WO2018024155A1 - 吸入式设备控制系统及方法 - Google Patents

吸入式设备控制系统及方法 Download PDF

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Publication number
WO2018024155A1
WO2018024155A1 PCT/CN2017/094694 CN2017094694W WO2018024155A1 WO 2018024155 A1 WO2018024155 A1 WO 2018024155A1 CN 2017094694 W CN2017094694 W CN 2017094694W WO 2018024155 A1 WO2018024155 A1 WO 2018024155A1
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WO
WIPO (PCT)
Prior art keywords
electronic cigarette
user
smoking
physiological information
range
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PCT/CN2017/094694
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English (en)
French (fr)
Inventor
邱伟华
Original Assignee
常州聚为智能科技有限公司
卓尔悦欧洲控股有限公司
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Application filed by 常州聚为智能科技有限公司, 卓尔悦欧洲控股有限公司 filed Critical 常州聚为智能科技有限公司
Publication of WO2018024155A1 publication Critical patent/WO2018024155A1/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
    • A24F40/65Devices with integrated communication means, e.g. wireless communication 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
    • A24F40/53Monitoring, e.g. fault detection
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F47/00Smokers' requisites not otherwise provided for
    • 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
    • A24F40/10Devices using liquid inhalable precursors

Definitions

  • the present invention relates to the field of inhalation devices, and in particular to a suction device control system and method.
  • inhalation equipment such as electronic cigarettes, as a smoking cessation product, can not adjust the amount of smoke according to the user's physical condition and correct the user's bad smoking habits, thereby reducing the smoking cessation effect of the electronic cigarette.
  • the control of the inhaled device by the human physiological information monitored by the wearable electronic device is an urgent problem to be solved.
  • the present invention is directed to the problems of the prior art, and an object thereof is to provide a suction device control system and method for controlling a suction device by human physiological parameters monitored by the wearable electronic device.
  • the present invention provides a suction device control system that operates in a wearable electronic device or a inhalation device that is communicatively coupled to a inhalation device for: controlling The sensor of the wearable electronic device monitors a plurality of physiological information of the user, and determines whether the user needs to inhale the inhaled device according to the monitored physiological information; When the inhalation device is used, the inhaled device is controlled to be powered on; and when the user performs the inhaling action, the inhaled device is controlled for the user to smoke.
  • the inhalation device is an electronic cigarette
  • the system is further configured to: detect physiological information of the user, and determine, according to the detected physiological information, whether the user has achieved the smoking effect; When the person has reached the smoking effect, the power-off operation is performed on the electronic cigarette.
  • the performing the power-off operation on the electronic cigarette includes: transmitting a control signal to the electronic cigarette to turn off the electronic cigarette or sending the prompt information to prompt the user to turn off; and when the user does not turn off the electronic cigarette and continue to smoke, The number of times the user smoked on the day and the time of each use were counted, and the output power of the electronic cigarette was adjusted according to the number of times of the use and the time of each use.
  • the inhalation device is an electronic cigarette
  • the system is further configured to: pre-store the user in a storage unit of the wearable electronic device or a database communicatively connected to the wearable electronic device
  • Physiological information of different intervals in the case of smoking e-cigarettes physiological information when e-cigarettes are needed in the episode of smoking addiction, physiological information when e-cigarettes are used, and physiological physiology when smoking e-cigarettes are used Information, the physiological information including heart rate, blood pressure and body temperature.
  • the inhalation device is an electronic cigarette
  • the system is further configured to: control an electronic cigarette to detect a temperature and a humidity value of the cigarette holder through a temperature and humidity sensor; and the detected temperature and humidity value Comparing with the pre-stored temperature and humidity values, determining whether the detected temperature and humidity values fall within a range of pre-stored corresponding temperature and humidity values to determine whether the user contains the cigarette holder; if the detected temperature If the value falls within the pre-stored temperature range and the detected humidity value does not fall within the pre-stored humidity value range, it is determined that the user contains the cigarette holder and sets the output power of the electronic cigarette; and if the detection If the measured temperature value does not fall within the pre-stored temperature range and/or the detected humidity value does not fall within the pre-stored humidity value interval, it is determined that the user does not contain the cigarette holder.
  • a suction device control method is applied to a wearable electronic device or a suction device, and the wearable electronic device is communicably connected to the inhalation device, and the method comprises the following steps: monitoring the user Physiological information, and judged according to the physiological information of the monitoring Whether it is necessary to inhale the inhalation device; when the user needs to inhale the inhalation device, control the inhalation device to perform power-on preparation; and when the user performs the inhalation action, control the inhalation device for the user to smoke.
  • the inhalation device is an electronic cigarette
  • the following steps are used to determine whether the user needs to smoke the electronic cigarette: determining whether the value of the monitored user physiological information changes from the range in which the electronic cigarette is not required to be used to The corresponding narcotics episodes need to be in the range of e-cigarettes; when the values of the user's various physiological information are changed from the range in which the e-cigarettes are not required to be used, and the corresponding craving episodes need to be in the range of e-cigarettes, Determining that the user needs to smoke the electronic cigarette; and if the value of one or more physiological information of the user does not change from the range in which the electronic cigarette is not required to be used, to the range in which the corresponding smoking episode requires the smoking of the electronic cigarette , it is determined that the user does not need to smoke electronic cigarettes.
  • the inhalation device is an electronic cigarette
  • the following steps are used to determine whether the user needs to smoke the electronic cigarette: analyzing the pre-stored physiological information when the electronic cigarette is not required to be used, and the corresponding need for smoking in the smoking addiction
  • the physiological information of the electronic cigarette and obtain the range of physiological information of the user when the electronic cigarette is to be used; and determine whether the change value of each physiological information is within the range of the physiological information of the user when the corresponding electronic cigarette is needed;
  • the change value of the physiological information is within the range of the physiological information of the user when the corresponding electronic cigarette is required to be used, and the user is determined to need to smoke the electronic cigarette; and if the change value of one or more physiological information is not in the corresponding
  • it is necessary to change the physiological information of the user when the electronic cigarette is to be used it is determined that the user does not need to smoke the electronic cigarette.
  • the inhalation device is an electronic cigarette
  • the method further comprises the steps of: acquiring physiological information of the user, and determining, according to the acquired physiological information, whether the user performs a smoking action; determining the use of the acquisition.
  • the value of the physiological information changes from the range of the smoking addiction to the e-cigarette to the corresponding e-cigarette interval; the value of the physiological information of the user is the range of the e-cigarette that needs to be smoked from the episode of smoking
  • the user is determined to perform the smoking action; and if the user The value of the plurality of physiological information is not changed within a range from the range in which the smoking addiction needs to be used to the electronic smoking to the corresponding range in which the electronic smoking is used, and it is determined that the user does not perform the smoking action.
  • the inhalation device is an electronic cigarette
  • the method further comprises the steps of: acquiring physiological information of the user, and determining whether the user performs a smoking action according to the acquired physiological information; analyzing the pre-stored smoking addiction The physiological information when the electronic cigarette is used for seizure and the corresponding physiological information when smoking the electronic cigarette are obtained, and the range of physiological information of the user when smoking the electronic cigarette is obtained; whether the change value of each physiological information is determined to be corresponding to the electronic smoking electronic cigarette When the physiological information of the user changes within a range; if the change value of each physiological information is within the range of the physiological information of the user when the corresponding electronic cigarette is used, the user is determined to perform the smoking action; and if one or more If the change value of the physiological information is not within the range of the physiological information of the user when the corresponding electronic cigarette is used, it is determined that the user does not perform the smoking action.
  • the inhalation device is an electronic cigarette
  • the method further comprises the steps of: detecting physiological information of the user, and determining, according to the detected physiological information, whether the user has achieved the smoking effect; and using When the person has reached the smoking effect, the power-off operation is performed on the electronic cigarette.
  • the value of the detected physiological information of the user changes from the range of smoking the electronic cigarette to the corresponding smoking electronic cigarette to achieve the smoking effect.
