WO2021081757A1 - 电子烟真伪识别系统、方法、烟具、电子烟及存储介质 - Google Patents

电子烟真伪识别系统、方法、烟具、电子烟及存储介质 Download PDF

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Publication number
WO2021081757A1
WO2021081757A1 PCT/CN2019/114030 CN2019114030W WO2021081757A1 WO 2021081757 A1 WO2021081757 A1 WO 2021081757A1 CN 2019114030 W CN2019114030 W CN 2019114030W WO 2021081757 A1 WO2021081757 A1 WO 2021081757A1
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WO
WIPO (PCT)
Prior art keywords
electronic cigarette
identifier
smoking
authenticity
identifier data
Prior art date
Application number
PCT/CN2019/114030
Other languages
English (en)
French (fr)
Inventor
李斌
张鸿
吴林
Original Assignee
昆山联滔电子有限公司
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 昆山联滔电子有限公司 filed Critical 昆山联滔电子有限公司
Priority to JP2021551600A priority Critical patent/JP7372984B2/ja
Priority to PCT/CN2019/114030 priority patent/WO2021081757A1/zh
Priority to CN201980091060.XA priority patent/CN113382645A/zh
Priority to US17/434,682 priority patent/US20220142259A1/en
Priority to GB2112480.5A priority patent/GB2595803B/en
Priority to CN202011126163.6A priority patent/CN112244361B/zh
Publication of WO2021081757A1 publication Critical patent/WO2021081757A1/zh

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    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • A24F40/53Monitoring, e.g. fault detection
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24DCIGARS; CIGARETTES; TOBACCO SMOKE FILTERS; MOUTHPIECES FOR CIGARS OR CIGARETTES; MANUFACTURE OF TOBACCO SMOKE FILTERS OR MOUTHPIECES
    • A24D1/00Cigars; Cigarettes
    • A24D1/02Cigars; Cigarettes with special covers
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24DCIGARS; CIGARETTES; TOBACCO SMOKE FILTERS; MOUTHPIECES FOR CIGARS OR CIGARETTES; MANUFACTURE OF TOBACCO SMOKE FILTERS OR MOUTHPIECES
    • A24D1/00Cigars; Cigarettes
    • A24D1/20Cigarettes specially adapted for simulated smoking devices
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/20Devices using solid inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/46Shape or structure of electric heating means
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • A24F40/51Arrangement of sensors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • A24F40/57Temperature control
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/60Devices with integrated user interfaces
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/65Devices with integrated communication means, e.g. wireless communication means

Definitions

  • This application relates to the technical field of electronic cigarettes, for example, to an electronic cigarette authenticity identification system, method, smoking set, electronic cigarette, and storage medium.
  • Electronic cigarettes are electronic products that imitate cigarettes, with similar smoke, taste and feel to cigarettes. In recent years, electronic cigarettes used to quit smoking and replace cigarettes have been rapidly promoted and used.
  • This application proposes an electronic cigarette authenticity identification system, method, smoking set, electronic cigarette and storage medium.
  • the embodiment of the present application provides an electronic cigarette authenticity identification system, including a smoking set and a smart device, and the smoking set and the smart device are in communication connection;
  • the smoking device is configured to: when the electronic cigarette is inserted into the smoking device, the identifier on the electronic cigarette is scanned and read by the scanning unit inside the smoking device to obtain identifier data, and the identifier data is transmitted to the smoking device.
  • the smart device and controlling the heating state of the smoking appliance according to the authentication information fed back by the smart device, wherein the authentication information includes the authenticity authentication result of the electronic cigarette;
  • the smart device is configured to: receive the identifier data, decode the identifier data, perform authenticity verification on the decoded identifier data to obtain the authentication information, and feed back the authentication information to the Smoking set.
  • the embodiment of the present application provides a smoking appliance, including: a housing, a power supply, a control unit, a heating unit, a scanning unit, and a transmission unit;
  • the power supply, the control unit and the heating unit are all arranged in the housing and electrically connected in sequence
  • the scanning unit is arranged in the housing and connected to the control unit
  • the transmission unit is arranged Inside the housing and connected to the scanning unit, an end of the housing close to the heating unit is provided with a smoke inlet for inserting an electronic cigarette;
  • the scanning unit is configured to scan and read the identifier on the electronic cigarette inserted into the cigarette inlet to obtain identifier data
  • the transmission unit is configured to transmit the identifier data to the smart device
  • the control unit is configured to control the scanning unit to scan and read the identifier on the electronic cigarette when the electronic cigarette is inserted into the smoking appliance, and control the heating unit according to the identification information fed back by the smart device The heating state of the electronic cigarette, wherein the identification information includes the authenticity identification result of the electronic cigarette.
  • An embodiment of the present application provides an electronic cigarette.
  • the outer package of the electronic cigarette inserted into the smoking set is provided with at least one identifier for scanning by the scanning unit of the smoking set, so that the electronic cigarette is inserted into the smoking set.
  • the scanning unit of the smoking device performs an operation of scanning and reading the identifier on the electronic cigarette to obtain the identifier data;
  • each of the identifiers records the production date information, manufacturer information, and electronic cigarette model information of the electronic cigarette.
  • the embodiment of the application provides an electronic cigarette authenticity identification method, which is applied to the electronic cigarette authenticity identification system of the embodiment of the application, and includes:
  • the heating state of the smoking appliance is controlled according to the authentication information fed back by the smart device, wherein the authentication information includes the authenticity authentication result of the electronic cigarette.
  • the embodiment of the present application provides a method for identifying the authenticity of an electronic cigarette, including:
  • the authentication information is fed back to the smoking appliance, wherein the authentication information includes the authenticity authentication result of the electronic cigarette.
  • the embodiment of the present application provides an electronic cigarette authenticity identification device, including:
  • the identifier reading module is configured to scan and read the identifier on the electronic cigarette through the scanning unit inside the smoking device when the electronic cigarette is inserted into the smoking device to obtain identifier data;
  • An identifier transmission module configured to transmit the identifier data to the smart device
  • the heating control module is configured to control the heating state of the smoking appliance according to the authentication information fed back by the smart device, wherein the authentication information includes the authenticity authentication result of the electronic cigarette.
  • the embodiment of the application provides an electronic cigarette authenticity identification device, which is applied to the electronic cigarette authenticity identification system of the embodiment of the application, and includes:
  • An identifier receiving module configured to receive identifier data transmitted by the smoking device, wherein the identifier corresponding to the identifier data is scanned and read by a scanning unit provided inside the smoking device;
  • An identifier decoding module configured to decode the identifier data to obtain authentication information
  • the identifier authentication module is set to authenticate the authenticity of the decoded identifier data
  • the authentication information feedback module is configured to feed back the authentication information to the smoking appliance, wherein the authentication information includes the authenticity authentication result of the electronic cigarette.
  • the embodiment of the present application provides a smoking set, including:
  • At least one processor At least one processor
  • Storage device for storing at least one program
  • the at least one processor When the at least one program is executed by the at least one processor, the at least one processor implements the corresponding electronic cigarette authenticity identification method.
  • the embodiment of the present application provides a smart device, including:
  • At least one processor At least one processor
  • Storage device for storing at least one program
  • the at least one processor When the at least one program is executed by the at least one processor, the at least one processor implements the corresponding electronic cigarette authenticity identification method.
  • the embodiment of the present application provides a computer-readable storage medium on which a computer program is stored, and when the computer program is executed by a processor, the corresponding electronic cigarette authenticity identification method described above is realized.
  • the beneficial effect of this application is that the technical solution provided by this application is designed to design an identifier on the outer packaging of the electronic cigarette, and at the same time, a corresponding scanning unit is provided inside the smoking device.
  • the scanning unit can scan and Read the identifier on the electronic cigarette to obtain the identifier data, and transmit the identifier data to an external smart device.
  • the smart device decodes and authenticates the identifier to obtain the identification information, and feeds the identification information back to the smoking device, As a result, the smoking set controls the heating state of the smoking set according to the identification information, thereby realizing heating of real cigarettes instead of heating of fake cigarettes, which not only effectively identifies the authenticity of electronic cigarettes, but also avoids the use of fake cigarettes.
  • Fig. 1 is a schematic structural diagram of an electronic cigarette authenticity identification system provided in Embodiment 1 of the present application;
  • Fig. 2 is a schematic structural diagram of a smoking set provided in Embodiment 1 of the present application;
  • FIG. 3 is a schematic structural diagram of an electronic cigarette provided in Embodiment 1 of the present application.
  • FIG. 4 is a schematic structural diagram of another electronic cigarette provided in Embodiment 1 of the present application.
  • FIG. 5 is a flowchart of a method for authenticating an electronic cigarette according to Embodiment 2 of the present application.
  • FIG. 6 is a specific flow chart of the method for authenticating an electronic cigarette according to Embodiment 2 of the present application.
  • FIG. 7 is a flowchart of a method for authenticating an electronic cigarette according to Embodiment 3 of the present application.
  • FIG. 8 is a flowchart of a method for authenticating an electronic cigarette according to a fourth embodiment of the present application.
  • FIG. 9 is a structural block diagram of an electronic cigarette authenticity identification device provided by Embodiment 5 of the present application.
  • FIG. 10 is a structural block diagram of an electronic cigarette authenticity identification device provided in the sixth embodiment of the present application.
  • Fig. 11 is a schematic structural diagram of a smoking set provided in Example 7 of the present application.
  • Fig. 1 is a schematic structural diagram of an electronic cigarette authenticity identification system provided in Embodiment 1 of the present application.
  • This embodiment is suitable for identifying the authenticity of electronic cigarettes and avoiding heating fake cigarettes, and is particularly suitable for heating non-combustion electronic cigarettes.
  • the electronic cigarette authenticity identification system provided in this embodiment includes a smoking set 10 and a smart device 20, and the smoking set 10 and the smart device 20 are in communication connection.
  • the smoking set 10 is configured to: when the electronic cigarette 30 is inserted into the smoking set 10, the scanning unit 40 inside the smoking set 10 scans and reads the identifier on the electronic cigarette 30 to obtain the identifier data, and transmits the identifier data to the smart device 20, and The heating state of the smoking set 10 is controlled according to the identification information fed back by the smart device 20.
  • the identification information includes the authenticity identification result of the electronic cigarette.
  • the smart device 20 is configured to receive the above identifier data, decode the identifier data, perform authenticity verification on the decoded identifier data to obtain identification information, and feed the identification information back to the smoking set 10.
  • the smart device 20 may be a mobile phone, a tablet computer, a computer, a wearable device, and the like.
  • the electronic cigarette 30 may be a cartridge containing e-liquid or a solid cigarette.
  • the smoking set 10 and the smart device 20 can be connected in a wired or wireless manner.
  • the smoking set 10 and the smart device 20 may be connected using Bluetooth or WIFI to realize two-way communication between the smoking set 10 and the smart device 20.
  • the identifier may be a two-dimensional code, a barcode, a magnetic strip that can be non-contacted, and the like.
