Intelligent lockset system, use method, storage medium and program product
By introducing a control module, a sensor detection module and a drive module into the traditional lock body, the lock system can realize autonomous status detection and fault handling, which solves the problem of false triggering and fault affecting the safety of the traditional lock body and improves the safety and service life of the lock system.
Patent Information
- Application Number
- CN202511226193.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-29
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2045-08-29
AI Technical Summary
Traditional lock bodies cannot actively determine their own status and are easily triggered by mistake, causing the door lock to collide with the door frame and affecting safety in the event of a malfunction.
A control module, a sensor detection module, and a drive module are added to the traditional lock body to automatically detect the door lock status and report it autonomously, avoiding false triggering and ensuring that the door lock can still be closed in the event of a malfunction.
It improves the safety and service life of the locking system, avoids collision between the door lock and the door frame, and ensures that the door lock can remain closed in the event of a malfunction.
Smart Images

Figure CN120748079A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of electrical communication technology, specifically relates to transmission control equipment, and more particularly to an intelligent lock system, a method of use, a storage medium and a program product. Background Art
[0002] Traditional lock bodies only have the functions of opening and closing doors and locking. All actions require the help of motors and manual turning of the handle to achieve normal functions. At the same time, the lock body cannot actively determine the door lock's own opening status and report it autonomously.
[0003] The traditional lock body is easily triggered by mistake and pops out directly, which requires the user to directly hit the door frame when closing the door. In addition, when closing the door, there is a malfunction inside the traditional lock body, such as the spring is deactivated, which makes the door unable to close tightly.
[0004] Therefore, there is an urgent need to develop a new intelligent lock system, usage method, storage medium and program product to solve the technical problems of how to overcome the traditional lock body's inability to judge its own status, false triggering and failure that affect security. Summary of the Invention
[0005] The embodiments of the present disclosure provide at least one intelligent lock system, a method of use, a storage medium, and a program product.
[0006] In the first aspect, an embodiment of the present disclosure provides an intelligent lock system, which includes: a control module, a sensor detection module and a drive module; wherein the sensor detection module and the drive module are electrically connected to the control module respectively, the sensor detection module is installed on the door lock, and the drive module is connected to the door lock; the sensor detection module obtains the opening and closing status information of the door lock; and the control module controls the drive module to drive the door lock to lock or unlock.
[0007] Specifically, the control module is the core, responsible for receiving the sensor detection module, processing logic and sending instructions to the drive module, and communicating with the mobile device through the communication module.
[0008] In an optional embodiment, the sensing detection module includes: a first detection sensor; the first detection sensor is installed on the lock tongue of the door lock, the first detection sensor is electrically connected to the control module, and a contact is provided on the buckle plate of the door lock; the control module detects the opening and closing status information of the door lock through the first detection sensor.
[0009] Specifically, the door lock also has a tilted bolt and a reverse locking bolt. The first detection sensor can be set on the bolt, tilted bolt, and reverse locking bolt to detect the open and closed states of the bolt, tilted bolt, and reverse locking bolt.
[0010] Specifically, the driving module is used to receive instructions from the control module, drive the mechanical actions of the lock tongue, the oblique lock tongue and the reverse lock tongue, and realize automatic locking or unlocking.
[0011] In an optional embodiment, the sensing detection module includes: a handle detection unit; the handle detection unit is installed on the door handle, and the handle detection unit is electrically connected to the control module; when the door lock is in a closed state and the handle detection unit senses a grip signal, the control module sends a door lock opening signal to the drive module; when the door lock is in an open state and the handle detection unit senses that the grip signal disappears, the control module sends a door lock posture hold signal to the drive module; when the door lock is in an open state and the handle detection unit senses the grip signal again, the control module sends a door lock about to close signal to the drive module.
[0012] In an optional embodiment, the handle detection unit includes: a second detection sensor; the second detection sensor is installed on the door handle, and the second detection sensor is electrically connected to the control module; the control module obtains the grip signal or the grip signal disappearance signal through the second detection sensor.
[0013] Specifically, the second detection sensor may be an infrared sensor, a pressure sensor, a capacitive sensing sensor, or the like.