  • the values of the physiological information of the user are changed from the range of smoking the electronic cigarette to the range of the corresponding smoking electronic smoking to reach the smoking effect, it is determined that the user achieves the smoking effect; and if used If the value of one or more physiological information of the person does not change from the range of smoking the electronic cigarette to the range in which the corresponding smoking electronic cigarette reaches the smoking effect, it is determined that the user has not reached the smoking effect.
  • the power-off operation is performed on the electronic cigarette by sending a control signal to the electronic cigarette to turn off the electronic cigarette or sending a prompt message to prompt the user to turn off; and when the user does not turn off the electronic cigarette and continues to smoke, The number of times the user smoked on the day and the time of each use were counted, and the output power of the electronic cigarette was adjusted according to the number of times of the use and the time of each use.
  • the monitored physiological letter can be utilized
  • the user judges each state of the user inhaling the inhaled device, and according to the judgment result, realizes the operation of powering on the suction device, setting the output power, outputting the smoke, closing the suction device, etc., to realize the physiological information through the monitoring. Effective control of the suction device is convenient and quick.
  • FIG. 1 is a schematic structural view of a wearable electronic device and an electronic cigarette according to a preferred embodiment of the present invention
  • FIG. 2 is a flow chart of a method for controlling an electronic cigarette according to a preferred embodiment of the present invention.
  • Short-range wireless communication unit 10 sensor 11
  • Wireless communication unit 12 Storage unit 13
  • microprocessor 14 Electronic cigarette control system 20
  • Short-range wireless communication circuit 30 Cigarette holder 31
  • Temperature and humidity sensor 32 Tobacco rod 33
  • Atomizing component 34 Microcontroller 35 wireless network 400
  • the wearable electronic device of the present invention is communicatively coupled to the inhalation device, which may be an electronic cigarette, a medical nebulizer or the like.
  • the wearable electronic device monitors physiological information of a human body, and performs the inhalation device through the monitored physiological information of the human body. control.
  • the physiological information preferably includes heart rate, blood pressure, and body temperature.
  • the inhalation device is an electronic cigarette 300, and the wearable electronic device 100 is communicably connected to the electronic cigarette 300 through the short-range wireless communication network 200.
  • the short-range wireless communication network 200 can be a Bluetooth communication network or an infrared network or the like.
  • the wearable electronic device 100 can be an electronic device such as a smart bracelet or a smart watch.
  • the wearable electronic device 100 includes a short-range wireless communication unit 10, and the electronic cigarette 300 includes a short-range wireless communication circuit 30 that is short with the electronic cigarette 300 through the short-range wireless communication unit 10.
  • the wireless communication circuit 30 is communicatively coupled to enable information transfer between the wearable electronic device 100 and the electronic cigarette 300.
  • the short-range wireless communication unit 10 and the short-range wireless communication circuit 30 may be short-range communication modules such as a Bluetooth module or an infrared module.
  • the electronic cigarette 300 further includes components such as a cigarette holder 31, a temperature and humidity sensor 32, a tobacco rod 33, and an atomizing assembly 34 and a microcontroller 35 disposed in the tobacco rod 33.
  • the mouthpiece 31 can be contained by a user for the user to smoke the electronic cigarette 300.
  • the temperature and humidity sensor 32 may be disposed in the mouthpiece 31 or at a position of the cigarette rod 33 at a predetermined distance from the mouthpiece 31. The preset distance shall ensure the sensitivity of the temperature and humidity sensor 32 to sense the temperature and humidity value.
  • the temperature and humidity sensor 32 is set in the mouthpiece 31 for introduction.
  • the temperature and humidity sensor 32 is configured to detect the temperature and humidity values of the mouthpiece 31 when the user includes the mouthpiece 31.
  • the temperature and humidity sensor 32 may be a component to sense the temperature and humidity values, or may be two components. The temperature and humidity values are sensed separately, such as the temperature sensor sensed temperature value and the humidity sensor sensed humidity value.
  • the preferred embodiment is described with a temperature and humidity sensor as a component.
  • the tobacco rod 33 is disposed in connection with the mouthpiece 31 to form an appearance of the electronic cigarette 300, and the atomizing assembly 34 and the microcontroller 35 are disposed in the tobacco rod 33 to form the electronic cigarette 300.
  • the microcontroller 35 is electrically connected to the atomizing component 34.
  • the microcontroller 35 is configured to receive a control command sent by the wearable electronic device 100, and control the opening and closing of the atomizing component 34 according to the control command.
  • the atomizing assembly 34 includes components such as a cartridge and an atomizing head for converting liquid nicotine in the cartridge into smoke for the user to smoke.
  • the wearable electronic device 100 further includes a sensor 11 and a wireless communication unit 12.
  • the sensor 11 includes a heart rate monitor, a body temperature sensor, and the like for monitoring physiological information such as a human heart rate, blood pressure, and body temperature.
  • the wireless communication unit 12 can be a mobile communication unit or a WiFi (Wireless Fidelity) communication module or the like.
  • the wireless communication unit 12 of the wearable electronic device 100 is communicatively coupled to the database 500 via a wireless network 400.
  • the wireless network 400 can be a mobile communication network or a WiFi communication network or the like.
  • the wireless communication unit 12 of the wearable electronic device 100 transmits the physiological information monitored by the sensor 11 to the database 500 for storage via the wireless network 400.
  • the database 500 communicatively coupled to the wearable electronic device 100 may be disposed in the electronic cigarette 300 or may be independently provided independently of the wearable electronic device 100 and the electronic cigarette 300.
  • the monitored physiological information is stored in database 500.
  • the wearable electronic device 100 further includes a storage unit 13, and the monitored physiological information may also be stored in the storage unit 13.
  • the monitored physiological information includes physiological information when the human body does not need to smoke the electronic cigarette 300 under normal conditions, physiological information when the smoking addiction needs to smoke the electronic cigarette 300, physiological information when smoking the electronic cigarette 300, and the smoking electronic cigarette 300 reaches Physiological information when absorbing the effect, and the monitoring
  • the physiological information is stored in the database 500.
  • the physiological information preferably includes heart rate, blood pressure, and body temperature.
  • the physiological information of the user in different situations is pre-stored in the database 500 before the electronic cigarette 300 needs to be controlled.
  • the physiological information can be obtained by, but not limited to, being manually entered into the database 500 by the user, or matching the identity information of the user with the medical platform, and inputting the medical information into the value database 500, the medical information.
  • the physiological information is included.
  • the physiological information of the user in the different situations includes: physiological information when the user does not need to smoke the electronic cigarette 300, physiological information when the user needs to smoke the electronic cigarette 300 in the case of smoking addiction, and physiological information when the user smokes the electronic cigarette 300, And the physiological information when the user smokes the electronic cigarette 300 to achieve the smoking effect.
  • the physiological information in various situations of the user pre-stored in the database 500 may be an interval range, and the interval range refers to a range value having a range, for example, a heart rate of 70-80 times/minute when the electronic cigarette 300 is not required to be used.
  • the heart rate at the time of smoking addiction requiring the use of electronic cigarette 300 is 81-88 times/minute, and the heart rate when smoking electronic cigarette 300 is 89-110 times/minute.
  • the range of intervals corresponding to the user's physiological information may vary.
  • the database 500 pre-stores physiological information of different ranges of the range when the user does not need to smoke the electronic cigarette 300, and the corresponding physiological information when the smoking addict needs to take the electronic cigarette 300, and the corresponding smoking electronic
  • the physiological information of the cigarette 300 and the corresponding physiological information when the smoking electronic cigarette 300 reaches the smoking effect.
  • the range of the physiological information is different, and the range of one or more physiological information ranges may be different, for example, the range of the heart rate and the blood pressure is different, and the range of the body temperature range is the same.
  • the wearable electronic device 100 further includes a microprocessor 14 that is electrically connected to the sensor 11, the wireless communication unit 12, and the storage unit 13.
  • the microprocessor 14 is used to control the sensor 11 to monitor physiological information such as heart rate, blood pressure and body temperature of the human body.
  • the electronic cigarette control system 20 operates on the microprocessor 14 or the microcontroller 35 to control the wearable electronic device 100 and the electronic cigarette 300, and controls the electronic cigarette 300 through the monitored physiological information.
  • the electronic cigarette control system includes computerized program instructions.