  • the scanning unit 40 may be a two-dimensional code scanning unit, a barcode scanning unit, and a magnetic strip scanning unit, respectively.
  • the identifier may be a miniature two-dimensional code.
  • the scanning unit 40 can be a miniature two-dimensional code scanning unit, and then the existing space inside the smoking device 10 can be used to deploy the scanning unit 40 to avoid the use of the smoking device 10 The internal space structure of the cigarette holder is redesigned, and the volume of the smoking set 10 is prevented from increasing.
  • the above-mentioned smoking set 10 can be used independently or in conjunction with a smart device 20.
  • the smoking set 10 may be equipped with an independent control unit.
  • the smoking set 10 is disconnected from the smart device 20, or there is no connectable smart device 20, the user can use the smoking set 10 alone to only heat the electronic cigarette 30.
  • the electronic cigarette authenticity identification function of the electronic cigarette authenticity identification system can be automatically activated (and can also be turned on by the user). At this time, the above functions of the smoking set 10 and the smart device 20 are automatically completed.
  • the scanning unit 40 automatically scans and reads the identifier on the electronic cigarette 30 to obtain the identifier data, and transmits the identifier data to the smart device 20; the smart device 20 receives In the case of identifier data, the identifier data is decoded, and the authenticity of the decoded identifier data is then authenticated to obtain the authentication information, and the authentication information is fed back to the smoking set 10; the smoking set 10 controls the smoking set according to the identification information fed back by the smart device 20
  • the heating state of 10 that is, when the smoking set 10 determines that the electronic cigarette 30 is a real cigarette according to the identification information, the electronic cigarette 30 is heated, and the electronic cigarette 30 is used normally, but when the electronic cigarette 30 is determined to be a fake cigarette according to the identification information, it is not executed In heating operation, the electronic cigarette 30 cannot be used. Thus, not only the authenticity of the electronic cigarette is effectively identified, but the use of fake cigarettes is avoided.
  • the above identifier data may be an identifier read by the scanning unit 40, or may be an identifier data stream obtained by processing the identifier read by the scanning unit 40 through the control unit in the smoking device 10. That is, the scanning unit 40 may directly transmit the read identifier to the smart device 20; or the scanning unit 40 may first send the read identifier to the control unit of the smoking device 10, and the control unit converts the identifier into identifier data Then, the identifier data stream is transmitted to the smart device 20.
  • the embodiments of the present application do not impose limitations.
  • an identifier is designed on the outer packaging of the electronic cigarette 30, and a corresponding scanning unit 40 is provided inside the smoking set 10.
  • the scanning unit 40 can scan and read Take the identifier on the electronic cigarette 30 to obtain the identifier data, and transmit the identifier data to the external smart device 20.
  • the smart device 20 decodes the identifier data and authenticates the authenticity to obtain the authentication information, and feeds the authentication information back to
  • the smoking set 10 enables the smoking set 10 to control the heating state of the smoking set 10 according to the identification information, thereby realizing heating of real cigarettes instead of heating of fake cigarettes, which not only effectively identifies the authenticity of the electronic cigarette 30, but also avoids the use of fake cigarettes.
  • the authentication information may further include information on the model of the electronic cigarette recorded by the identifier.
  • the smoking set 10 may also be set to: when the authenticity identification result of the electronic cigarette indicates that the electronic cigarette 30 is a real cigarette, according to the corresponding relationship between the heating mode and the electronic cigarette model, the heating mode that matches the electronic cigarette model is selected to heat the electronic cigarette 30 .
  • the heating temperature of the electronic cigarette 30 of different models may be different, that is, the electronic cigarette 30 has a matching heating temperature, and using a temperature that does not match to heat the electronic cigarette 30 may cause the electronic cigarette 30 to have a poor taste. Therefore, in this embodiment, according to the corresponding relationship between the heating mode and the electronic cigarette model, the heating mode that matches the electronic cigarette model is selected to heat the electronic cigarette 30, which realizes the intelligent matching of the heating temperature of the electronic cigarette 30 of different models, and then The taste of the electronic cigarette 30 is guaranteed.
  • the various heating temperatures required by the electronic cigarette 30 of various models can be counted in advance, and the smoking set 10 can be set according to the various heating temperatures.
  • the smoking set 10 has multiple heating modes corresponding to the heating temperature.
  • the corresponding relationship between the heating mode and the electronic cigarette model is stored in the smoking set 10 in advance.
  • the smart device 20 can also obtain the heating mode matching the e-cigarette model according to the information of the e-cigarette model transmitted by the smoking set 10, and load the heating mode into the smoking set 10 .
  • the smoking set 10 selects the heating mode matching the information of the electronic cigarette model to heat the electronic cigarette 30 according to the corresponding relationship between the heating mode and the electronic cigarette model, and realizes the intelligent matching of the heating temperature of the electronic cigarette 30 of different models.
  • the electronic cigarette 30 is intelligently heated, thereby ensuring the taste of the electronic cigarette 30.
  • the smart device 20 may also be configured to upload the usage information to the server.
  • Use information includes e-cigarette use time information, e-cigarette use location information, and smoking appliance model information.
  • the smart device 20 has a clock function and a positioning function.
  • the time recorded by the smart device 20 is the e-cigarette use time.
  • the location where the smart device 20 locates is the electronic cigarette.
  • the smart device 20 retains the smoking device model information of the smoking device 10.
  • the smart device 20 when the smart device 20 receives the identifier data transmitted by the smoking device 10, it can generate the e-cigarette use time information, the e-cigarette use location information, and the smoking device model information, and then combine the e-cigarette use time information and the e-cigarette use location information And the smoking device model information is uploaded to the server to track the flow of the electronic cigarette 30 and the usage of the electronic cigarette 30 and the smoking device 10, and effectively control the inventory.
  • this embodiment also provides specific structures of the smoking set 10 and the electronic cigarette 30.
  • FIG. 2 is a schematic structural diagram of the smoking set 10 provided in the first embodiment of the present application.
  • the smoking set 10 may include a housing 11, a power supply 12, a control unit 13, The heating unit 14, the scanning unit 40 and the transfer unit (not shown in the figure).
  • the power supply 12, the control unit 13 and the heating unit 14 are all arranged in the housing 11 and electrically connected in sequence.
  • the scanning unit 40 is disposed in the housing 11 and connected to the control unit 13.
  • the transmission unit is disposed in the housing 11 and connected to the scanning unit 40.
  • An end of the housing 11 close to the heating unit 14 is provided with a smoke inlet for inserting the electronic cigarette 30.
  • the scanning unit 40 is configured to scan and read the identifier on the electronic cigarette 30 inserted into the cigarette inlet to obtain identifier data.
  • the transmission unit is configured to transmit the identifier data to the smart device 20.
  • the control unit 13 is configured to control the scanning unit 40 to scan and read the identifier on the electronic cigarette 30 when the electronic cigarette 30 is inserted into the smoking set 10, and control the heating state of the heating unit 14 according to the identification information fed back by the smart device 20.
  • the identification information includes the authenticity identification result of the electronic cigarette.
  • the smoking set 10 can be an existing smoking set with the same function, or a self-designed smoking set 10 structure.
  • the power supply 12 can be a cylindrical battery cell;
  • the control unit 13 is a controller or a control chip;
  • the heating unit 14 can be a ceramic chip heating core, a cylindrical needle heating core or a heating ring heating core, wherein the cylindrical needle heating core is cylindrical ,
  • the top is a needle-shaped cone, the cylindrical needle heating core is inserted into the electronic cigarette 30 to heat the electronic cigarette 30 (see Figure 2 for built-in heating), the heating ring heating core is ring-shaped, and the electronic cigarette 30 is inserted into Heating is carried out in the heating ring heating core (that is, external heating).
  • the scanning unit 40 may include a two-dimensional code scanning unit.
  • the scanning range of the scanning unit 40 may cover at least the area occupied by the two identifiers.
  • multiple identifiers can be provided on the outer packaging of the electronic cigarette 30, and the multiple identifiers are arranged in a ring around the outer packaging.
  • the shape and size of the scanning unit 40 can be designed according to the size and spacing of the identifiers.
  • the electronic cigarette 30 is The identifiers can be scanned. Therefore, the alignment operation when the user inserts the electronic cigarette 30 can be omitted, which is convenient for the user to operate.
  • the scanning unit 40 is arranged on the inner wall of the housing 11 and is arranged in a circle around the inner wall of the housing 11. At this time, no matter how many identifiers are set, the scanning unit 40 can scan a complete identifier, and then read the information of the identifier, so as to realize the authenticity identification of the electronic cigarette 30.
  • the transmission unit may include a Bluetooth module or a WIFI module.
  • the transmission unit may be arranged on the inner wall of the housing 11 and connected to the scanning unit 40 through a line.
  • the transmission unit can also be integrated in the control unit 13 and connect the scanning unit 40 and the control unit 13 at the same time, which can not only realize the direct communication between the scanning unit 40 and the smart device 20, but also realize the direct communication between the control unit 13 and the smart device 20.
  • the smoking set 10 may have multiple heating modes matching different electronic cigarette models. In this way, the heating temperature of the electronic cigarette 30 of different models can be intelligently matched, and the electronic cigarette 30 can be intelligently heated.
  • the scanning unit 40 can be directly connected to the transmission unit.
  • the identifier read by the scanning unit 40 can be directly transmitted to the smart device 20 through the transmission unit; or, the scanning unit 40 can be directly transmitted to the smart device 20 through the control unit 13
  • the unit is connected.
  • the control unit 13 is also used to convert the identifier read by the scanning unit 40 into an identifier data stream, and transmit the identifier data stream to the smart device 20 through the transmission unit.
  • FIG. 3 is a schematic structural diagram of the electronic cigarette provided in Embodiment 1 of the present application.
  • the electronic cigarette 30 is inserted into the outer package 31 of the smoking set 10
  • Each identifier 50 records the production date information, manufacturer information, and electronic cigarette model information of the electronic cigarette.
  • the scanning unit 40 on the smoking set 20 scans and reads the identifier on the outer package 31 of the electronic cigarette 30, and transmits it to the smart device 20.
  • the smart device 20 decodes the identifier, analyzes the production date information, manufacturer information, and e-cigarette model information of the e-cigarette, and then compares the e-cigarette production date information, manufacturer information, and e-cigarette model information , In order to obtain identification information, so as to identify the authenticity of the electronic cigarette.
  • FIG. 3 only schematically shows an implementable electronic cigarette structure.
  • the electronic cigarette 30 may include an outer package 31, which is arranged on the outer package 31 and arranged in a row around the outer package 31. With multiple identifiers 50, the electronic cigarette 30 is divided into a tobacco section 32, a cavity diversion section 33, and a filter section 34 from one end to the other.
  • FIG. 4 is a schematic structural diagram of another electronic cigarette provided by Embodiment 1 of the present application. Referring to FIG. 4, the outer package 31 can be provided with two circles of identifiers to ensure that the scanning unit 40 scans at least one complete identifier 50.
  • the identifier 50 may include a miniature two-dimensional code.
  • the outer package 31 may be an electronic cigarette paper, and a laser may be used to print a micro QR code on the electronic cigarette paper.