[0014] In an optional embodiment, the driving module includes: a rotating motor and a rotating shaft; a mounting groove is provided on the lock tongue of the door lock, and the positioning tongue of the door lock is installed in the mounting groove through the rotating motor and the rotating shaft, the rotating shaft passes through the positioning tongue, and the rotating motor is connected to the rotating shaft; the rotating motor is electrically connected to the control module; the control module sends a corresponding control signal to the rotating motor to drive the rotating motor to drive the rotating shaft and the positioning tongue to rotate a corresponding angle, that is, to achieve that the positioning tongue is completely retracted in the mounting groove or the positioning tongue is exposed from the mounting groove.
[0015] In an optional embodiment, when the control module sends a door lock opening signal to the rotating motor, the rotating motor drives the positioning tongue to rotate toward the installation slot through the rotating shaft, so that the positioning tongue is separated from the upper limit piece of the door lock buckle plate; when the control module sends a door lock posture holding signal to the rotating motor, the rotating motor increases the torque to temporarily fix the rotating shaft and the positioning tongue; when the control module sends a door lock about to close signal to the rotating motor, the rotating motor drives the positioning tongue to rotate toward the installation slot through the rotating shaft until the positioning tongue is completely retracted into the installation slot, and after waiting for a set time, the rotating motor drives the positioning tongue to rotate toward the outside of the installation slot through the rotating shaft.
[0016] In an optional embodiment, when the lock tongue is fully extended into the buckle plate, the rotary motor drives the positioning tongue to rotate toward the outside of the installation groove through the rotating shaft until the positioning tongue abuts against the upper limit member on the buckle plate of the door lock.
[0017] In an optional embodiment, when the lock tongue is not fully extended into the buckle plate, the rotating motor drives the positioning tongue to rotate toward the outside of the mounting groove through the rotating shaft, and when the positioning tongue abuts against the upper limit member on the buckle plate of the door lock, the force of the positioning tongue and the limit member pulls the lock tongue into the buckle plate until the lock tongue is fully extended into the buckle plate.
[0018] On the other hand, the embodiment of the present disclosure also provides a method for using the smart lock system as described above, which includes: when the control module sends a door lock opening signal to the rotating motor, the rotating motor drives the positioning tongue to rotate toward the installation slot through the rotating shaft, so that the positioning tongue is separated from the upper limit piece of the door lock buckle plate; when the control module sends a door lock posture holding signal to the rotating motor, the rotating motor increases the torque to temporarily fix the rotating shaft and the positioning tongue; when the control module sends a door lock about to close signal to the rotating motor, the rotating motor drives the positioning tongue to rotate toward the installation slot through the rotating shaft until the positioning tongue is completely retracted into the installation slot, and after waiting for a set time, the rotating motor drives the positioning tongue to rotate toward the outside of the installation slot through the rotating shaft.
[0019] In an optional embodiment, when the lock tongue is fully extended into the buckle plate, the rotating motor drives the positioning tongue to rotate toward the outside of the installation groove through the rotating shaft until the positioning tongue abuts against the upper limit piece on the buckle plate of the door lock; when the lock tongue is not fully extended into the buckle plate, the rotating motor drives the positioning tongue to rotate toward the outside of the installation groove through the rotating shaft, and when the positioning tongue abuts against the upper limit piece on the buckle plate of the door lock, the force of the positioning tongue and the limit piece pulls the lock tongue into the buckle plate until the lock tongue is fully extended into the buckle plate.
[0020] In a third aspect, an embodiment of the present disclosure further provides a computer-readable storage medium having a computer program / instruction stored thereon, wherein the computer program / instruction implements the steps of the above method when executed by a processor.
[0021] In a fourth aspect, an embodiment of the present disclosure further provides a computer program product, comprising a computer program / instruction, characterized in that the computer program / instruction implements the steps of the above method when executed by a processor.
[0022] The beneficial effect of the present invention is that, by adding a control module, a sensor detection module and a drive module on the basis of a traditional lock body, the present invention can automatically detect the open and closed status of the door lock, realize the autonomous reporting function, and overcome the problem of false triggering, and can avoid the door lock colliding with the door frame to affect the service life. In addition, when the door lock fails, it can also temporarily ensure that the door lock closes the door tightly, thereby improving the safety of use.
[0023] Other features and advantages of the present invention will be described in the following description, and in part will become apparent from the description, or understood by practicing the present invention. The purposes and other advantages of the present invention are realized and obtained by the structures particularly pointed out in the description, claims and drawings.
[0024] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, preferred embodiments are given below and described in detail with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the specific embodiments or the description of the prior art. Obviously, the drawings described below are 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.
