Intelligent door lock power consumption adjusting method and system, and storage medium

By dynamically updating the working time period of the unlocking processing module of the smart door lock, the problems of cumbersome power consumption adjustment and poor intelligence in the existing technology are solved, realizing the adaptive power consumption adjustment of the smart door lock and improving the power consumption adjustment effect.

CN115802457BActive Publication Date: 2026-04-28HUITAILONG DECORATION MATERIAL YUEXIU DIST GUANGZHOU +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
HUITAILONG DECORATION MATERIAL YUEXIU DIST GUANGZHOU
Filing Date
2022-11-02
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

Existing smart door locks require manual activation or activation at fixed time intervals for power consumption adjustment, which is cumbersome and lacks intelligence, resulting in mediocre power consumption adjustment performance.

Method used

By acquiring the preset start-up time period of the smart unlocking processing module, detecting the user's usage time, and dynamically updating the working time period of the smart unlocking processing module according to the user's usage, the module's working status is adaptively adjusted to reduce power consumption.

Benefits of technology

It achieves adaptive adjustment of power consumption in smart door locks, improving the intelligence and efficiency of power consumption adjustment and reducing power consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of intelligent door lock power consumption adjusting method, system and storage medium, applied to power consumption adjusting technical field, can realize adaptive adjustment intelligent door lock power consumption, effectively improve the adjustment effect of intelligent door lock power consumption.The method comprises: obtaining the preset starting time period of intelligent unlocking processing module, the preset starting time period is set as the working time period of the intelligent unlocking processing module;Detect the first time when the user uses the intelligent door lock;Wherein, the first time is outside the working time period;According to the first time and the working time period, update the working time period of the intelligent unlocking processing module;According to the working state of the intelligent unlocking processing module controlled by the updated working time period, and return the step of the first time when the user uses the intelligent door lock is detected.
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Description

Technical Field

[0001] This invention relates to the field of power consumption regulation technology, and in particular to a power consumption regulation method, system and storage medium for a smart door lock. Background Technology

[0002] With the continuous development of intelligent control technology, people's lives are gradually becoming more intelligent. For example, door locks can be wirelessly controlled via mobile terminals, eliminating the need to carry physical keys and making door locks more intelligent. However, prolonged use of the wireless communication module wastes the door lock's power. Related technologies primarily aim to reduce the power consumption of smart door locks by disabling the wireless communication module, requiring it to be manually turned on only during use or by setting fixed opening times. This approach requires manual activation or activation only during fixed periods, making it cumbersome, lacking in intelligence, and generally ineffective in power consumption regulation. Summary of the Invention

[0003] To address at least one of the aforementioned technical problems, this invention proposes a method, system, and storage medium for adjusting the power consumption of an intelligent door lock, which can adaptively adjust the power consumption of the intelligent door lock and effectively improve the power consumption adjustment effect.

[0004] On one hand, embodiments of the present invention provide a method for adjusting the power consumption of a smart door lock, comprising the following steps:

[0005] Obtain the preset start time period of the intelligent unlocking processing module, and set the preset start time period as the working time period of the intelligent unlocking processing module;

[0006] The system detects the first moment when a user uses the smart lock; wherein the first moment is outside the working time period.

[0007] The working time period of the intelligent unlocking processing module is updated according to the first moment and the working time period.

[0008] The working state of the smart unlocking processing module is controlled according to the updated working time period, and the step of detecting the first moment when the user uses the smart lock is returned.

[0009] A smart lock power consumption adjustment method according to an embodiment of the present invention has at least the following beneficial effects: First, this embodiment obtains a preset startup time period for the smart unlocking processing module and sets this preset startup time period as the working time period of the smart unlocking processing module in the smart lock. Next, this embodiment detects the moment when the user uses the smart lock outside the working time period, i.e., a first moment, and updates the working time period of the smart unlocking processing module based on the first moment and the working time period. By detecting the use of the smart lock outside the working time period of the smart unlocking processing module and updating the working time period in conjunction with the currently set working time period, adaptive adjustment of the smart lock power consumption is achieved, enabling the smart lock to dynamically update the working time period of the smart unlocking processing module according to the user's smart lock usage time. Furthermore, this embodiment controls the working state of the smart unlocking processing module according to the updated working time period of the smart unlocking processing module, thereby reducing the power consumption of the smart lock. Meanwhile, in this embodiment, after controlling the working state of the smart unlocking processing module according to the updated working time period of the smart unlocking processing module, the step of detecting the first moment when the user uses the smart door lock is returned, so as to realize the dynamic adjustment of the working time of the smart unlocking processing module and effectively improve the power consumption regulation effect of the smart door lock.

