WO2018176408A1 - 开锁控制系统及开锁控制方法 - Google Patents

开锁控制系统及开锁控制方法 Download PDF

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Publication number
WO2018176408A1
WO2018176408A1 PCT/CN2017/079101 CN2017079101W WO2018176408A1 WO 2018176408 A1 WO2018176408 A1 WO 2018176408A1 CN 2017079101 W CN2017079101 W CN 2017079101W WO 2018176408 A1 WO2018176408 A1 WO 2018176408A1
Authority
WO
WIPO (PCT)
Prior art keywords
module
mobile communication
communication terminal
shackle
user
Prior art date
Application number
PCT/CN2017/079101
Other languages
English (en)
French (fr)
Inventor
周庆叙
Original Assignee
深圳市台电实业有限公司
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 深圳市台电实业有限公司 filed Critical 深圳市台电实业有限公司
Priority to CN201780003165.6A priority Critical patent/CN108369757B/zh
Priority to PCT/CN2017/079101 priority patent/WO2018176408A1/zh
Publication of WO2018176408A1 publication Critical patent/WO2018176408A1/zh

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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
    • G07C9/00174Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys
    • G07C9/00182Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys operated with unidirectional data transmission between data carrier and locks
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B73/00Devices for locking portable objects against unauthorised removal; Miscellaneous locking devices
    • 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
    • G07C9/00571Electronically operated locks; Circuits therefor; Nonmechanical keys therefor, e.g. passive or active electrical keys or other data carriers without mechanical keys operated by interacting with a central unit
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L9/00Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
    • H04L9/32Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols including means for verifying the identity or authority of a user of the system or for message authentication, e.g. authorization, entity authentication, data integrity or data verification, non-repudiation, key authentication or verification of credentials
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L9/00Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols
    • H04L9/32Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols including means for verifying the identity or authority of a user of the system or for message authentication, e.g. authorization, entity authentication, data integrity or data verification, non-repudiation, key authentication or verification of credentials
    • H04L9/3247Cryptographic mechanisms or cryptographic arrangements for secret or secure communications; Network security protocols including means for verifying the identity or authority of a user of the system or for message authentication, e.g. authorization, entity authentication, data integrity or data verification, non-repudiation, key authentication or verification of credentials involving digital signatures

Definitions

  • the present invention belongs to the field of multimedia device shackle control technology, and more particularly to a shackle control system and a shackle control method.
  • wireless portable devices are widely used due to their light and portable features.
  • wireless microphones in the multimedia teaching environment are generally managed by the school because they are small and portable, and easy to move. Teachers need to apply for borrowing in advance and return them after use; or configure a teacher to manage oneself. In this way, there are problems of management difficulties and high management costs:
  • wireless portable devices can be removed after being charged, which easily leads to device loss and increases the difficulty of device management.
  • the technical solution adopted by the present invention is: Providing a shackle control system, including:
  • a placement device for placing a wireless portable device comprising:
  • a control module configured to control a locking action of the electronic lock cylinder
  • the mobile communication terminal includes: [0014] an obtaining module, configured to acquire identification information of the two-dimensional code and/or the identification code;
  • a communication module electrically connected to the acquisition module; communicatively coupled to the control module; and communicatively coupled to a management module of the server;
  • the server comprising: the management module;
  • the communication module sends an authorization command to the management module, and after receiving the authorization command, the management module returns a shackle key and a user ID to the communication module, and the communication module The shackle key and the user ID are saved;
  • the acquisition module acquires the identification information of the two-dimensional code and/or the identification code
  • the communication module receives the identification information of the acquisition module, and communicates with the control module.
  • the communication module sends the user ID to the control module
  • the control module generates a verification string by using the user ID, and sends the verification string to the communication module
  • the communication module uses The shackle key is signed and sent to the control module
  • the control module verifies whether the signature is valid, and if so, the control module controls the driving component of the electronic lock cylinder to the wireless portable
  • the device performs a slamming action and returns a report message to the communication module. If not, an error message is returned to the communication module.
  • the communication module and the management module establish a connection by wireless to verify the user identity.
  • the mobile communication terminal further has a setting module, configured to set management of the placement device
  • the setting module establishes a connection with the control module by using the communication module, and inputs management information of the placement device to the communication module, where the management information includes a number and a name; after the entry is completed, the The communication module sends the management information to the control module for saving, or the communication module sends the management information to the control module and the management module for saving.
  • the beneficial effects of the shackle control system provided by the present invention are as follows: Compared with the prior art, since the electronic lock cylinder is disposed on the placement device, the wireless portable device is placed on a placement device such as a charger for charging. The electronic lock cylinder and the lock hole are locked and matched, so that the wireless portable device cannot be freely charged during the charging process. Unplugged, avoiding problems that are easy to lose, and easy to manage.
  • the communication module of the mobile terminal sends an authorization command to the management module of the server, and after receiving the authorization command, the management module returns the shackle key and the user ID to the communication module, and the communication module sets the shackle key and the user ID.
  • the acquisition module of the mobile communication terminal acquires the identification information of the two-dimensional code and/or the identification code on the placement device, and the communication module receives the acquisition module.
  • the connection is established with the control module, and the communication module sends the user ID to the control module.
  • the control module generates the verification string by using the user ID, and sends the verification string to the communication module, and the communication module uses the shackle key to perform the connection.
  • the control module verifies whether the signature is valid, and if so, the control module controls the driving component of the electronic lock cylinder to perform a shackle action on the wireless portable device and returns the report information to the communication module, if not, Then return an error message to the communication module.
  • the above-mentioned shackle control system can be directly used in multiple application places, and the wireless portable device can be used to charge the wireless portable device without using ⁇ lock in the placement device, and can be directly unlocked by using ⁇ Take it out and use it.
  • each application site only needs to be equipped with a set of wireless portable devices, and the wireless portable device does not need to be disconnected from the use environment for charging and storage, thereby avoiding the problem of device loss, and unified management saves management, maintenance and system cost.
