A smart lock cloud platform monitoring and alarm method

Through smart lock status monitoring and analysis, a variety of warning and maintenance solutions are provided, which solves the problem of single smart lock monitoring and alarm mode in existing technology, improves safety and service life, and reduces safety risks.

CN118958791BActive Publication Date: 2025-09-26SUZHOU KUNSHAN GENERAL LOCKSET CO LTD
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Patent Information

Application Number
CN202410988084.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-09-26
Estimated Expiration
2044-07-23

AI Technical Summary

Technical Problem

The existing technology has a single monitoring and alarm method for smart locks, which is unable to issue corresponding warnings for different types of damage, and fails to carry out maintenance in a timely manner, resulting in safety hazards and reduced service life.

Method used

Through smart lock status monitoring, the damage method is analyzed and the alarm type is determined. The feasibility of the response method is evaluated, corresponding warnings are sent, and maintenance suggestions are provided based on the damage type.

Benefits of technology

It realizes diversified warnings and timely maintenance of smart locks, improves safety and service life, reduces safety risks, and provides comprehensive security protection and good user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a smart lock cloud platform monitoring and alarm method, which relates to the technical field of smart lock monitoring and alarm. The present invention includes smart lock status monitoring, alarm type analysis, warning method judgment, smart door maintenance analysis and result display. By monitoring the damage type corresponding to each smart door and analyzing the alarm type corresponding to each smart door, a corresponding response method is made, and at the same time, the feasibility of the response method corresponding to each smart door is judged, so as to effectively solve the illegal damage faced by each smart door, and promptly carry out the next step solution for the smart lock whose response method is not feasible, and comprehensively maintain the safety of the smart lock. At the same time, the damage area ratio corresponding to each smart door is obtained and analyzed, and according to the alarm type corresponding to each smart door received by the cloud platform, the maintenance method corresponding to each smart door is analyzed, and the user is reminded to perform smart door maintenance in time to prevent safety hazards, thereby providing comprehensive safety protection for the user.
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Description

Technical Field

[0001] The present invention relates to the technical field of smart lock monitoring and alarm technology, and in particular to a smart lock cloud platform monitoring and alarm method. Background Art

[0002] With the advancement of science and technology and people's increasing attention to security issues, the emergence of smart lock cloud platforms has provided strong support for the security monitoring and alarm of each smart lock. Through the cloud platform, multiple smart locks can be monitored and managed in real time, efficient intelligent management can be achieved, and corresponding warnings can be issued for each smart lock that has suffered different types of damage, thereby comprehensively protecting the life safety and family safety of each user. At the same time, corresponding maintenance can be made for each smart lock that has suffered corresponding types of damage, avoiding residual safety hazards and improving the service life and safety of smart locks.

[0003] Current technology for monitoring smart locks is still relatively superficial, so the following problems still exist: 1. The current technology's warning method for each smart lock being damaged by outsiders is too simple, and does not make different warnings for each type of damage suffered by each smart lock. This will result in limited warning effects and fail to deter criminals, and thus fail to provide more comprehensive security protection. The safety of each user cannot be guaranteed, which will reduce the user experience and affect the user's trust in and usage experience of smart locks.

[0004] 2. When current technical monitoring detects that each smart lock has been damaged by external means, it only sends the type of damage to the cloud platform and issues a warning. At the same time, the damage behavior of each smart lock is sent to each user, and no subsequent maintenance is performed. This will leave safety hazards, and the safety and property of each user cannot be properly protected. It will also cause the smart lock to be unable to be used normally, causing inconvenience to life and reducing the service life and safety of the lock. Summary of the Invention

[0005] In view of the above-mentioned technical deficiencies, the purpose of the present invention is to provide a smart lock cloud platform monitoring and alarm method.

[0006] In order to solve the above technical problems, the present invention adopts the following technical solutions: The present invention provides a smart lock cloud platform monitoring and alarm method, including: step 1, smart lock status monitoring: by monitoring the corresponding status of each smart door, and then monitoring the corresponding damage mode of each smart door.

