, characterized in that, The method further includes: The first altitude of the target gas alarm is obtained; the first altitude is used to characterize the altitude position of the gas alarm, and the first altitude is obtained through the positioning unit of the gas alarm. Query the second height corresponding to the target gas alarm described in the first database; If the first altitude is inconsistent with the second altitude, an altitude change notification is sent to the first terminal.
7. The method for implementing a gas alarm according to claim 1, characterized in that, The implementation method is used for recording gas data, and the method further includes: Several third gas concentrations are stored according to their generation time; the several third gas concentrations are used to characterize the concentration information obtained at different times. Obtain the third duration; If the third duration is equal to the third preset duration, the concentrations of the third gases are uploaded to the server in sequence.
8. A system for implementing a gas alarm, characterized in that, The system is used to update the installation location of gas alarms, and the system includes: The first module is used to obtain the first position of the target gas alarm; the first position is used to characterize the planar position of the gas alarm, and the first position is obtained by the positioning unit of the gas alarm. The second module is used to query the second location corresponding to the target gas alarm in the first database; the first database is used to store the location information of the gas alarm. The third module is used to send a location change notification to the first terminal if the first location is inconsistent with the second location; the first terminal is used to identify the terminal belonging to the owner of the target gas alarm. The fourth module is used to receive feedback from the first terminal requesting an update of the second location, and to update the second location. It is also used to: determine whether the height data in the database is accurate based on the height information detected by the positioning unit.
9. A device for implementing a gas alarm, characterized in that, include: At least one processor; At least one memory for storing at least one program; When the at least one program is executed by the at least one processor, the at least one processor implements the method for implementing a gas alarm as described in any one of claims 1 to 7.
10. A computer-readable storage medium storing a processor-executable program, characterized in that: The processor-executable program, when executed by the processor, is used to implement the method of implementing the gas alarm as described in any one of claims 1 to 7.
Citation Information
Patent Citations
Household gas monitoring system
CN213276923U
Gas meter and management system therefor
JP2004257965A