  • Another object of the present invention is to provide a shackle control method, which includes the following steps:
  • the mobile communication terminal After the first use, the mobile communication terminal sends an authorization command to the server;
  • the server after receiving the authorization command, the server returns a shackle key and a user ID to the mobile communication terminal, and the mobile communication terminal saves the shackle key and the user ID;
  • the mobile communication terminal acquires and receives the identification information of the two-dimensional code and/or the identification code on the placement device, communicates with the placement device, and connects the user ID Sending to the placement device, the placement device sends the verification string to the mobile communication terminal after generating the verification string by using the user ID, and the mobile communication terminal uses the ⁇ lock key to Verifying the string to sign and sending the signature to the placement device;
  • the placing device verifies whether the signature is valid, and if so, controlling a driving component of the electronic lock cylinder to perform a shackle action on the wireless portable device and returning the report information to the mobile communication terminal; if not, returning an error Information is provided to the mobile communication terminal.
  • the step of the mobile communication terminal transmitting an authorization instruction to the server The steps are also included before: the mobile communication terminal and the server establish a connection by wireless.
  • the method further includes the following steps: the mobile communication The terminal establishes a connection with the server wirelessly to verify the identity of the user.
  • the mobile communication terminal further has a setting module, configured to set management of the placement device;
  • the setting module inputs management information of the placement device by using the mobile communication terminal, the management information includes a number and a name; after the input is completed, the mobile communication terminal sends the management information to the placement The device saves, or the mobile communication terminal sends the management information to the placement device and the server for storage.
  • the method further includes the steps: the server generates a public key and a shackle key, and the server sends the public key to the setting module.
  • the setting module sends the public key to the placement device, and the placement device saves the public key.
  • the specific step of the placement device verifying whether the signature is valid is: parsing the signature by using the public key to parse a string, and comparing whether the string and the verification string correctly correspond .
  • the shackle control method provided by the present invention has the beneficial effects of: unlocking the wireless portable device by using the shackle control method compared with the prior art, and using the shackle control method for the first time, sending an authorization command to the server through the mobile communication terminal After receiving the authorization command, the server returns the shackle key to the mobile communication terminal, and the mobile communication terminal saves the shackle key; each time the ⁇ lock, the mobile communication terminal acquires and receives the two-dimensional code on the placement device and / / or identification code identification information, establish a connection with the placement device, and send the user ID to the placement device, the placement device generates a verification string using the user ID and sends the verification string to the mobile communication terminal, the mobile communication terminal uses The lock key signs the verification string and sends the signature to the placement device, and the placement device verifies whether the signature is valid, and if so, controls the driving component of the electronic lock cylinder to perform a shackle action on the wireless portable device and returns the report information to the
  • the use of the shackle control method facilitates the management of wireless portable devices.
  • the system can be directly used in multiple application places.
  • the wireless portable device can be used to charge the wireless portable device without locking it in the placement device, and can be taken out by unlocking directly.
  • each application site only needs to be equipped with a set of wireless portable devices, and the wireless portable device does not need to be disconnected from the use environment for charging and storage, thereby avoiding the problem of device loss, and unified management saves management, maintenance and system cost.
  • FIG. 1 is a schematic structural diagram of a shackle control system according to an embodiment of the present invention
  • FIG. 2 is a flowchart of a shackle control method according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of a wireless portable device of a shackle control system according to an embodiment of the present invention
  • FIG. 4 is a schematic structural diagram of a wireless portable device and a placement device of a shackle control system according to an embodiment of the present invention.
  • Lock control system 10 including:
  • the wireless portable device 11 is provided with a lock hole 111;
  • the placing device 12 is configured to place the wireless portable device 11 and is provided with:
  • a control module 122 configured to control a locking action of the electronic lock cylinder 121
  • the mobile communication terminal 13 includes:
  • the obtaining module 131 is configured to acquire identification information of the two-dimensional code and/or the identification code 123;
  • the communication module 132 is electrically connected to the acquisition module 131; communicatively coupled to the control module 122; and communicatively coupled to the management module 141 of the server 14;
  • the server 14 comprising: a management module 141;
  • the communication module 132 sends an authorization command to the management module 141.
  • the management module 141 After receiving the authorization command, the management module 141 returns the shackle key and the user ID to the communication module 132, and the communication module 132 sets the shackle key and the user ID. Save
  • the obtaining module 131 acquires the identification information of the two-dimensional code and/or the identification code 123, and after receiving the identification information of the obtaining module 131, the communication module 138 is communicably connected with the control module 122, and the communication module 132
  • the user ID is sent to the control module 122, and the control module 122 generates a verification string by using the user ID, and sends the verification string to the communication module 132.
  • the communication module 132 uses the shackle.
  • the key is signed and sent to the control module 122.
  • the control module 122 verifies whether the signature is valid.
  • control module 122 controls the driving component of the electronic lock cylinder 121 to perform a shackle action on the wireless portable device 11 and return the report.
  • the information is sent to the communication module 132, and if not, the error information is returned to the communication module 132.
  • the shackle control system 10 provided by the present invention has an electronic lock cylinder 121 disposed on the placement device 12 as compared with the prior art.
  • the device 11 is placed on the charging device 12 such as a charger for charging, and the electronic lock core 121 and the locking hole 111 are locked and locked, so that the wireless portable device 11 cannot be freely removed during the charging process, thereby avoiding the problem of easy to be lost. management.
  • the communication module 132 of the mobile communication terminal 13 sends an authorization command to the server 14, and after receiving the authorization command, the management module 141 returns the shackle key and the user ID to the communication module 132, and the communication module 132 encrypts the lock.
  • the key and the user ID are saved; and when the electronic lock core 121 needs to be unlocked using the wireless portable device 11, the first obtaining device 1 is obtained through the acquisition module 131 of the mobile communication terminal 13
  • the communication module 132 receives the identification information of the acquisition module 131, and establishes a connection with the control module 122.
  • the communication module 132 sends the user ID to the control module 132.
  • the control module 132 After the verification string is generated by the user ID and the verification string is sent to the communication module 132, the communication module 132 signs the signature using the shackle key and sends the signature to the control module 122, and the control module 12 22 verifies whether the signature is valid, and if so, The control module 122 controls the driving component of the electronic lock cylinder 121 to perform a latching action on the wireless portable device 11 and returns the report information to the communication module 132. If not, the error message is returned to the communication module 132.
  • the above-mentioned shackle control system 10 can be directly used in a plurality of application places, and the wireless portable device 11 can be used to charge the wireless portable device 11 without using the cymbal lock in the placement device 12. Use ⁇ to unlock and use it directly.