[0010] According to some embodiments of the present invention, the preset start-up time period for obtaining the intelligent unlocking processing module includes:

[0011] The intelligent unlocking processing module is activated to obtain the second moment when the user uses the intelligent door lock within a preset period of time.

[0012] The preset start-up time period is determined based on the second time point.

[0013] According to some embodiments of the present invention, controlling the working state of the intelligent unlocking processing module according to the updated working time period includes:

[0014] Determine that the current time falls within the updated working time period, and control the intelligent unlocking processing module to start;

[0015] Alternatively, if it is determined that the current time is not within the updated working time period, the intelligent unlocking processing module can be shut down.

[0016] According to some embodiments of the present invention, updating the working time period of the smart unlocking processing module based on the first moment and the working time period includes:

[0017] Based on the first time point and the third time point, a planned time period is calculated using a preset time zone division rule; wherein, the third time point is the corresponding time point of each time period in the work time period before the update, and the planned time period includes the first time period corresponding to the first time point and the second time period corresponding to the third time point;

[0018] The working time period is updated based on the first time period and the second time period.

[0019] According to some embodiments of the present invention, updating the working time period based on the first time period and the second time period includes:

[0020] If it is determined that there is no overlap between the first time period and the second time period, both the first time period and the second time period are set as the working time period.

[0021] Alternatively, if it is determined that there is an overlap between the first time period and the second time period, the first time period and the second time period are merged to obtain the working time period.

[0022] According to some embodiments of the present invention, after performing the step of updating the working time period of the smart unlocking processing module based on the first time and the working time period, the method further includes:

[0023] Detect the fourth moment when the user uses the smart lock;

[0024] Update the usage record time of the corresponding time period in the working time period according to the fourth time point;

[0025] The working time period is adjusted based on the usage record time.

[0026] According to some embodiments of the present invention, adjusting the working time period based on the usage record time includes:

[0027] Filter the third time period in the work time period where the time interval between the recorded time and the current time is greater than a preset time interval;

[0028] The third time period is removed from the work time period.

[0029] On the other hand, embodiments of the present invention also provide an intelligent door lock power consumption adjustment system, comprising:

[0030] The acquisition module is used to acquire the preset start time period of the smart unlocking processing module and set the preset start time period as the working time period of the smart unlocking processing module.

[0031] The detection module is used to detect the first moment when a user uses the smart lock; wherein the first moment is outside the working time period;

[0032] The module is configured to update the working time period of the smart unlocking processing module based on the first moment and the working time period.

[0033] The control module is used to control the working state of the smart unlocking processing module according to the updated working time period, and return to the step of detecting the first moment when the user uses the smart door lock.

[0034] On the other hand, embodiments of the present invention also provide an intelligent door lock power consumption adjustment system, comprising:

[0035] At least one processor;

[0036] At least one memory for storing at least one program;

[0037] When the at least one program is executed by the at least one processor, the at least one processor implements the smart door lock power consumption adjustment method as described in the above embodiments.

[0038] On the other hand, embodiments of the present invention also provide a computer storage medium storing a processor-executable program, which, when executed by the processor, is used to implement the smart door lock power consumption adjustment method as described in the above embodiments. Attached Figure Description

[0039] Figure 1 This is a flowchart of the smart door lock power consumption adjustment method provided in an embodiment of the present invention;

[0040] Figure 2 This is a block diagram of the intelligent door lock power consumption adjustment system provided in an embodiment of the present invention. Detailed Implementation

[0041] The embodiments described in this application should not be considered as limitations on this application. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0042] In the following description, references are made to “some embodiments,” which describe a subset of all possible embodiments. However, it is understood that “some embodiments” may be the same subset or different subsets of all possible embodiments and may be combined with each other without conflict.