  • the micro QR code can include 16-bit data, among which, 1-5 digits are the production date information of the electronic cigarette, 6-7 digits are the information of the electronic cigarette model, 8-9 digits are the sequence code (random code), and 10 digits are the Manufacturer information, 11-16 digits reserved.
  • the micro QR code can also be a clear code or a secret code.
  • the size of the micro QR code can be 0.1mm*0.1mm, 0.15mm*0.15mm, 0.2mm*0.2mm, 0.3mm*0.3mm, 0.5mm*0.5mm and 1.0 mm*1.0mm, etc.
  • the electronic cigarette 30 may be flat or square, thereby facilitating coding on the outer packaging of the electronic cigarette 30.
  • FIG. 5 is a flowchart of the method for identifying the authenticity of an electronic cigarette according to the second embodiment of the present application.
  • This embodiment may be suitable for identifying the authenticity of an electronic cigarette and avoiding heating fake cigarettes, and is particularly suitable for a heat-not-burn type electronic cigarette.
  • the method may be executed by an electronic cigarette authenticity identification device, which may be implemented in at least one of software and hardware, and the device may be configured in the smoking set of the electronic cigarette authenticity identification system provided in the embodiment of the present application. As shown in Figure 5, the method may specifically include:
  • Step 110 When the electronic cigarette 30 is inserted into the smoking set 10, the scanning unit 40 inside the smoking set 10 scans and reads the identifier 50 on the electronic cigarette 30 to obtain identifier data.
  • the electronic cigarette 30 may be a cartridge containing e-liquid, or a solid cigarette.
  • the identifier 50 records the production date information, manufacturer information, and electronic cigarette model information of the electronic cigarette.
  • the identifier 50 may be a two-dimensional code, a barcode, a magnetic strip that can be non-contacted, and the like.
  • the scanning unit 40 may be a two-dimensional code scanning unit, a barcode scanning unit, and a magnetic strip scanning unit, respectively.
  • the identifier 50 may be a miniature two-dimensional code.
  • Step 120 Transmit the identifier data to the smart device 20.
  • the smart device 20 may be a mobile phone, a tablet computer, a computer, a wearable device, and the like.
  • the identifier data can be transmitted to the smart device 20 in a wired or wireless manner. Exemplarily, a Bluetooth connection or WIFI connection with the smart device 20 may be established, and the identifier data may be transmitted to the smart device 20 via Bluetooth or WIFI.
  • the identifier data may be an identifier read by the scanning unit 40, or may be an identifier data stream that the identifier 50 is converted into.
  • Step 130 Control the heating state of the smoking set 10 according to the authentication information fed back by the smart device 20.
  • the identification information includes the authenticity identification result of the electronic cigarette.
  • the heating state may include heating, no heating, and in a specific heating mode.
  • the specific heating mode may be a heating mode that matches the model of the electronic cigarette, and different heating states are selected according to the identification information fed back by the smart device 20.
  • FIG. 6 is a specific flowchart of the method for authenticating an electronic cigarette according to the second embodiment of the application.
  • this solution further optimizes the heating state of the smoking set according to the identification information fed back by the smart device 20: when the authenticity verification result of the electronic cigarette indicates that the electronic cigarette 30 is real smoke, the electronic cigarette 30 is heated ; When the authenticity verification result of the electronic cigarette indicates that the electronic cigarette 30 is a fake cigarette, the heating operation is not performed.
  • this method specifically includes:
  • Step 210 When the electronic cigarette 30 is inserted into the smoking set 10, the scanning unit 40 inside the smoking set 10 scans and reads the identifier on the electronic cigarette to obtain identifier data.
  • Step 220 Transmit the identifier data to the smart device 20.
  • Step 230 Receive authentication information fed back by the smart device 20.
  • Step 240 Determine whether the electronic cigarette 30 is a genuine cigarette according to the authenticity verification result of the electronic cigarette.
  • step 250 is executed; when the authenticity verification result of the electronic cigarette indicates that the electronic cigarette 30 is a fake cigarette, step 260 is executed.
  • Step 250 Heating the electronic cigarette 30.
  • the user can be reminded that the electronic cigarette 30 is a real cigarette through vibration, LED flashing, or voice, and can be used.
  • the identification information may also include the information of the e-cigarette model recorded by the identifier; at this time, according to the corresponding relationship between the heating mode and the e-cigarette model, the heating mode that matches the e-cigarette model can be selected for the e-cigarette 30 heating.
  • the intelligent matching of the heating temperature of the electronic cigarette 30 of different models is realized, and the electronic cigarette 30 is intelligently heated, thereby ensuring the taste of the electronic cigarette 30.
  • Step 260 No heating operation is performed.
  • the heating unit can be automatically locked and the electronic cigarette 30 is not heated, thereby avoiding the use of fake cigarettes.
  • an alarm prompt such as vibration, LED flashing, or voice, can be issued to remind the user that the electronic cigarette 30 is a fake cigarette.
  • the fake cigarette information can also be uploaded, so that the authenticity of the electronic cigarette 30 can be identified later by comparing with the fake cigarette information.
  • the technical solution of this embodiment scans and reads the identifier on the electronic cigarette to obtain identifier data, transmits the identifier data to the smart device 20, and controls the heating state of the smoking set 10 according to the identification information fed back by the smart device 20,
  • the problem that the authenticity of the electronic cigarette 30 cannot be recognized is solved, the authenticity of the electronic cigarette 30 is recognized, and the use of fake cigarettes can be prevented.
  • Fig. 7 is a flow chart of the method for identifying the authenticity of an electronic cigarette according to the third embodiment of the present application.
  • This embodiment is suitable for identifying the authenticity of an electronic cigarette and avoiding heating fake cigarettes, and is particularly suitable for heating non-combustible electronic cigarettes.
  • the method can be executed by an electronic cigarette authenticity identification device, which can be implemented in at least one of software and hardware, and the device can be configured in the smart device of the electronic cigarette authenticity identification system provided in the embodiment of the present application, for example Terminal devices.
  • Terminal devices include mobile terminals, specifically including mobile phones, tablet computers, computers, and wearable devices. As shown in Figure 7, the method may specifically include:
  • Step 310 Receive the identifier data transmitted by the smoking device 10.
  • the identifier 50 corresponding to the identifier data is scanned and read by the scanning unit 40 provided inside the smoking device 10.
  • the identifier data can be the identifier 50 read by the scanning unit 40, or it can be the conversion of the identifier 50.
  • the identifier records the production date information of the electronic cigarette, the information of the manufacturer and the information of the electronic cigarette model.
  • the identifier 50 may be a two-dimensional code, a barcode, a non-contact identification magnetic strip, etc.
  • the scanning unit 40 may be a two-dimensional code scanning unit, a barcode scanning unit, and a magnetic strip scanning unit, respectively.
  • the identifier 50 uses a miniature two-dimensional code.
  • the identifier data can be received in a wired or wireless manner. For example, a Bluetooth connection or a WIFI connection with the smoking set 10 can be established, and the identifier data can be received through Bluetooth or WIFI.
  • Step 320 Decode the identifier data.
  • Step 330 Perform authenticity authentication on the decoded identifier data to obtain authentication information.
  • the cloud big data can be accessed, and the identification information can be obtained by comparing the decoded identifier with the e-cigarette information in the cloud big data.
  • the production date information, manufacturer information, and electronic cigarette model information of the electronic cigarette recorded by the identifier can be compared with the basic information corresponding to the real cigarette uploaded to the cloud. If any one of the manufacturer information and the electronic cigarette model information is different, the electronic cigarette 30 to be used is identified as a fake cigarette, otherwise it is a real cigarette.
  • Step 340 Feed back the identification information to the smoking set 10.
  • the identification information includes the authenticity identification result of the electronic cigarette.
  • the identification information is fed back to the smoking set 10, so that the smoking set controls the heating state of the smoking set 10 according to the identification information, thereby ensuring that only real smoke is heated.
  • the technical solution of this embodiment is to receive the identifier data transmitted by the smoking device 10, decode the identifier data, and then authenticate the authenticity of the decoded identifier data to obtain the authentication information, and feed the authentication information back to the smoking device 10.
  • the problem of the inability to identify the authenticity of the electronic cigarette is solved, the authenticity of the electronic cigarette is recognized, and the use of fake cigarettes can be prevented.
  • Fig. 8 is a flowchart of a method for authenticating an electronic cigarette according to a fourth embodiment of the present application.
  • this method specifically includes:
  • Step 410 Receive the identifier data transmitted by the smoking device 10.
  • Step 420 Decode the identifier data.
  • Step 430 Perform authenticity verification on the decoded identifier data to obtain the verification result.
  • Step 440 Feed back the identification information to the smoking set 10.
  • Step 450 Upload the usage information to the server.
  • the use information includes e-cigarette use time information, e-cigarette use location information, and smoking appliance model information.
  • the smart device 20 has a clock function and a positioning function.
  • the time recorded by the smart device 20 is the e-cigarette use time.
  • the location where the smart device 20 locates is the electronic cigarette.
  • the smart device 20 retains the smoking device model information of the smoking device 10.
  • the smart device 20 when the smart device 20 receives the identifier data transmitted by the smoking device 10, it can generate the e-cigarette use time information, the e-cigarette use location information, and the smoking device model information, and then combine the e-cigarette use time information and the e-cigarette use location information
  • the model information of the smoking device is uploaded to the server to track the flow of the electronic cigarette 30 and the usage of the electronic cigarette 20 and the smoking device 10, and effectively control the inventory.
  • step 450 does not limit the execution order of step 450, and the operation of step 450 only needs to be performed after receiving the identifier data transmitted by the smoking device 10.
  • the flow direction of the e-cigarette 30 and the use of the e-cigarette 30 and the smoking set 10 can be understood in real time, and the inventory can be effectively controlled .
  • Fig. 9 is a structural block diagram of an electronic cigarette authenticity identification device provided in the fifth embodiment of the present application. This embodiment may be suitable for realizing the authenticity identification of an electronic cigarette.
  • the electronic cigarette authenticity identification device provided in the embodiment of the application can execute the electronic cigarette authenticity identification method provided in the second embodiment of the application, and has the functional modules and beneficial effects corresponding to the execution method.
  • the electronic cigarette authenticity identification device provided in this embodiment can be applied to the electronic cigarette authenticity identification system provided by the embodiment of this application. As shown in FIG. 9, the electronic cigarette authenticity identification device includes an identifier reading module 101, an identifier Symbol transmission module 102 and heating control module 103.
  • the identifier reading module 101 is configured to scan and read the identifier 50 on the electronic cigarette 30 through the scanning unit 40 inside the smoking device 10 when the electronic cigarette 30 is inserted into the smoking device 10.
  • the identifier transmission module 102 is configured to transmit identifier data to the smart device 20.
  • the heating control module 103 is configured to control the heating state of the smoking set 10 according to the authentication information fed back by the smart device 20, where the authentication information includes the authenticity authentication result of the electronic cigarette.