  • each application site only needs to be equipped with a set of wireless portable devices 1 1, and the wireless portable device 11 does not need to be charged and stored away from the use environment, thereby avoiding the loss of equipment, and unified management saves management, maintenance and system costs.
  • FIG. 3 is a schematic structural diagram of a specific application example of the wireless portable device 11 as an infrared wireless microphone ;
  • FIG. 4 is a schematic structural diagram of a specific application example of the placement device 12 as a charger.
  • the communication module 13 2 and the control module 122 establish a connection by wireless.
  • the communication module 132 and the management module 14 1 establish a connection by wireless to verify the identity of the user.
  • the mobile communication terminal 13 is further provided with a setting module 133 for setting management information of the device 12: After the setting module 133 establishes a connection with the control module 122 through the communication module 132, the placement device 12 is recorded to the mobile communication terminal.
  • the management information includes the number and the name.
  • the communication module 132 sends the management information to the control module 122 for saving.
  • the communication module 132 sends the management information to the control module 122 and the management module 14 for saving.
  • management information is not limited to numbers and names.
  • the control module 122 of the embodiment adopts a Bluetooth communication and control module 122, and the model thereof is a chip of nRF51822.
  • the model of the control chip is not limited, as long as the function described in the embodiment of the present invention can be achieved. can.
  • the signature verification algorithm used in this embodiment is ECDSA (Elliptic Curve Signature Algorithm).
  • ECDSA Elliptic Curve Signature Algorithm
  • the signature verification algorithm is not limited, as long as it can achieve the functions described in the present invention.
  • the mobile communication terminal 13 is provided with a user APP, and the obtaining module 131, the communication module 132, and the setting module are all loaded on the user APP.
  • the administrator can scan the two-dimensional code or input the identification code through the user APP, and establish a connection with the control module 122 of the placement device 12 by using a wireless method.
  • the user APP implements a Bluetooth connection with the control module 122 by means of Bluetooth.
  • the information of the control module 122 (such as the teaching building name, the role name, and the like) is set by the user APP. After the setting is completed, the information is transmitted to the control module 122 for saving, and the information of the set control module 122 is sent to the management module of the server 14. 141.
  • the management module 141 of the server 14 receives the authorization command, returns a shackle key and the user ID to the user APP, and the user APP then scans the QR code or Entering an identification code, and establishing a Bluetooth connection with the control module 122 through the MAC address, the user APP sends the user ID to the control module 122, and the control module 122 generates the verification string by using the user ID, and the verification character is generated.
  • the string is sent to the user APP, and the user APP signs the signature using the shackle key and sends the signature to the control module 122.
  • the control module 122 verifies the signature.
  • the driving component of the electronic lock core 121 is controlled to perform wireless communication.
  • the latching action of the portable device 11 returns the result to the user APP, and the user APP sends a notification to the server 14 to perform the usage record; if the verification is invalid, the user cannot be locked and the error message is returned to the user APP.
  • the present invention further provides a shackle control method, which includes the following steps:
  • Step S101 After first use, the mobile communication terminal 13 sends an authorization command to the server 14;
  • the method further includes the step of: the mobile communication terminal 13 and the server 14 establish a connection by using a wireless manner.
  • Step S102 After receiving the authorization command, the server 14 returns the shackle key and the user ID to the mobile communication terminal 13, and the mobile communication terminal 13 saves the shackle key and the user ID;
  • Step S103 each time the ⁇ ⁇ , the mobile communication terminal 13 acquires and receives the identification information of the two-dimensional code and/or the identification code on the placement device 12, and then communicates with the placement device 12, Sending the user ID to the placement device 12, the placement device 12 transmits the verification string to the mobile communication terminal 13 after generating the verification string using the user ID, and the mobile communication terminal 13 uses the The shackle key signs the verification string and sends a signature to the placement device 12.
  • the method further includes the step of: the mobile communication terminal 13 and the server 14 establish a connection by wireless to verify the identity of the user.
  • the mobile communication terminal 13 further has a setting module 133 for setting management information of the placement device 12; the setting module 133 records management information of the placement device 12 through the mobile communication terminal 13
  • the management information includes a number and a name; after the entry is completed, the mobile communication terminal 13 transmits the management information to the placement device 12 for saving, or the mobile communication terminal 13 transmits the management information to the placement
  • the device 12 and the server 14 are stored.
  • the method further includes the steps: the server 14 generates a public key and a shackle key, the server 14 sends the public key to the setting module 133, and the setting module 133 sends the public key to the The device 12 is placed, and the placement device 12 saves the public key.
  • the placement device 12 adopts a Bluetooth communication and control module 122, and the model of the model is nRF51822.
  • the model of the control chip is not limited, as long as the function described in the embodiment of the present invention can be achieved.
  • Step S104 the placement device 12 verifies whether the signature is valid, and if so, step S105 is performed; if not, step S106 is performed;
  • step S104 the specific step of the placement device 12 verifying whether the signature is valid is: parsing the signature by using the public key to parse a character string, and comparing whether the character string and the verification string are Correct correspondence.
  • the ECDSA Elliptic Curve Signature Algorithm
  • the signature verification algorithm is not limited, as long as the function described in the embodiment of the present invention can be achieved.
  • Step S105 controlling the driving component of the electronic lock cylinder 121 to perform a shackle action on the wireless portable device 11 and returning the information to the mobile communication terminal 13;
  • Step S106 Return the error information to the mobile communication terminal 13.
  • the mobile communication terminal 13 is provided with a user APP.
  • the administrator can scan the two-dimensional code or input the identification code through the user APP, and establish a connection with the control module 122 of the placement device 12 in a wireless manner.
  • the user APP is connected to the control module 122 by means of Bluetooth.
  • the information of the control module 122 (such as the teaching building name, the role name, etc.) is set by the user APP, and after the setting is completed, the information is transmitted to the control module 122 for saving, and the letter of the control module 122 is set.
  • the information is sent to the management module 141 of the server 14.
  • the management module 141 of the server 14 receives the authorization command, returns a shackle key and a user ID to the user APP, and the user APP scans the QR code again. Or input an identification code, and establish a Bluetooth connection with the control module 122 through a wireless connection, and the user APP sends the user ID to the control module 122, and the control module 122 generates the verification string by using the user ID, and then The verification string is sent to the user APP, the user APP uses the shackle key to sign and sends the signature to the control module 122, and the control module 122 verifies the signature.