[0026] Figure 1 A block diagram of the principle of a smart lock system provided in an embodiment of the present disclosure; Figure 2 A schematic diagram of the circuit structure of a smart lock system provided in an embodiment of the present disclosure; Figure 3 A structural diagram of a smart lock system provided in an embodiment of the present disclosure; Figure 4 A schematic diagram of a smart lock system provided by an embodiment of the present disclosure, in which a positioning tongue is completely retracted into a mounting groove; Figure 5 A schematic diagram showing a positioning tongue of a smart lock system exposed in a mounting slot according to an embodiment of the present disclosure; Figure 6 Another schematic diagram of a smart lock system provided by an embodiment of the present disclosure, in which a positioning tongue is exposed in a mounting slot; Figure 7 A flow chart of a smart lock system in executing a door lock opening signal provided by an embodiment of the present disclosure; Figure 8 A flow chart of a smart lock system according to an embodiment of the present disclosure executing a door lock posture holding signal; Figure 9 A flowchart of a smart lock system providing a signal indicating that a door lock is about to close is provided in an embodiment of the present disclosure.
[0027] In the picture: 1. Lock tongue; 11. Mounting slot; 2. Positioning tongue; 3. Rotating shaft; 4. Buckle plate; 5. Limiting piece. DETAILED DESCRIPTION
[0028] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of them. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0029] The terms used herein are only used to describe specific exemplary configurations and are not intended to be limiting. As used herein, the singular articles "a", "an" and "the" may also be intended to include plural forms, unless otherwise clearly indicated herein. The terms "comprise", "include" and "have" are inclusive and therefore specify the presence of features, steps, operations, elements and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, elements, components and / or combinations thereof. The method steps, processes and operations described herein should not be interpreted as necessarily requiring them to be performed in the particular order discussed or shown, unless specifically identified as an execution order. Additional or alternative steps may be adopted.
[0030] As used herein, the phrases "in one embodiment," "according to one embodiment," "in some embodiments," and the like generally refer to the fact that the particular feature, structure, or characteristic following the phrase may be included in at least one embodiment of the present disclosure. Thus, a particular feature, structure, or characteristic may be included in more than one embodiment of the present disclosure, such that these phrases do not necessarily refer to the same embodiment. As used herein, the terms "example," "exemplary," and the like are used to "serve as an example, instance, or illustration." Any implementation, aspect, or design described herein as "example" or "exemplary" is not necessarily to be construed as preferred or advantageous over other implementations, aspects, or designs. Instead, the use of the terms "example," "exemplary," and the like is intended to present concepts in a concrete manner.
[0031] Definition: The lock tongue is one of the main components of a door lock, which is used to insert into the strike plate on the door frame to lock the door; when the lock tongue is pushed out, the door will be locked; when the lock tongue is retracted, the door can be opened.
[0032] After research, it was found that locks are all installed with fixed openings, especially security doors, which have fixed lock installation space. If a pusher (push rod, telescopic motor, etc.) is to be installed directly on the tail of the lock body, it is necessary to enlarge the hole in the security door, which affects the structure of the security door itself. That is, it is impossible to directly install the pusher (push rod, telescopic motor, etc.) on the tail of the lock body.
[0033] It should be noted that similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not require further definition or explanation in subsequent drawings.
[0034] The following embodiments of the present invention are described in detail with reference to the accompanying drawings. In the absence of conflict, the following embodiments and features therein may be combined with each other.
[0035] like Figures 1 to 9 As shown, at least one embodiment provides a smart lock system, which includes: a control module, a sensor detection module and a drive module; wherein the sensor detection module and the drive module are electrically connected to the control module respectively, the sensor detection module is installed on the door lock, and the drive module is connected to the door lock; the sensor detection module obtains the opening and closing status information of the door lock; and the control module controls the drive module to drive the door lock to lock or unlock.
[0036] In at least one embodiment, by adding a control module, a sensor detection module and a drive module on the basis of a traditional lock body, the open and closed status of the door lock can be automatically detected, the autonomous reporting function can be realized, and the problem of false triggering can be overcome. It can avoid the door lock colliding with the door frame and affecting the service life, and when the door lock fails, it can also temporarily ensure that the door lock closes the door tightly, thereby improving the safety of use.
[0037] In at least one embodiment, see Figure 2 The sensing detection module includes: a first detection sensor; the first detection sensor is installed on the lock tongue 1 of the door lock, the first detection sensor is electrically connected to the control module, and a contact is provided on the buckle plate 4 of the door lock; the control module detects the opening and closing status information of the door lock through the first detection sensor.