  • the heating control module 103 may include a first heating control unit and a second heating control unit.
  • the first heating control unit is used for heating the electronic cigarette 30 when the authenticity verification result of the electronic cigarette indicates that the electronic cigarette 30 is genuine
  • the second heating control unit is used for heating the electronic cigarette 30 when the authenticity verification result of the electronic cigarette indicates that the electronic cigarette 30 is fake During smoke, no heating operation is performed.
  • the first heating control unit may be specifically configured to select a heating mode matching the electronic cigarette model to heat the electronic cigarette 30 according to the corresponding relationship between the heating mode and the electronic cigarette model.
  • the electronic cigarette authenticity identification device provided in this embodiment can execute the electronic cigarette authenticity identification method provided in the second embodiment of the application, and has the corresponding functional modules and beneficial effects for the execution method.
  • the second embodiment please refer to the second embodiment.
  • FIG. 10 is a structural block diagram of an electronic cigarette authenticity identification device provided in the sixth embodiment of the present application. This embodiment may be suitable for realizing the authenticity identification of an electronic cigarette.
  • the electronic cigarette authenticity identification device provided in the embodiment of the present application can execute the electronic cigarette authenticity identification method provided in the third and fourth embodiments of the present application, and has corresponding functional modules and beneficial effects for the execution method.
  • the electronic cigarette authenticity identification device provided in this embodiment can be applied to the electronic cigarette authenticity identification system provided by the embodiment of this application.
  • the electronic cigarette authenticity identification device includes an identifier receiving module 201, an identifier The decoding module 202, the identifier identification module 203, and the identification information feedback module 204.
  • the identifier receiving module 201 is configured to receive the identifier data transmitted by the smoking device 10, wherein the identifier 50 corresponding to the identifier data is scanned and read by the scanning unit 40 provided inside the smoking device 10.
  • the identifier decoding module 202 is configured to decode identifier data.
  • the identifier authentication module 203 is configured to perform authenticity authentication on the decoded identifier data to obtain authentication information.
  • the authentication information feedback module 204 is configured to feed the authentication information back to the smoking appliance 10, where the authentication information includes the authenticity authentication result of the electronic cigarette.
  • the identifier identification module 203 is specifically configured to access cloud big data, and obtain identification information by comparing the decoded identifier data with the electronic cigarette information in the cloud big data.
  • the electronic cigarette authenticity identification device provided in this embodiment further includes an information uploading module for uploading usage information to the server, where the usage information includes information on the time of use of the electronic cigarette, information on the location of the electronic cigarette, and the model of the smoking device. information.
  • the electronic cigarette authenticity identification device provided in this embodiment can execute the electronic cigarette authenticity identification methods provided in the third and fourth embodiments of this application, and has corresponding functional modules and beneficial effects for the execution method. For content not described in detail in this embodiment, reference may be made to the third and fourth embodiments.
  • Fig. 11 is a schematic structural diagram of a smoking set provided in Example 7 of the present application.
  • Figure 11 shows a block diagram of an exemplary smoking article 512 suitable for implementing embodiments of the present application.
  • the smoking device 512 shown in FIG. 11 is only an example, and should not bring any limitation to the function and scope of use of the embodiments of the present application.
  • the smoking set 512 is represented in the form of a general-purpose device.
  • the components of the smoking device 512 may include but are not limited to: at least one processor 516, a storage device 528, and a bus 518 connecting different system components (including the storage device 528 and the processor 516).
  • the bus 518 represents at least one of several types of bus structures, including a storage device bus or a storage device controller, a peripheral bus, a graphics acceleration port, a processor, or a local bus using any bus structure among multiple bus structures.
  • these architectures include but are not limited to Industry Standard Architecture (Subversive Alliance, ISA) bus, Micro Channel Architecture (MAC) bus, enhanced ISA bus, Video Electronics Standards Association (Video Electronics Standards) Association, VESA) local bus and Peripheral Component Interconnect (PCI) bus.
  • the smoking article 512 typically includes a variety of computer system readable media. These computer system readable media can be any available media that can be accessed by the smoking article 512, including volatile and non-volatile media, removable and non-removable media.
  • the storage device 528 may include a computer system readable medium in the form of a volatile memory, such as at least one of a random access memory (RAM) 530 and a cache memory 532.
  • the smoking article 512 may further include other removable/non-removable, volatile/non-volatile computer system storage media.
  • the storage system 534 may be used to read and write non-removable, non-volatile magnetic media (not shown in FIG. 11, usually referred to as a "hard drive").
  • a disk drive for reading and writing to a removable non-volatile disk (such as a "floppy disk”) and a removable non-volatile disk such as a compact disc (Compact Disc Read) can be provided.
  • each drive can be connected to the bus 518 through at least one data medium interface.
  • the storage device 528 may include at least one program product, and the program product has a set (for example, at least one) program modules configured to perform the functions of each embodiment of the present application.
  • a program/utility tool 540 having a set of (at least one) program module 542 may be stored in, for example, the storage device 528.
  • Such program module 542 includes but is not limited to an operating system, at least one application program, other program modules, and program data, Each of these examples or some combination may include the implementation of a network environment.
  • the program module 542 usually executes at least one of the functions and methods in the embodiments described in this application.
  • the smoking device 512 can also communicate with at least one external device 514 (such as a keyboard, a pointing terminal, a display 524, etc.), and can also communicate with at least one terminal that allows a user to interact with the smoking device 512, and communicate with the smoking device 512. At least one of any terminal (such as a network card, modem, etc.) communication through which at least one other computing terminal communicates. Such communication can be performed through an input/output (I/O) interface 522.
  • the smoking article 512 may also communicate with at least one network (for example, a local area network (LAN), a wide area network (WAN), and a public network, such as the Internet) through the network adapter 520. As shown in FIG.
  • the network adapter 520 communicates with other modules of the smoking set 512 through the bus 518. It should be understood that although not shown in the figure, at least one of other hardware and software modules can be used in conjunction with the smoking set 512, including but not limited to: microcode, terminal drives, redundant processors, external disk drive arrays, disk arrays ( Redundant Arrays of Independent Disks, RAID) systems, tape drives, and data backup storage systems.
  • the processor 516 executes each functional application and data processing by running the program stored in the storage device 528, for example, to realize the electronic cigarette authenticity identification method provided in the embodiment of the present application.
  • the method includes the following steps:
  • the heating state of the smoking appliance is controlled according to the authentication information fed back by the smart device, where the authentication information includes the authenticity authentication result of the electronic cigarette.
  • the eighth embodiment of the present application is a smart device for executing the method for authenticating an electronic cigarette provided in the third embodiment of the present application.
  • the smart device includes: at least one processor; a storage device for storing At least one program; when at least one program is executed by at least one processor, at least one processor implements the method for identifying the authenticity of an electronic cigarette according to the third embodiment: receiving the identifier data transmitted by the smoking device, where the identifier corresponding to the identifier data The symbol is scanned and read by the scanning unit set inside the smoking device; the identifier data is decoded; the authenticity of the decoded identifier data is verified to obtain the identification information; the identification information is fed back to the smoking device, where the identification information includes electronic Result of cigarette authenticity identification.
  • the identification information includes electronic Result of cigarette authenticity identification.
  • the ninth embodiment of the present application also provides a computer-readable storage medium on which a computer program is stored.
  • the computer program is executed by a processor, the method for authenticating the electronic cigarette as provided in the second embodiment of the present application is implemented.
  • the heating state of the smoking appliance is controlled according to the authentication information fed back by the smart device, where the authentication information includes the authenticity authentication result of the electronic cigarette.
  • the method for authenticating the electronic cigarette as provided in the third embodiment of the present application is implemented, and the method includes:
  • the identification information is fed back to the smoking appliance, where the identification information includes the authenticity identification result of the electronic cigarette.
  • the computer storage medium of the embodiment of the present application may adopt any combination of at least one computer-readable medium.
  • the computer-readable medium may be a computer-readable signal medium or a computer-readable storage medium.
  • the computer-readable storage medium may be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device, or device, or a combination of any of the above. More specific examples of computer-readable storage media (non-exhaustive list) include: electrical connection with at least one wire, portable computer disk, hard disk, random access memory (RAM), read only memory (ROM), erasable Type programmable read only memory (EPROM or flash memory), optical fiber, portable compact disk read only memory (CD-ROM), optical storage device, magnetic storage device, or any suitable combination of the above.
  • the computer-readable storage medium can be any tangible medium that contains or stores a program, and the program can be used by or in combination with an instruction execution system, apparatus, or device.
  • the computer-readable signal medium may include a data signal propagated in baseband or as a part of a carrier wave, and computer-readable program code is carried therein. This propagated data signal can take many forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination of the foregoing.
  • the computer-readable signal medium may also be any computer-readable medium other than the computer-readable storage medium.
  • the computer-readable medium may send, propagate, or transmit the program for use by or in combination with the instruction execution system, apparatus, or device .
  • the program code contained on the computer-readable medium can be transmitted by any suitable medium, including but not limited to wireless, wire, optical cable, RF, etc., or any suitable combination of the above.
  • the computer program code used to perform the operations of this application can be written in at least one programming language or a combination thereof.
  • the programming language includes object-oriented programming languages—such as Java, Smalltalk, C++, and also conventional procedural programming languages. Programming language-such as "C" language or similar programming language.
  • the program code can be executed entirely on the user's computer, partly on the user's computer, executed as an independent software package, partly on the user's computer and partly executed on a remote computer, or entirely on the remote computer or terminal carried out.
  • the remote computer can be connected to the user's computer through any kind of network, including a local area network (LAN) or a wide area network (WAN), or it can be connected to an external computer (for example, using an Internet service provider to Connect via the Internet).