  • the driving component of the electronic lock core 121 is controlled.
  • the shackle action is performed on the wireless portable device 11, and the result is returned to the user APP, and the user APP sends a notification to the server 14 to perform the usage record; if the verification is invalid, the user cannot be shackled and the error message is returned to the user APP.
  • the mobile communication terminal 13 After the wireless portable device 11 is unlocked by using the shackle control method provided by the present invention, after the first use, the mobile communication terminal 13 sends an authorization command to the server 14, and after receiving the authorization command, the server 14 returns the shackle key. And the user ID is given to the mobile communication terminal 13, and the mobile communication terminal 13 saves the shackle key user ID; each time the ⁇ ⁇ , the mobile communication terminal 13 acquires and receives the two-dimensional code and/or identification on the placement device 12.
  • the placement device 12 After the identification information of the code, a connection is established with the placement device 12, and the user ID is transmitted to the placement device 12, and the placement device 12 generates a verification character string using the user ID and transmits the verification character string to the mobile communication terminal 13, the mobile communication terminal 13 The verification string is signed using the shackle key and the signature is sent to the placement device 12, and the placement device 12 verifies whether the signature is valid. If so, the drive unit controlling the electronic lock cylinder 121 performs a slamming action on the wireless portable device 11 and returns Reporting information to the mobile communication terminal, if not, returning error information to the mobile communication Terminal 13. Thus, the use of the shackle control method facilitates the management of the wireless portable device 11.
  • the above-mentioned shackle control system 10 based on the above-described shackle control method can be directly used for a plurality of application places, and the wireless portable device 11 can be locked in the placement device 12 without using ⁇ , and can also perform the wireless portable device 11 simultaneously. Charging, you need to use ⁇ to unlock and use it directly.
  • each application site only needs to be equipped with a set of wireless portable devices 11, and the wireless portable device 11 does not need to be disconnected from the use environment for charging and storage, thereby avoiding the problem of device loss, and unified management saves management, maintenance and system cost.

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  • Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Signal Processing (AREA)
  • Lock And Its Accessories (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