[0038] Specifically, when the door lock is in a closed state, the first detection sensor sends a sensing contact signal to the control module; when the door lock is in an open state, the first detection sensor sends a non-sensing contact signal to the control module.
[0039] In at least one embodiment, the sensing detection module includes: a handle detection unit; the handle detection unit is installed on the door handle, and the handle detection unit is electrically connected to the control module; when the door lock is in a closed state and the handle detection unit senses a grip signal, the control module sends a door lock opening signal to the drive module; when the door lock is in an open state and the handle detection unit senses that the grip signal disappears, the control module sends a door lock posture hold signal to the drive module; when the door lock is in an open state and the handle detection unit senses the grip signal again, the control module sends a door lock about to close signal to the drive module.
[0040] Specifically, since the door lock is in a closed state and the handle detection unit senses a grip signal, it indicates that the door needs to be opened. At this time, the control module automatically sends a door lock opening signal to the drive module to realize the automatic door opening function.
[0041] Since the lock tongue 1 is installed through the driving module, the door lock needs to be opened by the driving module to drive the mechanical movement of the lock tongue 1 so that the door lock can be opened. At this time, the lock tongue 1 is in a retracted state, and touching the lock tongue 1 easily triggers the door closing action, so the driving module drives the lock tongue 1 to pop out. If the user forgets that the lock tongue 1 pops out and directly closes the door, the popped-out lock tongue 1 will collide with the door frame, affecting the service life of the door lock. By judging that the door lock is in an open state and the handle detection unit senses that the grip signal disappears, the driving module executes according to the door lock posture holding signal, so that the lock tongue 1 is temporarily fixed, and the lock tongue 1 will not be triggered to pop out.
[0042] Specifically, since the door lock is in the open state and the handle detection unit senses the handle signal again, it means that the door needs to be closed at this time. At this time, the control module automatically sends a door lock about to be closed signal to the drive module and executes the corresponding door closing instruction.
[0043] In at least one embodiment, see Figure 2 The handle detection unit includes: a second detection sensor; the second detection sensor is installed on the door handle, and the second detection sensor is electrically connected to the control module; the control module obtains the grip signal or the grip signal disappearance signal through the second detection sensor.
[0044] Specifically, the second detection sensor may be an infrared sensor, a capacitance sensor, a pressure sensor, etc., to determine whether the handle is held.
[0045] In at least one embodiment, see Figures 3 to 6 The driving module includes: a rotating motor and a rotating shaft 3; a mounting groove 11 is opened on the lock tongue 1 of the door lock, and the positioning tongue 2 of the door lock is installed in the mounting groove 11 through the rotating motor and the rotating shaft 3. The rotating shaft 3 passes through the positioning tongue 2, and the rotating motor is connected to the rotating shaft 3; the rotating motor is electrically connected to the control module; the control module sends a corresponding control signal to the rotating motor to drive the rotating motor to drive the rotating shaft 3 and the positioning tongue 2 to rotate a corresponding angle, that is, to achieve that the positioning tongue 2 is completely retracted in the mounting groove 11 or the positioning tongue 2 is exposed from the mounting groove 11.
[0046] Specifically, the rotary motor can drive the rotary shaft 3 and the positioning tongue 2 to rotate, thereby adjusting the postures of the positioning tongue 2 and the lock tongue 1 .
[0047] Specifically, see Figure 4At this time, the motor drives the rotating shaft 3 and the positioning tongue 2 to rotate until the positioning tongue 2 is completely retracted into the installation groove 11.
[0048] Specifically, see Figure 5 At this time, the motor drives the rotating shaft 3 and the positioning tongue 2 to rotate until the positioning tongue 2 is exposed in the mounting groove 11.
[0049] Specifically, see Figure 6 At this time, the motor drives the rotating shaft 3 and the positioning tongue 2 to rotate until the positioning tongue 2 is exposed in the mounting groove 11.
[0050] In at least one embodiment, see Figures 7 to 9 When the control module sends a door lock opening signal to the rotating motor, the rotating motor drives the positioning tongue 2 to rotate toward the mounting groove 11 through the rotating shaft 3, so that the positioning tongue 2 is separated from the upper limit member 5 of the door lock buckle plate 4; when the control module sends a door lock posture holding signal to the rotating motor, the rotating motor increases the torque to temporarily fix the rotating shaft 3 and the positioning tongue 2; when the control module sends a door lock about to close signal to the rotating motor, the rotating motor drives the positioning tongue 2 to rotate toward the mounting groove 11 through the rotating shaft 3 until the positioning tongue 2 is completely retracted into the mounting groove 11, and after waiting for a set time, the rotating motor drives the positioning tongue 2 to rotate toward the outside of the mounting groove 11 through the rotating shaft 3.
