WO2017206347A1 - Valise intelligente - Google Patents

Valise intelligente Download PDF

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Publication number
WO2017206347A1
WO2017206347A1 PCT/CN2016/094992 CN2016094992W WO2017206347A1 WO 2017206347 A1 WO2017206347 A1 WO 2017206347A1 CN 2016094992 W CN2016094992 W CN 2016094992W WO 2017206347 A1 WO2017206347 A1 WO 2017206347A1
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WO
WIPO (PCT)
Prior art keywords
module
communication module
distance
bluetooth communication
password
Prior art date
Application number
PCT/CN2016/094992
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English (en)
Chinese (zh)
Inventor
应佳伟
谢洪波
Original Assignee
海宁滴滴箱包智能科技有限公司
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Filing date
Publication date
Application filed by 海宁滴滴箱包智能科技有限公司 filed Critical 海宁滴滴箱包智能科技有限公司
Publication of WO2017206347A1 publication Critical patent/WO2017206347A1/fr

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Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • G08B13/02Mechanical actuation
    • G08B13/14Mechanical actuation by lifting or attempted removal of hand-portable articles
    • G08B13/1427Mechanical actuation by lifting or attempted removal of hand-portable articles with transmitter-receiver for distance detection
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C13/00Details; Accessories
    • A45C13/18Devices to prevent theft or loss of purses, luggage or hand carried bags
    • A45C13/24Devices for sound-producing, piercing, gas-discharging, or the like
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B49/00Electric permutation locks; Circuits therefor ; Mechanical aspects of electronic locks; Mechanical keys therefor
    • 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
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B13/00Burglar, theft or intruder alarms
    • G08B13/02Mechanical actuation
    • G08B13/14Mechanical actuation by lifting or attempted removal of hand-portable articles
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/18Status alarms
    • G08B21/24Reminder alarms, e.g. anti-loss alarms

Definitions

  • the invention relates to the technical field of luggage, and in particular to a smart luggage.
  • the embodiment of the invention provides a smart luggage package, comprising a luggage body and a mobile control terminal; wherein the luggage body is provided with an electronic code lock, a microprocessor, a first Bluetooth communication module, a first remote wireless communication module, and a radio frequency signal. a transmitter and an alarm, the electronic code lock, the first Bluetooth communication module, the first remote wireless communication module, a radio frequency signal transmitter, and an alarm are all connected to the microprocessor; the mobile control terminal
  • the controller includes a controller, a second Bluetooth communication module, a second remote wireless communication module, a touch LCD panel, and a RF signal feedback device, the second Bluetooth communication module, the second remote wireless communication module, and the touch LCD panel.
  • the second Bluetooth communication module is wirelessly connected to the first Bluetooth communication module one-to-one, and the first remote wireless communication module and the second remote wireless communication module are wirelessly connected one-to-one.
  • the microprocessor and the controller communicate via Bluetooth when the first Bluetooth communication module is connected to the second Bluetooth communication module Data transmission mode; the touch LCD screen for a user to input operation information, said operation information comprises unlocking a password setting command, a set unlocking password, an unlocking command, and an unlocking password, wherein the controller is configured to control the microprocessor to set or control the unlocking password of the electronic combination lock according to the operation information.
  • the processor turns on the electronic code lock; the radio frequency signal transmitter is wirelessly connected to the radio frequency signal feedback device and is used to calculate an actual distance between the radio frequency signal transmitter and the radio frequency signal feedback device, where the microprocessor stores The set anti-lost distance is used to receive the actual distance and is used to open the alarm when it is determined that the actual distance is greater than the set anti-lost distance.
  • the controller includes a password setting module and a control module connected to the password setting module
  • the microprocessor includes a processing module and a storage module connected to the processing module
  • the password setting module The control module is configured to generate the unlock password setting command and the set unlock password, and the control module receives the unlock password setting command and the set unlock password and controls the processing module to store the set unlock password In the storage module.
  • the password setting module is displayed in the form of an identifier on the touch screen.
  • the controller further includes an unlocking module connected to the control module, the unlocking module is configured to generate the unlocking instruction and the unlocking password, and the control module receives the unlocking instruction and the unlocking password And transmitting the unlocking command and the unlocking password to the processing module, the processing module determining whether the unlocking password matches a set unlocking password stored in the storage module, and matching the two The processing module turns on the electronic code lock.