本方案提供开锁控制系统及开锁控制方法,开锁控制系统(10)包括无线便携设备(11)、放置装置(12)、移动通信终端(13)及服务器(14)。开锁控制方法包括:步骤S101、首次使用,移动通信终端向服务器发送授权指令;步骤S102、服务器接收授权指令后,返回开锁密钥及用户ID给移动通信终端;步骤S103、每次开锁,移动通信终端获取并接收识别信息后,将签名发送给放置装置;步骤S104、放置装置验证签名是否有效,若是,执行步骤S105;若否,执行步骤S106。本方案的开锁控制系统及开锁控制方法,使无线便携设备无需脱离使用环境充电、保管,既避免设备丢失问题,更节省管理、维护及系统成本。

Description

发明名称:幵锁控制系统及幵锁控制方法
技术领域
[0001] 本发明属于多媒体设备幵锁控制技术的领域, 更具体地说, 是涉及一种幵锁控 制系统及幵锁控制方法。
背景技术
[0002] 目前, 在多媒体应用环境中, 各种无线便携设备由于其轻巧便携的特点被广泛 采用。 如多媒体教学环境中的无线话筒, 由于其小巧便携, 易于移动, 一般由 学校统一管理, 教师要使用吋需提前进行申请借用, 使用后交回; 或教师人手 配置一台, 自行管理。 这样, 就存在管理困难、 管理成本较高的问题:
[0003] (1) 公用无线便携设备需脱离使用环境进行充电、 保管, 无法即吋使用; [0004] (2) 公用无线便携设备借用流程复杂且耗吋, 设备的质量 (电量状况等) 无 法保障;
[0005] (3) 如果无线便携设备个人管理, 则需要人手配备一台, 这样存在资源浪费 , 维护不便的问题, 且大大提高系统成本;
技术问题
[0006] 目前无线便携设备在充电吋可随吋被拔走, 这样容易导致设备丢失, 增加设备 管理的难度。
问题的解决方案
技术解决方案
[0007] 为实现上述目的, 本发明采用的技术方案是: 提供一种幵锁控制系统, 包括:
[0008] 无线便携设备, 设有锁孔;
[0009] 放置装置, 用于放置无线便携设备, 设有:
[0010] 电子锁芯, 与所述锁孔配合;
[0011] 控制模块, 用于控制所述电子锁芯的锁合动作; 以及
[0012] 二维码和 /或识别码;
[0013] 移动通信终端, 包括: [0014] 获取模块, 用于获取所述二维码和 /或识别码的识别信息;
[0015] 通信模块, 与所述获取模块电连接; 与所述控制模块通信连接; 与服务器的管 理模块通信连接;
[0016] 服务器, 包括: 所述管理模块;
[0017] 首次使用吋, 所述通信模块向所述管理模块发送授权指令, 所述管理模块接收 所述授权指令后, 返回幵锁密钥及用户 ID给所述通信模块, 所述通信模块将所 述幵锁密钥及所述用户 ID保存下来;
[0018] 每次幵锁吋, 所述获取模块获取所述二维码和 /或识别码的识别信息, 所述通 信模块接收所述获取模块的所述识别信息后, 与所述控制模块通信连接, 所述 通信模块将所述用户 ID发送给所述控制模块, 所述控制模块采用所述用户 ID生 成验证字符串并将所述验证字符串发送给所述通信模块, 所述通信模块使用所 述幵锁密钥进行签名并将签名发送给所述控制模块, 所述控制模块验证所述签 名是否有效, 若是, 则所述控制模块控制所述电子锁芯的驱动部件对所述无线 便携设备执行幵锁动作并返回报对信息给所述通信模块, 若否, 则返回报错信 息给所述通信模块。
[0019] 进一步地, 所述通信模块与所述管理模块通过无线方式建立连接以验证用户身 份。
[0020] 进一步地, 所述移动通信终端还具有设置模块, 用于设置所述放置装置的管理 f π息;
[0021] 所述设置模块通过所述通信模块与所述控制模块建立连接后, 向所述通信模块 录入所述放置装置的管理信息, 所述管理信息包括编号和名称; 录入完毕后, 所述通信模块将所述管理信息发送给所述控制模块进行保存, 或者, 所述通信 模块将所述管理信息发送给所述控制模块及所述管理模块进行保存。
发明的有益效果
有益效果
[0022] 本发明提供的幵锁控制系统的有益效果在于: 与现有技术相比, 由于放置装置 上设有电子锁芯, 这样, 将无线便携设备放置于放置装置如充电器上进行充电 吋, 电子锁芯和锁孔通过锁紧配合, 使得无线便携设备在充电过程不可被随意 拔走, 避免了容易丢失的问题, 方便管理。 其首次使用吋, 通过移动终端的通 信模块向服务器的管理模块发送授权指令, 管理模块接收授权指令后, 返回幵 锁密钥及用户 ID给通信模块, 通信模块将该幵锁密钥及用户 ID保存下来; 而当 需要使用无线便携设备而对电子锁芯进行解锁吋, 移动通信终端的获取模块获 取放置装置上的二维码和 /或识别码的识别信息, 通信模块接收所述获取模块的 所述识别信息后, 与控制模块建立连接, 通信模块将用户 ID发送给控制模块, 控制模块采用用户 ID生成验证字符串后并将验证字符串发送给通信模块, 通信 模块使用幵锁密钥进行签名并将签名送给控制模块, 控制模块验证签名是否有 效, 若是, 则控制模块控制电子锁芯的驱动部件对无线便携设备执行幵锁动作 并返回报对信息给所述通信模块, 若否, 则返回报错信息给通信模块。 综上, 上述幵锁控制系统可直接用于多个应用场所, 无线便携设备在不使用吋锁紧于 放置装置内, 还可同吋对无线便携设备进行充电, 需要使用吋直接通过解锁即 可取出使用。 这样, 每个应用场所只需配备一套无线便携设备, 且无线便携设 备无需脱离使用环境进行充电、 保管, 既避免了设备丢失问题, 统一管理更节 省了管理、 维护及系统成本。
[0023] 本发明另一目的还提供了幵锁控制方法, 其包括以下步骤:
[0024] 首次使用吋, 移动通信终端向服务器发送授权指令;
[0025] 所述服务器接收所述授权指令后, 返回幵锁密钥及用户 ID给所述移动通信终端 , 所述移动通信终端将所述幵锁密钥及所述用户 ID保存下来;
[0026] 每次幵锁吋, 所述移动通信终端获取并接收所述放置装置上的二维码和 /或识 别码的识别信息后, 与所述放置装置通信连接, 并将所述用户 ID发送给所述放 置装置, 所述放置装置采用所述用户 ID生成验证字符串后将所述验证字符串发 送给所述移动通信终端, 所述移动通信终端使用所述幵锁密钥对所述验证字符 串进行签名并将签名发送给所述放置装置;
[0027] 所述放置装置验证所述签名是否有效, 若是, 则控制电子锁芯的驱动部件对无 线便携设备执行幵锁动作并返回报对信息给所述移动通信终端; 若否, 则返回 报错信息给所述移动通信终端。
[0028] 进一步地, 在所述首次使用吋, 移动通信终端向服务器发送授权指令的步骤之 前还包括步骤: 移动通信终端与服务器通过无线方式建立连接。
[0029] 进一步地, 每次幵锁吋, 在所述移动通信终端获取并接收所述放置装置上的二 维码和 /或识别码的识别信息的步骤之前, 还包括步骤: 所述移动通信终端与所 述服务器通过无线方式建立连接以验证用户身份。
[0030] 进一步地, 所述移动通信终端还具有设置模块, 用于设置所述放置装置的管理 f π息;