[0051] Specifically, when the door lock is in the closed state, Figure 5 As shown, at this time, when the control module sends a door lock opening signal to the rotary motor, the rotary motor drives the positioning tongue 2 to rotate toward the installation groove 11 through the rotating shaft 3, so that the positioning tongue 2 is separated from the upper limit member 5 of the door lock buckle plate 4, that is, the positioning tongue 2 is completely retracted into the installation groove 11, as shown in FIG. Figure 4 As shown, other components of the driving module can push the lock tongue 1 to move and realize the door opening action.
[0052] Specifically, when the door lock is in the open state, the rotating motor increases the torque to temporarily fix the rotating shaft 3 and the positioning tongue 2, so the positioning tongue 2 will not be triggered, and other components of the driving module will not be triggered to move, ensuring that the lock tongue 1 is in the retracted state.
[0053] In at least one embodiment, when the lock tongue 1 is fully extended into the buckle plate 4, the rotating motor drives the positioning tongue 2 to rotate toward the outside of the installation groove 11 through the rotating shaft 3 until the positioning tongue 2 abuts against the upper limit member 5 on the buckle plate 4 of the door lock.
[0054] Specifically, when the control module sends a signal to the rotary motor that the door lock is about to be closed, the rotary motor drives the positioning tongue 2 to rotate toward the installation groove 11 through the rotating shaft 3 until the positioning tongue 2 is completely retracted into the installation groove 11. Figure 4As shown, after waiting for a set time (which can be 15S), the rotating motor drives the positioning tongue 2 to rotate toward the outside of the installation groove 11 through the rotating shaft 3, as shown in FIG. Figure 5 As shown, the door closing action is achieved.
[0055] In at least one embodiment, when the lock tongue 1 is not fully extended into the buckle plate 4, the rotating motor drives the positioning tongue 2 to rotate toward the outside of the mounting groove 11 through the rotating shaft 3, and when the positioning tongue 2 abuts against the upper limit member 5 on the buckle plate 4 of the door lock, the force of the positioning tongue 2 and the limit member 5 pulls the lock tongue 1 into the buckle plate 4 until the lock tongue 1 is fully extended into the buckle plate 4.
[0056] Specifically, if the door lock is not closed tightly (the lock tongue 1 enters the pinch plate 4 but not completely), after waiting for a set time (which can be 15S), the motor drives the positioning tongue 2 to rotate toward the outside of the installation groove 11 through the rotating shaft 3, and after the positioning tongue 2 abuts against the upper limit member 5 of the pinch plate 4 of the door lock, the force of the positioning tongue 2 and the limit member 5 pulls the lock tongue 1 into the pinch plate 4 until the lock tongue 1 is completely inserted into the pinch plate 4. Figure 5 As shown, due to the existence of resistance, the time taken by the sensing detection module to close the faulty door lock is longer than that taken by the non-faulty door lock. Therefore, the control module can determine that the door lock has failed and report it.
[0057] Specifically, if a general fault occurs, the positioning tongue 2 can be completed as follows: Figure 5 When a major fault occurs to the door lock (limiting member 5 is worn), the positioning tongue 2 cannot push the lock tongue 1 into place, and the control module cannot receive the information from the sensor detection module, then the control module drives the rotation motor to complete the following operation: Figure 6 The action drives the positioning tongue 2 to rotate in the pinch plate 4 until the positioning tongue 2 is limited by the pinch plate 4, thereby closing the door in the state of door lock failure.
[0058] Specifically, in order to ensure the safety of opening and closing the door, it is necessary to hold the door handle to open and close the door and avoid improper operations, such as kicking the door.
[0059] Based on the same technical concept, at least one embodiment also provides a method for using the smart lock system as described above, which includes: when the control module sends a door lock opening signal to the rotating motor, the rotating motor drives the positioning tongue 2 to rotate toward the installation slot 11 through the rotating shaft 3, so that the positioning tongue 2 is separated from the upper limit member 5 of the door lock buckle plate 4; when the control module sends a door lock posture holding signal to the rotating motor, the rotating motor increases the torque to temporarily fix the rotating shaft 3 and the positioning tongue 2; when the control module sends a door lock about to close signal to the rotating motor, the rotating motor drives the positioning tongue 2 to rotate toward the installation slot 11 through the rotating shaft 3 until the positioning tongue 2 is completely retracted into the installation slot 11, and after waiting for a set time, the rotating motor drives the positioning tongue 2 to rotate toward the outside of the installation slot 11 through the rotating shaft 3.