[0007] Step 2: Alarm type analysis: According to the corresponding damage mode of each smart door, the alarm type corresponding to each smart door is analyzed and transmitted to the cloud platform. The cloud platform sends instructions to control the smart lock to issue the corresponding response mode.

[0008] Step 3. Determine the warning method: monitor the damage information corresponding to each smart door, where the damage information includes the length of stay before response, the length of crowd stay, the damage intensity before response, and the damage intensity, and then analyze to obtain the feasibility assessment coefficient of the response method corresponding to each smart door, and determine the feasibility of the response method corresponding to each smart door. If the response method corresponding to a smart door is not feasible, then the smart door is recorded as the target smart door, and each target smart door is obtained. The warning method corresponding to each target smart door is analyzed. If the response method corresponding to a smart door is feasible, then the response method corresponding to each smart door is obtained, and the cloud platform is stopped from controlling the alarm behavior corresponding to the smart door and continuously sending text messages to multiple home users.

[0009] Step 4: Smart door maintenance analysis: Obtain the main control chip current, circuit board resistance, and number of lock tongue jams corresponding to each smart door, and then analyze and obtain the internal evaluation coefficient corresponding to each smart door. Based on the alarm type corresponding to each smart door, further analyze and obtain the corresponding maintenance method for each smart door.

[0010] Step 5. Result display: Display the alarm type corresponding to each smart door, the warning method corresponding to each target smart door, and the maintenance method corresponding to each smart door.

[0011] Preferably, the monitoring obtains the corresponding destruction mode of each smart door. The specific monitoring process is as follows: a camera is installed above each smart door, and the camera is used to monitor the activities outside the door corresponding to each smart door in each time period in real time, and the corresponding behavioral actions of abnormal people are obtained from the activities outside the door corresponding to each smart door in each time period, so as to monitor the corresponding destruction mode of each smart door and transmit it to the cloud platform.

[0012] Preferably, the analysis obtains the alarm type corresponding to each smart door, and the specific analysis process is as follows: the destruction method corresponding to each smart door is compared with the alarm type corresponding to each historical destruction method set stored in the cloud platform database. If the destruction method corresponding to a smart door is within a historical destruction method set stored in the cloud platform database, the alarm type corresponding to the historical destruction method is used as the alarm type of the smart door, and the alarm type corresponding to each smart door is obtained by analysis.

[0013] Preferably, the feasibility evaluation coefficient of the corresponding response mode of each smart door is obtained by the analysis. The specific analysis process is as follows: , the analysis results are Feasibility evaluation coefficient of the corresponding response mode of each smart door , is the number of each smart door, , is any integer greater than 2, The length of time before response, In response to the previous destructive force, For the The length of time people stay at each smart door. For the The destructive strength corresponding to each smart door is: 、 are the weight factors of the retention time before response and the damage intensity before response, respectively. , .

[0014] Preferably, the feasibility of the response mode corresponding to each smart door is judged, and the specific judgment process is as follows: the feasibility evaluation coefficient of the response mode corresponding to each smart door is compared with the feasibility evaluation coefficient threshold stored in the cloud platform database. If the feasibility evaluation coefficient of the response mode corresponding to a smart door is greater than the feasibility evaluation coefficient threshold stored in the cloud platform database, then the response mode corresponding to the smart door is judged to be infeasible; if the feasibility evaluation coefficient of the response mode corresponding to a smart door is less than or equal to the feasibility evaluation coefficient threshold stored in the cloud platform database, then the response mode corresponding to the smart door is judged to be feasible, thereby judging the feasibility of the response mode corresponding to each smart door.

[0015] Preferably, the analysis of the warning method corresponding to each target smart door is carried out as follows: the feasibility assessment coefficient corresponding to each target smart door is compared with the feasibility assessment coefficient corresponding to each warning method stored in the cloud platform database. If the feasibility assessment coefficient corresponding to a target smart door is the same as the feasibility assessment coefficient corresponding to a warning method stored in the database, then the warning method is used as the warning method corresponding to the target smart door, thereby obtaining the warning method corresponding to each target smart door.