  • LAN local area network
  • WAN wide area network

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Abstract

一种电子烟真伪识别系统、方法、烟具、电子烟及存储介质。该电子烟真伪识别系统包括烟具(10)和智能设备(20),所述烟具(10)和所述智能设备(20)通信连接;所述烟具(10)设置为:在电子烟(30)插入所述烟具(10)时,通过所述烟具(10)内部的扫描单元扫描并读取所述电子烟(30)上的标识符以得到标识符数据,将所述标识符数据传输至所述智能设备(20),并根据所述智能设备(20)反馈的鉴定信息控制所述烟具(10)的加热状态,其中,所述鉴定信息包括电子烟(30)真伪鉴定结果;所述智能设备(20)设置为:接收所述标识符数据,对所述标识符数据进行解码,对解码后的标识符数据进行真伪鉴定以得到所述鉴定信息,并将所述鉴定信息反馈至所述烟具(10)。

Description

电子烟真伪识别系统、方法、烟具、电子烟及存储介质 技术领域
本申请涉及电子烟技术领域,例如涉及一种电子烟真伪识别系统、方法、烟具、电子烟及存储介质。
背景技术
电子烟是一种模仿香烟的电子产品,有着与香烟相似的烟雾、味道和感觉。近年来,用于戒烟和替代香烟的电子烟得到迅速推广使用。
然而,随着电子烟的推广使用,各种各样的假电子烟也相继出现,严重危害到了消费者的健康。
发明内容
本申请提出一种电子烟真伪识别系统、方法、烟具、电子烟及存储介质。
本申请实施例提供了一种电子烟真伪识别系统,包括烟具和智能设备,所述烟具和所述智能设备通信连接;
所述烟具设置为:在电子烟插入所述烟具时,通过所述烟具内部的扫描单元扫描并读取所述电子烟上的标识符以得到标识符数据,将所述标识符数据传输至所述智能设备,并根据所述智能设备反馈的鉴定信息控制所述烟具的加热状态,其中,所述鉴定信息包括电子烟真伪鉴定结果;
所述智能设备设置为:接收所述标识符数据,对所述标识符数据进行解码,对解码后的标识符数据进行真伪鉴定得到所述鉴定信息,并将所述鉴定信息反馈至所述烟具。
本申请实施例提供了一种烟具,包括:外壳、电源、控制单元、加热单元、扫描单元和传输单元;
其中,所述电源、所述控制单元和所述加热单元均设置于所述外壳内且依次电连接,所述扫描单元设置于所述外壳内且与所述控制单元连接,所述传输 单元设置于所述外壳内且与所述扫描单元连接,所述外壳靠近所述加热单元的一端设置有供电子烟插入的进烟口;
所述扫描单元设置为扫描并读取插入所述进烟口的电子烟上的标识符以得到标识符数据;
所述传输单元设置为将所述标识符数据传输至所述智能设备;
所述控制单元设置为在所述电子烟插入所述烟具时,控制所述扫描单元扫描并读取所述电子烟上的标识符,并根据所述智能设备反馈的鉴定信息控制所述加热单元的加热状态,其中,所述鉴定信息包括电子烟真伪鉴定结果。
本申请实施例提供了一种电子烟,所述电子烟插入到所述烟具内的外包装上设置有至少一个供所述烟具的扫描单元扫描的标识符,以使得所述电子烟插入所述烟具时,所述烟具的扫描单元执行扫描并读取所述电子烟上的标识符以得到标识符数据的操作;
其中,每个所述标识符记录有所述电子烟的生产日期信息、生产产商信息和电子烟型号的信息。
本申请实施例提供了一种电子烟真伪识别方法,应用于本申请实施例的电子烟真伪识别系统中,包括:
在电子烟插入烟具时,通过所述烟具内部的扫描单元扫描并读取所述电子烟上的标识符以得到标识符数据;
将所述标识符数据传输至所述智能设备;
根据所述智能设备反馈的鉴定信息控制所述烟具的加热状态,其中,所述鉴定信息包括电子烟真伪鉴定结果。
本申请实施例提供了一种电子烟真伪识别方法,包括:
接收烟具传输的标识符数据,其中,所述标识符数据对应的标识符由设置于所述烟具内部的扫描单元扫描并读取;
对所述标识符数据进行解码;
对解码后的标识符数据进行真伪鉴定以得到鉴定信息;
将所述鉴定信息反馈至所述烟具,其中,所述鉴定信息包括电子烟真伪鉴定结果。
本申请实施例提供了一种电子烟真伪识别装置,包括:
标识符读取模块,设置为在电子烟插入烟具时,通过所述烟具内部的扫描单元扫描并读取所述电子烟上的标识符以得到标识符数据;
标识符传输模块,设置为将所述标识符数据传输至智能设备;
加热控制模块,设置为根据所述智能设备反馈的鉴定信息控制所述烟具的加热状态,其中,所述鉴定信息包括电子烟真伪鉴定结果。
本申请实施例提供了一种电子烟真伪识别装置,应用于本申请实施例的电子烟真伪识别系统中,包括:
标识符接收模块,设置为接收烟具传输的标识符数据,其中,所述标识符数据对应的标识符由设置于所述烟具内部的扫描单元扫描并读取;
标识符解码模块,设置为对所述标识符数据进行解码以得到鉴定信息;
标识符鉴定模块,设置为对解码后的标识符数据进行真伪鉴定;
鉴定信息反馈模块,设置为将所述鉴定信息反馈至所述烟具,其中,所述鉴定信息包括电子烟真伪鉴定结果。
本申请实施例提供了一种烟具,包括:
至少一个处理器;
存储装置,用于存储至少一个程序;
当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现上述对应的电子烟真伪识别方法。
本申请实施例提供了一种智能设备,包括:
至少一个处理器;
存储装置,用于存储至少一个程序;
当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现上述对应的电子烟真伪识别方法。
本申请实施例提供了一种计算机可读存储介质,其上存储有计算机程序,所述计算机程序被处理器执行时实现上述对应的电子烟真伪识别方法。
本申请的有益效果是:本申请提供的技术方案,通过在电子烟外包装上设计标识符,同时在烟具内部设置对应的扫描单元,当电子烟插入到烟具内使用 时,扫描单元可扫描并读取电子烟上的标识符以得到标识符数据,并将标识符数据传输至外部的智能设备,智能设备对标识符进行解码以及真伪鉴定以得到鉴定信息,并将鉴定信息反馈至烟具,从而使烟具根据鉴定信息控制烟具的加热状态,进而实现对真烟加热,而不对假烟加热,不仅有效鉴定出了电子烟的真伪,而且避免了假烟的使用。
附图说明
图1是本申请实施例一提供的电子烟真伪识别系统的结构示意图;
图2是本申请实施例一提供的烟具的结构示意图;
图3是本申请实施例一提供的电子烟的结构示意图;
图4是本申请实施例一提供的另一种电子烟的结构示意图;
图5是本申请实施例二提供的电子烟真伪识别方法的流程图;
图6是本申请实施例二提供的电子烟真伪识别方法的具体流程图;
图7是本申请实施例三提供的电子烟真伪识别方法的流程图;
图8是本申请实施例四提供的电子烟真伪识别方法的流程图;
图9是本申请实施例五提供的电子烟真伪识别装置的结构框图;
图10是本申请实施例六提供的电子烟真伪识别装置的结构框图;
图11是本申请实施例七提供的烟具的结构示意图。
具体实施方式
下面结合附图并通过具体实施方式来进一步说明本申请的技术方案。
实施例一
图1是本申请实施例一提供的电子烟真伪识别系统的结构示意图。本实施例可适用于识别电子烟真伪以及避免加热假烟的情况,特别适用于加热不燃烧型电子烟。如图1所示,本实施例提供的电子烟真伪识别系统包括烟具10和智能设备20,烟具10和智能设备20通信连接。
烟具10设置为:在电子烟30插入烟具10时,通过烟具10内部的扫描单元40扫描并读取电子烟30上的标识符以得到标识符数据,将标识符数据传输 至智能设备20,并根据智能设备20反馈的鉴定信息控制烟具10的加热状态。鉴定信息包括电子烟真伪鉴定结果。
智能设备20设置为:接收上述标识符数据,对标识符数据进行解码,对解码后的标识符数据进行真伪鉴定以得到鉴定信息,并将鉴定信息反馈至烟具10。
智能设备20可以为手机、平板电脑、电脑以及可穿戴设备等。电子烟30可以为装有烟油的烟弹,也可以为固体烟支。
本实施例中,烟具10和智能设备20可采用有线或无线的方式进行通信连接。例如,烟具10和智能设备20可以采用蓝牙或WIFI进行连接,实现烟具10和智能设备20的双向通信。
另外,标识符可以为二维码、条形码以及可非接触式识别的磁条等,对应的,扫描单元40可分别为二维码扫描单元、条形码扫描单元以及磁条扫描单元。一实施例中,标识符可以采用微缩二维码,此时,扫描单元40可采用微缩型的二维码扫描单元,进而可利用烟具10内部已有的空间布设扫描单元40,避免对烟具10的内部空间结构进行重新设计,且防止烟具10的体积增大。
一实施例中,上述烟具10可独立使用,也可配合智能设备20使用。示例性的,烟具10可配置有独立的控制单元,当烟具10与智能设备20断开连接,或者无可连接的智能设备20时,使用者可单独使用烟具10仅实现对电子烟30的加热功能。当烟具10与智能设备20连接时,电子烟真伪识别系统的电子烟真伪识别功能可自动激活(也可由使用者开启),此时,烟具10和智能设备20的上述功能自动完成。具体的,在电子烟30插入烟具10时,扫描单元40自动扫描并读取电子烟30上的标识符以得到标识符数据,并将标识符数据传输至智能设备20;智能设备20在接收到标识符数据时,对标识符数据进行解码,再对解码后的标识符数据进行真伪鉴定以得到鉴定信息,并将鉴定信息反馈至烟具10;烟具10根据智能设备20反馈的鉴定信息控制烟具10的加热状态,即烟具10在根据鉴定信息确定电子烟30为真烟时,对电子烟30进行加热,电子烟30正常使用,而在根据鉴定信息确定电子烟30为假烟时,不执行加热操作,电子烟30无法使用。从而不仅有效鉴定出了电子烟的真伪,而且避免了假烟的使用。
需要说明的是,上述标识符数据可以为由扫描单元40读取到的标识符,也 可以为扫描单元40读取到的标识符经由烟具10内的控制单元处理得到的标识符数据流。即扫描单元40可以将读取到的标识符直接传输至智能设备20;或者扫描单元40可以先将读取到的标识符发送给烟具10的控制单元,控制单元将标识符转化成标识符数据流,再将标识符数据流传输至智能设备20。对此,本申请实施例不作限制。
本实施例的技术方案,通过在电子烟30外包装上设计标识符,同时在烟具10内部设置对应的扫描单元40,当电子烟30插入到烟具10内使用时,扫描单元40可扫描并读取电子烟30上的标识符以得到标识符数据,并将标识符数据传输至外部的智能设备20,智能设备20对标识符数据进行解码以及真伪鉴定得到鉴定信息,并将鉴定信息反馈至烟具10,从而使烟具10根据鉴定信息控制烟具10的加热状态,进而实现对真烟加热,而不对假烟加热,不仅有效鉴定出了电子烟30的真伪,而且避免了假烟的使用。