[0060] In at least one embodiment, when the lock tongue 1 is fully extended into the buckle plate 4, the rotating motor drives the positioning tongue 2 to rotate toward the outside of the installation slot 11 through the rotating shaft 3 until the positioning tongue 2 abuts against the upper limit member 5 on the buckle plate 4 of the door lock; when the lock tongue 1 is not fully extended into the buckle plate 4, the rotating motor drives the positioning tongue 2 to rotate toward the outside of the installation slot 11 through the rotating shaft 3, and when the positioning tongue 2 abuts against the upper limit member 5 on the buckle plate 4 of the door lock, the force of the positioning tongue 2 and the limiting member 5 pulls the lock tongue 1 into the buckle plate 4 until the lock tongue 1 is fully extended into the buckle plate 4.
[0061] Based on the same technical concept, at least one embodiment further provides a computer-readable storage medium having a computer program / instruction stored thereon, wherein the computer program / instruction implements the steps of the above method when executed by a processor.
[0062] Based on the same technical concept, at least one embodiment further provides a computer program product, including a computer program / instruction, characterized in that the computer program / instruction implements the steps of the above method when executed by a processor.
[0063] To sum up, the present invention adds a control module, a sensor detection module and a drive module on the basis of the traditional lock body, which can automatically detect the open and closed status of the door lock, realize the autonomous reporting function, and overcome the problem of false triggering. It can avoid the door lock colliding with the door frame and affecting the service life, and when the door lock fails, it can also temporarily ensure that the door lock closes the door tightly, thereby improving the safety of use.
[0064] The disclosure and other solutions, examples, embodiments, modules, and functional operations described in this document can be implemented in digital electronic circuitry, or in computer software, firmware, or hardware, including the structures disclosed in this document and their structural equivalents, or any combination thereof. The disclosure and other embodiments can be implemented as one or more computer program products, i.e., one or more modules of computer program instructions encoded on a tangible, non-volatile computer-readable medium, for execution by a data processing apparatus or to control the operation of the data processing apparatus. The computer-readable medium can be a machine-readable storage device, a machine-readable storage substrate, a storage device, a composition of matter that effects a machine-readable propagated signal, or any combination thereof. The term "data processing unit" or "data processing apparatus" includes all devices, equipment, and machines for processing data, including, for example, a programmable processor, a computer, or a plurality of processors or computers. In addition to hardware, the apparatus may also include code that creates an execution environment for a computer program, such as code constituting processor firmware, a protocol stack, a database management system, an operating system, or any combination thereof. A propagated signal is an artificially generated signal, such as a machine-generated electrical, optical, or electromagnetic signal, that is generated to encode information for transmission to a suitable receiver device.
[0065] A computer program (also referred to as a program, software, software application, script, or code) may be written in any form of programming language (including compiled or interpreted languages) and may be deployed in any form, including as a standalone program or as a module, component, subroutine, or other unit suitable for use in a computing environment. A computer program does not necessarily correspond to a file in a file system. A program may be stored in a portion of a file that holds other programs or data (e.g., one or more scripts stored in a markup language document), in a single file dedicated to the program, or in multiple coordinated files (e.g., files storing one or more modules, subroutines, or portions of code). A computer program may be deployed for execution on one or more computers, located at one site or distributed across multiple sites and interconnected by a communications network.
[0066] The processes and logic flows described in this document can be performed by one or more programmable processors executing one or more computer programs to perform functions by operating on input data and generating output. The processes and logic flows can also be performed by, and apparatus can also be implemented as, special-purpose logic circuitry, e.g., an FPGA (field programmable gate array) or an ASIC (application-specific integrated circuit).