[0016] Preferably, the calculation obtains the internal evaluation coefficient corresponding to each smart door, and the specific analysis process is as follows: by calculating the formula , the analysis results are Internal evaluation coefficient corresponding to each smart door , is the number of each smart door, , is any integer greater than 2, is the set permitted main control chip current, For the The main control chip current corresponding to each smart door, To set the permissible board resistance, For the The circuit board resistance corresponding to each smart door, The number of times the lock tongue is stuck is set. For the The number of lock tongue jams corresponding to each smart door, 、 、 The weight factor of the allowed main control chip current, the weight factor of the allowed circuit board resistance, and the weight factor of the allowed number of lock tongue jams are set. , , .

[0017] Preferably, the analysis obtains the maintenance method corresponding to each smart door, and the specific analysis process is as follows: the internal evaluation coefficient corresponding to each smart door is compared with the internal evaluation coefficient set corresponding to each smart door stored in the cloud platform database, and the alarm type corresponding to each smart door is also compared with the maintenance method corresponding to each historical alarm type stored in the cloud platform database. If the internal evaluation coefficient corresponding to a smart door is in the internal evaluation coefficient set corresponding to the smart door stored in the cloud platform database, and the alarm type corresponding to a smart door is the same as a historical alarm type stored in the cloud platform database, then the maintenance method corresponding to the historical alarm type is used as the maintenance method corresponding to the smart door, and the maintenance method corresponding to each smart door is obtained by analysis.

[0018] Compared with the prior art, the beneficial effects of the present invention are as follows: the present invention provides a smart lock cloud platform monitoring alarm method, which monitors the status of each smart door, obtains the damage type corresponding to each smart door, and analyzes the alarm type corresponding to each smart door, so as to make a corresponding response method, and at the same time judges the feasibility of the response method corresponding to each smart door, thereby effectively solving the illegal damage faced by each smart door, timely marking the smart locks whose response methods are not feasible and taking the next step of solution, comprehensively maintaining the security of the smart lock, and at the same time obtaining and analyzing the damage area ratio corresponding to each smart door, and analyzing the alarm type corresponding to each smart door received by the cloud platform. The corresponding maintenance method for each smart door is obtained and sent to the user, reminding the user to perform smart door maintenance in time to prevent safety hazards, providing users with comprehensive security protection, solving the shortcomings in current technology, and monitoring and managing multiple smart locks in real time through the cloud platform, and then making corresponding warnings for each smart lock that suffers different types of damage, so as to comprehensively protect the life safety and family safety of each user, reduce the safety risks of smart locks, and at the same time make corresponding maintenance for each smart lock that suffers corresponding types of damage, avoid residual safety hazards, improve the service life and safety of the lock, provide users with a good smart lock usage experience, and reduce losses and dangers. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0020] Figure 1 The figure is a schematic flow chart of the steps for implementing the method of the present invention. DETAILED DESCRIPTION

[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0022] Step 1: Smart lock status monitoring: By monitoring the status of each smart door, the corresponding damage mode of each smart door can be obtained.

[0023] It should be noted that the activities outside the door refer to the actions taken by people passing by the smart locks. Abnormal people refer to people who do not leave after passing the smart door and at the same time commit destructive actions against the smart locks. They are therefore called abnormal people. The actions include artificial slapping, kicking, kicking and prying the door.

[0024] As an optional implementation method, the monitoring obtains the corresponding destruction method of each smart door. The specific monitoring process is as follows: a camera is installed above each smart door, and the camera is used to monitor the activities outside the door corresponding to each smart door in each time period in real time, and the corresponding behavioral actions of abnormal people are obtained from the activities outside the door corresponding to each smart door in each time period, so as to monitor the corresponding destruction method of each smart door and transmit it to the cloud platform.