  • an unlocking module connected to the control module, the unlocking module is configured to generate the unlocking instruction and the unlocking password, and the control module receives the unlocking instruction and the unlocking password And transmitting the unlocking command and the unlocking password to the processing module, the processing module determining whether the unlocking password matches a set unlocking password stored in the storage module, and matching the two The processing module turns on the electronic code lock.
  • the unlocking module is displayed in the form of an identifier on the touch screen.
  • the controller further includes a distance setting module connected to the control module, the operation information further includes an anti-lost distance setting command and a set anti-lost distance, and the distance setting module is configured to generate The anti-lost distance setting command and the set anti-lost distance, the control module receives the anti-lost distance setting command and the set anti-lost distance and controls the processing module to store the set anti-lost distance in the storage In the module.
  • the distance setting module is displayed in the form of an identifier on the touch screen.
  • first Bluetooth communication module and the first remote wireless communication module are both connected to the processing module, and the second Bluetooth communication module and the second remote wireless communication module are both connected to the control module.
  • the control module and the processing module implement data transmission by means of Bluetooth communication when the first Bluetooth communication module is connected to the second Bluetooth communication module.
  • the radio frequency signal transmitter includes a first signal transceiving module and a distance calculating module connected to the first signal transceiving module, wherein the first signal transceiving module is configured to send an electromagnetic wave to the radio frequency signal feedback device Signaling and receiving a feedback signal of the RF signal feedback device; the distance calculation module is configured to calculate an actual distance between the RF signal transmitter and the RF signal feedback device according to the feedback signal and calculate the actual distance Sent to the microprocessor.
  • the radio frequency signal feedback device includes a second signal transceiving module and a feedback signal generating module connected to the second signal transceiving module, wherein the second signal transceiving module is configured to receive the radio frequency signal transmitter The electromagnetic wave signal and the feedback signal are sent to the radio frequency signal transmitter; the feedback signal generating module is configured to generate a feedback signal.
  • the smart luggage of the invention has the functions of remote unlocking, remote setting password and anti-theft anti-theft, which is convenient for people to use.
  • FIG. 1 is a schematic structural view of a smart luggage of the present invention.
  • FIG. 2 is a schematic block diagram of a smart luggage of the present invention.
  • FIG. 3 is a schematic block diagram of the microprocessor of FIG. 2.
  • FIG. 4 is a schematic block diagram of the controller of FIG. 2.
  • FIG. 5 is a schematic block diagram of the RF signal transmitter of FIG.
  • FIG. 6 is a schematic block diagram of the RF signal feedback device of FIG. 2.
  • an embodiment of the present invention provides a smart luggage package, including a luggage main body 1 and a mobile control terminal 3.
  • the luggage main body 1 is provided with an electronic code lock 11, a microprocessor 12, a first Bluetooth communication module 13, a first remote wireless communication module 14, a weight sensor 15, and a handle 10 connected to the weight sensor 15.
  • the electronic code lock 11, the first Bluetooth communication module 13, the first remote wireless communication module 14, and the weight sensor 15 are all connected to the microprocessor 12.
  • the mobile control terminal 3 is, for example, a personal mobile smart phone, and includes a controller 32, a second Bluetooth communication module 33, a second remote wireless communication module 34, and a touch LCD panel 35, a second Bluetooth communication module 33, and a second remote wireless communication module. Both the 34 and the touch panel 35 are connected to the controller 32.
  • the second Bluetooth communication module 33 is wirelessly connected to the first Bluetooth communication module 13 one-to-one
  • the first remote wireless communication module 14 is wirelessly connected to the second remote wireless communication module 34 one-to-one.
  • the wireless connection is implemented between the controller 32 and the microprocessor 12 through two Bluetooth communication modules and two remote wireless communication modules, and the luggage main body 1 and the mobile control terminal 3 are respectively provided with a network communication selection module.
  • the mode of Bluetooth communication is preferentially selected for data transmission; when two Bluetooth communication modules cannot be normally connected, data transmission is performed by two remote wireless communication modules.