[0043] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein is for the purpose of describing embodiments of this application only and is not intended to limit this application.

[0044] With the continuous development of intelligent control technology, people's lives are gradually becoming more intelligent. To improve the convenience of door locks, wireless communication modules are added to the door lock control system, allowing wireless control via mobile terminals. This eliminates the need to carry physical keys, making door locks more intelligent and effectively improving the user experience. However, generally, users only open and close doors for a small portion of the day; therefore, prolonged operation of the intelligent unlocking module wastes power. To reduce the power consumption of smart door locks, related technologies mainly involve turning off the intelligent unlocking module, only manually opening it during use or setting fixed opening periods. This approach requires manual activation or can only be activated during fixed periods, making it cumbersome and lacking in intelligence, with only moderate power consumption regulation. There is currently no ideal method to achieve intelligent power consumption regulation in smart door locks and improve its effectiveness.

[0045] One embodiment of the present invention provides a method, system, and storage medium for adjusting the power consumption of a smart door lock, which can adaptively adjust the power consumption of the smart door lock and effectively improve the power consumption adjustment effect. (See also...) Figure 1 The method in this embodiment of the invention includes, but is not limited to, steps S110, S120, S130 and S140.

[0046] Specifically, the application process of the method in this embodiment of the invention includes, but is not limited to, the following steps:

[0047] S110: Obtain the preset start time period of the smart unlocking processing module and set the preset start time period as the working time period of the smart unlocking processing module.

[0048] S120: Detects the first moment a user uses the smart lock. This first moment occurs outside of normal operating hours.

[0049] S130: Update the working time period of the intelligent unlocking processing module based on the first moment and the working time period.

[0050] S140: Control the working status of the smart unlocking processing module according to the updated working time period, and return the steps for detecting the first moment when the user uses the smart lock.

[0051] In the operation of this specific embodiment, the first step is to obtain the preset start-up time period of the smart unlocking processing module and set this preset start-up time period as the working time period of the smart unlocking processing module. The smart unlocking processing module is used for user identification or to obtain and process user control commands for the door lock. Upon initial use, this embodiment first obtains the initially set start-up time period of the smart unlocking processing module in the smart lock and sets this initially set start-up time period as the working time of the smart unlocking processing module. It is easy to understand that the preset start-up time period of the smart unlocking processing module can be customized by the user or obtained automatically by the smart lock from the user's door lock usage information. Further, this embodiment detects the first moment when the user uses the smart lock. Specifically, the first moment is the moment when the user uses the smart lock outside the working time period of the smart unlocking processing module. For example, if the current working time period of the smart unlocking processing module is set to 12:00 to 13:00, and the user performs a lock / unlock operation at 15:00, this moment is recorded as the first moment. Further, this embodiment updates the working time period of the smart unlocking processing module based on the first moment and the working time period. Specifically, this embodiment combines the detected new moment when the smart lock is used outside the set working time period (i.e., the first moment) with the currently set working time period of the smart unlocking processing module to update and obtain a new working time period for the module. It's easy to understand that since the first moment is a time node, it needs to be converted into a corresponding time period. Simultaneously, the relationship between the converted time period and the originally set working time period needs to be analyzed and judged to update the new working time period for the smart unlocking processing module. For example, the working time period of the smart unlocking processing module is updated based on whether there is overlap between the converted time period and the originally set working time period, resulting in the updated working time period. This embodiment dynamically updates the working time period of the smart unlocking processing module by detecting and recording the first moment when the user uses the smart lock outside the set working time period, and updating the working time period based on the first moment and the module's working time period. Furthermore, this embodiment controls the working state of the smart unlocking processing module according to the updated working time period, thereby reducing the power consumption of the smart lock. It also returns to the step of detecting the first moment when the user uses the smart lock, detecting the first moment when the user uses the smart lock outside the current working time period, so as to realize the dynamic update of the working time period of the smart unlocking processing module. By dynamically updating the working time period of the smart unlocking processing module, the power consumption of the smart lock is adaptively adjusted, thereby effectively improving the power consumption adjustment effect of the smart lock.

[0052] It should be noted that, in some embodiments of the present invention, the intelligent unlocking processing module may include a Bluetooth module, a WiFi module, a face recognition module, and a fingerprint recognition module, etc.