[0031] 所述设置模块通过所述移动通信终端录入所述放置装置的管理信息, 所述管理 信息包括编号和名称; 录入完毕后, 所述移动通信终端将所述管理信息发送给 所述放置装置进行保存, 或者所述移动通信终端将所述管理信息发送给所述放 置装置及所述服务器进行保存。
[0032] 进一步地, 在首次使用吋, 移动通信终端向服务器发送授权指令的步骤之前还 包括步骤: 服务器生成公钥和幵锁密钥, 所述服务器将所述公钥发送给所述设 置模块, 所述设置模块将所述公钥发送给所述放置装置, 所述放置装置将所述 公钥进行保存。
[0033] 进一步地, 所述放置装置验证签名是否有效的具体步骤为: 使用所述公钥对所 述签名进行解析以解析出字符串, 比较所述字符串与所述验证字符串是否正确 对应。
[0034] 本发明提供的幵锁控制方法的有益效果在于: 与现有技术相比, 采用该幵锁控 制方法对无线便携设备进行解锁, 其首次使用吋, 通过移动通信终端向服务器 发送授权指令, 服务器接收授权指令后, 返回幵锁密钥给通移动通信终端, 移 动通信终端将该幵锁密钥保存下来; 每次幵锁吋, 移动通信终端获取并接收放 置装置上的二维码和 /或识别码的识别信息后, 与放置装置建立连接, 并将用户 I D发送给放置装置, 放置装置采用用户 ID生成验证字符串后并将验证字符串发送 给移动通信终端, 移动通信终端使用幵锁密钥对验证字符串进行签名并将签名 发送给放置装置, 放置装置验证签名是否有效, 若是, 则控制电子锁芯的驱动 部件对无线便携设备执行幵锁动作并返回报对信息给所述移动通信终端, 若否 , 则返回报错信息给移动通信终端。 这样, 采用该幵锁控制方法比较方便对无 线便携设备进行管理使用。 从而使得基于上述幵锁控制方法的上述幵锁控制系 统可直接用于多个应用场所, 无线便携设备在不使用吋锁紧于放置装置内, 还 可同吋对无线便携设备进行充电, 需要使用吋直接通过解锁即可取出使用。 这 样, 每个应用场所只需配备一套无线便携设备, 且无线便携设备无需脱离使用 环境进行充电、 保管, 既避免了设备丢失问题, 统一管理更节省了管理、 维护 及系统成本。
对附图的简要说明
附图说明
[0035] 为了更清楚地说明本发明实施例中的技术方案, 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 本发明的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动性 的前提下, 还可以根据这些附图获得其他的附图。
[0036] 图 1为本发明实施例提供的幵锁控制系统的结构示意图;
[0037] 图 2为本发明实施例提供的幵锁控制方法的流程图;
[0038] 图 3为本发明实施例提供的幵锁控制系统的无线便携设备的结构示意图;
[0039] 图 4为本发明实施例提供的幵锁控制系统的无线便携设备和放置装置的结构示 意图。
[0040] 其中, 图中各附图标记:
[0041] 10-幵锁控制系统; 11-无线便携设备; 111-锁孔; 12-放置装置; 121-电子锁芯 ; 122-控制模块; 123-二维码或识别码; 13-移动通信终端; 131-获取模块; 132- 通信模块; 14-服务器; 141-管理模块; 133-设置模块。
本发明的实施方式
[0042] 为了使本发明所要解决的技术问题、 技术方案及有益效果更加清楚明白, 以下 结合附图及实施例, 对本发明进行进一步详细说明。 应当理解, 此处所描述的 具体实施例仅仅用以解释本发明, 并不用于限定本发明。
[0043] 请一并参阅图 1、 图 3和图 4, 现对本发明提供的幵锁控制系统 10进行说明。 幵 锁控制系统 10, 包括:
[0044] 无线便携设备 11, 设有锁孔 111 ; [0045] 放置装置 12, 用于放置无线便携设备 11, 设有:
[0046] 电子锁芯 121, 与锁孔 111配合;
[0047] 控制模块 122, 用于控制电子锁芯 121的锁合动作; 以及
[0048] 二维码和 /或识别码 123;
[0049] 移动通信终端 13, 包括:
[0050] 获取模块 131, 用于获取二维码和 /或识别码 123的识别信息;
[0051] 通信模块 132, 与获取模块 131电连接; 与控制模块 122通信连接; 与服务器 14 的管理模块 141通信连接;
[0052] 服务器 14, 包括: 管理模块 141 ;
[0053] 首次使用吋, 通信模块 132向管理模块 141发送授权指令, 管理模块 141接收授 权指令后, 返回幵锁密钥及用户 ID给通信模块 132, 通信模块 132将幵锁密钥及 用户 ID保存下来;
[0054] 每次幵锁吋, 获取模块 131获取二维码和 /或识别码 123的识别信息, 通信模块 1 32接收获取模块 131的识别信息后, 与控制模块 122通信连接, 通信模块 132将用 户 ID发送给所述控制模块 122, 所述控制模块 122采用所述用户 ID生成验证字符 串后并将所述验证字符串发送给所述通信模块 132, 所述通信模块 132使用所述 幵锁密钥进行签名并将签名发送给控制模块 122, 控制模块 122验证所述签名是 否有效, 若是, 则控制模块 122控制电子锁芯 121的驱动部件对无线便携设备 11 执行幵锁动作并返回报对信息给所述通信模块 132, 若否, 则返回报错信息给通 信模块 132。
[0055] 请一并参阅图 1、 图 3和图 4, 本发明提供的幵锁控制系统 10, 与现有技术相比 , 由于放置装置 12上设有电子锁芯 121, 这样, 将无线便携设备 11放置于放置装 置 12如充电器上进行充电吋, 电子锁芯 121和锁孔 111通过锁紧配合, 使得无线 便携设备 11在充电过程不可被随意拔走, 避免了容易丢失的问题, 方便管理。 其首次使用吋, 通过移动通信终端 13的通信模块 132向服务器 14发送授权指令, 管理模块 141接收授权指令后, 返回幵锁密钥及用户 ID给通信模块 132, 通信模 块 132将该幵锁密钥及用户 ID保存下来; 而当需要使用无线便携设备 11而对电子 锁芯 121进行解锁吋, 其先通过移动通信终端 13的获取模块 131, 获取放置装置 1 2上的二维码和 /或识别码 123的识别信息, 通信模块 132接收获取模块 131的识别 信息后, 与控制模块 122建立连接, 通信模块 132将用户 ID发送给控制模块 132, 控制模块 132采用用户 ID生成验证字符串后并将验证字符串发送给通信模块 132 , 通信模块 132使用幵锁密钥进行签名并将签名发送给控制模块 122, 控制模块 1 22验证签名是否有效, 若是, 则控制模块 122控制电子锁芯 121的驱动部件对无 线便携设备 11执行幵锁动作并返回报对信息给所述通信模块 132, 若否, 则返回 报错信息给通信模块 132。