  • the data transmission using the Bluetooth communication module is generally applied to short-distance data transmission.
  • the so-called close-range data transmission means that the distance between the luggage main body 1 and the mobile control terminal 3 is 0-100 meters. The distance is for two Bluetooth modules Effective connection distance, in the case of short-distance data transmission, the data transmission using the Bluetooth communication module can ensure the data transmission speed between the luggage main body 1 and the mobile control terminal 3 is fast, and can save network resources.
  • the touch screen 35 is used for the user to input operation information, and the controller 32 controls the microprocessor 12 to perform corresponding operations according to the operation command input by the user.
  • the user inputs the unlock password setting command and the input unlock password by using the touch panel 35, and the controller 32 controls the microprocessor 12 to set the unlock password of the electronic password lock 11; for example, the user
  • the controller 32 controls the microprocessor 12 to turn on the electronic code lock 11 by inputting an unlock command and inputting an unlock code through the touch panel 35.
  • the weight sensor 15 is configured to sense the weight information of the luggage body 1 and is sent to the controller 32 through the microprocessor 12.
  • the operation information input by the user further includes a weight information acquisition command, and the controller 32 inputs the weight information through the touch liquid crystal panel 35.
  • the weight information is displayed on the touch liquid crystal panel 35 when the command is acquired, so that the user can know the weight of the luggage body 1.
  • the user senses the weight sensor 15 to sense the weight information of the luggage body 1 by operating the handle 10.
  • the controller 32 includes a password setting module 320 and a control module 321 connected to the password setting module 320.
  • the microprocessor 12 includes a processing module 120 and The storage module 121 connected to the processing module 120, the password setting module 320 is displayed on the touch liquid crystal panel 35 in the form of an identifier, and when the user inputs the unlock password setting command through the liquid crystal touch screen 35 and inputs the set unlock password,
  • the password setting module 320 is configured to generate an unlock password setting command and a set unlock password
  • the control module 321 receives the unlock password setting command and the set unlock password
  • the control processing module 120 stores the set unlock password in the storage module. 121.
  • the password setting module 320 is configured to generate an unlock password setting command and a set unlock password, and refers to generating digital information corresponding to the unlock password setting command and the set unlock password.
  • the specific principle of the user setting the unlock password is as follows: the user first clicks on the touch screen 35 to represent The identifier of the password setting module 320 generates an unlock password setting command after the password setting module 320 is clicked. After the control module 321 receives the unlock password setting command, the control password setting module 320 further touches in the form of an input interface. The control module 321 displays the unlocking password setting command to the processing module 120. The user inputs the set unlocking password on the input interface through the touch panel 35, and the password setting module 320 generates the setting. When the password is unlocked, the control module 321 receives the set unlock password and sends the set unlock password to the processing module 120. The processing module 120 stores the set unlock password in the storage module 121. It can be understood that the processing module 120 at this time The unlock password previously stored in the storage module 121 is overwritten.
  • the controller 32 further includes an unlocking module 323 connected to the control module 321 .
  • the unlocking module 323 is displayed on the touch liquid crystal screen 35 in the form of an identifier, and the user inputs an unlocking command through the touch liquid crystal panel 35 .
  • the unlocking module 323 When the password is unlocked, the unlocking module 323 generates an unlocking command and an unlocking password, and the control module 321 receives the unlocking command and the unlocking password and controls the processing module 120 to turn on the electronic password lock 11.
  • the unlocking module 323 generates an unlocking command and an unlocking password, and refers to generating digital information corresponding to the unlocking command and the unlocking password.
  • the specific principle of the user turning on the electronic code lock 11 is as follows: the user first clicks on the identifier of the unlocking module 323 on the touch liquid crystal panel 35. After the unlocking module 323 is clicked, the unlocking module 323 generates an unlocking command, and the control module 321 receives After the unlocking command, the control unlocking module 323 is further displayed on the touch liquid crystal panel 35 in the form of an input interface, and the control module 321 sends the unlocking command to the processing module 120, and the user inputs the unlocking password on the input interface through the touch liquid crystal panel 35. The unlocking module 323 further generates an unlocking password, and the control module 321 receives the unlocking password and sends the unlocking password to the processing module 120. The processing module 120 determines whether the received unlocking password is the same as the unlocking password stored in the storage module 121. When the same is the case, the processing module 120 turns on the electronic code lock 11.