一实施例中,基于上述技术方案,在本实施例一方案中,鉴定信息还可以包括标识符记录的电子烟型号的信息。烟具10还可以设置为:在电子烟真伪鉴定结果表示电子烟30为真烟时,根据加热模式与电子烟型号的对应关系,选择与电子烟型号相匹配的加热模式对电子烟30进行加热。
考虑到不同型号的电子烟30的加热温度可能不同,即电子烟30存在与之匹配的加热温度,而采用不相匹配的温度对电子烟30进行加热,可能导致电子烟30的口感较差,因此,本实施例根据加热模式与电子烟型号的对应关系,选择与电子烟型号相匹配的加热模式对电子烟30进行加热,实现了对不同型号的电子烟30进行加热温度的智能匹配,进而保证了电子烟30的口感。具体的,关于加热模式与电子烟型号的对应关系,可预先统计多种型号的电子烟30所需的多种加热温度,根据多种加热温度设置烟具10具有多种与加热温度对应的加热模式,最后将加热模式与电子烟型号的对应关系预先存储到烟具10中。另外,关于加热模式与电子烟型号的对应关系,也可由智能设备20根据烟具10传输的电子烟型号的信息,获取与电子烟型号相匹配的加热模式,并将该加热模式加载至烟具10中。由此,烟具10根据加热模式与电子烟型号的对应关系,选择与电子烟型号的信息相匹配的加热模式对电子烟30进行加热,实现了对不同 型号的电子烟30进行加热温度的智能匹配,对电子烟30进行智能加热,进而保证了电子烟30的口感。
一实施例中,基于上述技术方案,在本实施例又一方案中,智能设备20还可以设置为:将使用信息上传至服务器。使用信息包括电子烟使用时间信息、电子烟使用地点信息和烟具型号信息。
示例性的,智能设备20具有时钟功能和定位功能,在接收到烟具10传输的标识符数据时,智能设备20记录的时间即为电子烟使用时间,此时智能设备20定位的地点即为电子烟使用地点,在烟具10与智能设备20建立通信连接时,智能设备20保留有烟具10的烟具型号信息。基于此,在智能设备20接收到烟具10传输的标识符数据时,即可生成电子烟使用时间信息、电子烟使用地点信息和烟具型号信息,进而将电子烟使用时间信息、电子烟使用地点信息和烟具型号信息上传至服务器,以追踪电子烟30的流向和电子烟30以及烟具10的使用情况,有效控制库存。
基于上述技术方案,本实施例还提供了烟具10和电子烟30的具体结构。
示例性的,在本实施例一具体方案中,图2是本申请实施例一提供的烟具10的结构示意图,如图2所示,该烟具10可以包括外壳11、电源12、控制单元13、加热单元14、扫描单元40和传输单元(图中未示出)。电源12、控制单元13和加热单元14均设置于外壳11内且依次电连接。扫描单元40设置于外壳11内且与控制单元13连接。传输单元设置于外壳11内且与扫描单元40连接。外壳11靠近加热单元14的一端设置有供电子烟30插入的进烟口。
扫描单元40设置为扫描并读取插入进烟口的电子烟30上的标识符以得到标识符数据。
传输单元设置为将标识符数据传输至智能设备20。
控制单元13设置为在电子烟30插入烟具10时,控制扫描单元40扫描并读取电子烟30上的标识符,并根据智能设备20反馈的鉴定信息控制加热单元14的加热状态。鉴定信息包括电子烟真伪鉴定结果。
该技术方案中,烟具10可以为现有的具有同种功能的烟具结构,也可以为自行设计的烟具10结构。电源12可以为圆柱形电芯;控制单元13为控制器或 控制芯片;加热单元14可以为陶瓷片加热芯、柱状针式加热芯或发热环式加热芯,其中,柱状针式加热芯圆柱状,顶部为针形锥体,柱状针式加热芯插入到电子烟30中对电子烟30进行加热(参见图2,即内置型加热),发热环式加热芯为环状,电子烟30插入到发热环式加热芯中进行加热(即外置型加热)。
一实施例中,扫描单元40可以包括二维码扫描单元。
一实施例中,扫描单元40的扫描范围可以至少覆盖两个标识符所占的区域。此时,电子烟30的外包装上可设置多个标识符,多个标识符绕外包装一圈呈环状排布。可根据标识符的尺寸及间距设计扫描单元40的形状及尺寸,当扫描单元40的扫描范围至少覆盖两个标识符所占的区域时,无论使用者如何将电子烟插30入到烟具10中,扫描单元40都可以扫描到一个完整的标识符,进而读取到标识符的信息,实现对电子烟30的真伪识别。由此,通过将电子烟30的外包装上的多个标识符呈环状排布以及将扫描单元40设置为环形中的至少一种方式,可以实现只要电子烟30插入烟具10后,电子烟30上的标识符都可以被扫描到。从而可省去使用者插入电子烟30时的对准操作,便于使用者操作。
进一步的,扫描单元40设置于外壳11的内壁上,且环绕外壳11的内壁一圈设置。此时,无论设置多少个标识符,扫描单元40都可以扫描到一个完整的标识符,进而读取到标识符的信息,实现对电子烟30的真伪识别。
一实施例中,传输单元可以包括蓝牙模块或WIFI模块。示例性的,传输单元可以设置于外壳11的内壁上,通过线路与扫描单元40连接。传输单元也可以集成于控制单元13中,同时连接扫描单元40和控制单元13,不仅可以实现扫描单元40与智能设备20的直接通信,还可以实现控制单元13与智能设备20的直接通信。
一实施例中,烟具10可以具有匹配不同电子烟型号的多种加热模式。由此,可对不同型号的电子烟30进行加热温度的智能匹配,对电子烟30进行智能加热。
上述烟具10结构中,扫描单元40可以与传输单元直接连接,此时,扫描单元40读取到的标识符通过传输单元可以直接传输至智能设备20;或者,扫描单元40通过控制单元13与传输单元连接,此时,控制单元13还用于将扫描单 元40读取到的标识符转换成标识符数据流,并通过传输单元将标识符数据流传输至智能设备20。
示例性的,在本实施例另一具体方案中,图3是本申请实施例一提供的电子烟的结构示意图,如图3所示,电子烟30插入到烟具10内的外包装31上设置有至少一个供烟具10的扫描单元40扫描的标识符50,以使得电子烟30插入烟具10时,烟具10的扫描单元40执行扫描并读取电子烟30上的标识符以得到标识符数据的操作。每个标识符50记录有电子烟的生产日期信息、生产产商信息和电子烟型号的信息。
相应的,在电子烟30插入到烟具10时,烟具20上的扫描单元40扫描并读取到电子烟30外包装31上的标识符,并将其传输至智能设备20。智能设备20对标识符进行解码,解析出电子烟的生产日期信息、生产产商信息和电子烟型号的信息,然后对电子烟的生产日期信息、生产产商信息和电子烟型号的信息进行对比,以得到鉴定信息,从而鉴定电子烟的真伪。
可以理解的是,图3仅示意性地示出了一种可实施的电子烟结构,参考图3,该电子烟30可包括外包装31,设置于外包装31上绕外包装31一圈排布的多个标识符50,电子烟30从一端到另一端依次划分为烟草段32、空腔导流段33和过滤嘴段34。另外,图4是本申请实施例一提供的另一种电子烟的结构示意图,参考图4,外包装31可设置两圈标识符,以保证扫描单元40至少扫描到一个完整的标识符50。
一实施例中,标识符50可以包括微缩二维码。外包装31可以为电子烟卷烟纸,可使用激光在电子烟卷烟纸上打印出微缩二维码。微缩二维码可包括16位数据,其中,1-5位为电子烟的生产日期信息,6-7位为电子烟型号的信息,8-9位为顺序码(随机编码),10位为生产产商信息,11-16位预留。微缩二维码还可以为明码或暗码,微缩二维码的尺寸可以为0.1mm*0.1mm、0.15mm*0.15mm、0.2mm*0.2mm、0.3mm*0.3mm、0.5mm*0.5mm以及1.0mm*1.0mm等。
一实施例中,电子烟30可以呈扁平型或方形,由此,便于在电子烟30外包装上进行打码。
实施例二
图5是本申请实施例二提供的电子烟真伪识别方法的流程图,本实施例可适用于识别电子烟真伪以及避免加热假烟的情况,特别适用于加热不燃烧型电子烟。该方法可以由电子烟真伪识别装置执行,该装置可以采用软件和硬件中的至少一种方式实现,该装置可配置于本申请实施例提供的电子烟真伪识别系统的烟具中。如图5所示,该方法具体可以包括:
步骤110、在电子烟30插入烟具10时,通过烟具10内部的扫描单元40扫描并读取电子烟30上的标识符50以得到标识符数据。
其中,电子烟30可以为装有烟油的烟弹,也可以为固体烟支。标识符50记录有电子烟的生产日期信息、生产产商信息和电子烟型号的信息。标识符50可以为二维码、条形码以及可非接触式识别的磁条等,对应的,扫描单元40可分别为二维码扫描单元、条形码扫描单元以及磁条扫描单元。一实施例中,标识符50可以采用微缩二维码。
步骤120、将标识符数据传输至智能设备20。
智能设备20可以为手机、平板电脑、电脑以及可穿戴设备等。可采用有线或无线的方式将标识符数据传输至智能设备20。示例性的,可建立与智能设备20的蓝牙连接或WIFI连接,通过蓝牙或WIFI将标识符数据传输至智能设备20。其中标识符数据可以为扫描单元40读取到的标识符,也可以为将该标识符50转化成的标识符数据流。
步骤130、根据智能设备20反馈的鉴定信息控制烟具10的加热状态。
鉴定信息包括电子烟真伪鉴定结果。加热状态可包括加热、不加热以及以特定加热模式。特定加热模式可以为与电子烟型号相匹配的加热模式,根据智能设备20反馈的鉴定信息选择不同的加热状态。
具体的,图6为本申请实施例二提供的电子烟真伪识别方法的具体流程图。本方案在上述技术方案的基础上,进一步优化了上述根据智能设备20反馈的鉴定信息控制烟具的加热状态:在电子烟真伪鉴定结果表示电子烟30为真烟时,对电子烟30进行加热;在电子烟真伪鉴定结果表示电子烟30为假烟时,不执 行加热操作。相应的,如图6所示,本方法具体包括:
步骤210、在电子烟30插入烟具10时,通过烟具10内部的扫描单元40扫描并读取电子烟上的标识符以得到标识符数据。
步骤220、将标识符数据传输至智能设备20。
步骤230、接收智能设备20反馈的鉴定信息。
步骤240、根据电子烟真伪鉴定结果,确定电子烟30是否为真烟。
在电子烟真伪鉴定结果表示电子烟30为真烟时,执行步骤250;在电子烟真伪鉴定结果表示电子烟30为假烟时,执行步骤260。
步骤250、对电子烟30进行加热。
此时,可通过振动、LED闪烁或语音等提示使用者该电子烟30为真烟,可以使用。
一实施例中,鉴定信息还可以包括标识符记录的电子烟型号的信息;此时,可根据加热模式与电子烟型号的对应关系,选择与电子烟型号相匹配的加热模式对电子烟30进行加热。实现了对不同型号的电子烟30进行加热温度的智能匹配,对电子烟30进行智能加热,进而保证了电子烟30的口感。
步骤260、不执行加热操作。
此时,可自动锁定加热单元,不对电子烟30进行加热,从而避免使用假烟。同时可发出报警提示,如振动、LED闪烁或语音等,以提醒使用者该电子烟30为假烟。另外,还可以上传假烟信息,以便后续还可通过与假烟信息进行对比来识别电子烟30的真伪。
