WO2017166355A1 - 信息处理方法、装置和系统、移动终端、智能锁 - Google Patents

信息处理方法、装置和系统、移动终端、智能锁 Download PDF

Info

Publication number
WO2017166355A1
WO2017166355A1 PCT/CN2016/080610 CN2016080610W WO2017166355A1 WO 2017166355 A1 WO2017166355 A1 WO 2017166355A1 CN 2016080610 W CN2016080610 W CN 2016080610W WO 2017166355 A1 WO2017166355 A1 WO 2017166355A1
Authority
WO
WIPO (PCT)
Prior art keywords
smart lock
information
mobile terminal
biometric information
security key
Prior art date
Application number
PCT/CN2016/080610
Other languages
English (en)
French (fr)
Inventor
葛厚洋
Original Assignee
宇龙计算机通信科技(深圳)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 宇龙计算机通信科技(深圳)有限公司 filed Critical 宇龙计算机通信科技(深圳)有限公司
Publication of WO2017166355A1 publication Critical patent/WO2017166355A1/zh

Links

Images

Classifications

    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C9/00Individual registration on entry or exit
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C9/00Individual registration on entry or exit
    • G07C9/00174Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys
    • G07C9/00563Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys using personal physical data of the operator, e.g. finger prints, retinal images, voicepatterns