  • the controller 32 further includes a weight information acquiring module 324 connected to the control module 321 .
  • the weight information of the bag body 1 sensed by the weight sensor 15 stores the weight information in the storage module 121 through the processing module 120, and the weight information acquiring module 324 identifies The form of the symbol is displayed on the touch panel 35.
  • the weight information acquiring module 324 is configured to generate a weight information acquisition instruction, and the control module 321 receives the weight information acquisition instruction.
  • the weight information stored in the storage module 121 is displayed on the touch liquid crystal panel 35.
  • the weight information acquisition module 324 is configured to generate a weight information acquisition instruction, which is to generate digital information corresponding to the weight information acquisition instruction. It can be understood that when the processing module 120 stores the weight information in the storage module 121, the weight information stored in the storage module 121 is overwritten.
  • the specific principle of the user obtaining the weight information of the bag body 1 is as follows: the user first clicks on the identifier of the weight information acquiring module 324 on the touch screen 35, and after the weight information acquiring module 324 is clicked, the weight information acquiring module 324 generates the weight information. After the control module 321 receives the weight information acquisition command, the control weight information acquisition module 324 further displays on the touch liquid crystal panel 35 in the form of a weight information display interface, and the control module 321 controls the weight of the processing module 120 in the storage module 121. After the information is fed back, the control module 321 displays the weight information in the touch liquid crystal panel 35.
  • the radio frequency signal transmitter 21 and the alarm 22 are both connected to the microprocessor 12, and the mobile control terminal 3 is further provided with a radio frequency signal feedback device 36.
  • the radio frequency signal transmitter 21 is used.
  • the microprocessor 12 stores the set anti-drop distance and is used to transmit the electromagnetic wave signal and receive the feedback signal of the RF signal feedback device 36 and calculate the actual distance between the RF signal transmitter 21 and the RF signal feedback device 36 according to the feedback signal.
  • the alarm device 22 is turned on to remind the user that the luggage main body 1 has exceeded the set anti-lost distance.
  • the storage module 121 of the microprocessor 12 stores the set anti-drop distance
  • the processing module 120 is configured to receive The actual distance determines whether the actual distance is greater than the set anti-lost distance.
  • the processing module 120 determines that the actual distance is greater than the set anti-lost distance, the alarm 22 is turned on.
  • the controller 32 further includes a distance setting module 325 connected to the control module 321 , and the operation information input by the user through the touch liquid crystal panel 35 further includes an anti-lost distance setting command and a set anti-lost distance.
  • the distance setting module 325 is configured to generate the anti-lost distance setting command and the set anti-lost distance
  • the control module 321 receives The anti-lost distance setting command and the set anti-lost distance and the control processing module 120 store the set anti-lost distance in the storage module 121.
  • the distance setting module 325 generates the anti-lost distance setting command and the set anti-lost distance, and refers to the digital information corresponding to the anti-lost distance setting command and the set anti-lost distance.
  • the specific principle of the user setting the anti-lost distance is as follows: the user first clicks the identifier of the representative distance setting module 325 on the touch screen 35, and generates an anti-lost distance setting command after the distance setting module 325 is clicked. After the control module 321 receives the anti-lost distance setting command, the control distance setting module 325 further displays on the touch liquid crystal panel 35 in the form of an input interface, and the control module 321 sends the anti-lost distance setting command to the processing module 120.
  • the user inputs the set anti-lost distance on the input interface through the touch screen 35, the distance setting module 325 generates the set anti-lost distance, and the control module 321 receives the set anti-lost distance and sets the anti-lost distance.
  • the processing module 120 sends the set anti-drop distance to the storage module 121. It can be understood that the processing module 120 will overwrite the previously stored set anti-lost distance.
  • the luggage body 1 is further provided with a GPS locator 16 connected to the microprocessor 12.
  • the microprocessor 12 determines that the actual distance is greater than the anti-lost distance, the microprocessor 12 turns on the GPS positioning. And acquiring the position information of the luggage main body 1 through the GPS locator 16 and transmitting the acquired position information of the luggage main body 1 to the controller 32, and the controller 32 sets the position of the luggage main body 1.