本实施例的技术方案,通过扫描并读取电子烟上的标识符以得到标识符数据,将标识符数据传输至智能设备20,并根据智能设备20反馈的鉴定信息控制烟具10的加热状态,解决了无法识别电子烟30真伪的问题,实现了电子烟30真伪的识别,且可防止使用假烟。
实施例三
图7是本申请实施例三提供的电子烟真伪识别方法的流程图,本实施例可适用于识别电子烟真伪以及避免加热假烟的情况,特别适用于加热不燃烧型电 子烟。该方法可以由电子烟真伪识别装置执行,该装置可以采用软件和硬件中的至少一种方式实现,该装置可配置于本申请实施例提供的电子烟真伪识别系统的智能设备中,例如终端设备,典型的终端设备包括移动终端,具体包括手机、平板电脑、电脑以及可穿戴设备等。如图7所示,该方法具体可以包括:
步骤310、接收烟具10传输的标识符数据。
其中,标识符数据对应的标识符50由设置于烟具10内部的扫描单元40扫描并读取,标识符数据可以为扫描单元40读取到的标识符50,也可以为将该标识符50转化成的标识符数据流。标识符记录有电子烟的生产日期信息、生产产商信息和电子烟型号的信息。标识符50可以为二维码、条形码以及可非接触式识别的磁条等,对应的,扫描单元40可分别为二维码扫描单元、条形码扫描单元以及磁条扫描单元,一实施例中,标识符50采用微缩二维码。可采用有线或无线的方式接收标识符数据,示例性的,可建立与烟具10的蓝牙连接或WIFI连接,通过蓝牙或WIFI接收标识符数据。
步骤320、对标识符数据进行解码。
步骤330、对解码后的标识符数据进行真伪鉴定以得到鉴定信息。
可访问云端大数据,通过将解码后的标识符与云端大数据中的电子烟信息进行对比,以得到鉴定信息。示例性的,可将标识符记录的电子烟的生产日期信息、生产产商信息和电子烟型号的信息与上传到云端的真烟对应的基本信息分别进行对比,电子烟的生产日期信息、生产产商信息和电子烟型号的信息中的任意一种不相同,则将即将使用的电子烟30鉴定为假烟,否则为真烟。
步骤340、将鉴定信息反馈至烟具10。
其中,鉴定信息包括电子烟真伪鉴定结果。将鉴定信息反馈至烟具10,以使烟具根据鉴定信息控制烟具10的加热状态,从而保证只对真烟进行加热。
本实施例的技术方案,通过接收烟具10传输的标识符数据,对标识符数据进行解码,再对解码后的标识符数据进行真伪鉴定以得到鉴定信息,并将鉴定信息反馈至烟具10,解决了无法识别电子烟真伪的问题,实现了电子烟真伪的识别,且可防止使用假烟。
实施例四
图8是本申请实施例四提供的电子烟真伪识别方法的流程图。本实施例在上述实施例三的基础上,增加了将使用信息上传至服务器。相应的,如图8所示,本方法具体包括:
步骤410、接收烟具10传输的标识符数据。
步骤420、对标识符数据进行解码。
步骤430、对解码后的标识符数据进行真伪鉴定以得到鉴定结果。
步骤440、将鉴定信息反馈至烟具10。
步骤450、将使用信息上传至服务器。
其中,使用信息包括电子烟使用时间信息、电子烟使用地点信息和烟具型号信息。
示例性的,智能设备20具有时钟功能和定位功能,在接收到烟具10传输的标识符数据时,智能设备20记录的时间即为电子烟使用时间,此时智能设备20定位的地点即为电子烟使用地点,在烟具10与智能设备20建立通信连接时,智能设备20保留有烟具10的烟具型号信息。基于此,在智能设备20接收到烟具10传输的标识符数据时,即可生成电子烟使用时间信息、电子烟使用地点信息和烟具型号信息,进而将电子烟使用时间信息、电子烟使用地点信息和烟具型号信息上传至服务器,以追踪电子烟30的流向和电子烟20以及烟具10的使用情况,有效控制库存。
需要说明的是,本实施例对步骤450的执行顺序不作限制,对步骤450的操作只要在接收烟具10传输的标识符数据之后即可。
本实施例的技术方案,通过将电子烟使用时间信息、电子烟使用地点信息和烟具型号信息上传至服务器,可实时了解电子烟30的流向和电子烟30以及烟具10的使用情况,有效控制库存。
实施例五
图9是本申请实施例五提供的电子烟真伪识别装置的结构框图,本实施例可适用于实现电子烟真伪鉴定的情况。本申请实施例所提供的电子烟真伪识别 装置可执行本申请实施例二所提供的电子烟真伪识别方法,具备执行方法相应的功能模块和有益效果。
本实施例提供的电子烟真伪识别装置可应用于本申请实施例提供的电子烟真伪识别系统中,如图9所示,该电子烟真伪识别装置包括标识符读取模块101、标识符传输模块102和加热控制模块103。
标识符读取模块101,设置为在电子烟30插入烟具10时,通过烟具10内部的扫描单元40扫描并读取电子烟30上的标识符50。
标识符传输模块102,设置为将标识符数据传输至智能设备20。
加热控制模块103,设置为根据智能设备20反馈的鉴定信息控制烟具10的加热状态,其中,鉴定信息包括电子烟真伪鉴定结果。
一实施例中,上述加热控制模块103可包括第一加热控制单元和第二加热控制单元。第一加热控制单元用于在电子烟真伪鉴定结果表示电子烟30为真烟时,对电子烟30进行加热,第二加热控制单元用于在电子烟真伪鉴定结果表示电子烟30为假烟时,不执行加热操作。
一实施例中,第一加热控制单元可以具体设置为:根据加热模式与电子烟型号的对应关系,选择与电子烟型号相匹配的加热模式对电子烟30进行加热。
本实施例所提供的电子烟真伪识别装置可执行本申请实施例二所提供的电子烟真伪识别方法,具备执行方法相应的功能模块和有益效果。未在本实施例中详尽描述的内容可参考实施例二。
实施例六
图10是本申请实施例六提供的电子烟真伪识别装置的结构框图,本实施例可适用于实现电子烟真伪鉴定的情况。本申请实施例所提供的电子烟真伪识别装置可执行本申请实施例三和实施例四所提供的电子烟真伪识别方法,具备执行方法相应的功能模块和有益效果。
本实施例提供的电子烟真伪识别装置可应用于本申请实施例提供的电子烟真伪识别系统中,如图10所示,该电子烟真伪识别装置包括标识符接收模块201、标识符解码模块202、标识符鉴定模块203和鉴定信息反馈模块204。
标识符接收模块201,设置为接收烟具10传输的标识符数据,其中,标识符数据对应的标识符50由设置于烟具10内部的扫描单元40扫描并读取。
标识符解码模块202,设置为对标识符数据进行解码。
标识符鉴定模块203,设置为对解码后的标识符数据进行真伪鉴定以得到鉴定信息。
鉴定信息反馈模块204,设置为将鉴定信息反馈至烟具10,其中,鉴定信息包括电子烟真伪鉴定结果。
一实施例中,标识符鉴定模块203具体设置为:访问云端大数据,通过将解码后的标识符数据与云端大数据中的电子烟信息进行对比,以得到鉴定信息。
一实施例中,本实施例提供的电子烟真伪识别装置还包括信息上传模块,用于将使用信息上传至服务器,其中,使用信息包括电子烟使用时间信息、电子烟使用地点信息和烟具型号信息。
本实施例所提供的电子烟真伪识别装置可执行本申请实施例三和实施例四所提供的电子烟真伪识别方法,具备执行方法相应的功能模块和有益效果。未在本实施例中详尽描述的内容可参考实施例三和实施例四。
实施例七
图11是本申请实施例七提供的烟具的结构示意图。图11示出了适于用来实现本申请实施方式的示例性烟具512的框图。图11显示的烟具512仅仅是一个示例,不应对本申请实施例的功能和使用范围带来任何限制。
如图11所示,烟具512以通用设备的形式表现。烟具512的组件可以包括但不限于:至少一个处理器516,存储装置528,连接不同系统组件(包括存储装置528和处理器516)的总线518。
总线518表示几类总线结构中的至少一种,包括存储装置总线或者存储装置控制器,外围总线,图形加速端口,处理器或者使用多种总线结构中的任意总线结构的局域总线。举例来说,这些体系结构包括但不限于工业标准体系结构(Industry Subversive Alliance,ISA)总线,微通道体系结构(Micro Channel Architecture,MAC)总线,增强型ISA总线、视频电子标准协会(Video Electronics  Standards Association,VESA)局域总线以及外围组件互连(Peripheral Component Interconnect,PCI)总线。
烟具512典型地包括多种计算机系统可读介质。这些计算机系统可读介质可以是任何能够被烟具512访问的可用介质,包括易失性和非易失性介质,可移动的和不可移动的介质。
存储装置528可以包括易失性存储器形式的计算机系统可读介质,例如随机存取存储器(Random Access Memory,RAM)530和高速缓存存储器532中的至少一种。烟具512可以进一步包括其它可移动/不可移动的、易失性/非易失性计算机系统存储介质。仅作为举例,存储系统534可以用于读写不可移动的、非易失性磁介质(图11未显示,通常称为“硬盘驱动器”)。尽管图11中未示出,可以提供用于对可移动非易失性磁盘(例如“软盘”)读写的磁盘驱动器,以及对可移动非易失性光盘,例如只读光盘(Compact Disc Read-Only Memory,CD-ROM),数字视盘(Digital Video Disc-Read Only Memory,DVD-ROM)或者其它光介质)读写的光盘驱动器。在这些情况下,每个驱动器可以通过至少一个数据介质接口与总线518相连。存储装置528可以包括至少一个程序产品,该程序产品具有一组(例如至少一个)程序模块,这些程序模块被配置以执行本申请每个实施例的功能。
具有一组(至少一个)程序模块542的程序/实用工具540,可以存储在例如存储装置528中,这样的程序模块542包括但不限于操作系统、至少一个应用程序、其它程序模块以及程序数据,这些示例中的每一个或某种组合中可能包括网络环境的实现。程序模块542通常执行本申请所描述的实施例中的功能和方法中的至少一种。
烟具512也可以与至少一个外部设备514(例如键盘、指向终端、显示器524等)通信,还可进行与至少一个使得使用者能与该烟具512交互的终端通信,和与使得该烟具512能与至少一个其它计算终端进行通信的任何终端(例如网卡,调制解调器等等)通信中的至少之一。这种通信可以通过输入/输出(I/O)接口522进行。并且,烟具512还可以通过网络适配器520与至少一个网络(例如局域网(Local Area Network,LAN),广域网(Wide Area Network,WAN) 和公共网络中的至少一个,例如因特网)通信。如图11所示,网络适配器520通过总线518与烟具512的其它模块通信。应当明白,尽管图中未示出,可以结合烟具512使用其它硬件和软件模块中的至少一种,包括但不限于:微代码、终端驱动器、冗余处理器、外部磁盘驱动阵列、磁盘阵列(Redundant Arrays of Independent Disks,RAID)系统、磁带驱动器以及数据备份存储系统等。