[0067] For example, processors suitable for executing computer programs include general-purpose and special-purpose microprocessors, as well as any one or more of any type of digital computer. Typically, a processor will receive instructions and data from read-only memory or random access memory, or both. The essential components of a computer are a processor that executes instructions and one or more memory devices that store instructions and data. Typically, a computer will also include one or more mass storage devices for storing data, such as magnetic, magneto-optical, or optical disks, or be operatively coupled to receive data from or transfer data to a mass storage device, or both. However, a computer need not have such devices. Computer-readable media suitable for storing computer program instructions and data include all forms of nonvolatile memory, media, and storage devices, including, for example, semiconductor memory devices, such as erasable programmable read-only memory (EPROM), electrically erasable programmable read-only memory (EEPROM), and flash memory devices; magnetic disks, such as internal hard disks or removable disks; magneto-optical disks; and compact disk read-only memory (CD ROM) and digital versatile disk read-only memory (DVD-ROM) disks. The processor and memory may be supplemented by, or incorporated into, special-purpose logic circuitry.
[0068] Although this application document contains many details, they should not be interpreted as limitations on the scope of any invention or claim, but rather as descriptions of features of specific embodiments of specific inventions. Certain features described in this application document in the context of separate embodiments may also be implemented in combination in a single embodiment. Conversely, various functions described in the context of a single embodiment may also be implemented separately in multiple embodiments, or in any suitable subcombination. In addition, although the above-mentioned features may be described as working in certain combinations, or even initially required to be so, in some cases, one or more features in the claim combination may be removed from the combination, and the claim combination may point to a subcombination or a variation of the subcombination.
[0069] Likewise, although operations are described in a particular order in the drawings, this should not be understood as requiring that such operations be performed in the particular order or sequence shown, or that all illustrated operations be performed, in order to achieve the desired results. Furthermore, the separation of various system components in the embodiments of this document should not be understood as requiring such separation in all embodiments.
[0070] Only some implementations and examples are described, and other implementations, enhancements, and variations can be made based on what is described and illustrated in this application document.
[0071] Although several embodiments are provided in this disclosure, it should be understood that the disclosed systems and methods may be embodied in many other specific forms without departing from the spirit or scope of the present disclosure. The present examples are to be considered illustrative rather than restrictive, and the present invention is not to be construed as being limited to the details given. For example, various elements or components may be combined or integrated into another system, or certain features may be omitted or not implemented.
[0072] In the several embodiments provided herein, it should be understood that the disclosed devices and methods may also be implemented in other ways. The device embodiments described above are merely illustrative. For example, the flowcharts and block diagrams in the accompanying drawings show the possible architectures, functions, and operations of the devices, methods, and computer program products according to multiple embodiments of the present invention. In this regard, each box in the flowchart or block diagram may represent a module, program segment, or part of a code, which contains one or more executable instructions for implementing the specified logical functions. It should also be noted that in some alternative implementations, the functions marked in the boxes may also occur in an order different from that marked in the accompanying drawings. For example, two consecutive boxes can actually be executed substantially in parallel, or they may sometimes be executed in the opposite order, depending on the functions involved. It should also be noted that each box in the block diagram and / or flowchart, as well as the combination of boxes in the block diagram and / or flowchart, may be implemented using a dedicated hardware-based system that performs the specified functions or actions, or may be implemented using a combination of dedicated hardware and computer instructions.
[0073] In addition, without departing from the scope of the present disclosure, the discrete or separate techniques, systems, subsystems, and methods described and illustrated in the various embodiments may be combined or integrated with other systems, modules, techniques, or methods. Other items shown or discussed as coupled may be directly connected, or may be indirectly coupled or communicated through some interface, device, or intermediate component in an electrical, mechanical, or other manner. Other examples of changes, substitutions, and modifications may be determined by those skilled in the art without departing from the spirit and scope disclosed herein.
Claims
1. An intelligent lock system, characterized in that: include: Control module, sensor detection module and drive module; in The sensing module and the driving module are electrically connected to the control module respectively, the sensing module is installed on the door lock, and the driving module is connected to the door lock; The sensing detection module obtains the open and closed status information of the door lock; and The control module controls the driving module to drive the door lock to lock or unlock.
2. The intelligent lock system according to claim 1, characterized in that: The sensing detection module includes: a first detection sensor; The first detection sensor is installed on the lock tongue of the door lock, the first detection sensor is electrically connected to the control module, and a contact is provided on the buckle plate of the door lock; The control module detects the opening and closing status information of the door lock through the first detection sensor.