[0025] Step 2: Alarm type analysis: According to the corresponding damage mode of each smart door, the alarm type corresponding to each smart door is analyzed and transmitted to the cloud platform. The cloud platform sends instructions to control the smart lock to issue the corresponding response mode.

[0026] It should be noted that the cloud platform receives the damage methods transmitted by each smart door and classifies the corresponding alarm types. For example, if an abnormal group of people keeps slapping a smart door but does not perform other violent behaviors, it is classified as a mild alarm type. If an abnormal group of people kicks or slams the door against a smart door continuously, it is classified as a moderate alarm type. If an abnormal group of people kicks or slams the door against a smart door and tries to pry the lock, it is classified as a severe alarm type, and so on. The alarm type corresponding to each smart door is then analyzed.

[0027] It should also be noted that the response method is implemented according to the alarm type corresponding to each smart door. For example, if the alarm type corresponding to a smart door is mild, a low-pitched ring tone prompt is issued. If the alarm type corresponding to a smart door is moderate, a high-pitched tone and strong light dual prompt is issued, and a text message is sent to each user. If the alarm type corresponding to a smart door is severe, a prompt in addition to the high-pitched tone and strong light is issued, and then a text message and video are sent to the user, and a text message or telephone alarm is implemented at the same time, etc.

[0028] As an optional implementation method, the analysis obtains the alarm type corresponding to each smart door. The specific analysis process is as follows: the destruction method corresponding to each smart door is compared with the alarm type corresponding to each historical destruction method set stored in the cloud platform database. If the destruction method corresponding to a smart door is within a historical destruction method set stored in the cloud platform database, the alarm type corresponding to the historical destruction method is used as the alarm type of the smart door, and the alarm type corresponding to each smart door is obtained by analysis.

[0029] Step 3. Determine the warning method: monitor the damage information corresponding to each smart door, where the damage information includes the length of stay before response, the length of crowd stay, the damage intensity before response, and the damage intensity, and then analyze to obtain the feasibility assessment coefficient of the response method corresponding to each smart door, and determine the feasibility of the response method corresponding to each smart door. If the response method corresponding to a smart door is not feasible, then the smart door is recorded as the target smart door, and each target smart door is obtained. The warning method corresponding to each target smart door is analyzed. If the response method corresponding to a smart door is feasible, then the response method corresponding to each smart door is obtained, and the cloud platform is stopped from controlling the alarm behavior corresponding to the smart door and continuously sending text messages to multiple home users.

[0030] It should be noted that the arrival time and destruction time of the abnormal crowd corresponding to each smart door before the response are obtained from the cloud platform, and the destruction time is subtracted from the arrival time to obtain the corresponding residence time before the response of each smart door. The start response time and end response time of each smart door are obtained from the cloud platform, and the end response time is subtracted from the start response time to obtain the corresponding crowd stay time of each smart door. Pressure sensors are installed on the smart doors to obtain the corresponding destructive force and destructive intensity before the response of each smart door.

[0031] It should also be noted that when the corresponding response method is not feasible and fails to deter abnormal people, other warning methods will be adopted, such as self-locking of door locks, sending a large number of text messages to users, and alarming, etc.

[0032] As an optional implementation, the analysis obtains the feasibility evaluation coefficient of the corresponding response mode of each smart door. The specific analysis process is as follows: By calculating the formula , the analysis results are Feasibility evaluation coefficient of the corresponding response mode of each smart door , is the number of each smart door, , is any integer greater than 2, The length of time before response, In response to the previous destructive force, For the The length of time people stay at each smart door. For the The destructive strength corresponding to each smart door is: 、 are the weight factors of the retention time before response and the damage intensity before response, respectively. , .

[0033] It should be noted again that the weight factors of the retention time before response and the destructive force before response are set by smart lock experts.