处理器516通过运行存储在存储装置528中的程序,从而执行每种功能应用以及数据处理,例如实现本申请实施例所提供的电子烟真伪识别方法,该方法包括如下步骤:
在电子烟插入烟具时,通过烟具内部的扫描单元扫描并读取电子烟上的标识符以得到标识符数据;
将标识符数据传输至智能设备;
根据智能设备反馈的鉴定信息控制烟具的加热状态,其中,鉴定信息包括电子烟真伪鉴定结果。
实施例八
本实施例八是本申请实施例提供的一种用于执行本申请实施例三所提供的电子烟真伪识别方法的智能设备,该智能设备包括:至少一个处理器;存储装置,用于存储至少一个程序;当至少一个程序被至少一个处理器执行,使得至少一个处理器实现实施例三所述的电子烟真伪识别方法:接收烟具传输的标识符数据,其中,标识符数据对应的标识符由设置于烟具内部的扫描单元扫描并读取;对标识符数据进行解码;对解码后的标识符数据进行真伪鉴定以得到鉴定信息;将鉴定信息反馈至烟具,其中,鉴定信息包括电子烟真伪鉴定结果。其结构以及细节内容可参考图11和实施例七。
实施例九
本申请实施例九还提供了一种计算机可读存储介质,其上存储有计算机程序,该计算机程序被处理器执行时实现如本申请实施例二所提供的电子烟真伪识别方法,该方法包括:
在电子烟插入烟具时,通过烟具内部的扫描单元扫描并读取电子烟上的标识符;
将标识符数据传输至智能设备;
根据智能设备反馈的鉴定信息控制烟具的加热状态,其中,鉴定信息包括电子烟真伪鉴定结果。
或者,该计算机程序被处理器执行时实现如本申请实施例三所提供的电子烟真伪识别方法,该方法包括:
接收烟具传输的标识符数据,其中,标识符数据对应的标识符由设置于烟具内部的扫描单元扫描并读取;
对标识符数据进行解码;
对解码后的标识符数据进行真伪鉴定以得到鉴定信息;
将鉴定信息反馈至烟具,其中,鉴定信息包括电子烟真伪鉴定结果。
本申请实施例的计算机存储介质,可以采用至少一个计算机可读的介质的任意组合。计算机可读介质可以是计算机可读信号介质或者计算机可读存储介质。计算机可读存储介质例如可以是——但不限于——电、磁、光、电磁、红外线、或半导体的系统、装置或器件,或者任意以上的组合。计算机可读存储介质的更具体的例子(非穷举的列表)包括:具有至少一个导线的电连接、便携式计算机磁盘、硬盘、随机存取存储器(RAM)、只读存储器(ROM)、可擦式可编程只读存储器(EPROM或闪存)、光纤、便携式紧凑磁盘只读存储器(CD-ROM)、光存储器件、磁存储器件、或者上述的任意合适的组合。在本文件中,计算机可读存储介质可以是任何包含或存储程序的有形介质,该程序可以被指令执行系统、装置或者器件使用或者与其结合使用。
计算机可读的信号介质可以包括在基带中或者作为载波一部分传播的数据信号,其中承载了计算机可读的程序代码。这种传播的数据信号可以采用多种形式,包括但不限于电磁信号、光信号或上述的任意合适的组合。计算机可读的信号介质还可以是计算机可读存储介质以外的任何计算机可读介质,该计算机可读介质可以发送、传播或者传输用于由指令执行系统、装置或者器件使用或者与其结合使用的程序。
计算机可读介质上包含的程序代码可以用任何适当的介质传输,包括——但不限于无线、电线、光缆、RF等等,或者上述的任意合适的组合。
可以以至少一种程序设计语言或其组合来编写用于执行本申请操作的计算机程序代码,所述程序设计语言包括面向对象的程序设计语言—诸如Java、Smalltalk、C++,还包括常规的过程式程序设计语言—诸如“C”语言或类似的程序设计语言。程序代码可以完全地在使用者计算机上执行、部分地在使用者计算机上执行、作为一个独立的软件包执行、部分在使用者计算机上部分在远程计算机上执行、或者完全在远程计算机或终端上执行。在涉及远程计算机的情形中,远程计算机可以通过任意种类的网络——包括局域网(LAN)或广域网(WAN)—连接到使用者计算机,或者,可以连接到外部计算机(例如利用因特网服务提供商来通过因特网连接)。

Claims (22)

  1. 一种电子烟真伪识别系统,包括烟具和智能设备,所述烟具和所述智能设备通信连接;
    所述烟具设置为:在电子烟插入所述烟具时,通过所述烟具内部的扫描单元扫描并读取所述电子烟上的标识符以得到标识符数据,将所述标识符数据传输至所述智能设备,并根据所述智能设备反馈的鉴定信息控制所述烟具的加热状态,其中,所述鉴定信息包括电子烟真伪鉴定结果;
    所述智能设备设置为:接收所述标识符数据,对所述标识符数据进行解码,对解码后的标识符数据进行真伪鉴定以得到所述鉴定信息,并将所述鉴定信息反馈至所述烟具。
  2. 根据权利要求1所述的电子烟真伪识别系统,其中,所述鉴定信息还包括所述标识符记录的电子烟型号的信息;
    所述烟具还设置为:在所述电子烟真伪鉴定结果表示所述电子烟为真烟时,根据加热模式与所述电子烟型号的对应关系,选择与所述电子烟型号相匹配的加热模式对所述电子烟进行加热。
  3. 根据权利要求1所述的电子烟真伪识别系统,其中,所述智能设备还设置为:将使用信息上传至服务器,其中,所述使用信息包括电子烟使用时间信息、电子烟使用地点信息和烟具型号信息。
  4. 一种烟具,包括:外壳、电源、控制单元、加热单元、扫描单元和传输单元;
    其中,所述电源、所述控制单元和所述加热单元均设置于所述外壳内且依次电连接,所述扫描单元设置于所述外壳内且与所述控制单元连接,所述传输单元设置于所述外壳内且与所述扫描单元连接,所述外壳靠近所述加热单元的一端设置有供电子烟插入的进烟口;
    所述扫描单元设置为扫描并读取插入所述进烟口的电子烟上的标识符以得到标识符数据;
    所述传输单元设置为将所述标识符数据传输至所述智能设备;
    所述控制单元设置为在所述电子烟插入所述烟具时,控制所述扫描单元扫描并读取所述电子烟上的标识符,并根据所述智能设备反馈的鉴定信息控制所 述加热单元的加热状态,其中,所述鉴定信息包括电子烟真伪鉴定结果。
  5. 根据权利要求4所述的烟具,其中,所述扫描单元包括二维码扫描单元。
  6. 根据权利要求4所述的烟具,其中,所述扫描单元的扫描范围至少覆盖两个所述标识符所占的区域。
  7. 根据权利要求6所述的烟具,其中,所述扫描单元设置于所述外壳的内壁上,且环绕所述外壳的内壁一圈设置。
  8. 根据权利要求4所述的烟具,其中,所述烟具具有匹配不同电子烟型号的多种加热模式。
  9. 一种电子烟,其中,所述电子烟插入到烟具内的外包装上设置有至少一个供所述烟具的扫描单元扫描的标识符,以使得所述电子烟插入所述烟具时,所述烟具的扫描单元执行扫描并读取所述电子烟上的标识符以得到标识符数据的操作;
    其中,每个所述标识符记录有所述电子烟的生产日期信息、生产产商信息和电子烟型号的信息。
  10. 根据权利要求9所述的电子烟,其中,所述标识符包括微缩二维码。
  11. 根据权利要求9所述的电子烟,其中,所述至少一个标识符包括绕所述外包装一圈排布的多个标识符。
  12. 一种电子烟真伪识别方法,包括:
    在电子烟插入烟具时,通过所述烟具内部的扫描单元扫描并读取所述电子烟上的标识符以得到标识符数据;
    将所述标识符数据传输至智能设备;
    根据所述智能设备反馈的鉴定信息控制所述烟具的加热状态,其中,所述鉴定信息包括电子烟真伪鉴定结果。
  13. 根据权利要求12所述的电子烟真伪识别方法,其特征在于,所述根据所述智能设备反馈的鉴定信息控制所述烟具的加热状态,包括:
    在所述电子烟真伪鉴定结果表示所述电子烟为真烟时,对所述电子烟进行加热;
    在所述电子烟真伪鉴定结果表示所述电子烟为假烟时,不执行加热操作。
  14. 根据权利要求13所述的电子烟真伪识别方法,其中,所述鉴定信息还包括所述标识符记录的电子烟型号的信息;
    所述对所述电子烟进行加热,包括:
    根据加热模式与所述电子烟型号的对应关系,选择与所述电子烟型号相匹配的加热模式对所述电子烟进行加热。
  15. 一种电子烟真伪识别方法,包括:
    接收烟具传输的标识符数据,其中,所述标识符数据对应的标识符由设置于所述烟具内部的扫描单元扫描并读取;
    对所述标识符数据进行解码;
    对解码后的标识符数据进行真伪鉴定以得到鉴定信息;
    将所述鉴定信息反馈至所述烟具,其中,所述鉴定信息包括电子烟真伪鉴定结果。
  16. 根据权利要求15所述的电子烟真伪识别方法,其中,所述对解码后的标识符数据进行真伪鉴定以得到鉴定信息,包括:
    访问云端大数据,通过将所述解码后的标识符数据与所述云端大数据中的电子烟信息进行对比,以得到所述鉴定信息。
  17. 根据权利要求15所述的电子烟真伪识别方法,还包括:
    将使用信息上传至服务器,其中,所述使用信息包括电子烟使用时间信息、电子烟使用地点信息和烟具型号信息。
  18. 一种电子烟真伪识别装置,包括:
    标识符读取模块,设置为在电子烟插入烟具时,通过所述烟具内部的扫描单元扫描并读取所述电子烟上的标识符以得到标识符数据;
    标识符传输模块,设置为将所述标识符数据传输至智能设备;
    加热控制模块,设置为根据所述智能设备反馈的鉴定信息控制所述烟具的加热状态,其中,所述鉴定信息包括电子烟真伪鉴定结果。
  19. 一种电子烟真伪识别装置,包括:
    标识符接收模块,设置为接收烟具传输的标识符数据,其中,所述标识符数据对应的标识符由设置于所述烟具内部的扫描单元扫描并读取;
    标识符解码模块,设置为对所述标识符数据进行解码;
    标识符鉴定模块,设置为对解码后的标识符数据进行真伪鉴定以得到鉴定信息;
    鉴定信息反馈模块,设置为将所述鉴定信息反馈至所述烟具,其中,所述鉴定信息包括电子烟真伪鉴定结果。
  20. 一种烟具,包括:
    至少一个处理器;
    存储装置,用于存储至少一个程序;
    当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现如权利要求12-14中任一项所述的电子烟真伪识别方法。
  21. 一种智能设备,包括:
    至少一个处理器;
    存储装置,用于存储至少一个程序;
    当所述至少一个程序被所述至少一个处理器执行,使得所述至少一个处理器实现如权利要求15-17中任一项所述的电子烟真伪识别方法。
  22. 一种计算机可读存储介质,其上存储有计算机程序,其中,所述计算机程序被处理器执行时实现如权利要求12-14中任一项所述的电子烟真伪识别方法,或者实现如权利要求15-17中任一项所述的电子烟真伪识别方法。
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