  • the electronic cigarette control system 20 monitors various physiological information of the user through the sensor 11, and determines whether the user needs to smoke the electronic cigarette 300.
  • the physiological information preferably includes heart rate, blood pressure, and body temperature.
  • the electronic cigarette control system 20 determines whether the value of the monitored user physiological information changes from the range in which the electronic cigarette 300 is not required to be used to the corresponding smoking episode, and needs to smoke the electronic cigarette 300. Within the range of the interval.
  • the electronic cigarette Control system 20 determines that the user needs to smoke electronic cigarette 300. For example, the user's heart rate value is changed from the range of the heart rate interval in which the electronic cigarette 300 is not required to be used to the corresponding heart rate interval in which the electronic cigarette 300 is to be used, and the blood pressure value of the user is never in the range of the blood pressure interval in which the electronic cigarette 300 is not required to be used.
  • the body temperature value of the user changes from the range of the body temperature range in which the electronic cigarette 300 is not required to be used to the corresponding body temperature range in which the electronic cigarette 300 is to be used, It is determined that the user needs to smoke the electronic cigarette 300. If the value of one or more physiological information of the user, for example, the heart rate value, does not change from the range in which the electronic cigarette 300 is not required to be used, to the range in which the corresponding smoking episode requires the electronic cigarette 300 to be used, the electronic cigarette Control system 20 determines that the user does not need to smoke electronic cigarette 300.
  • the heart rate value of the user does not change from the range of the heart rate interval in which the electronic cigarette 300 is not required to be taken to the corresponding heart rate interval in which the electronic cigarette 300 needs to be used, but the blood pressure value of the user does not need to take the blood pressure of the electronic cigarette 300.
  • the range of blood pressure ranges corresponding to the need to smoke the electronic cigarette 300 is changed, and the body temperature value of the user is changed from the range of the body temperature range in which the electronic cigarette 300 is not required to be used to the corresponding body temperature range in which the electronic cigarette 300 is to be used. Then, it is determined that the user does not need to smoke the electronic cigarette 300.
  • the electronic cigarette control system 20 analyzes the physiological information pre-stored in the database 500 that does not need to be used for smoking the electronic cigarette 300 and the corresponding physiological information when the smoking addict needs to be used for smoking the electronic cigarette 300, and obtains the need to consume electronic
  • the physiological information variation range preferably includes a range of changes in heart rate, a range of changes in blood pressure, and a change in body temperature. range.
  • the electronic cigarette control system 20 determines whether the change value of each physiological information is within a range of changes in the physiological information of the user when the corresponding electronic cigarette 300 is required to be used.
  • the electronic cigarette control system 20 determines that the user needs to smoke the electronic cigarette 300.
  • the heart rate change value is within a range of changes in the heart rate of the user when the electronic cigarette 300 is to be used
  • the blood pressure change value is within a range of changes in the blood pressure of the user when the electronic cigarette 300 is required to be used
  • the change in body temperature is used when the electronic cigarette 300 is required to be used.
  • the range of the body temperature change it is determined that the user needs to smoke the electronic cigarette 300.
  • the electronic cigarette control system 20 determines that the user does not need to smoke the electronic cigarette 300.
  • the heart rate change value is within the range of the user's heart rate when the electronic cigarette 300 needs to be used
  • the blood pressure change value is within the range of the user's blood pressure when the electronic cigarette 300 is required to be used, but the body temperature change value is not used when the electronic cigarette 300 is required to be used. Within the range of the body temperature change, it is determined that the user does not need to smoke the electronic cigarette 300.
  • the electronic cigarette control system 20 sends a power-on signal to the electronic cigarette 300 to control the electronic cigarette 300 to perform power-on preparation.
  • the electronic cigarette control system 20 controls the electronic cigarette 300 to detect the temperature and humidity values of the cigarette holder 31 through the temperature and humidity sensor 32, and determines whether the user contains the cigarette holder 31 by the detected temperature and humidity values.
  • the temperature and humidity values of the user's cigarette holder 31 are pre-stored in the database 500, and the pre-stored temperature and humidity values may be in the range of the interval.
  • the electronic cigarette control system 20 compares the detected temperature and humidity values with the pre-stored temperature and humidity values in the database 500, and determines whether the detected temperature and humidity values fall within the pre-stored corresponding temperature and humidity values. Within the range. If the detected temperature value falls within the pre-stored temperature interval range and the detected humidity value does not fall within the pre-stored humidity value interval range, the electronic cigarette control system 20 determines that the user contains the cigarette holder 31. If the detected temperature value does not fall within the pre-stored temperature range and/or the detected humidity value does not fall within the pre-stored humidity value range, the electronic cigarette control system 20 determines that the user does not contain Cigarette holder 31.
  • the electronic cigarette control system 20 sets the output work of the electronic cigarette 300. rate.
  • the output power is set according to the user's physical condition and smoking habits.
  • the physical condition includes information on the disease (unhealed or cured) and physical signs such as height and weight.
  • the smoking habits include parameters such as the number of times the user smokes the electronic cigarette 300 per day and the time each time the electronic cigarette 300 is used.
  • the electronic cigarette control system 20 acquires the physiological information of the user and determines whether the user performs the smoking action. When determining whether the user performs the smoking action, the electronic cigarette control system 20 determines whether the value of the acquired user physiological information changes within a range from the range in which the smoking addiction needs to be used to the electronic smoking 300 to the corresponding range in which the electronic smoking 300 is used. . When the values of various physiological information of the user, such as heart rate, blood pressure and body temperature values, are changed within a range from the range in which the smoking addiction needs to be used to the electronic cigarette 300 to the corresponding range of the smoking electronic cigarette 300, the electronic cigarette control System 20 determines that the user is performing a smoking action.
  • various physiological information of the user such as heart rate, blood pressure and body temperature values
  • the heart rate value of the user changes from the heart rate interval in which the smoking addiction needs to be used to the electronic cigarette 300 to the corresponding heart rate interval of the electronic smoking 300, and the blood pressure value of the user needs to take the blood pressure interval of the electronic cigarette 300 from the smoking addiction.
  • the body temperature value of the user changes from the range of the body temperature range in which the smoking addiction needs to be used to the electronic cigarette 300 to the range of the body temperature range of the corresponding smoking electronic cigarette 300, It is determined that the user performs the smoking action.
  • the electronic cigarette control system 20 It is determined that the user has not performed the smoking action. For example, the user's heart rate value does not change from the heart rate interval of the smoking e-cigarette 300 to the corresponding heart rate interval of the e-cigarette 300, but the user's blood pressure value needs to smoke the electronic cigarette 300 from the smoking addiction.
  • the range of the blood pressure interval is changed within the range of the blood pressure interval corresponding to the smoking electronic cigarette 300, and the body temperature value of the user is changed from the range of the body temperature range in which the smoking addiction needs to be used to the electronic cigarette 300 to the range of the body temperature range corresponding to the smoking electronic cigarette 300. Then, it is determined that the user has not performed the smoking action.
  • the electronic cigarette control system 20 analyzes the physiological information when the pre-stored craving episode in the database 500 needs to be used for smoking the electronic cigarette 300 and the corresponding physiological information when the electronic cigarette 300 is used, and obtains the use when smoking the electronic cigarette 300.
  • the physiological information change The range preferably includes a range of changes in heart rate, a range of changes in blood pressure, and a range of changes in body temperature.
  • the electronic cigarette control system 20 determines whether the change value of each physiological information is within the range of the physiological information of the user when the corresponding electronic cigarette 300 is used.
  • the electronic cigarette control system 20 determines that the user performs the smoking action. For example, the heart rate change value is within a range of changes in the heart rate of the user when the electronic cigarette 300 is sucked, the blood pressure change value is within the range of the user's blood pressure when the electronic cigarette 300 is sucked, and the body temperature change value is the user's body temperature when the electronic cigarette 300 is used. Within the range of variation, it is determined that the user performs a smoking action.
  • the electronic cigarette control system 20 determines that the user has not performed the smoking action. For example, the heart rate change value is within the range of the user's heart rate when the electronic cigarette 300 is sucked, and the blood pressure change value is within the range of the user's blood pressure when the electronic cigarette 300 is used, but the body temperature change value is not the user's body temperature when the electronic cigarette 300 is used. Within the range of variation, it is determined that the user has not performed the smoking action.