[0053] In some embodiments of the present invention, the preset start-up time period for obtaining the intelligent unlocking processing module includes, but is not limited to:

[0054] The smart unlocking processing module is activated to obtain the second moment when the user uses the smart door lock within a preset period of time.

[0055] The preset start-up time period is determined based on the second moment.

[0056] In this specific embodiment, the smart lock automatically obtains the preset startup time period of the smart unlocking processing module. Specifically, this embodiment first starts the smart unlocking processing module to obtain the second moment when the user uses the smart lock within a preset period. Then, this embodiment determines the preset startup time period based on the second moment. For example, when initially using the smart lock, this embodiment first activates the smart unlocking processing module to operate for 24 hours, obtaining the various moments when the user uses the smart lock within 24 hours, i.e., the second moment. This embodiment acquires the user's smart lock usage throughout the day and records the corresponding moment data. Then, the preset startup time period is set based on the recorded moments.

[0057] It should be noted that in some embodiments of the present invention, the preset start-up time period is calculated based on the second moment using a preset time region division rule. Specifically, the preset time region division rule is shown in equations (1) and (2) below:

[0058]

[0059]

[0060] Wherein, T is the time period, K is the number of time points, which in this embodiment is the number of the second time point, and M is the clock convergence value.

[0061] In this embodiment, the clock convergence value refers to the smaller the allowable deviation of a time period as the number of time points increases, thereby improving the accuracy of the time period. It is easy to understand that when the recorded second moment is A, and the corresponding time period T is calculated using the preset time zone division rules, the preset start time period for time period A is (AT, A+T). It should be noted that when the calculated T < 0.2, then T = 0.2 (12 minutes) is taken.

[0062] In some embodiments of the present invention, the working state of the intelligent unlocking processing module is controlled according to the updated working time period, including but not limited to:

[0063] Once it is determined that the current time falls within the updated working time period, the intelligent unlocking processing module is activated.

[0064] Alternatively, if it is determined that the current time is not within the updated working time period, the intelligent unlocking processing module can be shut down.

[0065] In this specific embodiment, the working state of the smart unlocking processing module is controlled by an updated working time period. Specifically, when it is determined that the current time is within the updated working time period, the smart unlocking processing module is turned on, i.e., its working state is set to "on". Conversely, when it is determined that the current time is not within the updated working time period, the smart unlocking processing module is turned off, i.e., its working state is set to "off". This embodiment first obtains the current time information, i.e., the current moment, through the clock chip built into the smart lock. Then, by determining whether the current time is within the updated working time period, this embodiment adjusts the on / off state of the smart unlocking processing module, thereby achieving adaptive adjustment of the smart unlocking processing module, reducing the power consumption of the smart lock, and effectively improving the power consumption regulation effect of the smart lock.

[0066] In some embodiments of the present invention, the working time period of the intelligent unlocking processing module is updated based on a first moment and a working time period, including but not limited to:

[0067] Based on the first and third moments, the planned time period is calculated using preset time zone division rules. The third moment refers to the corresponding time point in each time period within the pre-update working time period. The planned time period includes the first time period corresponding to the first moment and the second time period corresponding to the third moment. Specifically, the preset time zone division rules are shown in equations (3) and (4) below:

[0068]

[0069]

[0070] Wherein, T is the time period, K is the number of time points, which in this embodiment is the sum of the number of the third time point and the number of the first time point, and M is the clock convergence value.

[0071] Update the work time period based on the first and second time periods.