Definitions

  • the embodiments of the present invention relate to the field of communications technologies, and more particularly, to an information processing method, apparatus, and system, a mobile terminal, and a smart lock.
  • the mobile terminal can be unlocked.
  • the specific implementation method is as follows: First, a specific application in the mobile terminal needs to be opened, and the "unlock" button in the application is clicked to input a security password, and the mobile terminal sends the security password to the smart lock. After receiving the security password, the smart lock compares with the pre-stored password. When the comparison is successful, the smart message is sent to the mobile terminal, prompting the user to rotate the mobile terminal, and the user rotates the mobile terminal.
  • the gyroscope inside the mobile terminal detects the angle value of the rotation angle of the mobile terminal, and sequentially sends the angle value to the smart lock, and the smart lock compares the received angle value with the pre-stored angle value. If the matching is successful, Then unlock it.
  • the present invention provides an information processing method, apparatus, and system, a mobile terminal, and a smart lock, which overcome the problem of utilizing a mobile terminal to unlock a mobile terminal, requiring a user to record a password and rotate a mobile terminal, and the operation is complicated. .
  • the present invention provides the following technical solutions:
  • An information processing method is applied to a mobile terminal, and the information processing method includes:
  • biometric information of the user where the biometric information is: fingerprint feature information or iris feature information;
  • the target smart lock is determined
  • a pre-stored security key corresponding to the standard biometric information is transmitted to the target smart lock.
  • An information processing method is applied to a smart lock, and the information processing method includes:
  • An information processing apparatus is applied to a mobile terminal, and the information processing apparatus includes:
  • a first acquiring module configured to acquire biometric information of the user, where the biometric information is: fingerprint feature information or iris feature information;
  • a matching module configured to match the biometric information with pre-recorded standard biometric information
  • Determining a module configured to determine a target smart lock when the matching is successful
  • a first sending module configured to send a pre-stored security key corresponding to the standard biometric information to the target smart lock.
  • An information processing apparatus is applied to a smart lock, and the information processing apparatus includes:
  • a response module configured to determine an operation of the smart lock in response to the mobile terminal
  • a first receiving module configured to receive, by the mobile terminal, a security key corresponding to the standard biometric information stored in advance
  • a matching module configured to match the security key with a pre-stored standard security key
  • a mobile terminal includes a processor and a memory, wherein the memory stores a set of program codes, and the processor is configured to call program code stored in the memory to perform the following operations:
  • biometric information of the user where the biometric information is: fingerprint feature information or iris feature information;
  • the target smart lock is determined
  • a pre-stored security key corresponding to the standard biometric information is transmitted to the target smart lock.
  • a smart lock includes a processor and a memory, wherein the memory stores a set of program code, and the processor is configured to call program code stored in the memory to perform the following operations:
  • An information processing system includes a mobile terminal and a smart lock, wherein:
  • the mobile terminal is configured to acquire biometric information of the user, where the biometric information is: fingerprint feature information or iris feature information; and the biometric information is matched with pre-recorded standard biometric information; Upon successful, determining a target smart lock; transmitting a pre-stored security key corresponding to the standard biometric information to the target smart lock;
  • the smart lock is configured to determine an operation of the smart lock in response to the mobile terminal, and receive the security key that is sent by the mobile terminal corresponding to the standard biometric information stored in advance; and the security key and a pre-stored standard The security key is matched; when the match is successful, the lock is unlocked.
  • biometric information of a user is acquired, and the biometric information is pre-recorded with standard biometric information included in advance.
  • Matching when the matching is successful, determining the target smart lock, and transmitting a pre-stored security key corresponding to the standard biometric information to the target smart lock. Since the biometric information is unique to the user, the user does not need to remember, and for the user, only the biometric information needs to be input to realize the purpose of opening the smart lock through the mobile terminal, and the operation is simple.
  • FIG. 1 is a schematic flowchart of an information processing method applied to a mobile terminal according to an embodiment of the present invention
  • FIG. 2 is a schematic flowchart of a method for transmitting a security key corresponding to the standard fingerprint feature information to the target smart lock in an information processing method according to an embodiment of the present disclosure
  • FIG. 3 is a schematic flowchart diagram of an information processing method applied to a smart lock according to an embodiment of the present invention
  • FIG. 4 is a schematic structural diagram of an information processing apparatus applied to a mobile terminal according to an embodiment of the present disclosure
  • FIG. 5 is a schematic structural diagram of an implementation manner of a first sending module in an information processing apparatus according to an embodiment of the present disclosure
  • FIG. 6 is a schematic structural diagram of an information processing apparatus applied to a smart lock according to an embodiment of the present disclosure
  • FIG. 7 is a signaling diagram of interaction between a mobile terminal and a smart lock according to an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a mobile terminal according to an embodiment of the present disclosure.
  • FIG. 9 is a schematic structural diagram of a smart lock according to an embodiment of the present invention.
  • FIG. 1 is a schematic flowchart of an information processing method applied to a mobile terminal according to an embodiment of the present disclosure, where the information processing method includes:
  • Step S101 Acquire biometric information of the user.
  • the biometric information is: fingerprint feature information or iris feature information. Fingerprint feature information or iris feature information are unique features of the user and do not require user memory.
  • a fingerprint is a line created by unevenness on the front surface of a human finger.
  • the lines are regularly arranged to form different patterns.
  • the starting point, end point, joint point and bifurcation point of the line are called the details of the fingerprint.
  • the fingerprint feature information may include detailed feature points of the fingerprint.
  • the human eye structure is composed of sclera, iris, iris lens, retina and the like.
  • the iris is an annular portion between the black iris and the white sclera that contains many detailed features of interlaced spots, filaments, crowns, stripes, crypts, and the like.
  • the iris feature information may include detailed features of the interlaced spots, filaments, crowns, stripes, crypts, etc. of the iris.
  • the user's biometric information may be obtained by scanning the user's fingerprint or iris through a camera in the mobile terminal. It may also be a photo in which a fingerprint or an iris is stored in the mobile terminal, or a user inputs a photo of a fingerprint or an iris at the mobile terminal, and then obtains biometric information from the photo.
  • the fingerprint detection area of the mobile terminal may be located in a certain area of the mobile terminal casing.
  • the user can touch the fingerprint detection area under the camera by touching the back of the mobile phone (referred to as the opposite side of the touch screen of the mobile phone).
  • the screen status enters the bright screen state.
  • the biometric information is the fingerprint feature information
  • the biometric information of the user may be obtained by obtaining the fingerprint feature information generated by the user pressing the fingerprint detection area when the user touches the fingerprint detection area of the mobile terminal.
  • acquiring the biometric information of the user may be determining fingerprint feature information generated by the user pressing the fingerprint detection area when the mobile terminal is in a screen-off state.
  • fingerprint feature information generated by the user pressing the fingerprint detection area may also be determined.
  • Step S102 Match the biometric information with the pre-recorded standard biometric information.
  • the standard biometric information is pre-recorded in the mobile terminal, and the pre-recording process may be performed when the user registers, and the standard biometric information may be It is obtained by the mobile terminal.
  • the biometric information is input on the registration interface, and the standard biometric information can be obtained from the biometric information.
  • the pre-recording process of the standard biometric information may include: displaying a registration interface when receiving the request registration information sent by the target smart lock; obtaining standard biometric information from the biometric information input by the user through the registration interface; Standard biometric information is stored.
  • a lock may have multiple keys, and a smart lock may correspond to multiple mobile terminals.
  • the first registered user can be referred to as the primary user, and the users registered in other time periods are referred to as the secondary user.
  • the primary user is the same as the method of unlocking from the user. However, when the user is registering, the primary user is required to agree, and of course, without the consent of the primary user.
  • the main user From the registration process displayed by the user, there may be a prompt for the main user to input biometric information on the registration interface displayed, and the biometric information obtained from the biometric information input by the main user matches the biometric information of the main user stored in the mobile terminal.
  • the process of registering from the user is the same as that of the primary user, and will not be described here.
  • the user may input the biometric information several times. If the user inputs 10 times and the standard biometric information obtained for the biometric information of the 10 inputs is the same, then The standard biometric information is stored, otherwise, the user is prompted to re-enter the biometric information.
  • the target smart lock Before the target smart lock is registered by the user, the target smart lock can always be in the state of broadcasting the request registration information, and when the user places the mobile terminal within the preset range of the target smart lock, the mobile terminal can receive the request registration information.
  • the smart key can be inserted into the keyhole of the smart lock and rotated to the secure registration mode, and the smart lock is in the state of broadcasting the transmission request registration information.
  • the user rotates the security key to a certain position, and the indicator light on the smart lock displays a specific color. After the user sees the indicator light to display the specific color, the smart lock is in the safe registration mode.
  • the smart key has a scale around the keyhole, and one of the scales corresponds to the secure registration mode, and the user rotates the security key to the scale, and the smart lock is in the secure registration mode. At this point, the user can register.
  • a target smart lock is a smart lock that can communicate with a mobile terminal. It is called the target smart lock to distinguish it from other smart locks.
  • the user may input biometric information through the registration interface.
  • the biometric information is a fingerprint or an iris
  • the user may scan through the camera of the mobile terminal.
  • the biometric information is a fingerprint
  • the user may touch Obtained by the fingerprint detection area of the mobile terminal, or may be obtained by the user inputting the photo of the biometric information.
  • the user may be prohibited from obtaining biometric information by inputting a photo of the biometric information.
  • the reason why it is called standard biometric information is to distinguish it from the biometric information, which is the biometric information of the user A when the user A unlocks with the mobile terminal.
  • the quasi-biometric information is the biometric information of the registered user, that is, if the user A is the registered user, the biometric information of the user A is the standard biometric information, and if the user A is not the registered user, the biometrics of the user A Information is not standard biometric information.
  • Step S103 When the matching is successful, the target smart lock is determined.
  • the target smart lock may be one or more.
  • the manner of determining the target smart lock may be specific to the broadcast mode. Within a preset range, the mobile terminal broadcasts a communication request; and the smart lock responding to the communication request is determined as the target smart lock.
  • the wireless communication Since the mobile terminal and the smart lock are wireless communication, the wireless communication has a corresponding communication distance.
  • the preset range is related to the type of wireless communication used in the actual application. For example, if the mobile terminal and the smart lock communicate through the acoustic signal, the preset range is a radius of the preset distance centered on the mobile terminal. ball.
  • the mobile terminal communicates with the target smart lock through the acoustic signal, since the transmission distance of the acoustic signal is small, generally 15 cm, it is safer, and in general, there is only one target smart lock.
  • the method for determining the target smart lock may also be obtained by using a positioning method.
  • the mobile terminal may store the correspondence between the identifier of the smart lock and the standard biometric information, and assume that the user registers multiple biometric information (such as the user's) in the same mobile terminal.
  • the fingerprint of each finger is different, the irises of the left and right eyes are different, these can be different biometric information, and each biometric information corresponds to a smart lock.
  • a plurality of biometric information are assumed here.
  • the biometric information A and the biometric information B the biometric information A corresponds to the smart lock A
  • the biometric information B corresponds to the smart lock B
  • the biometric information obtained in step S101 is the biometric information A.
  • the S102 may match the biometric identification information A with the biometric identification information A and the biometric identification information B, and then find that the biometric identification information A can only be successfully matched, and then the identifier of the stored smart lock is passed.
  • the smart lock A corresponding to the biometric information A is determined Smart Lock target.
  • the correspondence between the identifier of the smart lock stored by the mobile terminal and the standard biometric information may also be stored in the registration process. Specifically, when the request registration information sent by the target smart lock is received, the registration interface is displayed; Obtaining standard biometric information in the biometric information input by the interface; storing the standard biometric information, receiving the identification information of the target smart lock fed back by the target smart lock, and identifying the target smart lock with the standard Biometric information is stored in correspondence. which is A smart lock having identification information corresponding to the standard biometric information is used as a target smart lock.
  • the method of determining the target smart lock by the positioning method is as follows. If the user binds multiple smart locks through the same biometric information, it is assumed that the biometric information A corresponds to the smart lock B and the smart lock C. Then, the mobile terminal may pre-store the correspondence between the standard biometric information, the security key, and the identification information of the smart lock. After acquiring the biometric information A of the user in step S101, the biometric information A and the biometric information A are performed in step S102.
  • the step S103 determines the target smart lock, and may first send a communication request by means of broadcast, and receive a message of the smart lock A in response to the communication request and a message of the smart lock B in response to the communication request, the response
  • the message of the communication request may include the identification information of the smart lock; the correspondence relationship between the standard biometric information, the security key, and the identification information of the smart lock is pre-stored by the mobile terminal, and the security key A of the smart lock A and the smart are determined.
  • Lock B's security key B then send security key A to smart lock A and send security key B to smart lock B.
  • An example of the above embodiment is that in the case where the communication distance of the wireless communication between the mobile terminal and the smart lock is large, in the actual application, the target smart lock is mostly a smart lock.
  • Step S104 Send a pre-stored security key corresponding to the standard biometric information to the target smart lock.
  • Some of the target smart locks within the preset range may be able to match the security key with the stored standard security key, and the target smart lock is a smart lock that the user binds to the standard biometric information when registering. Some target smart locks may not be able to match the security key with its stored standard security key. This indicates that the target smart lock is not a smart lock that is bound to standard biometric information when the user registers.
  • the pre-storing process of the security key includes: transmitting the standard biometric information to the target smart lock, so that the target smart lock generates a security key according to the identification information of the target smart lock and the standard biometric information. Receiving a security key for the target smart lock feedback and storing.
  • the biometric information of the user can be re-acquired, and the judgment is performed again until the number of unsuccessful matches is greater than the preset value, the target smart lock is locked, or an alarm is given, or the user is prompted. Unlocking and so on.
  • Wireless communication between the mobile terminal and the smart lock in order to ensure communication security, preferably, the communication can be performed by the acoustic signal, and the smart lock needs to convert the electrical signal into an acoustic signal before transmitting the signal to the mobile terminal, for example, in registration
  • the mobile terminal sends a standard biometric to the smart lock.
  • the broadcast communication request in the process of unlocking, the security key sent by the mobile terminal to the smart lock is to first convert the electrical signal in the mobile terminal It is a sound signal, and then sent out.
  • the electrical signal can be converted into a sound signal through a speaker.
  • the security key sent by the smart lock to the mobile terminal and the smart lock responding to the communication request during the unlocking process are first converted into an audio signal in the smart lock, and then Send it out.
  • information between the mobile terminal and the smart lock can be sent to the other party after being encrypted.
  • the space in the mobile terminal for storing standard biometric information and security keys may be a secure space for restricting access by other programs.
  • the space in the smart lock that stores the standard security key can be a secure space that restricts access by other programs.
  • An information processing method provided by an embodiment of the present invention first acquires biometric information of a user, and matches the biometric information with pre-recorded biometric information. When the matching is successful, the target smart lock is determined. The stored security key corresponding to the standard biometric information is sent to the target smart lock. Since the biometric information is unique to the user, the user does not need to remember, and for the user, only the biometric information needs to be input to realize the purpose of opening the smart lock through the mobile terminal, and the operation is simple.
  • an information processing method will be A schematic flowchart of a method for transmitting a security key corresponding to the standard fingerprint feature information to the target smart lock, where the method includes:
  • Step S201 For each first target smart lock of the plurality of target smart locks, obtaining a first identifier of the first target smart lock from a message that the first target smart lock responds to the broadcast communication request information.
  • a user's mobile terminal may store multiple security keys, and each security key corresponds to a smart lock.
  • the user When registering, the user may use the same biometric information to correspond to multiple smart locks for the convenience of memory.
  • the smart locks are within the communication range with the mobile terminal, and the first identification information of the first target smart lock can be obtained from the message that the first target smart lock responds to the broadcast communication request.
  • the first identification information may be a smart lock when the user registers with the mobile terminal.
  • the mobile terminal may store the identification information of the smart lock, the standard biometric information, and the correspondence relationship of the security key, and obtain the corresponding security key from the correspondence according to the first identification information and the standard biometric information. , sent to the corresponding first target smart lock.
  • Step S202 Obtain a first security key corresponding to the first identifier information and the standard biometric information from the identifier information of the pre-stored smart lock, the standard biometric information, and the security key correspondence relationship. .
  • Step S203 Send the first security key to the first target smart key.
  • FIG. 3 is a schematic flowchart of an information processing method applied to a smart lock according to an embodiment of the present invention, where the method includes:
  • Step S301 Determine the operation of the smart lock in response to the mobile terminal.
  • the mobile terminal determines the target smart lock when the acquired biometric information of the user matches the pre-recorded standard biometric information.
  • the mobile terminal can refer to the description of the embodiment of the information processing method applied to the mobile terminal, and details are not described herein again.
  • the responding to the mobile terminal determining the operation of the smart lock comprises: receiving a communication request broadcast by the mobile terminal; and transmitting the response to the communication request information to the mobile terminal.
  • the wireless communication Since the mobile terminal and the target smart lock are wireless communication, the wireless communication has a corresponding communication distance.
  • the preset range is related to the type of wireless communication used in the actual application. For example, if the mobile terminal and the smart lock communicate through the acoustic signal, the preset range is a radius of the preset distance centered on the mobile terminal. ball.
  • the mobile terminal determines that the operation of the smart lock has only one smart lock.
  • the communication request information may carry the identification information of the target smart lock.
  • the interaction process of the smart lock with the mobile terminal refer to the description of step S103, and details are not described herein.
  • Step S302 Receive the mobile terminal to send a security key corresponding to the standard biometric information stored in advance.
  • Step S303 Match the security key with a pre-stored standard security key.
  • the pre-storing process of the standard security key includes: receiving standard biometric information sent by the mobile terminal, where the standard biometric identification information is obtained by the mobile terminal from biometric identification information input by a user through a registration interface, The registration interface is displayed when the mobile terminal receives the request registration information sent by the smart lock; generates a security key according to the identification information of the target smart lock and the standard biometric information, and stores the security key.
  • Step S304 When the matching is successful, the lock is unlocked.
  • the mobile terminal may also send a message that the matching succeeds. After receiving the message of successful matching, the mobile terminal may display a corresponding matching success interface, and may also sound to prompt the user to unlock successfully.
  • FIG. 4 is a schematic structural diagram of an information processing apparatus applied to a mobile terminal according to an embodiment of the present invention.
  • the apparatus includes: a first obtaining module 401, a matching module 402, a determining module 403, and a first sending module 404. among them:
  • the first obtaining module 401 is configured to acquire biometric information of the user.
  • the biometric information is: fingerprint feature information or iris feature information.
  • a fingerprint is a line created by unevenness on the front surface of a human finger.
  • the lines are regularly arranged to form different patterns.