[0034] As an optional implementation method, the feasibility of the response mode corresponding to each smart door is judged, and the specific judgment process is as follows: the feasibility evaluation coefficient of the response mode corresponding to each smart door is compared with the feasibility evaluation coefficient threshold stored in the cloud platform database. If the feasibility evaluation coefficient of the response mode corresponding to a smart door is greater than the feasibility evaluation coefficient threshold stored in the cloud platform database, then the response mode corresponding to the smart door is judged to be infeasible; if the feasibility evaluation coefficient of the response mode corresponding to a smart door is less than or equal to the feasibility evaluation coefficient threshold stored in the cloud platform database, then the response mode corresponding to the smart door is judged to be feasible, thereby judging the feasibility of the response mode corresponding to each smart door.

[0035] As an optional implementation method, the analysis of the warning method corresponding to each target smart door is carried out as follows: the feasibility assessment coefficient corresponding to each target smart door is compared with the feasibility assessment coefficient corresponding to each warning method stored in the cloud platform database. If the feasibility assessment coefficient corresponding to a target smart door is the same as the feasibility assessment coefficient corresponding to a warning method stored in the database, then the warning method is used as the warning method corresponding to the target smart door, thereby obtaining the warning method corresponding to each target smart door.

[0036] Step 4: Smart door maintenance analysis: Obtain the main control chip current, circuit board resistance, and number of lock tongue jams corresponding to each smart door, and then analyze and obtain the internal evaluation coefficient corresponding to each smart door. Based on the alarm type corresponding to each smart door, further analyze and obtain the corresponding maintenance method for each smart door.

[0037] It should be noted that a multimeter is used to obtain the main control chip current and circuit board resistance corresponding to each smart door, and the number of lock tongue jams corresponding to each smart door is obtained from the cloud platform.

[0038] It should also be noted that the maintenance method is to implement corresponding maintenance through the alarm type and internal evaluation coefficient corresponding to each smart door. For example, if the alarm type corresponding to a smart door is mild and the internal evaluation coefficient is small, simple cleaning and maintenance are performed, including gently wiping the surface with a soft cloth to ensure that there is no dust and dirt accumulation, and regular lubrication of key components. If the alarm type corresponding to a smart door is moderate and the internal evaluation coefficient is in the middle, severely damaged parts are replaced and damaged electronic components are repaired. If the alarm type corresponding to a smart door is severe and the internal evaluation coefficient is large, the entire lock is disassembled, the internal components are checked, damaged parts are replaced, the system is reconfigured, etc., and the maintenance methods corresponding to each smart door are obtained through analysis, and sent to users in the form of text messages through the cloud platform to provide users with a complete maintenance plan.

[0039] As an optional implementation, the calculation obtains the internal evaluation coefficient corresponding to each smart door. The specific analysis process is as follows: By calculating the formula , the analysis results are Internal evaluation coefficient corresponding to each smart door , is the number of each smart door, , is any integer greater than 2, is the set permitted main control chip current, For the The main control chip current corresponding to each smart door, To set the permissible board resistance, For the The circuit board resistance corresponding to each smart door, The number of times the lock tongue is stuck is set. For the The number of lock tongue jams corresponding to each smart door, 、 、 The weight factor of the allowed main control chip current, the weight factor of the allowed circuit board resistance, and the weight factor of the allowed number of lock tongue jams are set. , , .

[0040] It should be noted again that the weight factors of the permitted main control chip current, the permitted circuit board resistance, and the permitted number of lock tongue jams are set by smart lock experts.

[0041] As an optional implementation method, the analysis obtains the maintenance method corresponding to each smart door. The specific analysis process is as follows: the internal evaluation coefficient corresponding to each smart door is compared with the internal evaluation coefficient set corresponding to each smart door stored in the cloud platform database. At the same time, the alarm type corresponding to each smart door is also compared with the maintenance method corresponding to each historical alarm type stored in the cloud platform database. If the internal evaluation coefficient corresponding to a smart door is in the internal evaluation coefficient set corresponding to the smart door stored in the cloud platform database, and the alarm type corresponding to a smart door is the same as a historical alarm type stored in the cloud platform database, then the maintenance method corresponding to the historical alarm type is used as the maintenance method corresponding to the smart door, and the maintenance method corresponding to each smart door is obtained by analysis.