[0072] In this specific embodiment, the first step is to calculate a planned time period based on the detected time point when the user uses the smart lock outside the working time period of the smart unlocking processing module (i.e., the first moment) and the corresponding time points of each time period within the current working time period of the smart lock (i.e., the third moment), using a preset time zone planning rule. The planned time period in this embodiment includes a first time period and a second time period. The first time period corresponds to the first moment, and the second time period corresponds to the third moment. For example, if the third moment is time point A and the detected first moment is B, the corresponding time period T1 is first calculated using the preset time zone division rule, and then time period planning is performed based on time period T1 to obtain the planned time period. For instance, the first time period corresponding to the first moment B is (B-T1, B+T1), and the second time period corresponding to the third moment A is (A-T1, A+T1). Then, this embodiment updates the working time period based on the first and second time periods to obtain a new working time period for the smart unlocking processing module, thus achieving dynamic updating of the smart unlocking processing module. Further, when a new first moment C is detected, the third moment now includes two time points, A and B. The currently recorded time points include A, B, and C, i.e., K=3. In this embodiment, the corresponding time period T2 is calculated according to a preset time zone division rule. Therefore, the first time period corresponding to the first moment C is (C-T2, C+T2), and the second time periods corresponding to the third moments A and B are (A-T2, A+T2) and (B-T2, B+T2), respectively. Next, this embodiment updates the working time period of the intelligent unlocking processing module based on the first time period (C-T2, C+T2), the second time period (A-T2, A+T2), and (B-T2, B+T2), thus obtaining a new working time period.

[0073] In some embodiments of the present invention, the working time period is updated according to a first time period and a second time period, including but not limited to:

[0074] Determine that there is no overlap between the first and second time periods, and set both the first and second time periods as working time periods.

[0075] Alternatively, if it is determined that there is an overlap between the first time period and the second time period, the first time period and the second time period can be merged to obtain the working time period.

[0076] In this specific embodiment, the working time period is updated by determining whether there is an overlap between the first time period and the second time period. Specifically, if it is determined that there is no overlap between the first time period and the second time period, both the first time period and the second time period are set as working time periods. Conversely, if it is determined that there is an overlap between the first time period and the second time period, the overlapping first time period and the second time period are merged to obtain a new time period. This merged time period is then combined with the second time period, which has no overlap, to obtain a new working time period. For example, the second time period is (A-T2,A+T2) and (B-T2,B+T2), and the first time period is (C-T2,C+T2). The order of the time points from first to last is A, B, and C, respectively. When there is no overlap between the first time period and the second time period, that is, there is no overlap between (C-T2,C+T2) and (A-T2,A+T2), (B-T2,B+T2), then both the first time period and the second time period are set as working time periods. That is, the first time period (C-T2,C+T2), the second time period (A-T2,A+T2), and (B-T2,B+T2) are all set as working time periods, thereby realizing the update of the working time period of the intelligent unlocking processing module. Meanwhile, when it is determined that there is an overlap between the first time period and the second time period, such as the overlap between (B-T2,B+T2) and (C-T2,C+T2), then (B-T2,B+T2) and (C-T2,C+T2) are merged to obtain a new time period (B-T2,C+T2). Then, the working time period of the smart unlocking processing module is updated according to the merged time period (B-T2,C+T2) and (A-T2,A+T2). That is, the updated working time period is (B-T2,C+T2) and (A-T2,A+T2).

[0077] In some embodiments of the present invention, after performing the step of updating the working time period of the smart unlocking processing module according to the first moment and the working time period, the smart door lock power consumption adjustment method provided in this embodiment further includes, but is not limited to:

[0078] Detect the fourth moment when the user uses the smart lock.

[0079] The usage record time for the corresponding time period in the work period is updated according to the fourth time point.

[0080] Adjust work periods based on usage records.

[0081] In this specific embodiment, after updating the working time period of the smart unlocking processing module based on the first moment and the working time period, the embodiment further adjusts the working time period of the smart unlocking processing module by recording the user's usage time of the smart lock during each working time period of the set smart unlocking processing module. Specifically, in actual use, certain time points may only occur under special circumstances. For example, if a user uses the smart lock outside the set working time period of the smart unlocking processing module for a special reason, the smart lock will detect the time point of that operation and update the working time period. However, if the user does not use the smart lock again during that time period, dividing that time period into a working time period would result in wasted power and increased power consumption. Therefore, this embodiment detects the fourth moment when the user uses the smart lock and updates the usage time of the corresponding time period in the working time period based on the fourth moment, thereby adjusting the working time period according to the usage time. For example, this embodiment records the corresponding time point, i.e., the fourth moment, when checking the user's operation of using the smart lock. Then, in this embodiment, the time period corresponding to the fourth moment is found within the working time period, and the usage record time of that time period is updated to the fourth moment. Then, this embodiment adjusts the working time period based on the usage record times of each time period within the working time period, thereby further improving the power consumption regulation effect of the smart lock.