  • the start point, the end point, the joint point and the branch point of the ridge are called detailed feature points of the fingerprint, and the fingerprint feature information may include the detailed feature point of the fingerprint.
  • the human eye structure is composed of sclera, iris, iris lens, retina and the like.
  • the iris is an annular portion between the black iris and the white sclera that contains many detailed features of interlaced spots, filaments, crowns, stripes, crypts, and the like.
  • the iris feature information may include detailed features of the interlaced spots, filaments, crowns, stripes, crypts, etc. of the iris.
  • the user's biometric information may be obtained by scanning the user's fingerprint or iris through a camera in the mobile terminal. It may also be a photo in which a fingerprint or an iris is stored in the mobile terminal, or a user inputs a photo of a fingerprint or an iris at the mobile terminal, and then obtains biometric information from the photo.
  • the fingerprint detection area of the mobile terminal may be located in a certain area of the mobile terminal housing, for example, In the technology, the user can enter the bright screen state from the off-screen state by touching the fingerprint detection area under the camera on the back of the mobile phone (the opposite side of the touch screen of the mobile phone is called the back of the mobile phone).
  • the biometric information is the fingerprint feature information
  • the biometric information of the user may be obtained by obtaining the fingerprint feature information generated by the user pressing the fingerprint detection area when the user touches the fingerprint detection area of the mobile terminal.
  • the first obtaining module 401 may include a second determining unit, configured to collect fingerprint feature information generated by the user pressing the fingerprint detecting area when the mobile terminal is in a screen-off state.
  • the fingerprint feature information generated by the user pressing the fingerprint detection area may also be determined.
  • the matching module 402 is configured to match the biometric information with pre-recorded standard biometric information.
  • the standard biometric information is pre-recorded in the mobile terminal, and the pre-recording process may be performed when the user registers, and the standard biometric information may be It is obtained by the mobile terminal.
  • the biometric information is input on the registration interface, and the standard biometric information can be obtained from the biometric information.
  • the pre-recorded device of the standard biometric information may include: a receiving module, configured to display a registration interface when receiving the request registration information sent by the target smart lock; and a second acquiring module, configured to The standard biometric information is obtained from the biometric information input by the registration interface; the first storage module is configured to store the standard biometric information.
  • a lock may have multiple keys, and the smart lock may also correspond to multiple mobile terminals.
  • the first registered user may be referred to as a primary user, and the users registered in other time periods are referred to as secondary users.
  • the primary user is the same as the method of unlocking from the user. However, when the user is registering, the primary user is required to agree, and of course, without the consent of the primary user.
  • the main user From the registration process displayed by the user, there may be a prompt for the main user to input biometric information on the registration interface displayed, and the biometric information obtained from the biometric information input by the main user matches the biometric information of the main user stored in the mobile terminal.
  • the process of registering from the user is the same as that of the primary user, and will not be described here.
  • the user can input the biometric information several times, assuming that the user inputs 10 times and obtains the biometric information for the 10 inputs. If the standard biometric information is the same, the standard biometric information is stored, otherwise, the user is prompted to re-enter the biometric information.
  • the target smart lock Before the target smart lock is registered by the user, the target smart lock can always be in the state of broadcasting the request registration information, and when the user places the mobile terminal within the preset range of the target smart lock, the mobile terminal can receive the request registration information.
  • the smart key can be inserted into the keyhole of the smart lock and rotated to the secure registration mode, and the smart lock is in the state of broadcasting the transmission request registration information.
  • the user rotates the security key to a certain position, and the indicator light on the smart lock displays a specific color. After the user sees the indicator light to display the specific color, the smart lock is in the safe registration mode.
  • the smart key has a scale around the keyhole, and one of the scales corresponds to the secure registration mode, and the user rotates the security key to the scale, and the smart lock is in the secure registration mode. At this point, the user can register.
  • a target smart lock is a smart lock that can communicate with a mobile terminal. It is called the target smart lock to distinguish it from other smart locks.
  • the user may input biometric information through the registration interface.
  • the biometric information is a fingerprint or an iris
  • the user may scan through the camera of the mobile terminal.
  • the biometric information is a fingerprint
  • the user may touch Obtained by the fingerprint detection area of the mobile terminal, or may be obtained by the user inputting the photo of the biometric information.
  • the user may be prohibited from obtaining biometric information by inputting a photo of the biometric information.
  • the biometric information is the biometric information of the user A when the user A unlocks with the mobile terminal, and the standard biometric information is the biometric feature of the registered user.
  • the information that is, if the user A is a registered user, the biometric information of the user A is the standard biometric information, and if the user A is not the registered user, the biometric information of the user A is not the standard biometric information.
  • the determining module 403 is configured to determine the target smart lock when the matching is successful.
  • the target smart lock may be one or more.
  • the method for determining the target smart lock may be a broadcast mode.
  • the determining module 403 may include: a first sending unit, configured to broadcast a communication request within a preset range; and a first determining unit, configured to respond to the communication The requested smart lock is determined to be the target smart lock.
  • the wireless communication Since the mobile terminal and the smart lock are wireless communication, the wireless communication has a corresponding communication distance. from.
  • the preset range is related to the type of wireless communication used in the actual application. For example, if the mobile terminal and the smart lock communicate through the acoustic signal, the preset range is a radius of the preset distance centered on the mobile terminal. ball.
  • the mobile terminal communicates with the smart lock through the acoustic signal, since the transmission distance of the acoustic signal is small, generally 15 cm, it is safer, and in general, there is only one target smart lock.
  • the method for determining the target smart lock may also be obtained by using a positioning method.
  • the mobile terminal may store the correspondence between the identifier of the smart lock and the standard biometric information, and assume that the user registers multiple biometric information (such as the user's) in the same mobile terminal.
  • the fingerprint of each finger is different, the irises of the left and right eyes are different, these can be different biometric information, and each biometric information corresponds to a smart lock.
  • a plurality of biometric information are assumed here.
  • the biometric information A and the biometric information B the biometric information A corresponds to the smart lock A
  • the biometric information B corresponds to the smart lock B
  • the biometric information obtained by the first acquisition module 401 is biometric information.
  • the matching module 402 may match the biometric identification information A with the pre-recorded biometric identification information A and the biometric identification information B, and then find that the biometric identification information A can only be successfully matched, and then through the storage.
  • the correspondence between the identifier of the smart lock and the standard biometric information will correspond to the biometric information A.
  • a lock can be determined as the target smart lock.
  • the correspondence between the identifier of the smart lock stored by the mobile terminal and the standard biometric information may also be stored in the registration process. Specifically, when the request registration information sent by the target smart lock is received, the registration interface is displayed; Obtaining standard biometric information in the biometric information input by the interface; storing the standard biometric information, receiving the identification information of the target smart lock fed back by the target smart lock, and identifying the target smart lock with the standard Biometric information is stored in correspondence. A smart lock that has identification information corresponding to the standard biometric information is used as the target smart lock.
  • the method of determining the target smart lock by the positioning method is as follows. If the user binds multiple smart locks through the same biometric information, it is assumed that the biometric information A corresponds to the smart lock B and the smart lock C. Then, the mobile terminal may pre-store the correspondence between the standard biometric information, the security key, and the identification information of the smart lock. After the first acquisition module 401 acquires the biometric information A of the user, the matching module 402 associates the biometric information A with the biometric information. After the matching of the feature information A is successful, the step S103 determines the target smart lock, and may first send a communication request by means of broadcasting, and receive the message of the smart lock A in response to the communication request and the message of the smart lock B in response to the communication request.
  • the The message in response to the communication request may include the identification information of the smart lock; the security key A of the smart lock A is determined by the correspondence relationship between the standard biometric information, the security key, and the identification information of the smart lock pre-stored by the mobile terminal. And the security key B of the smart lock B, then the security key A is sent to the smart lock A, and the security key B is sent to the smart lock B.
  • An example of the above embodiment is that in the case where the communication distance of the wireless communication between the mobile terminal and the smart lock is large, in the actual application, the target smart lock is mostly a smart lock.
  • the first sending module 404 is configured to send a pre-stored security key corresponding to the standard biometric information to the target smart lock.
  • Some of the target smart locks within the preset range may be able to match the security key with the stored standard security key, and the target smart lock is a smart lock that the user binds to the standard biometric information when registering. Some target smart locks may not be able to match the security key with its stored standard security key. This indicates that the target smart lock is not a smart lock that is bound to standard biometric information when the user registers.
  • the pre-stored device of the security key includes: a second sending module, configured to send the standard biometric information to the target smart lock, so that the target smart lock is based on the identification information of the target smart lock and the The standard biometric information generates a security key; the second storage module is configured to receive the security key of the target smart lock feedback and store the security key.
  • the biometric information of the user can be re-acquired, and the judgment is performed again until the number of unsuccessful matches is greater than the preset value, the target smart lock is locked, or an alarm is given, or the user is prompted. Unlocking and so on.
  • Wireless communication between the mobile terminal and the smart lock in order to ensure communication security, preferably, the communication can be performed by the acoustic signal, and the smart lock needs to convert the electrical signal into an acoustic signal before transmitting the signal to the mobile terminal, for example, in registration
  • the standard biometric information sent by the mobile terminal to the smart lock, the mobile communication request in the process of determining the target smart lock during the unlocking process, the broadcast communication request, and the security key sent by the mobile terminal to the smart lock during the unlocking process First, the electrical signal is first converted into a sound signal in the mobile terminal, and then transmitted. In practical applications, the electrical signal can be converted into a sound signal through a speaker.
  • the security key sent by the smart lock to the mobile terminal and the smart lock responding to the communication request during the unlocking process are first converted into an audio signal in the smart lock, and then Send it out.
  • the information between the mobile terminal and the smart lock can be sent after being encrypted. Send to the other party.
  • the space in the mobile terminal for storing standard biometric information and security keys may be a secure space for restricting access by other programs.
  • the space in the smart lock that stores the standard security key can be a secure space that restricts access by other programs.
  • the first acquiring module 401 acquires biometric information of the user, and the matching module 402 matches the biometric information with the pre-recorded biometric information, and the determining module 403 is When the matching is successful, the target smart lock is determined, and the first sending module 404 sends the pre-stored security key corresponding to the standard biometric information to the target smart lock. Since the biometric information is unique to the user, the user does not need to remember, and for the user, only the biometric information needs to be input to realize the purpose of opening the smart lock through the mobile terminal, and the operation is simple.
  • FIG. 5 A schematic diagram of an implementation of a sending module, where the first sending module includes: a first obtaining unit 501, a second obtaining unit 502, and a second sending unit 503, where:
  • a first acquiring unit 501 configured to obtain, according to each of the plurality of target smart locks, the first target smart from a message that the first target smart lock responds to the broadcast communication request The first identification information of the lock.
  • a user's mobile terminal may store multiple security keys, and each security key corresponds to a smart lock.
  • the user When registering, the user may use the same biometric information to correspond to multiple smart locks for the convenience of memory.
  • the smart locks are within the communication range with the mobile terminal, and the first identification information of the first target smart lock can be obtained from the message that the first target smart lock responds to the broadcast communication request.
  • the first identification information may be obtained by the user when the mobile terminal registers, and the mobile terminal may store the identification information of the smart lock, the standard biometric information, and the correspondence relationship of the security key, and may be based on the first identification information.
  • the standard biometric information, and the corresponding security key is obtained from the correspondence, and sent to the corresponding first target smart lock.
  • the second obtaining unit 502 is configured to obtain, from the identifier information of the pre-stored smart lock, the standard biometric information and the security key correspondence, the first identifier information and the standard biometric information.
  • the first security key is configured to obtain, from the identifier information of the pre-stored smart lock, the standard biometric information and the security key correspondence, the first identifier information and the standard biometric information. The first security key.
  • the second sending unit 503 is configured to send the first security key to the first target smart key.
  • FIG. 6 is a schematic structural diagram of an information processing apparatus applied to a smart lock according to an embodiment of the present invention.
  • the apparatus includes: a response module 601, a first receiving module 602, a matching module 603, and an unlocking module 604, where:
  • the response module 601 is configured to determine, in a preset range, the operation of the smart lock in response to the mobile terminal.
  • the mobile terminal determines the target smart lock when the acquired biometric information of the user matches the pre-recorded standard biometric information.
  • the mobile terminal can refer to the description of the embodiment of the information processing device applied to the mobile terminal, and details are not described herein again.
  • the response module includes: a receiving unit, configured to receive a communication request broadcast by the mobile terminal; and a sending unit, configured to send, to the mobile terminal, the response to the communication request information.
  • the wireless communication Since the mobile terminal and the smart lock are wireless communication, the wireless communication has a corresponding communication distance.
  • the preset range is related to the type of wireless communication used in the actual application. For example, if the mobile terminal and the smart lock communicate through the acoustic signal, the preset range is a radius of the preset distance centered on the mobile terminal. ball.
  • the mobile terminal determines that the operation of the smart lock has only one smart lock. .
  • the communication request information is carried in response to the identification information of the target smart lock.
  • the interaction process of the smart lock with the mobile terminal refer to the description of step S103, and details are not described herein.
  • the first receiving module 602 is configured to receive, by the mobile terminal, a security key corresponding to the standard biometric information stored in advance.
  • the matching module 603 is configured to match the security key with a pre-stored standard security key.
  • the device for pre-storing the standard security key includes: a second receiving module, configured to receive standard biometric information sent by the mobile terminal, where the standard biometric information is biometric identification information input by the mobile terminal from a user through a registration interface. Obtained in the registration interface that the mobile terminal is connected And the generating module is configured to generate a security key according to the identification information of the target smart lock and the standard biometric information, and store the security key.
  • the unlocking module 604 is used to unlock when the matching is successful.
  • the mobile terminal may also send a message that the matching succeeds. After receiving the message of successful matching, the mobile terminal may display a corresponding matching success interface, and may also sound to prompt the user to unlock successfully.
  • the embodiment of the invention provides a mobile terminal, which comprises any of the above information processing devices applied to the mobile terminal.
  • the embodiment of the invention provides a smart lock, which comprises any of the above information processing devices applied to the smart lock.
  • An embodiment of the present invention further provides an information processing system, including the foregoing mobile terminal and a smart lock.
  • the mobile terminal may include: a sound demodulation module, a sound modulation module, a digital decryption module, a microphone, and a speaker, and the microphone may receive the smart terminal.
  • the sound signal converts the sound signal into an electrical signal
  • the sound wave demodulation module can demodulate the electrical signal
  • the digital decryption module decrypts the demodulated electrical signal.
  • the mobile terminal needs to send a signal, it is first encrypted by a digital encryption module, and then the encrypted signal is modulated by a sound modulation module, and the modulated electrical signal is converted into a sound signal through a speaker and transmitted.
  • the smart lock may also include: a sound demodulation module, a sound modulation module, a digital decryption module, a microphone, and a speaker.
  • a sound demodulation module a sound modulation module
  • a digital decryption module a microphone
  • a speaker a speaker
  • FIG. 7 is a signaling diagram of interaction between a mobile terminal and a smart lock according to an embodiment of the present invention. .
  • the security key can be inserted into the keyhole of the smart lock 71 and rotated to the secure registration mode, at which time the smart lock 71 is in the state of broadcasting the transmission request registration information.
  • the user can place the mobile terminal 72 within a range that is capable of wireless communication with the smart lock 71.
  • Step S701 request registration information sent by the target smart lock 71.
  • Step S702 When the mobile terminal 72 receives the request registration information sent by the target smart lock 71, the registration interface is displayed.
  • Step S703 The mobile terminal 72 obtains standard biometric information from the biometric information input by the user through the registration interface.
  • Step S704 The mobile terminal 72 stores the standard biometric information.
  • Step S705 The mobile terminal 72 transmits the standard biometric information to the target smart lock 71.
  • Step S706 The target smart lock 71 generates a standard security key according to the identification information of the target smart lock 71 and the standard biometric information.
  • Step S707 The target smart lock 71 transmits the standard security key to the mobile terminal 72.
  • Step S708 The mobile terminal 72 receives the standard security key fed back by the target smart lock 71 and stores it.
  • Step S709 The mobile terminal 72 acquires biometric information of the user.
  • Step S710 Match the biometric information with the pre-recorded standard biometric information.
  • Step S711 When the matching is successful, the communication request is broadcast within a preset range.
  • Step S712 The target smart lock 71 receives the communication request broadcast by the mobile terminal 72, and transmits a response to the communication request information to the mobile terminal 72.
  • Step S713 Send a pre-stored security key corresponding to the standard biometric information to the target smart lock 71.
  • Step S714 The target smart lock 71 matches the security key with a pre-stored standard security key.
  • Step S715 When the target smart lock 71 is successfully matched, the lock is unlocked.
  • FIG. 8 is a schematic block diagram of a mobile terminal according to an embodiment of the present invention.
  • the mobile terminal 8 may include: at least one processor 81, such as a CPU, at least one communication bus 82, and a memory 83; 82 is used to implement connection communication between these components; storage
  • the device 83 may be a high speed RAM memory or a non-volatile memory such as at least one disk memory.
  • a set of program codes is stored in the memory 83, and the processor 81 is configured to call the program code stored in the memory 83 for performing the following operations:
  • biometric information of the user where the biometric information is: fingerprint feature information or iris feature information;
  • the target smart lock is determined
  • a pre-stored security key corresponding to the standard biometric information is transmitted to the target smart lock.
  • the processor 81 determines that the specific operation of the target smart lock is:
  • a smart lock responsive to the communication request is determined as the target smart lock.
  • the processor 81 sends a pre-stored security key corresponding to the standard fingerprint feature information to the smart lock when the smart lock responding to the broadcast communication request is a plurality of target smart locks.
  • the specific operation of the target smart lock is:
  • the mobile terminal 81 includes a fingerprint detection area, and the specific operation of the processor to acquire the biometric information of the user when the biometric information is the fingerprint feature information is:
  • the fingerprint feature information generated by the user pressing the fingerprint detection area is collected when the mobile terminal is in a screen-off state.
  • the pre-recording process of the standard biometric information includes:
  • the standard biometric information is stored.
  • the pre-storing process of the security key includes:
  • the mobile terminal communicates with the target smart lock by using an acoustic signal.
  • FIG. 9 is a schematic block diagram of a smart lock according to an embodiment of the present invention.
  • the smart lock 9 may include: at least one processor 91, such as a CPU, at least one communication bus 92 and a memory 93; and a communication bus 92 is used to implement connection communication between these components; the memory 93 may be a high speed RAM memory or a non-volatile memory such as at least one disk memory.
  • a set of program codes is stored in the memory 93, and the processor 91 is configured to call the program code stored in the memory 93 for performing the following operations:
  • the processor 91 determines, according to the mobile terminal, the operation of the smart lock as:
  • the response to the communication request information carries the identification information of the target smart lock.
  • the pre-storing process of the standard security key includes:

Landscapes

  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Telephone Function (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

本发明实施例提供了一种信息处理方法、装置和系统、移动终端、智能锁,首先获取用户的生物特征信息,将所述生物特征信息与预先收录的标准生物特征信息进行匹配,当匹配成功时,确定目标智能锁,将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁,以便所述目标智能锁将所述安全密钥与其存储的标准安全密钥相匹配,匹配成功时,开锁。由于生物特征信息是用户特有的,不需要用户记忆,且针对于用户来说,仅仅需要输入生物特征信息即可实现通过移动终端开启智能锁的目的,操作简便。

Description

信息处理方法、装置和系统、移动终端、智能锁
本申请要求于2016年3月31日提交中国专利局,申请号为201610199900.2、发明名称为“信息处理方法、装置和系统、移动终端、智能锁”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明实施例涉及通信技术领域,更具体的涉及一种信息处理方法、装置和系统、移动终端、智能锁。
背景技术
目前可以通过移动终端进行开锁,具体实现方法如下:首先需要打开移动终端中特定的应用程序,点击该应用程序中的“开锁”按钮,输入安全密码,移动终端将该安全密码发送至智能锁,智能锁接收到该安全密码后,与预先存储的密码进行比对,当比对成功后,将比对成功的消息发送至移动终端,提示用户转动移动终端,用户在转动移动终端的过程中,移动终端内部的陀螺仪会检测移动终端的转动角度的角度值,并将该角度值顺序的发送至智能锁,智能锁将接收到的角度值与预先存储的角度值进行对比,如果匹配成功,则开锁。
上述利用移动终端进行开锁的方法中,需要用户手动输入密码,然后在转动该移动终端,操作比较复杂,且用户很有可能会忘记密码或者转动移动终端的角度,导致不能开锁。
发明内容
有鉴于此,本发明提供了一种信息处理方法、装置和系统、移动终端、智能锁,以克服现有技术中利用移动终端开锁,需要用户记录密码和转动移动终端角度,及操作复杂的问题。
为实现上述目的,本发明提供如下技术方案:
一种信息处理方法,应用于移动终端,所述信息处理方法包括:
获取所述用户的生物特征信息,所述生物特征信息为:指纹特征信息或虹膜特征信息;
将所述生物特征信息与预先收录的标准生物特征信息进行匹配;
当匹配成功时,确定目标智能锁;
将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。
一种信息处理方法,应用于智能锁,所述信息处理方法包括:
响应移动终端确定智能锁的操作;
接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥;
将所述安全密钥与预先存储的标准安全密钥相匹配;
匹配成功时,开锁。
一种信息处理装置,应用于移动终端,所述信息处理装置包括:
第一获取模块,用于获取所述用户的生物特征信息,所述生物特征信息为:指纹特征信息或虹膜特征信息;
匹配模块,用于将所述生物特征信息与预先收录的标准生物特征信息进行匹配;
确定模块,用于当匹配成功时,确定目标智能锁;
第一发送模块,用于将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。
一种信息处理装置,应用于智能锁,所述信息处理装置包括:
响应模块,用于响应移动终端确定智能锁的操作;
第一接收模块,用于接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥;
匹配模块,用于将所述安全密钥与预先存储的标准安全密钥相匹配;
开锁模块,用于匹配成功时,开锁。
一种移动终端,包括处理器和存储器,其中,所述存储器中存储一组程序代码,且所述处理器用于调用所述存储器中存储的程序代码,用于执行以下操作:
获取所述用户的生物特征信息,所述生物特征信息为:指纹特征信息或虹膜特征信息;
将所述生物特征信息与预先收录的标准生物特征信息进行匹配;
当匹配成功时,确定目标智能锁;
将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。
一种智能锁,包括处理器和存储器,其中,所述存储器中存储一组程序代码,且所述处理器用于调用所述存储器中存储的程序代码,用于执行以下操作:
响应移动终端确定智能锁的操作;
接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥;
将所述安全密钥与预先存储的标准安全密钥相匹配;
匹配成功时,开锁。
一种信息处理系统,包括移动终端以及智能锁,其中:
所述移动终端,用于获取所述用户的生物特征信息,所述生物特征信息为:指纹特征信息或虹膜特征信息;将所述生物特征信息与预先收录的标准生物特征信息进行匹配;当匹配成功时,确定目标智能锁;将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁;
所述智能锁,用于响应移动终端确定智能锁的操作;接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥;将所述安全密钥与预先存储的标准安全密钥相匹配;匹配成功时,开锁。
经由上述的技术方案可知,与现有技术相比,本发明实施例提供的一种信息处理方法中,首先获取用户的生物特征信息,将所述生物特征信息与预先收录的标准生物特征信息进行匹配,当匹配成功时,确定目标智能锁,将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。由于生物特征信息是用户特有的,不需要用户记忆,且针对于用户来说,仅仅需要输入生物特征信息即可实现通过移动终端开启智能锁的目的,操作简便。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据提供的附图获得其他的附图。
图1为本发明实施例提供的一种应用于移动终端的信息处理方法的流程示意图;
图2为本发明实施例提供的一种信息处理方法中将预先存储的与所述标准指纹特征信息对应的安全密钥发送至所述目标智能锁的一种实现方式的方法流程示意图;
图3为本发明实施例提供的一种应用于智能锁的信息处理方法的流程示意图;
图4为本发明实施例提供的一种应用于移动终端的信息处理装置的结构示意图;
图5为本发明实施例提供的一种信息处理装置中第一发送模块的一种实现方式的结构示意图;
图6为本发明实施例提供的一种应用于智能锁的信息处理装置的结构示意图;
图7为本发明实施例提供的一种移动终端与智能锁交互的信令图;
图8为本发明实施例提供的一种移动终端的结构示意图;
图9为本发明实施例提供的一种智能锁的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1,为本发明实施例提供的一种应用于移动终端的信息处理方法的流程示意图,该信息处理方法包括:
步骤S101:获取所述用户的生物特征信息。
所述生物特征信息为:指纹特征信息或虹膜特征信息。指纹特征信息或虹膜特征信息都是用户自己独有的特征,不需要用户记忆。
指纹是指人的手指末端正面皮肤上凸凹不平产生的纹线。纹线有规律的排列形成不同的纹型。纹线的起点、终点、结合点和分叉点,称为指纹的细节特 征点,指纹特征信息可以包括指纹的细节特征点。
人的眼睛结构由巩膜、虹膜、虹膜晶状体、视网膜等部分组成。虹膜是位于黑色虹膜和白色巩膜之间的圆环状部分,其包含有很多相互交错的斑点、细丝、冠状、条纹、隐窝等的细节特征。虹膜特征信息可以包括虹膜的相互交错的斑点、细丝、冠状、条纹、隐窝等的细节特征。
获取用户的生物特征信息的方式有很多种,具体的,可以是通过移动终端中的摄像头对用户的指纹或虹膜进行扫描获得用户的生物特征信息。也可以是移动终端中存储有指纹或虹膜的照片,或者用户在移动终端输入指纹或虹膜的照片,然后从照片中获得生物特征信息。
移动终端的指纹检测区域可以位于移动终端外壳的某一个区域,例如,现有技术中用户通过触按手机背面(与手机触摸屏的对立面称为手机背面)摄像头下方的指纹检测区域,手机可以从灭屏状态进入亮屏状态。同理,当生物特征信息为指纹特征信息时,获取用户的生物特征信息的方式还可以是,在用户触按移动终端的指纹检测区域时,获得用户按压指纹检测区域所产生的指纹特征信息。
为了简化用户的操作,获取所述用户的生物特征信息可以是在移动终端处于灭屏状态下,确定所述用户按压所述指纹检测区域所产生的指纹特征信息。当然在移动终端处于亮屏状态下,也可以确定所述用户按压所述指纹检测区域所产生的指纹特征信息。
步骤S102:将所述生物特征信息与预先收录的标准生物特征信息进行匹配。
可以理解的是,在执行应用于移动终端的信息处理方法之前,还有准备工作,即将标准生物特征信息预先收录在移动终端中,预先收录过程可以是用户注册时发生的,标准生物特征信息可以是由移动终端获得。用户在进行注册时,在注册界面输入生物辨识信息,可以从生物辨识信息中获得标准生物特征信息。
具体的,标准生物特征信息的预先收录过程可以包括:接收到目标智能锁发送的请求注册信息时,显示注册界面;从用户通过注册界面输入的生物辨识信息中获得标准生物特征信息;将所述标准生物特征信息进行存储。
可以理解的是,一个锁可能有多把钥匙,智能锁也可能对应多个移动终端, 此时可以将第一个注册的用户称为主用户,其他时间段注册的用户称为从用户。主用户与从用户开锁的方法一样。但是从用户在注册时,需要主用户同意,当然也可以不经过主用户的同意。
从用户在注册过程中,显示的注册界面上可以有主用户输入生物辨识信息的提示,当从主用户输入的生物辨识信息获得的生物特征信息与移动终端中存储的主用户的生物特征信息匹配时,允许从用户注册,从用户注册的过程与主用户相同,在此不再赘述。
为了保证收录的标准生物特征信息的正确性,可以让用户多输入几次生物辨识信息,假设用户输入了10次,且针对这10次输入的生物辨识信息获得的标准生物特征信息都相同,则将该标准生物特征信息进行存储,否则,提示用户重新输入生物辨识信息。
在目标智能锁被用户注册之前,目标智能锁可以一直处于广播发送请求注册信息的状态,当用户将移动终端至于与目标智能锁的预设范围内,移动终端就能接收该请求注册信息了。
为了让目标智能锁处于广播发送请求注册信息的状态,可以通过将安全钥匙插入智能锁的钥匙孔,并旋转至安全注册模式,此时智能锁就处于广播发送请求注册信息的状态。具体的,用户将安全钥匙旋转至某一位置处,智能锁上的指示灯显示某一特定颜色,用户看到指示灯显示该特定颜色后,就知道智能锁处于安全注册模式了。或者,智能锁的钥匙孔周围具有刻度,某一个刻度对应安全注册模式,用户将安全钥匙旋转至该刻度处,该智能锁就处于安全注册模式。此时,用户就可以进行注册了。
目标智能锁是指能够与移动终端进行通信的智能锁。之所以称为目标智能锁是为了与其他的智能锁进行区分。
用户通过注册界面输入的生物辨识信息的方式有很多种,当生物辨识信息为指纹或虹膜时,可以是用户通过移动终端的摄像头扫描获得的,当生物辨识信息为指纹时,可以是用户通过触按移动终端的指纹检测区域获得的,也可以是用户输入生物辨识信息的照片获得的等等。一般情况下,为了安全,可以禁止用户通过输入生物辨识信息的照片获得生物特征信息。
之所以称之为标准生物特征信息是为了与生物特征信息进行区别,生物特征信息是用户A在利用移动终端进行开锁时,该用户A的生物特征信息,标 准生物特征信息是注册用户的生物特征信息,也就是说,如果用户A是注册用户,则用户A的生物特征信息就为标准生物特征信息,如果用户A不是注册用户,则用户A的生物特征信息就不是标准生物特征信息。
步骤S103:当匹配成功时,确定目标智能锁。
目标智能锁可能是一个或多个。确定目标智能锁的方式可以是广播方式具体的,在预设范围内,移动终端广播通信请求;将响应所述通信请求的智能锁,确定为所述目标智能锁。
由于移动终端与智能锁之间是无线通信,而无线通信都有相应的通信距离。该预设范围与实际应用中使用的无线通信种类有关,例如如果移动终端和智能锁之间通过声波信号进行通信,则该预设范围为以所述移动终端为中心以预设距离为半径的球。
如果移动终端和目标智能锁之间通过声波信号进行通信,由于声波信号的传输距离较小,一般为15cm,所以比较安全,且在一般情况下,目标智能锁只有一个。
确定目标智能锁的方式还可以是以定位的方式获取,移动终端可以存储有智能锁的标识与标准生物特征信息的对应关系,假设用户在同一移动终端注册了多个生物辨识信息(例如用户的每个手指的指纹都不同,左眼和右眼的虹膜不同,这些都可以是不同的生物辨识信息),每一生物辨识信息与一智能锁相对应,为了描述方便这里假设多个生物辨识信息为生物辨识信息A、生物辨识信息B,与生物辨识信息A对应的为智能锁A,与生物辨识信息B对应的为智能锁B,假设步骤S101获得的生物特征信息为生物辨识信息A,步骤S102在进行匹配时,可能会将生物辨识信息A与预先收录的生物辨识信息A和生物辨识信息B都进行匹配,然后发现只能与生物辨识信息A匹配成功,然后通过存储的智能锁的标识与标准生物特征信息的对应关系,将与生物辨识信息A对应的智能锁A确定为目标智能锁。
移动终端存储的智能锁的标识与标准生物特征信息的对应关系,也可以是在注册过程中存储的,具体的,接收到目标智能锁发送的请求注册信息时,显示注册界面;从用户通过注册界面输入的生物辨识信息中获得标准生物特征信息;将所述标准生物特征信息进行存储,接收目标智能锁反馈的目标智能锁的标识信息,并将所述目标智能锁的标识信息与所述标准生物信息对应存储。即 将具有与所述标准生物特征信息对应的标识信息的智能锁作为目标智能锁。