  • the letter is shown on the touch screen 35 to allow the user to accurately know the location of the bag.
  • the GPS locator 16 is connected to the processing module 120.
  • the processing module 120 first stores the location information acquired by the GPS locator 16 in the storage module 121.
  • the controller 32 further includes a location information acquiring module 326 connected to the control module 321 .
  • the position information obtaining module 326 is shown on the touch liquid crystal panel 35.
  • the operation information input by the user through the touch liquid crystal screen 35 further includes a position information acquisition instruction, and the position information acquisition module 326 is configured to generate a position information acquisition instruction, and the control module 321 receives After the location information acquisition command, the control processing module 120 feeds back the location information in the storage module 121 to the touch liquid crystal panel 35 for display.
  • the location information acquisition module 326 is configured to generate a location information acquisition instruction, which is the digital information corresponding to the location information acquisition instruction.
  • the processing module 120 stores the location information in the storage module 121 when the location information is stored in the storage module 121. The location information stored first is overwritten.
  • the principle of the user obtaining the location information of the main body 1 of the luggage is as follows:
  • the user After the user finds that the main body 1 of the luggage bag is lost, the user first clicks the identifier of the location information acquiring module 326 on the touch panel 35, generates a location information obtaining instruction after the location information acquiring module 326 is clicked, and the control module 321 receives the location information.
  • the control signal is output to the processing module 120, and the processing module 120 transmits the location information stored in the storage module 121 to the control module 321, and then the control module 321 displays the location information transmitted by the processing module 120 on the touch liquid crystal panel 35. .
  • a power module is further disposed in the main body 1 of the bag, and the power module is configured to be disposed in the main body 1 of the bag for the microprocessor 12, the radio frequency signal transmitter 21, the GPS locator 16, and the wireless communication module.
  • the power supply device is powered by an electronic switch connected between the power module and the GPS positioner 16. The control end of the electronic switch is connected to the microprocessor 12.
  • the microprocessor 12 determines the actual distance to be greater than the anti-lost distance. Closing causes the GPS locator 16 to determine the position information of the luggage body 1 and transmits the position information of the luggage body 1 to the microprocessor 12 for energy saving purposes.
  • the GPS locator 16 can continuously obtain the location information of the luggage body 1, that is, the box.
  • the location information of the package body 1 is sent to the mobile control terminal 3 in real time.
  • the user can operate the location information acquisition module 326 in the controller 32 to obtain the location information of the luggage body 1.
  • the first Bluetooth communication module 13 and the first remote wireless communication module 14 are both connected to the processing module 120, and the second Bluetooth communication module 33 and the second remote wireless communication module 34 are both connected to the control module. 321 connection.
  • the control module 321 and the processing module 120 transmit data through Bluetooth when the first Bluetooth communication module 13 and the second Bluetooth communication module 33 are normally connected; the control module 321 and the processing module 120 are in the first Bluetooth communication module 13 and the second Bluetooth communication module. 33 When it is unable to connect, data transmission is performed through two remote wireless communication modules.
  • the RF signal transmitter 21 includes a first signal transceiver module 210 and a distance calculation module 212 connected to the signal receiving module 210.
  • the first signal transceiver module 210 is configured to send electromagnetic waves to the RF signal feedback device 36.
  • the signal and the feedback signal sent by the RF signal feedback device 36 are used;
  • the distance calculation module 212 is configured to calculate the actual distance between the RF signal transmitter 21 and the RF signal feedback device 36 according to the feedback signal and send the actual distance to the microprocessor 12.
  • the calculation module 212 calculates the actual distance.
  • the specific principle is that the RF signal transmitter 21 sends an electromagnetic wave signal to the RF signal feedback device 36. After receiving the electromagnetic wave signal, the RF signal feedback device 36 transmits a feedback signal to the RF signal transmitter 21, and the calculation module 212 is The actual distance is calculated by the time difference between the electromagnetic wave signal transmitter 21 and the received feedback signal.
  • the RF signal feedback device 36 includes a second signal transceiver module 361 and a feedback signal generation module 362 connected to the second signal transceiver module 361.