[0082] In some embodiments of the present invention, the working time period is adjusted according to the usage record time, including but not limited to:

[0083] The third time period used to filter work time periods is one where the time interval between the recorded time and the current time is greater than a preset time interval;

[0084] Remove the third time period from the work hours.

[0085] In this specific embodiment, the adjustment of the working time period is achieved by filtering out a third time period in which the time interval between the recorded usage time and the current time is greater than a preset time interval, and deleting this third time period from the working time period. Specifically, this embodiment first iterates through the usage record times of each working time period stored in the storage chip. Then, it determines whether the time interval between the corresponding usage record time of each working time period and the current time is greater than a preset time interval, that is, whether the latest usage record of each working time period is greater than the preset time interval from the current time. When it is determined that the last usage time of a certain time period, i.e., the usage record time, is greater than the preset time interval from the current time, such as the time interval between the usage record time of time period (B-T2, B+T2) and the current time is greater than 7 days, then time period (B-T2, B+T2) is deleted from the working time period. This embodiment further alleviates the problem of power waste in smart door locks by eliminating working time periods that have not been used for a long time, and effectively reduces the power consumption of smart door locks.

[0086] An embodiment of the present invention also provides an intelligent door lock power consumption adjustment system, comprising:

[0087] The acquisition module is used to acquire the preset start time period of the smart unlocking processing module and set the preset start time period as the working time period of the smart unlocking processing module.

[0088] The detection module is used to detect the first moment a user uses the smart lock. This first moment occurs outside of normal operating hours.

[0089] The module is used to update the working time period of the smart unlocking processing module based on the first moment and the working time period.

[0090] The control module is used to control the working status of the smart unlocking processing module according to the updated working time period, and return the steps of detecting the first moment when the user uses the smart door lock.

[0091] Reference Figure 2 An embodiment of the present invention also provides an intelligent door lock power consumption adjustment system, comprising:

[0092] At least one processor 210.

[0093] At least one memory 220 is used to store at least one program.

[0094] When at least one program is executed by at least one processor 210, the at least one processor 210 implements the smart door lock power consumption adjustment method as described in the above embodiments.

[0095] An embodiment of the present invention also provides a computer-readable storage medium storing computer-executable instructions that are executed by one or more control processors, for example, performing the steps described in the above embodiments.

[0096] It will be understood by those skilled in the art that all or some of the steps and systems in the methods disclosed above can be implemented as software, firmware, hardware, and suitable combinations thereof. Some or all of the physical components can be implemented as software executed by a processor, such as a central processing unit, digital signal processor, or microprocessor, or as hardware, or as an integrated circuit, such as an application-specific integrated circuit. Such software can be distributed on a computer-readable medium, which can include computer storage media (or non-transitory media) and communication media (or transient media). As is known to those skilled in the art, the term computer storage media includes volatile and non-volatile, removable and non-removable media implemented in any method or technology for storing information (such as computer-readable instructions, data structures, program modules, or other data). Computer storage media includes, but is not limited to, RAM, ROM, EEPROM, flash memory or other memory technologies, CD-ROM, digital versatile disc (DVD) or other optical disc storage, magnetic cartridges, magnetic tape, disk storage or other magnetic storage devices, or any other medium that can be used to store desired information and is accessible to a computer. Furthermore, as is known to those skilled in the art, communication media typically contain computer-readable instructions, data structures, program modules, or other data in modulated data signals such as carrier waves or other transmission mechanisms, and may include any information delivery medium.

[0097] The above is a detailed description of the preferred embodiments of the present invention. However, the present invention is not limited to the above embodiments. Those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present invention. All such equivalent modifications or substitutions are included within the scope defined by the claims of the present invention.