  • the electronic cigarette control system 20 sends a control signal to the electronic cigarette 300 to control the atomizing assembly 34 to generate smoke for the user to smoke.
  • the electronic cigarette control system 20 detects physiological information such as heart rate, blood pressure and body temperature of the user, and determines whether the user has reached the smoking effect. In the preferred embodiment, when the user determines whether the user has achieved the smoking effect, the electronic cigarette control system 20 determines whether the value of the detected user physiological information changes from the range of the smoking electronic cigarette 300 to the corresponding smoking electronic cigarette. 300 is within the range of the smoking effect. When the values of the physiological information of the user are changed from the range of the smoking electronic cigarette 300 to the range in which the corresponding smoking electronic cigarette 300 reaches the smoking effect, it is determined that the user has achieved the smoking effect.
  • physiological information such as heart rate, blood pressure and body temperature of the user
  • one or two physiological information may have the same range of intervals when the electronic cigarette 300 is used and when the smoking electronic cigarette 300 reaches the smoking effect. For example, blood pressure and/or body temperature when smoking electronic cigarette 300 and when smoking electronic cigarette 300 reaches the smoking effect Have the same range of intervals.
  • the electronic cigarette control system 20 performs a power-off operation on the electronic cigarette 300 when the user has reached the smoking effect.
  • the power-off operation includes directly transmitting a control signal to the electronic cigarette 300 to control the atomizing assembly 34 to be turned off to turn off the electronic cigarette 300, or to transmit information to the user through the wearable electronic device 100 or the electronic cigarette 300 to prompt to turn off the electronic cigarette 300.
  • the prompt includes displaying the prompt information on the display screen (not shown) of the wearable electronic device 100 or the electronic cigarette 300 or by vibrating and buzzing.
  • the electronic cigarette control system 20 takes the time of the smoking, the physiological information when the electronic cigarette 300 is not required to be taken, the physiological information of the smoking electronic cigarette 300, the physiological information when the electronic cigarette 300 is used, and the physiological information when smoking the electronic cigarette 300.
  • the physiological information when the electronic cigarette 300 reaches the smoking effect and the temperature and humidity values of the mouthpiece 31 detected by the temperature and humidity sensor 32 are sent to the database 500 for storage.
  • the electronic cigarette control system 20 counts the number of times the user uses the same day, and adjusts according to the number of times of smoking and the time of each feeding. The output power of the electronic cigarette 300.
  • FIG. 2 is a flow chart showing a method for controlling an electronic cigarette according to a preferred embodiment of the present invention.
  • step S10 the electronic cigarette control system 20 monitors various physiological information of the user through the sensor 11.
  • the physiological information preferably includes heart rate, blood pressure, and body temperature. .
  • step S12 the electronic cigarette control system 20 determines whether the user needs to smoke the electronic cigarette 300 based on the monitored physiological information change.
  • step S14 is performed; if the user does not need to smoke the electronic cigarette 300, the process returns to step S10.
  • the physiological information of the user in different situations is pre-stored in the database 500 before the electronic cigarette 300 needs to be controlled.
  • the physiological information can be obtained by, but not limited to, being manually entered into the database 500 by the user, or matching the identity information of the user with the medical platform, and inputting the medical information into the value database 500, the medical information.
  • the physiological information is included.
  • the physiological information of the user under different conditions includes: the user does not need to consume electricity
  • the physiological information in various situations of the user pre-stored in the database 500 may be an interval range, and the interval range refers to a range value having an interval.
  • the database 500 pre-stores physiological information of different ranges of the range when the user does not need to smoke the electronic cigarette 300, and the corresponding physiological information when the smoking addict needs to take the electronic cigarette 300, and the corresponding smoking electronic The physiological information of the cigarette 300 and the corresponding physiological information when the smoking electronic cigarette 300 reaches the smoking effect.
  • the electronic cigarette control system 20 determines whether the user needs to smoke the electronic cigarette 300 by the following method: the electronic cigarette control system 20 determines whether the value of the monitored user physiological information is never required to smoke the electronic cigarette 300.
  • the range of the interval changes to the range in which the corresponding smoking addiction needs to take the electronic cigarette 300; the values of the physiological information of the user, such as the heart rate, the blood pressure, and the body temperature, are all in the range from the need to smoke the electronic cigarette 300.
  • the electronic cigarette control system 20 determines that the user needs to smoke the electronic cigarette 300; if the value of one or more physiological information of the user, such as the heart rate value, The electronic cigarette control system 20 determines that the user does not need to smoke the electronic cigarette 300 when it is changed from the range in which the electronic cigarette 300 is not required to be used to the range in which the corresponding smoking episode requires the electronic cigarette 300 to be used.
  • the electronic cigarette control system 20 determines whether the user needs to smoke the electronic cigarette 300 by the following method: the electronic cigarette control system 20 analyzes the physiological information pre-stored in the database 500 that does not need to be used for smoking the electronic cigarette 300 and its corresponding The physiological information of the user when the smoking add-over needs to take the electronic cigarette 300, and the range of the physiological information of the user when the electronic cigarette 300 needs to be taken is obtained, and the range of the physiological information preferably includes the range of the heart rate, the range of the blood pressure, and the range of the body temperature.
  • the electronic cigarette control system 20 determines whether the change value of each physiological information is within the range of the physiological information of the user when the corresponding electronic cigarette 300 needs to be used; if the change value of each physiological information is in the corresponding need to smoke the electronic cigarette When the physiological information of the user changes within 300 hours, the electronic cigarette control system 20 determines that the user needs to smoke the electronic cigarette 300; if the change value of one or more physiological information is not The electronic cigarette control system 20 determines that the user does not need to smoke the electronic cigarette 300 within the range of the user's physiological information change when the corresponding electronic cigarette 300 is required to be used.
  • step S14 the electronic cigarette control system 20 sends a power-on signal to the electronic cigarette 300 to control the electronic cigarette 300 to perform power-on preparation.
  • the electronic cigarette control system 20 sets the output power of the electronic cigarette 300 when the user holds the cigarette holder 31.
  • the output power is set according to the user's physical condition and smoking habits.
  • the physical condition includes information on the disease (unhealed or cured) and physical signs such as height and weight.
  • the smoking habits include parameters such as the number of times the user smokes the electronic cigarette 300 per day and the time each time the electronic cigarette 300 is used.
  • the electronic cigarette control system 20 controls the electronic cigarette 300 to detect the temperature and humidity value of the cigarette holder 31 through the temperature and humidity sensor 32, and judges the user by the detected temperature and humidity value. Whether to contain the cigarette holder 31.
  • the temperature and humidity values of the user's cigarette holder 31 are pre-stored in the database 500, and the pre-stored temperature and humidity values may be in the range of the interval.
  • the electronic cigarette control system 20 compares the detected temperature and humidity values with the pre-stored temperature and humidity values in the database 500, and determines whether the detected temperature and humidity values fall within the pre-stored corresponding temperature and humidity values. Within the range.
  • the electronic cigarette control system 20 determines that the user contains the cigarette holder 31. If the detected temperature value does not fall within the pre-stored temperature range and/or the detected humidity value does not fall within the pre-stored humidity value range, the electronic cigarette control system 20 determines that the user does not contain Cigarette holder 31.
  • step S18 the electronic cigarette control system 20 acquires physiological information of the user.
  • step S20 the electronic cigarette control system 20 determines whether the user performs the smoking action based on the acquired physiological information.
  • step S22 is performed; when the user does not perform the smoking operation, the process returns to step S18.
  • the electronic cigarette control system 20 determines whether the user performs the smoking action by the following method: the electronic cigarette control system 20 determines whether the value of the acquired user physiological information is from the smoking The addiction episode needs to change within the range of the e-cigarette 300 to the corresponding e-cigarette 300; the values of the user's various physiological information, such as heart rate, blood pressure and body temperature, need to be taken from the episode of smoking When the range of the smoke 300 changes within the range of the corresponding smoking electronic cigarette 300, the electronic cigarette control system 20 determines that the user performs the smoking action; if the value of one or more physiological information of the user, such as the heart rate value The electronic cigarette control system 20 determines that the user has not performed the smoking action because it does not change within the range from the range in which the smoking addiction needs to be used to the electronic cigarette 300 to the corresponding smoking electronic cigarette 300.