  • the second signal transceiver module 361 is configured to receive The electromagnetic wave signal sent by the RF signal transmitter 21 and the feedback signal are sent to the RF signal transmitter 21;
  • the feedback signal generating module 362 is configured to generate a feedback signal and transmit the feedback information to the second signal transceiver module 361.
  • the first Bluetooth communication module 13 and the second Bluetooth communication module 33 both adopt a 4.0 Bluetooth unit to ensure that signals can be transmitted between the two Bluetooth communication modules in a low-power Bluetooth penetration manner.
  • the first remote wireless communication module 14 and the second remote wireless communication module 34 are one of a wifi wireless communication module, a zigbee communication module, and a GPRS communication module, so that the mobile control terminal 3 can perform the luggage body 1 remote control.
  • the top end and the bottom end of the main body 1 of the luggage body 1 are respectively provided with a tie rod 17 and a roller 18 to facilitate the user to pull the main body 1 of the luggage.
  • the alarm 22 is a buzzer alarm, and the alarm 22 can beep to raise the owner of the package when the alarm is issued.
  • the mobile control terminal 3 has, for example, an APP software installed therein, and the APP software has a password setting function, an unlocking function, a weight information acquiring function, a distance setting function, and a position information acquiring function, so that the mobile control terminal 3 has a password setting function, an unlocking function, and
  • the weight information acquisition function, the distance setting function, and the position information acquisition function in other words, the password setting module 320 of the controller 32, the unlocking module 323, the weight information acquiring module 324, the distance setting module 325, and the position information acquisition
  • the module 326 is formed by, for example, APP software division.
  • the password setting module 320, the unlocking module 323, the weight information acquiring module 324, the distance setting module 325, and the location information acquiring module 326 will be on the operation interface of the APP software with a specific identifier.
  • the user can first open the APP software when the operation information is input through the touch panel 35.
  • the operation interface of the APP software is displayed on the touch screen 35, and then the user can complete various operations by clicking a specific identifier. Input of information.
  • the smart luggage of the invention has the functions of remote unlocking, remote setting password and anti-theft anti-theft, which is convenient for people to use.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Lock And Its Accessories (AREA)
  • Telephone Function (AREA)

Abstract

L'invention a trait à une valise intelligente comprenant un corps de valise (1) et un terminal de commande mobile (3). Le corps de valise (1) est doté d'un verrou à combinaison électronique (11), d'un microprocesseur (12), d'un premier module de communication Bluetooth (13), d'un premier module de communication sans fil à distance (14), d'un émetteur de signal radiofréquence (21) et d'une alarme (22). Le verrou à combinaison électronique (11), le premier module de communication Bluetooth (13), le premier module de communication sans fil à distance (14), l'émetteur de signal radiofréquence (21) et l'alarme (22) sont tous connectés au microprocesseur (12). Le terminal de commande mobile (3) comprend un contrôleur (32), un second module de communication Bluetooth (33), un second module de communication sans fil à distance (34), un écran tactile à cristaux liquides (35) et un dispositif de retour de signal radiofréquence (36). Le second module de communication Bluetooth (33), le second module de communication sans fil à distance (34) et l'écran tactile à cristaux liquides (35) sont tous connectés au contrôleur (32). Les deux modules de communication Bluetooth (13, 33) sont connectés l'un à l'autre sans fil de manière biunivoque. Les deux modules de communication sans fil à distance (14, 34) sont connectés l'un à l'autre sans fil de manière biunivoque. La valise intelligente possède des fonctions de déverrouillage commandé à distance, des fonctions de réglage de mot de passe commandé à distance et des fonctions anti-perte et antivol, facilitant ainsi l'utilisation par les personnes.
PCT/CN2016/094992 2016-06-03 2016-08-12 Valise intelligente WO2017206347A1 (fr)

Applications Claiming Priority (2)

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CN201610395474.X 2016-06-03
CN201610395474.XA CN105931403A (zh) 2016-06-03 2016-06-03 一种自能箱包

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CN108652412B (zh) * 2017-03-31 2021-06-18 佛山市顺德区美的电热电器制造有限公司 分体式烹饪器具及其识别方法
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