Claims

1. A method for adjusting the power consumption of a smart door lock, characterized in that, Includes the following steps: Obtain the preset start time period of the intelligent unlocking processing module, and set the preset start time period as the working time period of the intelligent unlocking processing module; The system detects the first moment when a user uses the smart lock; wherein the first moment is outside the working time period. The working time period of the intelligent unlocking processing module is updated according to the first moment and the working time period. The working state of the smart unlocking processing module is controlled according to the updated working time period, and the step of detecting the first moment when the user uses the smart door lock is returned. The step of updating the working time period of the smart unlocking processing module based on the first moment and the working time period includes: Based on the first time point and the third time point, a planned time period is calculated using a preset time zone division rule; wherein, the third time point is the corresponding time point of each time period in the work time period before the update, and the planned time period includes the first time period corresponding to the first time point and the second time period corresponding to the third time point; Update the working time period based on the first time period and the second time period; The formula for calculating the preset time zone division rule is as follows: ; ; Where, in the formula For a period of time, For the number of time points, This is the clock convergence value; The step of updating the working time period based on the first time period and the second time period includes: If it is determined that there is no overlap between the first time period and the second time period, both the first time period and the second time period are set as the working time period. Alternatively, if it is determined that there is an overlap between the first time period and the second time period, the first time period and the second time period are merged to obtain the working time period; The method further includes, after performing the step of updating the working time period of the smart unlocking processing module based on the first time and the working time period: Detect the fourth moment when the user uses the smart lock; Update the usage record time of the corresponding time period in the working time period according to the fourth time point; Adjust the working time period according to the usage record time; The step of adjusting the working time period based on the usage record time includes: Filter the third time period in the work time period where the time interval between the recorded time and the current time is greater than a preset time interval; The third time period is removed from the work time period.

2. The intelligent door lock power consumption adjustment method according to claim 1, characterized in that, The preset startup time period for obtaining the intelligent unlocking processing module includes: The intelligent unlocking processing module is activated to obtain the second moment when the user uses the intelligent door lock within a preset period of time. The preset start-up time period is determined based on the second time point.

3. The intelligent door lock power consumption adjustment method according to claim 1, characterized in that, The step of controlling the working state of the smart unlocking processing module according to the updated working time period includes: Determine that the current time falls within the updated working time period, and control the intelligent unlocking processing module to start; Alternatively, if it is determined that the current time is not within the updated working time period, the intelligent unlocking processing module can be shut down.

4. A smart door lock power consumption adjustment system, characterized in that, include: The acquisition module is used to acquire the preset start time period of the smart unlocking processing module and set the preset start time period as the working time period of the smart unlocking processing module. The detection module is used to detect the first moment when a user uses the smart lock; wherein the first moment is outside the working time period; The module is configured to update the working time period of the smart unlocking processing module based on the first moment and the working time period. The control module is used to control the working state of the smart unlocking processing module according to the updated working time period, and return to the step of detecting the first moment when the user uses the smart door lock; The step of updating the working time period of the smart unlocking processing module based on the first moment and the working time period includes: Based on the first time point and the third time point, a planned time period is calculated using a preset time zone division rule; wherein, the third time point is the corresponding time point of each time period in the work time period before the update, and the planned time period includes the first time period corresponding to the first time point and the second time period corresponding to the third time point; Update the working time period based on the first time period and the second time period; The formula for calculating the preset time zone division rule is as follows: ; ; Where, in the formula For a period of time, For the number of time points, This is the clock convergence value; The step of updating the working time period based on the first time period and the second time period includes: If it is determined that there is no overlap between the first time period and the second time period, both the first time period and the second time period are set as the working time period. Alternatively, if it is determined that there is an overlap between the first time period and the second time period, the first time period and the second time period are merged to obtain the working time period; The method further includes, after performing the step of updating the working time period of the smart unlocking processing module based on the first time and the working time period: Detect the fourth moment when the user uses the smart lock; Update the usage record time of the corresponding time period in the working time period according to the fourth time point; Adjust the working time period according to the usage record time; The step of adjusting the working time period based on the usage record time includes: Filter the third time period in the work time period where the time interval between the recorded time and the current time is greater than a preset time interval; The third time period is removed from the work time period.

5. A smart door lock power consumption adjustment system, 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 smart lock power consumption adjustment method as described in any one of claims 1 to 3.

6. A computer storage medium storing a processor-executable program, characterized in that, The program executable by the processor, when executed by the processor, is used to implement the power consumption adjustment method for smart door locks as described in any one of claims 1 to 3.

Citation Information

Patent Citations

  • Wireless unlocking method and device for intelligent door lock

    CN109064608A

  • Intelligent lock control method and device, equipment and storage medium

    CN113129479A