通过定位方式确定目标智能锁的方式,还存在以下情况,如果用户通过同一生物特征信息绑定了多个智能锁,假设生物特征信息A与智能锁B、智能锁C对应。那么移动终端可以预先存储有标准生物特征信息、安全密钥、智能锁的标识信息的对应关系,在步骤S101获取用户的生物特征信息A后,步骤S102将生物特征信息A与生物特征信息A进行匹配成功后,步骤S103确定目标智能锁,就可以先通过广播的方式发送通信请求,接收智能锁A的响应所述通信请求的消息和智能锁B的响应所述通信请求的消息,该响应所述通信请求的消息可以包括智能锁的标识信息;通过移动终端预先存储有标准生物特征信息、安全密钥、智能锁的标识信息的对应关系,确定出智能锁A的安全密钥A,和智能锁B的安全密钥B,然后将安全密钥A发送给智能锁A,将安全密钥B发送给智能锁B。
上述实施例例举的例子,是在移动终端与智能锁之间的无线通信的通信距离较大的情况下,在实际应用中目标智能锁大多数情况为一个智能锁。
步骤S104:将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。
在预设范围内的各个目标智能锁中有的可能能够将安全密钥与其存储的标准安全密钥匹配成功,则这个目标智能锁是用户在注册时与标准生物特征信息绑定的智能锁,有的目标智能锁可能不能将安全密钥与其存储的标准安全密钥匹配成功,则说明,该目标智能锁不是用户在注册时与标准生物特征信息绑定的智能锁。
安全密钥的预先存储过程包括:将所述标准生物特征信息发送至所述目标智能锁,以便所述目标智能锁依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥;接收所述目标智能锁反馈的安全密钥,并存储。
可以理解的是,如果匹配不成功,则可以重新获取用户的生物特征信息,再次进行判断,直至匹配不成功的次数大于预设值时,将目标智能锁进行锁定,或者进行报警,或者提示用户开锁失败等等。
移动终端和智能锁之间进行无线通信,为了保证通信安全,优选的,可以通过声波信号进行通信,则智能锁在向移动终端发送信号之前,需要将电信号转换为声波信号,例如,在注册过程中,移动终端向智能锁发送的标准生物特 征信息,在开锁过程中的移动终端确定目标智能锁的过程中,广播的通信请求,在开锁过程中,移动终端向智能锁发送的安全密钥,都是先在移动终端中将电信号转换为声音信号,然后再发送出去,在实际应用中,可以通过扬声器将电信号转换为声音信号。在注册过程中,智能锁向移动终端发送的安全密钥、在开锁过程中智能锁响应所述通信请求的智能锁的消息,都是先在智能锁中将电信号转换为声音信号,然后再发送出去。
为了保证通信安全,移动终端和智能锁之间的信息可以通过加密之后在发送至对方。
为了保证安全,移动终端中存储标准生物特征信息和安全密钥的空间可以为限制其他程序访问的安全空间。智能锁中存储标准安全密钥的空间可以为限制其他程序访问的安全空间。
本发明实施例提供的一种信息处理方法中,首先获取用户的生物特征信息,将所述生物特征信息与预先收录的标准生物特征信息进行匹配,当匹配成功时,确定目标智能锁,将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。由于生物特征信息是用户特有的,不需要用户记忆,且针对于用户来说,仅仅需要输入生物特征信息即可实现通过移动终端开启智能锁的目的,操作简便。
当响应所述广播通信请求的智能锁为多个目标智能锁时,可能是在预设范围内有多个智能锁,请参阅图2,为本发明实施例提供的一种信息处理方法中将预先存储的与所述标准指纹特征信息对应的安全密钥发送至所述目标智能锁的一种实现方式的方法流程示意图,该方法包括:
步骤S201:对于多个所述目标智能锁中的每一第一目标智能锁,从所述第一目标智能锁响应所述广播通信请求的消息中获得所述第一目标智能锁的第一标识信息。
用户的一个移动终端中可能存储有多个安全密钥,每一个安全密钥对应一个智能锁,在进行注册时,用户为了记忆方便,可能使用同一个生物特征信息对应多个智能锁,如果多个智能锁恰好在与移动终端的通信范围内,那么可以从第一目标智能锁响应所述广播通信请求的消息中获得所述第一目标智能锁的第一标识信息。第一标识信息可以是用户在移动终端进行注册时,从智能锁 中获得的,移动终端可以存储有智能锁的标识信息、标准生物特征信息、安全密钥的对应关系,可以依据第一识别信息以及标准生物特征信息,从该对应关系中获得相应的安全密钥,发送至相应的第一目标智能锁。
步骤S202:从预先存储智能锁的标识信息、所述标准生物特征信息与所述安全密钥对应关系中,获得与所述第一标识信息和所述标准生物特征信息对应的第一安全密钥。
步骤S203:将与所述第一安全密钥发送至所述第一目标智能锁。
请参阅图3,为本发明实施例提供的一种应用于智能锁的信息处理方法的流程示意图,该方法包括:
步骤S301:响应移动终端确定智能锁的操作。
所述移动终端在当获得的用户的生物特征信息与预先收录的标准生物特征信息匹配时,确定目标智能锁。
移动终端在当获得的用户的生物特征信息与预先收录的标准生物特征信息匹配时,确定目标智能锁的过程可以参见应用于移动终端的信息处理方法实施例的描述,此处不再详细赘述。
所述响应移动终端确定智能锁的操作包括:接收所述移动终端广播的通信请求;向所述移动终端发送响应所述通信请求信息。
由于移动终端与目标智能锁之间是无线通信,而无线通信都有相应的通信距离。该预设范围与实际应用中使用的无线通信种类有关,例如如果移动终端和智能锁之间通过声波信号进行通信,则该预设范围为以所述移动终端为中心以预设距离为半径的球。
如果移动终端和智能锁之间通过声波信号进行通信,由于声波信号的传输距离较小,一般为15cm,所以比较安全,且在一般情况下,响应移动终端确定智能锁的操作只有一个智能锁。
为了解决响应移动终端确定智能锁的操作有多个智能锁的技术,响应所述通信请求信息可以携带有所述目标智能锁的标识信息。此时智能锁的与移动终端的交互过程可以参见对步骤S103的说明,此处不再进行赘述。
步骤S302:接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥。
步骤S303:将所述安全密钥与预先存储的标准安全密钥相匹配。
标准安全密钥的预先存储的过程包括:接收所述移动终端发送的标准生物特征信息,所述标准生物辨识信息是所述移动终端从用户通过注册界面输入的生物辨识信息中获得的,所述注册界面是所述移动终端在接收到所述智能锁发送的请求注册信息时显示的;依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥,并存储。
步骤S304:匹配成功时,开锁。
可以理解的是,如果匹配不成功,则可以进行报警,或者提示用户开锁失败等等。
在匹配成功后,还可以给移动终端发送匹配成功的消息,移动终端接收到匹配成功的消息后,可以显示相应的匹配成功界面,也可以发出声音以提示用户开锁成功。
请参阅图4,为本发明实施例提供的一种应用于移动终端的信息处理装置的结构示意图,该装置包括:第一获取模块401、匹配模块402、确定模块403以及第一发送模块404,其中:
第一获取模块401,用于获取所述用户的生物特征信息。
所述生物特征信息为:指纹特征信息或虹膜特征信息。
指纹是指人的手指末端正面皮肤上凸凹不平产生的纹线。纹线有规律的排列形成不同的纹型。纹线的起点、终点、结合点和分叉点,称为指纹的细节特征点,指纹特征信息可以包括指纹的细节特征点。
人的眼睛结构由巩膜、虹膜、虹膜晶状体、视网膜等部分组成。虹膜是位于黑色虹膜和白色巩膜之间的圆环状部分,其包含有很多相互交错的斑点、细丝、冠状、条纹、隐窝等的细节特征。虹膜特征信息可以包括虹膜的相互交错的斑点、细丝、冠状、条纹、隐窝等的细节特征。
获取用户的生物特征信息的方式有很多种,具体的,可以是通过移动终端中的摄像头对用户的指纹或虹膜进行扫描获得用户的生物特征信息。也可以是移动终端中存储有指纹或虹膜的照片,或者用户在移动终端输入指纹或虹膜的照片,然后从照片中获得生物特征信息。
移动终端的指纹检测区域可以位于移动终端外壳的某一个区域,例如,现 有技术中用户通过触按手机背面(与手机触摸屏的对立面称为手机背面)摄像头下方的指纹检测区域,手机可以从灭屏状态进入亮屏状态。同理,当生物特征信息为指纹特征信息时,获取用户的生物特征信息的方式还可以是,在用户触按移动终端的指纹检测区域时,获得用户按压指纹检测区域所产生的指纹特征信息。
为了简化用户的操作,第一获取模块401可以包括第二确定单元,用于在所述移动终端处于灭屏状态下,采集所述用户按压所述指纹检测区域所产生的指纹特征信息。当然在移动终端处于亮屏状态下,也可以确定所述用户按压所述指纹检测区域所产生的指纹特征信息。
匹配模块402,用于将所述生物特征信息与预先收录的标准生物特征信息进行匹配。
可以理解的是,在触发应用于移动终端的信息处理装置之前,还有准备工作,即将标准生物特征信息预先收录在移动终端中,预先收录过程可以是用户注册时发生的,标准生物特征信息可以是由移动终端获得。用户在进行注册时,在注册界面输入生物辨识信息,可以从生物辨识信息中获得标准生物特征信息。
具体的,标准生物特征信息的预先收录的装置可以包括:接收模块,用于接收到所述目标智能锁发送的请求注册信息时,显示注册界面;第二获取模块,用于从用户通过所述注册界面输入的生物辨识信息中获得标准生物特征信息;第一存储模块,用于将所述标准生物特征信息进行存储。
可以理解的是,一个锁可能有多把钥匙,智能锁也可能对应多个移动终端,此时可以将第一个注册的用户称为主用户,其他时间段注册的用户称为从用户。主用户与从用户开锁的方法一样。但是从用户在注册时,需要主用户同意,当然也可以不经过主用户的同意。
从用户在注册过程中,显示的注册界面上可以有主用户输入生物辨识信息的提示,当从主用户输入的生物辨识信息获得的生物特征信息与移动终端中存储的主用户的生物特征信息匹配时,允许从用户注册,从用户注册的过程与主用户相同,在此不再赘述。
为了保证收录的标准生物特征信息的正确性,可以让用户多输入几次生物辨识信息,假设用户输入了10次,且针对这10次输入的生物辨识信息获得的 标准生物特征信息都相同,则将该标准生物特征信息进行存储,否则,提示用户重新输入生物辨识信息。
在目标智能锁被用户注册之前,目标智能锁可以一直处于广播发送请求注册信息的状态,当用户将移动终端至于与目标智能锁的预设范围内,移动终端就能接收该请求注册信息了。
为了让目标智能锁处于广播发送请求注册信息的状态,可以通过将安全钥匙插入智能锁的钥匙孔,并旋转至安全注册模式,此时智能锁就处于广播发送请求注册信息的状态。具体的,用户将安全钥匙旋转至某一位置处,智能锁上的指示灯显示某一特定颜色,用户看到指示灯显示该特定颜色后,就知道智能锁处于安全注册模式了。或者,智能锁的钥匙孔周围具有刻度,某一个刻度对应安全注册模式,用户将安全钥匙旋转至该刻度处,该智能锁就处于安全注册模式。此时,用户就可以进行注册了。
目标智能锁是指能够与移动终端进行通信的智能锁。之所以称为目标智能锁是为了与其他的智能锁进行区分。
用户通过注册界面输入的生物辨识信息的方式有很多种,当生物辨识信息为指纹或虹膜时,可以是用户通过移动终端的摄像头扫描获得的,当生物辨识信息为指纹时,可以是用户通过触按移动终端的指纹检测区域获得的,也可以是用户输入生物辨识信息的照片获得的等等。一般情况下,为了安全,可以禁止用户通过输入生物辨识信息的照片获得生物特征信息。
之所以称之为标准生物特征信息是为了与生物特征信息进行区别,生物特征信息是用户A在利用移动终端进行开锁时,该用户A的生物特征信息,标准生物特征信息是注册用户的生物特征信息,也就是说,如果用户A是注册用户,则用户A的生物特征信息就为标准生物特征信息,如果用户A不是注册用户,则用户A的生物特征信息就不是标准生物特征信息。
确定模块403,用于当匹配成功时,确定目标智能锁。
目标智能锁可能是一个或多个。确定目标智能锁的方式可以是广播方式获取,具体的,确定模块403可以包括:第一发送单元,用于在预设范围内,广播通信请求;第一确定单元,用于将响应所述通信请求的智能锁,确定为所述目标智能锁。
由于移动终端与智能锁之间是无线通信,而无线通信都有相应的通信距 离。该预设范围与实际应用中使用的无线通信种类有关,例如如果移动终端和智能锁之间通过声波信号进行通信,则该预设范围为以所述移动终端为中心以预设距离为半径的球。
如果移动终端和智能锁之间通过声波信号进行通信,由于声波信号的传输距离较小,一般为15cm,所以比较安全,且在一般情况下,目标智能锁只有一个。
确定目标智能锁的方式还可以是以定位的方式获取,移动终端可以存储有智能锁的标识与标准生物特征信息的对应关系,假设用户在同一移动终端注册了多个生物辨识信息(例如用户的每个手指的指纹都不同,左眼和右眼的虹膜不同,这些都可以是不同的生物辨识信息),每一生物辨识信息与一智能锁相对应,为了描述方便这里假设多个生物辨识信息为生物辨识信息A、生物辨识信息B,与生物辨识信息A对应的为智能锁A,与生物辨识信息B对应的为智能锁B,假设第一获取模块401获得的生物特征信息为生物辨识信息A,匹配模块402在进行匹配时,可能会将生物辨识信息A与预先收录的生物辨识信息A和生物辨识信息B都进行匹配,然后发现只能与生物辨识信息A匹配成功,然后通过存储的智能锁的标识与标准生物特征信息的对应关系,将与生物辨识信息A对应的智能锁A确定为目标智能锁。
移动终端存储的智能锁的标识与标准生物特征信息的对应关系,也可以是在注册过程中存储的,具体的,接收到目标智能锁发送的请求注册信息时,显示注册界面;从用户通过注册界面输入的生物辨识信息中获得标准生物特征信息;将所述标准生物特征信息进行存储,接收目标智能锁反馈的目标智能锁的标识信息,并将所述目标智能锁的标识信息与所述标准生物信息对应存储。即将具有与所述标准生物特征信息对应的标识信息的智能锁作为目标智能锁。