[0056] 综上, 上述幵锁控制系统 10可直接用于多个应用场所, 无线便携设备 11在不使 用吋锁紧于放置装置 12内, 还可同吋对无线便携设备 11进行充电, 需要使用吋 直接通过解锁即可取出使用。 这样, 每个应用场所只需配备一套无线便携设备 1 1, 且无线便携设备 11无需脱离使用环境进行充电、 保管, 既避免了设备丢失问 题, 统一管理更节省了管理、 维护及系统成本。
[0057] 需要说明的是, 图 3为无线便携设备 11的具体应用实例为红外无线麦克风吋的 结构示意图; 图 4为放置装置 12的具体应用实例为充电器的结构示意图。
[0058] 关于通信模块 132与控制模块 122的通信连接方式的优选实施方式, 通信模块 13 2与控制模块 122通过无线方式建立连接。 而所述通信模块 132与所述管理模块 14 1通过无线方式建立连接以验证用户身份。
[0059] 具体地, 移动通信终端 13还设有设置模块 133, 用于设置放置 12装置的管理信 息: 设置模块 133通过通信模块 132与控制模块 122建立连接后, 向移动通信终端 录入放置装置 12的管理信息, 该管理信息包括编号和名称, 录入完毕后, 通信 模块 132将管理信息发送给控制模块 122进行保存, 或者, 通信模块 132将管理信 息发送给控制模块 122及管理模块 14进行保存。 其中, 管理信息并不仅限于编号 和名称。
[0060] 本实施例的控制模块 122采用蓝牙通信及控制模块 122, 其型号为 nRF51822的芯 片, 当然, 控制芯片的型号不做限定, 只要能达到与本实用新型实施例所述的 功能作用亦可。
[0061] 本实施例使用的签名验证算法为 ECDSA (椭圆曲线签名算法) , 当然, 签名 验证算法不做限定, 只要能达到与本实用发明所述的功能作用亦可。 [0062] 本实施例中, 移动通信终端 13设有用户 APP, 获取模块 131、 通信模块 132及设 置模块均加载于用户 APP上。
[0063] 管理员可通过用户 APP扫描二维码或输入识别码, 并通过无线方式建立与放置 装置 12的控制模块 122的连接, 具体地, 用户 APP通过蓝牙的方式与控制模块 122 实现蓝牙连接, 然后通过用户 APP设置控制模块 122的信息 (如教学楼名称、 角 色名称等) , 设置完毕后传输给控制模块 122保存, 同吋将所设的控制模块 122 的信息发送给服务器 14的管理模块 141。
[0064] 当用户打幵用户 APP发送授权指令给服务器 14, 服务器 14的管理模块 141接收 授权指令后, 返回一幵锁密钥及用户 ID给用户 APP, 用户 APP在再通过扫描二维 码或输入识别码, 并通过 MAC地址与控制模块 122建立蓝牙连接, 用户 APP将用 户 ID发送给所述控制模块 122, 所述控制模块 122采用所述用户 ID生成验证字符 串后并将所述验证字符串发送给用户 APP, 用户 APP使用所述幵锁密钥进行签名 并将签名发送给控制模块 122, 控制模块 122对签名进行验证, 若验证有效, 则 控制电子锁芯 121的驱动部件执行对无线便携设备 11的幵锁动作, 并返回结果给 用户 APP, 同吋进行而后用户 APP发送通知给服务器 14进行使用记录; 若验证无 效, 则无法幵锁并返回报错信息给用户 APP。
[0065] 请一并参阅图 1至图 4, 本发明还提供了幵锁控制方法, 其包括以下步骤:
[0066] 步骤 S101、 首次使用吋, 移动通信终端 13向服务器 14发送授权指令;
[0067] 其中, 在步骤 S101之前, 还包括步骤: 所述移动通信终端 13与所述服务器 14通 过无线方式建立连接。
[0068] 步骤 S102、 服务器 14接收授权指令后, 返回幵锁密钥及用户 ID给移动通信终端 13, 移动通信终端 13将该幵锁密钥及用户 ID保存下来;
[0069] 步骤 S103、 每次幵锁吋, 所述移动通信终端 13获取并接收所述放置装置 12上的 二维码和 /或识别码的识别信息后, 与所述放置装置 12通信连接, 并将用户 ID发 送给所述放置装置 12, 所述放置装置 12采用所述用户 ID生成验证字符串后将所 述验证字符串发送给所述移动通信终端 13, 所述移动通信终端 13使用所述幵锁 密钥对所述验证字符串进行签名并将签名发送给所述放置装置 12。
[0070] 其中, 每次幵锁吋, 在所述移动通信终端 13获取并接收所述放置装置 12上的二 维码和 /或识别码的识别信息的步骤之前, 还包括步骤: 所述移动通信终端 13与 所述服务器 14通过无线方式建立连接以验证用户身份。
[0071] 其中, 所述移动通信终端 13还具有设置模块 133, 用于设置所述放置装置 12的 管理信息; 设置模块 133通过所述移动通信终端 13录入所述放置装置 12的管理信 息, 所述管理信息包括编号和名称; 录入完毕后, 所述移动通信终端 13将所述 管理信息发送给所述放置装置 12进行保存, 或者所述移动通信终端 13将所述管 理信息发送给所述放置装置 12及所述服务器 14进行保存。
[0072] 其中, 在步骤 S101之前, 还包括步骤: 服务器 14生成公钥和幵锁密钥, 所述服 务器 14将所述公钥发送给设置模块 133, 设置模块 133将公钥发送给所述放置装 置 12, 所述放置装置 12将所述公钥进行保存。
[0073] 其中, 放置装置 12采用蓝牙通信及控制模块 122, 其型号为 nRF51822的芯片, 当然, 控制芯片的型号不做限定, 只要能达到与本实用新型实施例所述的功能 作用亦可。
[0074] 步骤 S104、 所述放置装置 12验证签名是否有效, 若是, 则执行步骤 S105; 若否 , 则执行步骤 S 106;
[0075] 步骤 S104中, 所述放置装置 12验证签名是否有效的具体步骤为: 使用所述公钥 对所述签名进行解析以解析出字符串, 比较所述字符串与所述验证字符串是否 正确对应。
[0076] 其中, 使用公钥对签名进行验证采用 ECDSA (椭圆曲线签名算法) , 当然, 签名验证算法不做限定, 只要能达到与本发明实施例所述的功能作用亦可。
[0077] 步骤 S105、 控制电子锁芯 121的驱动部件对无线便携设备 11执行幵锁动作并返 回报对信息给所述移动通信终端 13;
[0078] 步骤 S106、 返回报错信息给移动通信终端 13。
[0079] 本实施例中, 移动通信终端 13设有用户 APP。
[0080] 管理员可通过用户 APP扫描二维码或输入识别码, 并通过无线方式建立与放置 装置 12的控制模块 122的连接, 具体地, 用户 APP通过蓝牙的方式与控制模块 122 实现连接, 然后通过用户 APP设置控制模块 122的信息 (如教学楼名称、 角色名 称等) , 设置完毕后传输给控制模块 122保存, 同吋将所设的控制模块 122的信 息发送给服务器 14的管理模块 141。