[0042] Step 5. Result display: Display the alarm type corresponding to each smart door, the warning method corresponding to each target smart door, and the maintenance method corresponding to each smart door.

[0043] In an embodiment of the present invention, the corresponding status of each smart door is monitored to obtain the corresponding damage type of each smart door, and the corresponding alarm type of each smart door is analyzed to make a corresponding response method. At the same time, the feasibility of the corresponding response method of each smart door is determined, thereby effectively solving the illegal damage faced by each smart door. Smart locks with unfeasible response methods are marked in a timely manner and further resolved, thereby comprehensively maintaining the security of the smart locks. At the same time, the damage area ratio of each smart door is obtained and analyzed. Based on the alarm type of each smart door received by the cloud platform, the maintenance method corresponding to each smart door is analyzed and sent to the user, reminding the user to perform smart door maintenance in a timely manner to prevent safety hazards. This provides comprehensive security protection for the user, solves the shortcomings of the current technology, monitors and manages multiple smart locks in real time through the cloud platform, and then issues a one-to-one warning for each smart lock subjected to different types of damage, thereby comprehensively protecting the life safety and family safety of each user, reducing the security risks of the smart locks, and performing corresponding maintenance for each smart lock subjected to the corresponding damage type to avoid residual safety hazards, improve the service life and safety of the locks, provide users with a good smart lock user experience, and reduce losses and risks.

[0044] The above content is merely an example and explanation of the concept of the present invention. Those skilled in the art may make various modifications or additions to the described specific embodiments or replace them in a similar manner. As long as they do not deviate from the concept of the invention or exceed the scope defined in this specification, they should all fall within the scope of protection of the present invention.

Claims

1. A smart lock cloud platform monitoring and alarm method, characterized in that: include: Step 1: Smart lock status monitoring: By monitoring the status of each smart door, the corresponding damage mode of each smart door is obtained; Step 2: Alarm type analysis: According to the corresponding damage mode of each smart door, the corresponding alarm type of each smart door is analyzed and transmitted to the cloud platform. The cloud platform sends instructions to control the smart lock to issue the corresponding response mode; Step 3: Determine the warning method: monitor the damage information corresponding to each smart door, where the damage information includes the length of stay before response, the length of crowd stay, the damage intensity before response, and the damage intensity, and then analyze to obtain the feasibility assessment coefficient of the response method corresponding to each smart door, and determine the feasibility of the response method corresponding to each smart door. If the response method corresponding to a smart door is not feasible, then record the smart door as the target smart door, obtain each target smart door, and analyze the warning method corresponding to each target smart door. If the response method corresponding to a smart door is feasible, then obtain the response method corresponding to each smart door, and stop the cloud platform from controlling the alarm behavior corresponding to the smart door and continuously sending text messages to multiple home users. The analysis obtains the feasibility evaluation coefficient of the corresponding response mode of each smart door. The specific analysis process is as follows: By calculating the formula , the analysis results are Feasibility evaluation coefficient of the corresponding response mode of each smart door , is the number of each smart door, , is any integer greater than 2, The length of time before response, In response to the previous destructive force, For the The length of time people stay at each smart door. For the The destructive strength corresponding to each smart door is: 、 are the weight factors of the retention time before response and the damage intensity before response, respectively. , ; Step 4: Smart door maintenance analysis: Obtain the main control chip current, circuit board resistance, and number of lock tongue jams corresponding to each smart door, and then analyze and obtain the internal evaluation coefficient corresponding to each smart door. Based on the alarm type corresponding to each smart door, further analyze and obtain the corresponding maintenance method for each smart door; Step 5. Result display: Display the alarm type corresponding to each smart door, the warning method corresponding to each target smart door, and the maintenance method corresponding to each smart door.