通过定位方式确定目标智能锁的方式,还存在以下情况,如果用户通过同一生物特征信息绑定了多个智能锁,假设生物特征信息A与智能锁B、智能锁C对应。那么移动终端可以预先存储有标准生物特征信息、安全密钥、智能锁的标识信息的对应关系,在第一获取模块401获取用户的生物特征信息A后,匹配模块402将生物特征信息A与生物特征信息A进行匹配成功后,步骤S103确定目标智能锁,就可以先通过广播的方式发送通信请求,接收智能锁A的响应所述通信请求的消息和智能锁B的响应所述通信请求的消息,该 响应所述通信请求的消息可以包括智能锁的标识信息;通过移动终端预先存储有标准生物特征信息、安全密钥、智能锁的标识信息的对应关系,确定出智能锁A的安全密钥A,和智能锁B的安全密钥B,然后将安全密钥A发送给智能锁A,将安全密钥B发送给智能锁B。
上述实施例例举的例子,是在移动终端与智能锁之间的无线通信的通信距离较大的情况下,在实际应用中目标智能锁大多数情况为一个智能锁。
第一发送模块404,用于将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。
在预设范围内的各个目标智能锁中有的可能能够将安全密钥与其存储的标准安全密钥匹配成功,则这个目标智能锁是用户在注册时与标准生物特征信息绑定的智能锁,有的目标智能锁可能不能将安全密钥与其存储的标准安全密钥匹配成功,则说明,该目标智能锁不是用户在注册时与标准生物特征信息绑定的智能锁。
安全密钥的预先存储的装置包括:第二发送模块,用于将所述标准生物特征信息发送至所述目标智能锁,以便所述目标智能锁依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥;第二存储模块,用于接收所述目标智能锁反馈的安全密钥,并存储。
可以理解的是,如果匹配不成功,则可以重新获取用户的生物特征信息,再次进行判断,直至匹配不成功的次数大于预设值时,将目标智能锁进行锁定,或者进行报警,或者提示用户开锁失败等等。
移动终端和智能锁之间进行无线通信,为了保证通信安全,优选的,可以通过声波信号进行通信,则智能锁在向移动终端发送信号之前,需要将电信号转换为声波信号,例如,在注册过程中,移动终端向智能锁发送的标准生物特征信息,在开锁过程中的移动终端确定目标智能锁的过程中,广播的通信请求,在开锁过程中,移动终端向智能锁发送的安全密钥,都是先在移动终端中将电信号转换为声音信号,然后再发送出去,在实际应用中,可以通过扬声器将电信号转换为声音信号。在注册过程中,智能锁向移动终端发送的安全密钥、在开锁过程中智能锁响应所述通信请求的智能锁的消息,都是先在智能锁中将电信号转换为声音信号,然后再发送出去。
为了保证通信安全,移动终端和智能锁之间的信息可以通过加密之后在发 送至对方。
为了保证安全,移动终端中存储标准生物特征信息和安全密钥的空间可以为限制其他程序访问的安全空间。智能锁中存储标准安全密钥的空间可以为限制其他程序访问的安全空间。
本发明实施例提供的一种信息处理装置中,首先第一获取模块401获取用户的生物特征信息,匹配模块402将所述生物特征信息与预先收录的标准生物特征信息进行匹配,确定模块403当匹配成功时,确定目标智能锁,第一发送模块404将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。由于生物特征信息是用户特有的,不需要用户记忆,且针对于用户来说,仅仅需要输入生物特征信息即可实现通过移动终端开启智能锁的目的,操作简便。
当响应所述广播通信请求的智能锁为多个目标智能锁时,可能是在预设范围内有多个智能锁,请参阅图5,为本发明实施例提供的一种信息处理装置中第一发送模块的一种实现方式的结构示意图,第一发送模块包括:第一获取单元501、第二获取单元502以及第二发送单元503,其中:
第一获取单元501,用于对于多个所述目标智能锁中的每一第一目标智能锁,从所述第一目标智能锁响应所述广播通信请求的消息中获得所述第一目标智能锁的第一标识信息。
用户的一个移动终端中可能存储有多个安全密钥,每一个安全密钥对应一个智能锁,在进行注册时,用户为了记忆方便,可能使用同一个生物特征信息对应多个智能锁,如果多个智能锁恰好在与移动终端的通信范围内,那么可以从第一目标智能锁响应所述广播通信请求的消息中获得所述第一目标智能锁的第一标识信息。第一标识信息可以是用户在移动终端进行注册时,从智能锁中获得的,移动终端可以存储有智能锁的标识信息、标准生物特征信息、安全密钥的对应关系,可以依据第一识别信息以及标准生物特征信息,从该对应关系中获得相应的安全密钥,发送至相应的第一目标智能锁。
第二获取单元502,用于从预先存储智能锁的标识信息、所述标准生物特征信息与所述安全密钥对应关系中,获得与所述第一标识信息和所述标准生物特征信息对应的第一安全密钥。
第二发送单元503,用于将与所述第一安全密钥发送至所述第一目标智能锁。
请参阅图6,为本发明实施例提供的一种应用于智能锁的信息处理装置的结构示意图,该装置包括:响应模块601、第一接收模块602、匹配模块603以及开锁模块604,其中:
响应模块601,用于在预设范围内,响应移动终端确定智能锁的操作。
所述移动终端在当获得的用户的生物特征信息与预先收录的标准生物特征信息匹配时,确定目标智能锁。
移动终端在当获得的用户的生物特征信息与预先收录的标准生物特征信息匹配时,确定目标智能锁的过程可以参见应用于移动终端的信息处理装置实施例的描述,此处不再详细赘述。
所述响应模块包括:接收单元,用于接收所述移动终端广播的通信请求;发送单元,用于向所述移动终端发送响应所述通信请求信息。
由于移动终端与智能锁之间是无线通信,而无线通信都有相应的通信距离。该预设范围与实际应用中使用的无线通信种类有关,例如如果移动终端和智能锁之间通过声波信号进行通信,则该预设范围为以所述移动终端为中心以预设距离为半径的球。
如果移动终端和目标智能锁之间通过声波信号进行通信,由于声波信号的传输距离较小,一般为15cm,所以比较安全,且在一般情况下,响应移动终端确定智能锁的操作只有一个智能锁。
为了解决响应移动终端确定智能锁的操作有多个智能锁的技术,响应所述通信请求信息携带有所述目标智能锁的标识信息。此时智能锁的与移动终端的交互过程可以参见对步骤S103的说明,此处不再进行赘述。
第一接收模块602,用于接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥。
匹配模块603,用于将所述安全密钥与预先存储的标准安全密钥相匹配。
标准安全密钥预先存储的装置包括:第二接收模块,用于接收所述移动终端发送的标准生物特征信息,所述标准生物特征信息是所述移动终端从用户通过注册界面输入的生物辨识信息中获得的,所述注册界面是所述移动终端在接 收到所述智能锁发送的请求注册信息时显示的;生成模块,用于依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥,并存储。
开锁模块604,用于匹配成功时,开锁。
可以理解的是,如果匹配不成功,则可以进行报警,或者提示用户开锁失败等等。
在匹配成功后,还可以给移动终端发送匹配成功的消息,移动终端接收到匹配成功的消息后,可以显示相应的匹配成功界面,也可以发出声音以提示用户开锁成功。
本发明实施例提供了一种移动终端,该移动终端包括上述任一应用于移动终端的信息处理装置。
本发明实施例提供了一种智能锁,该智能锁包括上述任一应用于智能锁的信息处理装置。
本发明实施例还提供了一种信息处理系统,包括上述移动终端和智能锁。
如果移动终端和智能锁之间通过声波信号通信,且交互的信号都进行加密,则移动终端可以包括:声音解调模块、声音调制模块、数字解密模块、麦克风、扬声器,麦克风可以接受智能终端发送的声音信号,并将声音信号转换为电信号,声波解调模块可以将电信号进行解调,数字解密模块将解调后的电信号进行解密。当移动终端需要发送信号时,首先通过数字加密模块进行加密,然后将加密后的信号通过声音调制模块进行调制,将调制后的电信号通过扬声器转换成声音信号发送出去。
智能锁也可以包括:声音解调模块、声音调制模块、数字解密模块、麦克风、扬声器,原理与移动终端相同,在此不再进行赘述。
为了本领域技术人员更加理解本发明实施例,下面在举一具体移动终端与智能锁交互的例子,请参阅图7,为本发明实施例提供的一种移动终端与智能锁交互的信令图。
用户在未对智能锁71进行注册时,可以将安全钥匙插入智能锁71的钥匙孔,并旋转至安全注册模式,此时智能锁71就处于广播发送请求注册信息的状态。用户可以将移动终端72放在能够与智能锁71进行无线通信的范围内。
步骤S701:目标智能锁71发送的请求注册信息。
步骤S702:移动终端72接收到目标智能锁71发送的请求注册信息时,显示注册界面。
步骤S703:移动终端72从所述用户通过所述注册界面输入的生物辨识信息中获得标准生物特征信息。
步骤S704:移动终端72将所述标准生物特征信息进行存储。
步骤S705:移动终端72将所述标准生物特征信息发送至所述目标智能锁71。
步骤S706:目标智能锁71依据所述目标智能锁71的标识信息和所述标准生物特征信息生成标准安全密钥。
步骤S707:目标智能锁71将标准安全密钥发送至移动终端72。
步骤S708:移动终端72接收所述目标智能锁71反馈的标准安全密钥,并存储。
当用户在注册后,利用移动终端72对智能锁进行开锁时,首先需要将移动终端72放置在能够与智能锁进行无线通信的范围内。
步骤S709:移动终端72获取所述用户的生物特征信息。
步骤S710:将所述生物特征信息与预先收录的标准生物特征信息进行匹配。
步骤S711:当匹配成功时,在预设范围内,广播通信请求。
步骤S712:目标智能锁71接收所述移动终端72广播的通信请求,向所述移动终端72发送响应所述通信请求信息。
步骤S713:将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁71。
步骤S714:目标智能锁71将所述安全密钥与预先存储的标准安全密钥相匹配。
步骤S715:目标智能锁71匹配成功时,开锁。
图8为本发明实施例提供的一种移动终端的示意框图,如图8所示,该移动终端8可以包括:至少一个处理器81,例如CPU,至少一个通信总线82以及存储器83;通信总线82用于实现这些组件之间的连接通信;存储 器83可以是高速RAM存储器,也可以是非易失性存储器(non-volatile memory),例如至少一个磁盘存储器。存储器83中存储一组程序代码,且处理器81用于调用存储器83中存储的程序代码,用于执行以下操作:
获取所述用户的生物特征信息,所述生物特征信息为:指纹特征信息或虹膜特征信息;
将所述生物特征信息与预先收录的标准生物特征信息进行匹配;
当匹配成功时,确定目标智能锁;
将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。
可选的,所述处理器81确定目标智能锁的具体操作为:
在预设范围内,广播通信请求;
将响应所述通信请求的智能锁,确定为所述目标智能锁。
又可选的,所述处理器81当所述响应所述广播通信请求的智能锁为多个目标智能锁时,将预先存储的与所述标准指纹特征信息对应的安全密钥发送至所述目标智能锁的具体操作为:
对于多个所述目标智能锁中的每一第一目标智能锁,从所述第一目标智能锁响应所述广播通信请求的消息中获得所述第一目标智能锁的第一标识信息;
从预先存储智能锁的标识信息、所述标准生物特征信息与所述安全密钥对应关系中,获得与所述第一标识信息和所述标准生物特征信息对应的第一安全密钥;
将与所述第一安全密钥发送至所述第一目标智能锁。
又可选的,所述移动终端81包括指纹检测区域,所述处理器在所述生物特征信息为指纹特征信息时,获取所述用户的生物特征信息的具体操作为:
在所述移动终端处于灭屏状态下,采集所述用户按压所述指纹检测区域所产生的指纹特征信息。
又可选的,所述标准生物特征信息的预先收录过程包括:
接收到所述目标智能锁发送的请求注册信息时,显示注册界面;
从所述用户通过所述注册界面输入的生物辨识信息中获得标准生物特征信息;
将所述标准生物特征信息进行存储。
又可选的,所述安全密钥的预先存储过程包括:
将所述标准生物特征信息发送至所述目标智能锁,以便所述目标智能锁依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥;
接收所述目标智能锁反馈的安全密钥,并存储。
又可选的,所述移动终端与所述目标智能锁之间通过声波信号进行通信。
图9为本发明实施例提供的一种智能锁的示意框图,如图9所示,该智能锁9可以包括:至少一个处理器91,例如CPU,至少一个通信总线92以及存储器93;通信总线92用于实现这些组件之间的连接通信;存储器93可以是高速RAM存储器,也可以是非易失性存储器(non-volatile memory),例如至少一个磁盘存储器。存储器93中存储一组程序代码,且处理器91用于调用存储器93中存储的程序代码,用于执行以下操作:
响应移动终端确定智能锁的操作;
接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥;
将所述安全密钥与预先存储的标准安全密钥相匹配;
匹配成功时,开锁。
可选的,所述处理器91响应移动终端确定智能锁的操作为:
接收所述移动终端广播的通信请求;
向所述移动终端发送响应所述通信请求信息。
又可选的,所述响应所述通信请求信息携带有所述目标智能锁的标识信息。
又可选的,所述标准安全密钥的预先存储的过程包括:
接收所述移动终端发送的标准生物特征信息,所述标准生物特征信息是所述移动终端从用户通过注册界面输入的生物辨识信息中获得的,所述注册界面是所述移动终端在接收到所述智能锁发送的请求注册信息时显示的;
依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥,并存储。
需要说明的是,本说明书中的各个实施例均采用递进的方式描述,每个实 施例重点说明的都是与其他实施例的不同之处,各个实施例之间相同相似的部分互相参见即可。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。因此,本发明将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims (33)