  • the electronic cigarette control system 20 determines that the user performs the smoking action by the following method: the electronic cigarette control system 20 analyzes the physiological information of the pre-stored smoking addiction in the database 500 when the electronic cigarette 300 needs to be taken and its corresponding The physiological information of the electronic cigarette 300 is taken, and the range of the physiological information of the user when the electronic cigarette 300 is used is obtained, and the range of the physiological information preferably includes the range of the heart rate, the range of the blood pressure, and the range of the body temperature; the electronic cigarette control system 20 determining whether the change value of each physiological information is within a range of physiological information of the user when the corresponding electronic cigarette 300 is used; if the change value of each physiological information is in the corresponding physiological information of the user when smoking the electronic cigarette 300 Within the variation range, the electronic cigarette control system 20 determines that the user performs the smoking action; if the change value of one or more physiological information is not within the range of the physiological information of the user when the corresponding electronic cigarette 300 is used, the electronic
  • step S22 the electronic cigarette control system 20 sends a control signal to the electronic cigarette 300 to control the atomizing assembly 34 to generate smoke for the user to smoke.
  • step S24 the electronic cigarette control system 20 detects the physiological information of the user.
  • step S26 the electronic cigarette control system 20 determines whether the user has reached the smoking effect based on the detected physiological information.
  • step S28 is performed; when the user does not reach the smoking effect, step S24 is performed.
  • the electronic cigarette control system 20 determines whether the user has achieved the smoking effect by the following steps:
  • the electronic cigarette control system 20 determines whether the value of the detected user physiological information changes from the range of the smoking electronic cigarette 300 to the range in which the corresponding smoking electronic cigarette 300 reaches the smoking effect; the physiological information of the user When the value is changed from the range of the smoking electronic cigarette 300 to the corresponding range in which the smoking electronic cigarette 300 reaches the smoking effect, it is determined that the user achieves the smoking effect; if the value of one or more physiological information of the user It is determined that the user has not reached the smoking effect within the range from the range of smoking the electronic cigarette 300 to the corresponding smoking electronic cigarette 300.
  • one or two physiological information The same range of intervals can be obtained when the electronic cigarette 300 is used and when the smoking electronic cigarette 300 reaches the smoking effect. For example, blood pressure and/or body temperature have the same range of intervals when the electronic cigarette 300 is used and when the smoking electronic cigarette 300 reaches the smoking effect.
  • step S28 the electronic cigarette control system 20 performs a power-off operation on the electronic cigarette 300.
  • the power-off operation includes directly transmitting a control signal to the electronic cigarette 300 to control the atomizing assembly 34 to be turned off to turn off the electronic cigarette 300, or to transmit information to the user through the wearable electronic device 100 or the electronic cigarette 300 to prompt to turn off the electronic cigarette 300.