2. The smart lock cloud platform monitoring and alarm method according to claim 1, characterized in that: The monitoring obtains the corresponding destruction mode of each smart door. The specific monitoring process is as follows: A camera is installed above each smart door to monitor the activities outside the smart door in real time during each time period. The behavior of abnormal people is obtained from the activities outside the smart door during each time period. The corresponding damage method of each smart door is monitored and transmitted to the cloud platform.

3. The smart lock cloud platform monitoring and alarm method according to claim 1, characterized in that: The analysis obtains the alarm type corresponding to each smart door. The specific analysis process is as follows: The destruction mode corresponding to each smart door is compared with the alarm type corresponding to each historical destruction mode set stored in the cloud platform database. If the destruction mode corresponding to a smart door is within a historical destruction mode set stored in the cloud platform database, the alarm type corresponding to the historical destruction mode is used as the alarm type of the smart door. The alarm type corresponding to each smart door is obtained through analysis.

4. The smart lock cloud platform monitoring and alarm method according to claim 1, characterized in that: The feasibility of the corresponding response mode of each smart door is determined in the following specific process: The feasibility assessment coefficient of the corresponding response method of each smart door is compared with the feasibility assessment coefficient threshold stored in the cloud platform database. If the feasibility assessment coefficient of the corresponding response method of a smart door is greater than the feasibility assessment coefficient threshold stored in the cloud platform database, the corresponding response method of the smart door is judged to be infeasible. If the feasibility assessment coefficient of the corresponding response method of a smart door is less than or equal to the feasibility assessment coefficient threshold stored in the cloud platform database, the corresponding response method of the smart door is judged to be feasible. The feasibility of the corresponding response method of each smart door is determined in this way.

5. The smart lock cloud platform monitoring and alarm method according to claim 1, characterized in that: The specific analysis process of analyzing the warning mode corresponding to each target smart door is as follows: The feasibility assessment coefficient corresponding to each target smart door is compared with the feasibility assessment coefficient corresponding to each warning method stored in the cloud platform database. If the feasibility assessment coefficient corresponding to a target smart door is the same as the feasibility assessment coefficient corresponding to a warning method stored in the database, then the warning method is used as the warning method corresponding to the target smart door, thereby obtaining the warning method corresponding to each target smart door.

6. The smart lock cloud platform monitoring and alarm method according to claim 1, characterized in that: The calculation results in the internal evaluation coefficient corresponding to each smart door. The specific analysis process is as follows: By calculating the formula , the analysis results are Internal evaluation coefficient corresponding to each smart door , is the number of each smart door, , is any integer greater than 2, is the set permitted main control chip current, For the The main control chip current corresponding to each smart door, To set the permissible board resistance, For the The circuit board resistance corresponding to each smart door, The number of times the lock tongue is stuck is set. For the The number of lock tongue jams corresponding to each smart door, 、 、 The weight factor of the allowed main control chip current, the weight factor of the allowed circuit board resistance, and the weight factor of the allowed number of lock tongue jams are set. , , .

7. The smart lock cloud platform monitoring and alarm method according to claim 1, characterized in that: The analysis results in the corresponding maintenance method for each smart door. The specific analysis process is as follows: The internal evaluation coefficient corresponding to each smart door is compared with the internal evaluation coefficient set corresponding to each smart door stored in the cloud platform database. At the same time, the alarm type corresponding to each smart door is also compared with the maintenance method corresponding to each historical alarm type stored in the cloud platform database. If the internal evaluation coefficient corresponding to a smart door is in the internal evaluation coefficient set corresponding to the smart door stored in the cloud platform database, and the alarm type corresponding to a smart door is the same as a historical alarm type stored in the cloud platform database, then the maintenance method corresponding to the historical alarm type is used as the maintenance method corresponding to the smart door, and the maintenance method corresponding to each smart door is obtained by analysis.

Citation Information

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