  1. 一种信息处理方法,其特征在于,应用于移动终端,所述信息处理方法包括:
    获取所述用户的生物特征信息,所述生物特征信息为:指纹特征信息或虹膜特征信息;
    将所述生物特征信息与预先收录的标准生物特征信息进行匹配;
    当匹配成功时,确定目标智能锁;
    将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。
  2. 根据权利要求1所述信息处理方法,其特征在于,所述确定目标智能锁包括:
    在预设范围内,广播通信请求;
    将响应所述通信请求的智能锁,确定为所述目标智能锁。
  3. 根据权利要求2所述信息处理方法,其特征在于,当所述响应所述广播通信请求的智能锁为多个目标智能锁时,所述将预先存储的与所述标准指纹特征信息对应的安全密钥发送至所述目标智能锁包括:
    对于多个所述目标智能锁中的每一第一目标智能锁,从所述第一目标智能锁响应所述广播通信请求的消息中获得所述第一目标智能锁的第一标识信息;
    从预先存储智能锁的标识信息、所述标准生物特征信息与所述安全密钥对应关系中,获得与所述第一标识信息和所述标准生物特征信息对应的第一安全密钥;
    将与所述第一安全密钥发送至所述第一目标智能锁。
  4. 根据权利要求1所述信息处理方法,其特征在于,所述移动终端包括指纹检测区域,在所述生物特征信息为指纹特征信息时,所述获取所述用户的生物特征信息包括:
    在所述移动终端处于灭屏状态下,采集所述用户按压所述指纹检测区域所产生的指纹特征信息。
  5. 根据权利要求1所述信息处理方法,其特征在于,所述标准生物特征信息的预先收录过程包括:
    接收到所述目标智能锁发送的请求注册信息时,显示注册界面;
    从所述用户通过所述注册界面输入的生物辨识信息中获得标准生物特征信息;
    将所述标准生物特征信息进行存储。
  6. 根据权利要求1所述信息处理方法,其特征在于,所述安全密钥的预先存储过程包括:
    将所述标准生物特征信息发送至所述目标智能锁,以便所述目标智能锁依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥;
    接收所述目标智能锁反馈的安全密钥,并存储。
  7. 根据权利要求1所述信息处理方法,其特征在于,所述移动终端与所述目标智能锁之间通过声波信号进行通信。
  8. 一种信息处理方法,其特征在于,应用于智能锁,所述信息处理方法包括:
    响应移动终端确定智能锁的操作;
    接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥;
    将所述安全密钥与预先存储的标准安全密钥相匹配;
    匹配成功时,开锁。
  9. 根据权利要求8所述信息处理方法,其特征在于,所述响应移动终端确定智能锁的操作包括:
    接收所述移动终端广播的通信请求;
    向所述移动终端发送响应所述通信请求信息。
  10. 根据权利要求9所述信息处理方法,其特征在于,所述响应所述通信请求信息携带有所述目标智能锁的标识信息。
  11. 根据权利要求8所述信息处理方法,其特征在于,所述标准安全密钥的预先存储的过程包括:
    接收所述移动终端发送的标准生物特征信息,所述标准生物特征信息是所述移动终端从用户通过注册界面输入的生物辨识信息中获得的,所述注册界面是所述移动终端在接收到所述智能锁发送的请求注册信息时显示的;
    依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥, 并存储。
  12. 一种信息处理装置,其特征在于,应用于移动终端,所述信息处理装置包括:
    第一获取模块,用于获取所述用户的生物特征信息,所述生物特征信息为:指纹特征信息或虹膜特征信息;
    匹配模块,用于将所述生物特征信息与预先收录的标准生物特征信息进行匹配;
    确定模块,用于当匹配成功时,确定目标智能锁;
    第一发送模块,用于将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。
  13. 根据权利要求12所述信息处理装置,其特征在于,所述第一确定模块包括:
    第一发送单元,用于在预设范围内,广播通信请求;
    第一确定单元,用于将响应所述通信请求的智能锁,确定为所述目标智能锁。
  14. 根据权利要求13所述信息处理装置,其特征在于,当所述响应所述广播通信请求的智能锁为多个目标智能锁时,所述第一发送模块包括:
    第一获取单元,用于对于多个所述目标智能锁中的每一第一目标智能锁,从所述第一目标智能锁响应所述广播通信请求的消息中获得所述第一目标智能锁的第一标识信息;
    第二获取单元,用于从预先存储智能锁的标识信息、所述标准生物特征信息与所述安全密钥对应关系中,获得与所述第一标识信息和所述标准生物特征信息对应的第一安全密钥;
    第二发送单元,用于将与所述第一安全密钥发送至所述第一目标智能锁。
  15. 根据权利要求12所述信息处理装置,其特征在于,所述移动终端包括指纹检测区域,在所述生物特征信息为指纹特征信息时,所述第一获取模块包括:
    第二确定单元,用于在所述移动终端处于灭屏状态下,采集所述用户按压所述指纹检测区域所产生的指纹特征信息。
  16. 根据权利要求12所述信息处理装置,其特征在于,还包括:
    接收模块,用于接收到所述目标智能锁发送的请求注册信息时,显示注册界面;
    第二获取模块,用于从所述用户通过所述注册界面输入的生物辨识信息中获得标准生物特征信息;
    第一存储模块,用于将所述标准生物特征信息进行存储。
  17. 根据权利要求12所述信息处理装置,其特征在于,还包括:
    第二发送模块,用于将所述标准生物特征信息发送至所述目标智能锁,以便所述目标智能锁依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥;
    第二存储模块,用于接收所述目标智能锁反馈的安全密钥,并存储。
  18. 一种信息处理装置,其特征在于,应用于智能锁,所述信息处理装置包括:
    响应模块,用于响应移动终端确定智能锁的操作;
    第一接收模块,用于接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥;
    匹配模块,用于将所述安全密钥与预先存储的标准安全密钥相匹配;
    开锁模块,用于匹配成功时,开锁。
  19. 根据权利要求18所述信息处理装置,其特征在于,所述响应模块包括:
    接收单元,用于接收所述移动终端广播的通信请求;
    发送单元,用于向所述移动终端发送响应所述通信请求信息。
  20. 根据权利要求19所述信息处理装置,其特征在于,所述响应所述通信请求信息携带有所述目标智能锁的标识信息。
  21. 根据权利要求18所述信息处理装置,其特征在于,还包括:
    第二接收模块,用于接收所述移动终端发送的标准生物特征信息,所述标准生物特征信息是所述移动终端从用户通过注册界面输入的生物辨识信息中获得的,所述注册界面是所述移动终端在接收到所述智能锁发送的请求注册信息时显示的;
    生成模块,用于依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥,并存储。
  22. 一种移动终端,其特征在于,所述移动终端包括处理器和存储器,其中,所述存储器中存储一组程序代码,且所述处理器用于调用所述存储器中存储的程序代码,用于执行以下操作:
    获取所述用户的生物特征信息,所述生物特征信息为:指纹特征信息或虹膜特征信息;
    将所述生物特征信息与预先收录的标准生物特征信息进行匹配;
    当匹配成功时,确定目标智能锁;
    将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁。
  23. 根据权利要求22所述移动终端,其特征在于,所述处理器确定目标智能锁的具体操作为:
    在预设范围内,广播通信请求;
    将响应所述通信请求的智能锁,确定为所述目标智能锁。
  24. 根据权利要求23所述移动终端,其特征在于,所述处理器当所述响应所述广播通信请求的智能锁为多个目标智能锁时,将预先存储的与所述标准指纹特征信息对应的安全密钥发送至所述目标智能锁的具体操作为:
    对于多个所述目标智能锁中的每一第一目标智能锁,从所述第一目标智能锁响应所述广播通信请求的消息中获得所述第一目标智能锁的第一标识信息;
    从预先存储智能锁的标识信息、所述标准生物特征信息与所述安全密钥对应关系中,获得与所述第一标识信息和所述标准生物特征信息对应的第一安全密钥;
    将与所述第一安全密钥发送至所述第一目标智能锁。
  25. 根据权利要求22所述移动终端,其特征在于,所述移动终端包括指纹检测区域,所述处理器在所述生物特征信息为指纹特征信息时,获取所述用户的生物特征信息的具体操作为:
    在所述移动终端处于灭屏状态下,采集所述用户按压所述指纹检测区域所产生的指纹特征信息。
  26. 根据权利要求22所述移动终端,其特征在于,所述标准生物特征信息的预先收录过程包括:
    接收到所述目标智能锁发送的请求注册信息时,显示注册界面;
    从所述用户通过所述注册界面输入的生物辨识信息中获得标准生物特征信息;
    将所述标准生物特征信息进行存储。
  27. 根据权利要求22所述移动终端,其特征在于,所述安全密钥的预先存储过程包括:
    将所述标准生物特征信息发送至所述目标智能锁,以便所述目标智能锁依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥;
    接收所述目标智能锁反馈的安全密钥,并存储。
  28. 根据权利要求22所述移动终端,其特征在于,所述移动终端与所述目标智能锁之间通过声波信号进行通信。
  29. 一种智能锁,其特征在于,所述智能锁包括处理器和存储器,其中,所述存储器中存储一组程序代码,且所述处理器用于调用所述存储器中存储的程序代码,用于执行以下操作:
    响应移动终端确定智能锁的操作;
    接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥;
    将所述安全密钥与预先存储的标准安全密钥相匹配;
    匹配成功时,开锁。
  30. 根据权利要求29所述智能锁,其特征在于,所述处理器响应移动终端确定智能锁的操作为:
    接收所述移动终端广播的通信请求;
    向所述移动终端发送响应所述通信请求信息。
  31. 根据权利要求30所述智能锁,其特征在于,所述响应所述通信请求信息携带有所述目标智能锁的标识信息。
  32. 根据权利要求29所述智能锁,其特征在于,所述标准安全密钥的预先存储的过程包括:
    接收所述移动终端发送的标准生物特征信息,所述标准生物特征信息是所述移动终端从用户通过注册界面输入的生物辨识信息中获得的,所述注册界面是所述移动终端在接收到所述智能锁发送的请求注册信息时显示的;
    依据所述目标智能锁的标识信息和所述标准生物特征信息生成安全密钥, 并存储。
  33. 一种信息处理系统,其特征在于,包括移动终端以及智能锁,其中:
    所述移动终端,用于获取所述用户的生物特征信息,所述生物特征信息为:指纹特征信息或虹膜特征信息;将所述生物特征信息与预先收录的标准生物特征信息进行匹配;当匹配成功时,确定目标智能锁;将预先存储的与所述标准生物特征信息对应的安全密钥发送至所述目标智能锁;
    所述智能锁,用于响应移动终端确定智能锁的操作;接收所述移动终端发送与预先存储的所述标准生物特征信息相对应的安全密钥;将所述安全密钥与预先存储的标准安全密钥相匹配;匹配成功时,开锁。
PCT/CN2016/080610 2016-03-31 2016-04-29 信息处理方法、装置和系统、移动终端、智能锁 WO2017166355A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201610199900.2 2016-03-31
CN201610199900.2A CN105894628B (zh) 2016-03-31 2016-03-31 信息处理方法、装置和系统、移动终端、智能锁