3. The intelligent lock system according to claim 1, characterized in that: The sensing detection module includes: a handle detection unit; The handle detection unit is installed on the door handle, and the handle detection unit is electrically connected to the control module; When the door lock is in a closed state and the handle detection unit senses a handle signal, the control module sends a door lock opening signal to the driving module; When the door lock is in the open state and the handle detection unit senses that the grip signal disappears, the control module sends a door lock posture holding signal to the driving module; When the door lock is in the open state and the handle detection unit senses the handle signal again, the control module sends a door lock about to close signal to the driving module.
4. The intelligent lock system according to claim 3, characterized in that: The handle detection unit includes: a second detection sensor; The second detection sensor is installed on the door handle, and the second detection sensor is electrically connected to the control module; The control module obtains a grip signal or a grip signal disappearance signal through a second detection sensor.
5. The intelligent lock system according to claim 3, characterized in that: The driving module includes: a rotating motor and a rotating shaft; The lock tongue of the door lock is provided with a mounting groove, and the positioning tongue of the door lock is installed in the mounting groove through a rotating motor and a rotating shaft, the rotating shaft passes through the positioning tongue, and the rotating motor is connected to the rotating shaft; The rotating motor is electrically connected to the control module; The control module sends a corresponding control signal to the rotating motor to drive the rotating motor to drive the rotating shaft and the positioning tongue to rotate the corresponding angle, that is, The positioning tongue is completely retracted into the installation groove or exposed from the installation groove.
6. The intelligent lock system according to claim 5, characterized in that: When the control module sends a door lock opening signal to the rotary motor, the rotary motor drives the positioning tongue to rotate toward the installation groove through the rotating shaft, so that the positioning tongue is separated from the upper limit member of the door lock plate; When the control module sends a door lock posture holding signal to the rotary motor, the rotary motor increases the torque to temporarily fix the rotary shaft and the positioning tongue; When the control module sends a signal to the rotating motor that the door lock is about to be closed, the rotating motor drives the positioning tongue to rotate toward the installation groove through the rotating shaft until the positioning tongue is completely retracted into the installation groove, and after waiting for a set time, the rotating motor drives the positioning tongue to rotate toward the outside of the installation groove through the rotating shaft.
7. The intelligent lock system according to claim 6, characterized in that: When the lock tongue is fully inserted into the gusset plate, the rotary motor drives the positioning tongue to rotate outward of the mounting groove through the rotary shaft until the positioning tongue abuts against the upper limit member on the gusset plate of the door lock.
8. The intelligent lock system according to claim 6, characterized in that: When the lock tongue is not fully inserted into the buckle plate, the rotating motor drives the positioning tongue to rotate toward the outside of the installation groove through the rotating shaft, and when the positioning tongue abuts against the upper limit piece on the buckle plate of the door lock, the force of the positioning tongue and the limit piece pulls the lock tongue into the buckle plate until the lock tongue is fully inserted into the buckle plate.
9. A method for using the smart lock system according to claim 5, characterized in that: include: When the control module sends a door lock opening signal to the rotary motor, the rotary motor drives the positioning tongue to rotate toward the installation slot through the rotating shaft, so that the positioning tongue is separated from the upper limit piece of the door lock plate; When the control module sends a door lock posture holding signal to the rotating motor, the rotating motor increases the torque to temporarily fix the rotating shaft and the positioning tongue; When the control module sends a signal to the rotating motor that the door lock is about to be closed, the rotating motor drives the positioning tongue to rotate toward the installation slot through the rotating shaft until the positioning tongue is completely retracted into the installation slot. After waiting for a set time, the rotating motor drives the positioning tongue to rotate toward the outside of the installation slot through the rotating shaft.
10. The method of use according to claim 9, wherein: When the lock tongue is fully inserted into the gusset plate, the rotating motor drives the positioning tongue to rotate outward of the installation slot through the rotating shaft until the positioning tongue abuts against the upper limit piece of the gusset plate of the door lock; When the lock tongue is not fully inserted into the buckle plate, the rotating motor drives the positioning tongue to rotate toward the outside of the installation groove through the rotating shaft, and when the positioning tongue abuts against the upper limit piece on the buckle plate of the door lock, the force of the positioning tongue and the limit piece pulls the lock tongue into the buckle plate until the lock tongue is fully inserted into the buckle plate.
11. A computer-readable storage medium having a computer program / instruction stored thereon, characterized in that: When the computer program / instruction is executed by a processor, the steps of the method according to any one of claims 9 to 10 are implemented.
12. A computer program product comprising a computer program / instructions, characterized in that When the computer program / instruction is executed by a processor, the steps of the method according to any one of claims 9 to 10 are implemented.
Citation Information
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