  • the electronic cigarette control system 20 takes the time of the smoking, the physiological information when the electronic cigarette 300 is not required to be taken, the physiological information of the smoking electronic cigarette 300, the physiological information when the electronic cigarette 300 is used, and the physiological information when smoking the electronic cigarette 300.
  • the electronic cigarette control system 20 counts the number of times the user smokes on the day, and adjusts the output power of the electronic cigarette 300 according to the number of times of smoking and the time of each smoking.

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  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)
  • Measuring And Recording Apparatus For Diagnosis (AREA)

Abstract

一种吸入式设备控制系统及方法,吸入式设备控制系统用于控制可穿戴式电子设备(100)的传感器(11)监测使用者的多项生理信息,并根据监测的生理信息判断使用者是否需要吸食吸入式设备;在使用者需要吸食吸入式设备时,控制吸入式设备进行上电准备;及在使用者进行吸食动作时,控制吸入式设备供使用者吸食。通过监测的人体生理信息对吸入式设备进行控制。

Description

吸入式设备控制系统及方法 技术领域
本发明涉及吸入式设备领域,具体涉及一种吸入式设备控制系统及方法。
背景技术
随着科学技术水平的提高,现有可穿戴式电子设备的功能日益完善,不仅可实现日常通信需求,而且能够对人体心率、血压及体温等生理信息进行监测,但该监测的人体生理信息常用于了解自身身体健康信息,并未用于对其他外部设备进行控制。同时,吸入式设备,如电子烟,作为一种戒烟产品,并不能根据用户的身体状况来调节出烟量及纠正用户不良抽烟习惯,从而减弱了电子烟的戒烟效果。
因此,结合可穿戴式电子设备及吸入式设备各自的优点,以通过可穿戴式电子设备所监测的人体生理信息实现对吸入式设备的控制是亟需解决的问题。
发明内容
本发明针对现有技术存在的问题,其目的在于提供一种吸入式设备控制系统及方法,以通过可穿戴式电子设备监测的人体生理参数对吸入式设备进行控制。
为实现上述目的,本发明提供了一种吸入式设备控制系统,运行于可穿戴式电子设备或吸入式设备中,该可穿戴式电子设备与吸入式设备通信连接,该系统用于:控制可穿戴式电子设备的传感器监测使用者的多项生理信息,并根据该监测的生理信息判断使用者是否需要吸食吸入式设备;在使用 者需要吸食吸入式设备时,控制吸入式设备进行上电准备;及在使用者进行吸食动作时,控制吸入式设备供使用者吸食。
作为本发明的进一步改进,所述吸入式设备为电子烟,所述系统还用于:侦测使用者生理信息,并根据该侦测的生理信息判断使用者是否已经达到吸食效果;及在使用者已经达到吸食效果时,对电子烟执行断电操作。
作为本发明的进一步改进,所述对电子烟执行断电操作包括:发送控制信号至电子烟关闭电子烟或发送提示信息以提示使用者关闭;及在使用者不关闭电子烟且继续吸食时,统计使用者当天的吸食次数及每次吸食时间,并根据该吸食次数及每次吸食时间调整电子烟的输出功率。
作为本发明的进一步改进,所述吸入式设备为电子烟,所述系统还用于:在可穿戴式电子设备的存储单元或与可穿戴式电子设备通信连接的数据库中,预存储使用者不需要吸食电子烟时的不同区间范围的生理信息,对应的在烟瘾发作需要吸食电子烟时的生理信息,对应的吸食电子烟时的生理信息,以及对应的在吸食电子烟达到吸食效果时的生理信息,该生理信息包括心率、血压及体温。
作为本发明的进一步改进,所述吸入式设备为电子烟,所述系统还用于:控制电子烟通过温湿度感应器侦测烟嘴的温度和湿度值;将所述侦测的温度和湿度值与预存储的温度及湿度值进行比对,判断该侦测的温度和湿度值是否落入预存储的对应温度及湿度值区间范围内以判断使用者是否含住烟嘴;若该侦测的温度值落入预存储的温度区间范围内且该侦测的湿度值没有落入预存储的湿度值区间范围内,则判定使用者含住烟嘴,并设定电子烟的输出功率;及若该侦测的温度值没有落入预存储的温度区间范围内及/或该侦测的湿度值没有落入预存储的湿度值区间范围内,则判定使用者没有含住烟嘴。
为实现上述目的,一种吸入式设备控制方法,应用于可穿戴式电子设备或吸入式设备上,该可穿戴式电子设备与吸入式设备通信连接,该方法包括以下步骤:监测使用者的多项生理信息,并根据该监测的生理信息判断使用 者是否需要吸食吸入式设备;在使用者需要吸食吸入式设备时,控制吸入式设备进行上电准备;及在使用者进行吸食动作时,控制吸入式设备供使用者吸食。
作为本发明的进一步改进,所述吸入式设备为电子烟,通过以下步骤判断使用者是否需要吸食电子烟:判断监测的使用者生理信息的值是否从不需要吸食电子烟的区间范围内变化至对应的烟瘾发作需要吸食电子烟的区间范围内;在使用者的各项生理信息的值均从不需要吸食电子烟的区间范围内变化至对应的烟瘾发作需要吸食电子烟的区间范围内时,则判定使用者需要吸食电子烟;及在若使用者的一项或多项生理信息的值没有从不需要吸食电子烟的区间范围内变化至对应的烟瘾发作需要吸食电子烟的区间范围内时,则判定使用者不需要吸食电子烟。
作为本发明的进一步改进,所述吸入式设备为电子烟,通过以下步骤判断使用者是否需要吸食电子烟:分析预存储的不需要吸食电子烟时的生理信息及其对应的在烟瘾发作需要吸食电子烟时的生理信息,并获得需要吸食电子烟时使用者的生理信息变化范围;判断各项生理信息的变化值是否在对应的需要吸食电子烟时使用者的生理信息变化范围内;若各项生理信息的变化值均在其对应的需要吸食电子烟时使用者的生理信息变化范围内,则判定使用者需要吸食电子烟;及若一项或多项生理信息的变化值不在其对应的需要吸食电子烟时使用者的生理信息变化范围内,则判定使用者不需要吸食电子烟。
作为本发明的进一步改进,所述吸入式设备为电子烟,该方法还包括以下步骤:获取使用者的生理信息,并根据该获取的生理信息判断使用者是否进行吸食动作;判断该获取的使用者生理信息的值是否从烟瘾发作需要吸食电子烟的区间范围内变化至对应的吸食电子烟的区间范围内;在使用者的各项生理信息的值均从烟瘾发作需要吸食电子烟的区间范围内变化至对应的吸食电子烟的区间范围内时,则判定使用者进行吸食动作;及若使用者的一项 或多项生理信息的值没有从烟瘾发作需要吸食电子烟的区间范围内变化至对应的吸食电子烟的区间范围内,则判定使用者没有进行吸食动作。
作为本发明的进一步改进,所述吸入式设备为电子烟,该方法还包括以下步骤:获取使用者的生理信息,并根据该获取的生理信息判断使用者是否进行吸食动作;分析预存储的烟瘾发作需要吸食电子烟时的生理信息及其对应的吸食电子烟时的生理信息,并获得吸食电子烟时使用者的生理信息变化范围;判断各项生理信息的变化值是否在对应的吸食电子烟时使用者的生理信息变化范围内;若各项生理信息的变化值均在其对应的吸食电子烟时使用者的生理信息变化范围内,则判定使用者进行吸食动作;及若一项或多项生理信息的变化值不在其对应的吸食电子烟时使用者的生理信息变化范围内,则判定使用者没有进行吸食动作。
作为本发明的进一步改进,所述吸入式设备为电子烟,该方法还包括以下步骤:侦测使用者生理信息,并根据该侦测的生理信息判断使用者是否已经达到吸食效果;及在使用者已经达到吸食效果时,对电子烟执行断电操作。
作为本发明的进一步改进,通过以下步骤判断使用者是否已经达到吸食效果:判断该侦测的使用者生理信息的值是否从吸食电子烟的区间范围内变化至对应的吸食电子烟达到吸食效果的区间范围内;在使用者的各项生理信息的值均从吸食电子烟的区间范围内变化至对应的吸食电子烟达到吸食效果的区间范围内时,则判定使用者达到吸食效果;及若使用者的一项或多项生理信息的值没有从吸食电子烟的区间范围内变化至对应的吸食电子烟达到吸食效果的区间范围内,则判定使用者没有达到吸食效果。
作为本发明的进一步改进,通过以下步骤对电子烟执行断电操作:发送控制信号至电子烟关闭电子烟或发送提示信息以提示使用者关闭;及在使用者不关闭电子烟且继续吸食时,统计使用者当天的吸食次数及每次吸食时间,并根据该吸食次数及每次吸食时间调整电子烟的输出功率。
利用本发明所述的吸入式设备控制系统及方法,可以利用监测的生理信 息对使用者吸食吸入式设备的各个状态进行判断,并根据判断结果来实现对吸入式设备上电、设定输出功率、输出烟雾、关闭吸入式设备等的操作,以实现通过监测的生理信息对吸入式设备的有效控制,方便快捷。
附图说明
图1为本发明较佳实施例可穿戴式电子设备与电子烟的结构示意图;
图2为本发明较佳实施例电子烟控制方法的流程框图。
主要元件符号说明
可穿戴式电子设备 100
短距无线通信单元 10
传感器 11
无线通信单元 12
存储单元 13
微处理器 14
电子烟控制系统 20
短距无线通信网络 200