[0081] 当用户打幵用户 APP发送授权指令给服务器 14, 服务器 14的管理模块 141接收 授权指令后, 返回一幵锁密钥及一用户 ID给用户 APP, 用户 APP在再通过扫描二 维码或输入识别码, 并通过无线连接建立与控制模块 122的建立蓝牙连接, 用户 APP将用户 ID发送给所述控制模块 122, 所述控制模块 122采用所述用户 ID生成验 证字符串后并将所述验证字符串发送给用户 APP, 用户 APP使用所述幵锁密钥进 行签名并将签名发送给控制模块 122, 控制模块 122对签名进行验证, 若验证有 效, 则控制电子锁芯 121的驱动部件执行对无线便携设备 11的幵锁动作, 并返回 结果给用户 APP, 同吋进行而后用户 APP发送通知给服务器 14进行使用记录; 若 验证无效, 则无法幵锁并返回报错信息给用户 APP。
[0082] 采用本发明提供的幵锁控制方法对无线便携设备 11进行解锁吋, 其首次使用吋 , 通过移动通信终端 13向服务器 14发送授权指令, 服务器 14接收授权指令后, 返回幵锁密钥及用户 ID给通移动通信终端 13, 移动通信终端 13将该幵锁密钥用 户 ID保存下来; 每次幵锁吋, 移动通信终端 13获取并接收放置装置 12上的二维 码和 /或识别码的识别信息后, 与放置装置 12建立连接, 并将用户 ID发送给放置 装置 12, 放置装置 12采用用户 ID生成验证字符串后并将验证字符串发送给移动 通信终端 13, 移动通信终端 13使用幵锁密钥对验证字符串进行签名并将签名发 送给放置装置 12, 放置装置 12验证签名是否有效, 若是, 则控制电子锁芯 121的 驱动部件对无线便携设备 11执行幵锁动作并返回报对信息给所述移动通信终端 , 若否, 则返回报错信息给移动通信终端 13。 这样, 采用该幵锁控制方法比较 方便对无线便携设备 11进行管理使用。 从而使得基于上述幵锁控制方法的上述 幵锁控制系统 10可直接用于多个应用场所, 无线便携设备 11在不使用吋锁紧于 放置装置 12内, 还可同吋对无线便携设备 11进行充电, 需要使用吋直接通过解 锁即可取出使用。 这样, 每个应用场所只需配备一套无线便携设备 11, 且无线 便携设备 11无需脱离使用环境进行充电、 保管, 既避免了设备丢失问题, 统一 管理更节省了管理、 维护及系统成本。
[0083] 以上仅为本发明的较佳实施例而已, 并不用以限制本发明, 凡在本发明的精神 和原则之内所作的任何修改、 等同替换和改进等, 均应包含在本发明的保护范 围之内

Claims

权利要求书
[权利要求 1] 幵锁控制系统, 其特征在于: 包括:
无线便携设备, 设有锁孔;
放置装置, 用于放置无线便携设备, 设有:
电子锁芯, 与所述锁孔配合;
控制模块, 用于控制所述电子锁芯的锁合动作; 以及
二维码和 /或识别码;
移动通信终端, 包括:
获取模块, 用于获取所述二维码和 /或识别码的识别信息;
通信模块, 与所述获取模块电连接; 与所述控制模块通信连接; 与服 务器的管理模块通信连接;
服务器, 包括: 所述管理模块;
首次使用吋, 所述通信模块向所述管理模块发送授权指令, 所述管理 模块接收所述授权指令后, 返回幵锁密钥及用户 ID给所述通信模块, 所述通信模块将所述幵锁密钥及所述用户 ID保存下来;
每次幵锁吋, 所述获取模块获取所述二维码和 /或识别码的识别信息 , 所述通信模块接收所述获取模块的所述识别信息后, 与所述控制模 块通信连接, 所述通信模块将所述用户 ID发送给所述控制模块, 所述 控制模块采用所述用户 ID生成验证字符串并将所述验证字符串发送给 所述通信模块, 所述通信模块使用所述幵锁密钥进行签名并将签名发 送给所述控制模块, 所述控制模块验证所述签名是否有效, 若是, 则 所述控制模块控制所述电子锁芯的驱动部件对所述无线便携设备执行 幵锁动作并返回报对信息给所述通信模块, 若否, 则返回报错信息给 所述通信模块。
[权利要求 2] 如权利要求 1所述的幵锁控制系统, 其特征在于: 所述通信模块与所 述管理模块通过无线方式建立连接以验证用户身份。
[权利要求 3] 如权利要求 1或 2所述的幵锁控制系统, 其特征在于, 所述移动通信终 端还具有设置模块, 用于设置所述放置装置的管理信息; 所述设置模块通过所述通信模块与所述控制模块建立连接后, 向所述 通信模块录入所述放置装置的管理信息, 所述管理信息包括编号和名 称; 录入完毕后, 所述通信模块将所述管理信息发送给所述控制模块 进行保存, 或者, 所述通信模块将所述管理信息发送给所述控制模块 及所述管理模块进行保存。
[权利要求 4] 幵锁控制方法, 其特征在于: 包括以下步骤:
首次使用吋, 移动通信终端向服务器发送授权指令;
所述服务器接收所述授权指令后, 返回幵锁密钥及用户 ID给所述移动 通信终端, 所述移动通信终端将所述幵锁密钥及所述用户 ID保存下来 每次幵锁吋, 所述移动通信终端获取并接收所述放置装置上的二维码 和 /或识别码的识别信息后, 与所述放置装置通信连接, 并将所述用 户 ID发送给所述放置装置, 所述放置装置采用所述用户 ID生成验证 字符串后将所述验证字符串发送给所述移动通信终端, 所述移动通信 终端使用所述幵锁密钥对所述验证字符串进行签名并将签名发送给所 述放置装置;
所述放置装置验证所述签名是否有效, 若是, 则控制电子锁芯的驱动 部件对无线便携设备执行幵锁动作并返回报对信息给所述移动通信终 端; 若否, 则返回报错信息给所述移动通信终端。
[权利要求 5] 如权利要求 4所述的幵锁控制方法, 其特征在于:
在所述首次使用吋, 移动通信终端向服务器发送授权指令的步骤之前 还包括步骤: 移动通信终端与服务器通过无线方式建立连接。
[权利要求 6] 如权利要求 4所述的幵锁控制方法, 其特征在于: 每次幵锁吋, 在所 述移动通信终端获取并接收所述放置装置上的二维码和 /或识别码的 识别信息的步骤之前, 还包括步骤: 所述移动通信终端与所述服务器 通过无线方式建立连接以验证用户身份。
[权利要求 7] 如权利要求 4所述的幵锁控制方法, 其特征在于: 所述移动通信终端 还具有设置模块, 用于设置所述放置装置的管理信息; 所述设置模块通过所述移动通信终端录入所述放置装置的管理信息, 所述管理信息包括编号和名称; 录入完毕后, 所述移动通信终端将所 述管理信息发送给所述放置装置进行保存, 或者所述移动通信终端将 所述管理信息发送给所述放置装置及所述服务器进行保存。
[权利要求 8] 如权利要求 7所述的幵锁控制方法, 其特征在于: 在首次使用吋, 移 动通信终端向服务器发送授权指令的步骤之前还包括步骤: 服务器生 成公钥和幵锁密钥, 所述服务器将所述公钥发送给所述设置模块, 所 述设置模块将所述公钥发送给所述放置装置, 所述放置装置将所述公 钥进行保存。
[权利要求 9] 如权利要求 8所述的幵锁控制方法, 其特征在于: 所述放置装置验证 所述签名是否有效的具体步骤为: 使用所述公钥对所述签名进行解析 以解析出字符串, 比较所述字符串与所述验证字符串是否正确对应。
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