Publications (1)

Publication Number Publication Date
WO2017166355A1 true WO2017166355A1 (zh) 2017-10-05

Family

ID=57012214

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2016/080610 WO2017166355A1 (zh) 2016-03-31 2016-04-29 信息处理方法、装置和系统、移动终端、智能锁

Country Status (2)

Country Link
CN (1) CN105894628B (zh)
WO (1) WO2017166355A1 (zh)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108032837A (zh) * 2017-12-12 2018-05-15 北京汽车研究总院有限公司 一种车辆无钥匙启动系统和具有其的车辆
TWI735387B (zh) * 2020-11-27 2021-08-01 樹德科技大學 微型電子鎖裝置

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6784198B2 (ja) 2017-03-09 2020-11-11 トヨタ自動車株式会社 施解錠システム、キーユニット
EP3525181B1 (en) * 2017-07-13 2021-04-21 Shenzhen Goodix Technology Co., Ltd. Identity validity verification method and electronic terminal
CN107507308B (zh) * 2017-08-17 2021-02-12 美智光电科技股份有限公司 一种匹配信息的方法、装置和智能门锁
CN108880817A (zh) * 2017-11-24 2018-11-23 北京视联动力国际信息技术有限公司 一种解密方法和装置
CN108171109A (zh) * 2017-11-28 2018-06-15 苏州市东皓计算机系统工程有限公司 一种人脸识别系统
CN110084939B (zh) * 2019-04-29 2023-08-11 努比亚技术有限公司 智能防盗方法、装置、系统及存储介质
CN112037393A (zh) * 2020-08-28 2020-12-04 日立楼宇技术(广州)有限公司 门禁认证方法、装置、电子设备及存储介质
CN112634496A (zh) * 2020-12-18 2021-04-09 珠海格力电器股份有限公司 一种智能门锁的控制方法、装置及系统

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102915588A (zh) * 2012-11-02 2013-02-06 深圳市普罗巴克科技股份有限公司 基于蓝牙技术的智能锁系统及其控制方法
US8990922B2 (en) * 2013-05-01 2015-03-24 Cheng Uei Precision Industry Co., Ltd. Access control system and control method thereof
CN204291131U (zh) * 2014-09-19 2015-04-22 薛颖健 基于手机终端的智能锁设备
CN104916022A (zh) * 2015-06-16 2015-09-16 广州杰赛科技股份有限公司 一种智能锁控制方法、移动终端及智能锁系统

Family Cites Families (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6819229B2 (en) * 2002-06-03 2004-11-16 Lear Corporation Countermeasure system and method for vehicle passive entry system
CN101763670A (zh) * 2009-12-07 2010-06-30 中兴通讯股份有限公司 一种手机密钥开锁方法及系统
CN102542647A (zh) * 2012-02-08 2012-07-04 广东步步高电子工业有限公司 一种利用移动终端开启保险箱或门禁装置的方法及系统
CN102638790A (zh) * 2012-03-15 2012-08-15 华为终端有限公司 密码控制方法、装置及系统
CN102768780B (zh) * 2012-06-29 2015-07-01 深圳光启创新技术有限公司 基于语音控制的光子门禁系统
CN102882679A (zh) * 2012-07-24 2013-01-16 中兴通讯股份有限公司 电子设备的解锁方法及解锁装置
CN104063929A (zh) * 2014-06-11 2014-09-24 江门市联创发展有限公司 一种利用移动终端开锁的电子门锁
CN104112307B (zh) * 2014-06-24 2016-11-16 福建歌航电子信息科技有限公司 利用声波进行开锁的电子锁及其开锁方法
CN105279818A (zh) * 2014-07-18 2016-01-27 中国电信股份有限公司 电子锁及其开启方法和系统、以及移动终端
CN105184929B (zh) * 2015-09-30 2018-09-14 深圳市章陈融通科技有限公司 智能门锁控制方法及装置
CN105303090A (zh) * 2015-10-19 2016-02-03 广东欧珀移动通信有限公司 一种指纹解锁的方法、装置和终端

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102915588A (zh) * 2012-11-02 2013-02-06 深圳市普罗巴克科技股份有限公司 基于蓝牙技术的智能锁系统及其控制方法
US8990922B2 (en) * 2013-05-01 2015-03-24 Cheng Uei Precision Industry Co., Ltd. Access control system and control method thereof
CN204291131U (zh) * 2014-09-19 2015-04-22 薛颖健 基于手机终端的智能锁设备
CN104916022A (zh) * 2015-06-16 2015-09-16 广州杰赛科技股份有限公司 一种智能锁控制方法、移动终端及智能锁系统

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108032837A (zh) * 2017-12-12 2018-05-15 北京汽车研究总院有限公司 一种车辆无钥匙启动系统和具有其的车辆
TWI735387B (zh) * 2020-11-27 2021-08-01 樹德科技大學 微型電子鎖裝置

Also Published As

Publication number Publication date
CN105894628A (zh) 2016-08-24
CN105894628B (zh) 2019-01-22

Similar Documents

Publication Publication Date Title
WO2017166355A1 (zh) 信息处理方法、装置和系统、移动终端、智能锁
EP3657370B1 (en) Methods and devices for authenticating smart card
US10839811B2 (en) System, device and method for enforcing privacy during a communication session with a voice assistant
US11651100B2 (en) System, device and method for enforcing privacy during a communication session with a voice assistant
CN107113315B (zh) 一种身份认证方法、终端及服务器
US9398007B1 (en) Deferred authentication methods and systems
US9641526B1 (en) Location based authentication methods and systems
US20170231022A1 (en) Pairing management method, recording medium, and terminal apparatus
US11516212B2 (en) Multi-functional authentication apparatus and operating method for the same
EP3385895A1 (en) Biometric information personal identity authenticating system and method using financial card information stored in mobile communication terminal
CN104239815A (zh) 基于虹膜识别的电子文档加密解密装置及方法
US20230269247A1 (en) User authentication system and portable terminal
KR101451639B1 (ko) 일회용 랜덤키를 이용한 본인 확인 및 도용 방지 시스템 및 방법
JP2019152024A (ja) 解錠システム、解錠装置、解錠方法、端末装置及びプログラム
JP2015194947A (ja) 情報処理装置及びコンピュータプログラム
SE1650416A1 (en) Secure storage of fingerprint related elements
US20140025946A1 (en) Audio-security storage apparatus and method for managing certificate using the same
CA3007707C (en) System, device and method for enforcing privacy during a communication session with a voice assistant
CN106535190A (zh) 网络连接方法及装置
US10445484B2 (en) Enabling access to data
KR20120076676A (ko) 휴대단말기의 보안 인증 장치 및 방법
CN110162944B (zh) 一种数据获取方法及终端
KR101674125B1 (ko) 인증을 이용한 다중 단말 연결 방법 및 그 장치
CN110555924B (zh) 进行开锁处理的方法和装置
CN106357671A (zh) 登录验证方法及装置

Legal Events

Date Code Title Description
NENP Non-entry into the national phase

Ref country code: DE

121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 16896133

Country of ref document: EP

Kind code of ref document: A1

122 Ep: pct application non-entry in european phase

Ref document number: 16896133

Country of ref document: EP

Kind code of ref document: A1