电子烟 300
短距无线通信电路 30
烟嘴 31
温湿度感应器 32
烟杆 33
雾化组件 34
微控制器 35
无线网络 400
数据库 500
如下具体实施方式将结合上述附图进一步说明本发明。
具体实施方式
以下将结合附图所示的各实施方式对本发明进行详细描述。但这些实施方式并不限制本发明,本领域的普通技术人员根据这些实施方式所做出的结构或功能上的变换均包含在本发明的保护范围内。
本发明的可穿戴式电子设备与吸入式设备通信连接,吸入式设备可以为电子烟、医用雾化器等。
参阅图1所示为本发明较佳实施例可穿戴式电子设备与吸入式设备的结构示意图,该可穿戴式电子设备对人体生理信息进行监测,并通过监测的人体生理信息对吸入式设备进行控制。本较佳实施例中,该生理信息优选包括心率、血压及体温。本发明实施方式中,吸入式设备为电子烟300,该可穿戴式电子设备100通过短距无线通信网络200与电子烟300进行通信连接。该短距无线通信网络200可以为蓝牙通信网络或红外网络等。
所述可穿戴式电子设备100可以为智能手环、智能手表等电子装置。该可穿戴式电子设备100包括短距无线通信单元10,且所述电子烟300包括短距无线通信电路30,所述可穿戴式电子设备100通过短距无线通信单元10与电子烟300的短距无线通信电路30进行通信连接,以实现可穿戴式电子设备100与电子烟300之间的信息传输。所述短距无线通信单元10及短距无线通信电路30可以为蓝牙模块或红外线模块等短距通信模块。
电子烟300还包括烟嘴31、温湿度感应器32、烟杆33、及设置于烟杆33中的雾化组件34及微控制器35等元件。所述烟嘴31可被使用者含住以供使用者吸食电子烟300的烟雾。所述温湿度感应器32可以设置于烟嘴31中,或设置于烟杆33中离烟嘴31预设距离的位置,该预设距离应保证温湿度感应器32感应温湿度值的敏感度。在本较佳实施例中,以温湿度感应器 32设置于烟嘴31中进行介绍。所述温湿度感应器32用于侦测使用者含住烟嘴31时烟嘴31的温度及湿度值,该温湿度感应器32可以为一个部件以感测温度和湿度值,也可以为两个部件分别感测温度和湿度值,例如温度感应器感测温度值和湿度感应器感测湿度值。本较佳实施例以温湿度感应器为一个部件进行介绍。所述烟杆33与烟嘴31配置连接以形成电子烟300的外观,并在烟杆33配置雾化组件34及微控制器35等以制成电子烟300。所述微控制器35与雾化组件34电性连接,该微控制器35用于接收可穿戴式电子设备100发送的控制指令,并根据该控制指令控制雾化组件34的开启与关闭。所述雾化组件34包括烟弹及雾化头等元件,用于将烟弹中的液态尼古丁转化为烟雾以供使用者吸食。
所述可穿戴式电子设备100还包括传感器11及无线通信单元12。该传感器11包括心率监测器、体温传感器等,用于监测人体心率、血压、体温等生理信息。该无线通信单元12可以为移动通信单元或WiFi(Wireless Fidelity,无线保真)通信模块等。
所述可穿戴式电子设备100的无线通信单元12通过无线网络400与数据库500通信连接。该无线网络400可以为移动通信网络或WiFi通信网络等。可穿戴式电子设备100的无线通信单元12通过无线网络400将传感器11监测的生理信息发送至数据库500进行存储。与可穿戴式电子设备100通信连接的数据库500,可以设置于电子烟300中,也可以独立于可穿戴式电子设备100及电子烟300而独立设置。
在本较佳实施例中,所述监测的生理信息存储于数据库500中。在其他实施例中,可穿戴式电子设备100还包括存储单元13,该监测的生理信息也可存储于该存储单元13中。
所述监测的生理信息包括人体正常状况下不需要吸食电子烟300时的生理信息,在烟瘾发作需要吸食电子烟300时的生理信息,吸食电子烟300时的生理信息,及吸食电子烟300达到吸食效果时的生理信息,并将该监测的 生理信息存储于数据库500中。在本较佳实施例中,所述生理信息优选包括心率、血压及体温。
本较佳实施例中,在需对电子烟300进行控制前,数据库500中预存储有不同状况下使用者的生理信息。该生理信息可以通过以下途径得到,但不仅限于,由使用者手工录入至数据库500中,或者匹配使用者的身份信息与医疗平台进行对接,并将其医疗信息录入值数据库500中,该医疗信息包括所述生理信息。该不同状况下使用者的生理信息包括:使用者不需要吸食电子烟300时的生理信息,使用者在烟瘾发作需要吸食电子烟300时的生理信息,使用者吸食电子烟300时的生理信息,及使用者吸食电子烟300达到吸食效果时的生理信息。数据库500中预存储的使用者各种状况下的各项生理信息均可为区间范围,该区间范围指具有区间的范围值,例如不需要吸食电子烟300时的心率为70-80次/分钟,在烟瘾发作需要吸食电子烟300时的心率为81-88次/分钟,吸食电子烟300时的心率为89-110次/分钟。
根据时间、运动量及身体状态的不同,使用者的生理信息所对应的区间范围可能会有不同。在本较佳实施例中,数据库500预存储使用者不需要吸食电子烟300时的不同区间范围的生理信息,其对应的在烟瘾发作需要吸食电子烟300时的生理信息,其对应的吸食电子烟300时的生理信息,以及其对应的吸食电子烟300达到吸食效果时的生理信息。该生理信息的区间范围不同,可以为一项或多项生理信息区间范围不同,例如心率及血压的区间范围不同,而体温区间范围相同。
所述可穿戴式电子设备100还包括微处理器14,该微处理器14与传感器11、无线通信单元12及存储单元13电性连接。该微处理器14用于控制传感器11监测人体的心率、血压及体温等生理信息。
电子烟控制系统20运行于微处理器14或微控制器35上,以对可穿戴式电子设备100及电子烟300进行控制,并通过监测的生理信息对电子烟300进行控制。该电子烟控制系统包括计算机化程序指令。
在本较佳实施例中,需对电子烟300进行控制时,电子烟控制系统20通过传感器11监测使用者的各项生理信息,并判断使用者是否需要吸食电子烟300。在本较佳实施例中,所述生理信息优选包括心率、血压及体温。在判断使用者是否需要吸食电子烟300时,电子烟控制系统20判断该监测的使用者生理信息的值是否从不需要吸食电子烟300的区间范围内变化至对应的烟瘾发作需要吸食电子烟300的区间范围内。在使用者的各项生理信息的值,例如心率、血压及体温的值,均从不需要吸食电子烟300的区间范围内变化至对应的需要吸食电子烟300的区间范围内时,则电子烟控制系统20判定使用者需要吸食电子烟300。例如:使用者的心率值从不需要吸食电子烟300的心率区间范围内变化至对应的需要吸食电子烟300的心率区间范围内,使用者的血压值从不需要吸食电子烟300的血压区间范围内变化至对应的需要吸食电子烟300的血压区间范围内,且使用者的体温值从不需要吸食电子烟300的体温区间范围内变化至对应的需要吸食电子烟300的体温区间范围内,则判定使用者需要吸食电子烟300。若使用者的一项或多项生理信息的值,例如心率值,没有从不需要吸食电子烟300的区间范围内变化至对应的烟瘾发作需要吸食电子烟300的区间范围内时,则电子烟控制系统20判定使用者不需要吸食电子烟300。例如:使用者的心率值没有从不需要吸食电子烟300的心率区间范围内变化至对应的需要吸食电子烟300的心率区间范围内,但使用者的血压值从不需要吸食电子烟300的血压区间范围内变化至对应的需要吸食电子烟300的血压区间范围内,且使用者的体温值从不需要吸食电子烟300的体温区间范围内变化至对应的需要吸食电子烟300的体温区间范围内,则判定使用者不需要吸食电子烟300。
在其他实施例中,电子烟控制系统20分析数据库500中预存储的不需要吸食电子烟300时的生理信息及其对应的在烟瘾发作需要吸食电子烟300时的生理信息,并获得需要吸食电子烟300时使用者的生理信息变化范围。该生理信息变化范围优选包括心率的变化范围、血压的变化范围及体温的变化 范围。电子烟控制系统20判断各项生理信息的变化值是否在对应的需要吸食电子烟300时使用者的生理信息变化范围内。若各项生理信息的变化值均在其对应的需要吸食电子烟300时使用者的生理信息变化范围内,则电子烟控制系统20判定使用者需要吸食电子烟300。例如,心率变化值在需要吸食电子烟300时使用者的心率变化范围内,血压变化值在需要吸食电子烟300时使用者的血压变化范围内,且体温变化值在需要吸食电子烟300时使用者的体温变化范围内,则判定使用者需要吸食电子烟300。若一项或多项生理信息的变化值不在其对应的需要吸食电子烟300时使用者的生理信息变化范围内,则电子烟控制系统20判定使用者不需要吸食电子烟300。例如,心率变化值在需要吸食电子烟300时使用者的心率变化范围内,血压变化值在需要吸食电子烟300时使用者的血压变化范围内,但体温变化值不在需要吸食电子烟300时使用者的体温变化范围内,则判定使用者不需要吸食电子烟300。
在使用者需要吸食电子烟300时,电子烟控制系统20发送上电信号至电子烟300以控制电子烟300进行上电准备。电子烟控制系统20控制电子烟300通过温湿度感应器32侦测烟嘴31的温度和湿度值,并通过该侦测的温度和湿度值判断使用者是否含住烟嘴31。数据库500中预存储有使用者含住烟嘴31的温度及湿度值,该预存储的温度和湿度值可以为区间范围。电子烟控制系统20将所述侦测的温度和湿度值与数据库500中预存储的温度及湿度值进行比对,判断该侦测的温度和湿度值是否落入预存储的对应温度及湿度值区间范围内。若该侦测的温度值落入预存储的温度区间范围内且该侦测的湿度值没有落入预存储的湿度值区间范围内,则电子烟控制系统20判定使用者含住烟嘴31。若该侦测的温度值没有落入预存储的温度区间范围内及/或该侦测的湿度值没有落入预存储的湿度值区间范围内,则电子烟控制系统20判定使用者没有含住烟嘴31。
在使用者含住烟嘴31时,电子烟控制系统20设定电子烟300的输出功 率。该输出功率根据使用者的身体状态及吸食习惯进行设置。该身体状态包括患病信息(未治愈或已经治愈)及身高、体重等生理体征。该吸食习惯包括使用者每天吸食电子烟300的次数及每次吸食电子烟300的时间等参数。
电子烟控制系统20获取使用者的生理信息,并判断使用者是否进行吸食动作。在判断使用者是否进行吸食动作时,电子烟控制系统20判断该获取的使用者生理信息的值是否从烟瘾发作需要吸食电子烟300的区间范围内变化至对应的吸食电子烟300的区间范围内。在使用者的各项生理信息的值,例如心率、血压及体温值,均从烟瘾发作需要吸食电子烟300的区间范围内变化至对应的吸食电子烟300的区间范围内时,则电子烟控制系统20判定使用者进行吸食动作。例如:使用者的心率值从烟瘾发作需要吸食电子烟300的心率区间范围内变化至对应的吸食电子烟300的心率区间范围内,使用者的血压值从烟瘾发作需要吸食电子烟300的血压区间范围内变化至对应的吸食电子烟300的血压区间范围内,且使用者的体温值从烟瘾发作需要吸食电子烟300的体温区间范围内变化至对应的吸食电子烟300的体温区间范围内,则判定使用者进行吸食动作。若使用者的一项或多项生理信息的值,例如心率值,没有从烟瘾发作需要吸食电子烟300的区间范围内变化至对应的吸食电子烟300的区间范围内,则电子烟控制系统20判定使用者没有进行吸食动作。例如:使用者的心率值没有从烟瘾发作需要吸食电子烟300的心率区间范围内变化至对应的吸食电子烟300的心率区间范围内,但使用者的血压值从烟瘾发作需要吸食电子烟300的血压区间范围内变化至对应的吸食电子烟300的血压区间范围内,且使用者的体温值从烟瘾发作需要吸食电子烟300的体温区间范围内变化至对应的吸食电子烟300的体温区间范围内,则判定使用者没有进行吸食动作。
在其他实施例中,电子烟控制系统20分析数据库500中预存储的烟瘾发作需要吸食电子烟300时的生理信息及其对应的吸食电子烟300时的生理信息,并获得吸食电子烟300时使用者的生理信息变化范围。该生理信息变化 范围优选包括心率的变化范围、血压的变化范围及体温的变化范围。电子烟控制系统20判断各项生理信息的变化值是否在对应的吸食电子烟300时使用者的生理信息变化范围内。若各项生理信息的变化值均在其对应的吸食电子烟300时使用者的生理信息变化范围内,则电子烟控制系统20判定使用者进行吸食动作。例如,心率变化值在吸食电子烟300时使用者的心率变化范围内,血压变化值在吸食电子烟300时使用者的血压变化范围内,且体温变化值在吸食电子烟300时使用者的体温变化范围内,则判定使用者进行吸食动作。若一项或多项生理信息的变化值不在其对应的吸食电子烟300时使用者的生理信息变化范围内,则电子烟控制系统20判定使用者没有进行吸食动作。例如,心率变化值在吸食电子烟300时使用者的心率变化范围内,血压变化值在吸食电子烟300时使用者的血压变化范围内,但体温变化值不在吸食电子烟300时使用者的体温变化范围内,则判定使用者没有进行吸食动作。
在使用者进行吸食动作时,电子烟控制系统20发送控制信号至电子烟300,以控制雾化组件34产生烟雾供使用者吸食。
电子烟控制系统20侦测使用者心率、血压及体温等生理信息,并判断使用者是否已经达到吸食效果。在本较佳实施例中,判断使用者是否达到吸食效果时,电子烟控制系统20判断该侦测的使用者生理信息的值是否从吸食电子烟300的区间范围内变化至对应的吸食电子烟300达到吸食效果的区间范围内。在使用者的各项生理信息的值均从吸食电子烟300的区间范围内变化至对应的吸食电子烟300达到吸食效果的区间范围内时,则判定使用者达到吸食效果。若使用者的一项或多项生理信息的值没有从吸食电子烟300的区间范围内变化至对应的吸食电子烟300达到吸食效果的区间范围内,则判定使用者没有达到吸食效果。在本较佳实施例中,一项或两项生理信息可以在吸食电子烟300时与吸食电子烟300达到吸食效果时具有相同的区间范围。例如,血压及/或体温在吸食电子烟300时与吸食电子烟300达到吸食效果时 具有相同的区间范围。
在使用者已经达到吸食效果时,电子烟控制系统20对电子烟300执行断电操作。该断电操作包括直接发送控制信号至电子烟300控制雾化组件34关闭以关闭电子烟300,或者通过可穿戴式电子设备100或电子烟300发送信息给使用者以提示关闭电子烟300。该提示包括在可穿戴式电子设备100或电子烟300的显示屏(图中未示出)上显示提示信息或者通过振动、蜂鸣声来实现。
在电子烟300关闭后,电子烟控制系统20将本次吸食时间、不需要吸食电子烟300时的生理信息、烟瘾发作需要吸食电子烟300的生理信息、吸食电子烟300时的生理信息、吸食电子烟300达到吸食效果时的生理信息、及温湿度感应器32侦测的烟嘴31的温度和湿度值均发送至数据库500进行存储。
在可穿戴式电子设备100或电子烟300提示使用者关闭电子烟100但使用者还继续吸食时,电子烟控制系统20统计使用者当天的吸食次数,并根据该吸食次数及每次吸食时间调整电子烟300的输出功率。
参阅图2所示为本发明较佳实施例电子烟控制方法的流程框图。
步骤S10,电子烟控制系统20通过传感器11监测使用者的各项生理信息。在本较佳实施例中,所述生理信息优选包括心率、血压及体温。。
步骤S12,电子烟控制系统20根据监测的生理信息变化判断使用者是否需要吸食电子烟300。在使用者需要吸食电子烟300,执行步骤S14;在使用者不需要吸食电子烟300,则返回执行步骤S10。
本较佳实施例中,在需对电子烟300进行控制前,数据库500中预存储有不同状况下使用者的生理信息。该生理信息可以通过以下途径得到,但不仅限于,由使用者手工录入至数据库500中,或者匹配使用者的身份信息与医疗平台进行对接,并将其医疗信息录入值数据库500中,该医疗信息包括所述生理信息。该不同状况下使用者的生理信息包括:使用者不需要吸食电 子烟300时的生理信息,使用者在烟瘾发作需要吸食电子烟300时的生理信息,使用者吸食电子烟300时的生理信息,及使用者吸食电子烟300达到吸食效果时的生理信息。数据库500中预存储的使用者各种状况下的各项生理信息均可为区间范围,该区间范围指具有区间的范围值。在本较佳实施例中,数据库500预存储使用者不需要吸食电子烟300时的不同区间范围的生理信息,其对应的在烟瘾发作需要吸食电子烟300时的生理信息,其对应的吸食电子烟300时的生理信息,以及其对应的吸食电子烟300达到吸食效果时的生理信息。
在本较佳实施例中,电子烟控制系统20通过以下方法判断使用者是否需要吸食电子烟300:电子烟控制系统20判断该监测的使用者生理信息的值是否从不需要吸食电子烟300的区间范围内变化至对应的烟瘾发作需要吸食电子烟300的区间范围内;在使用者的各项生理信息的值,例如心率、血压及体温的值,均从不需要吸食电子烟300的区间范围内变化至对应的需要吸食电子烟300的区间范围内时,则电子烟控制系统20判定使用者需要吸食电子烟300;若使用者的一项或多项生理信息的值,例如心率值,没有从不需要吸食电子烟300的区间范围内变化至对应的烟瘾发作需要吸食电子烟300的区间范围内时,则电子烟控制系统20判定使用者不需要吸食电子烟300。
在其他实施例中,电子烟控制系统20通过以下方法判断使用者是否需要吸食电子烟300:电子烟控制系统20分析数据库500中预存储的不需要吸食电子烟300时的生理信息及其对应的在烟瘾发作需要吸食电子烟300时的生理信息,并获得需要吸食电子烟300时使用者的生理信息变化范围,该生理信息变化范围优选包括心率的变化范围、血压的变化范围及体温的变化范围;电子烟控制系统20判断各项生理信息的变化值是否在对应的需要吸食电子烟300时使用者的生理信息变化范围内;若各项生理信息的变化值均在其对应的需要吸食电子烟300时使用者的生理信息变化范围内,则电子烟控制系统20判定使用者需要吸食电子烟300;若一项或多项生理信息的变化值不 在其对应的需要吸食电子烟300时使用者的生理信息变化范围内,则电子烟控制系统20判定使用者不需要吸食电子烟300。
步骤S14,电子烟控制系统20发送上电信号至电子烟300以控制电子烟300进行上电准备。
步骤S16,在使用者含住烟嘴31时,电子烟控制系统20设定电子烟300的输出功率。该输出功率根据使用者的身体状态及吸食习惯进行设置。该身体状态包括患病信息(未治愈或已经治愈)及身高、体重等生理体征。该吸食习惯包括使用者每天吸食电子烟300的次数及每次吸食电子烟300的时间等参数。
在侦测使用者是否含住烟嘴31时,电子烟控制系统20控制电子烟300通过温湿度感应器32侦测烟嘴31的温度和湿度值,并通过该侦测的温度和湿度值判断使用者是否含住烟嘴31。数据库500中预存储有使用者含住烟嘴31的温度及湿度值,该预存储的温度和湿度值可以为区间范围。电子烟控制系统20将所述侦测的温度和湿度值与数据库500中预存储的温度及湿度值进行比对,判断该侦测的温度和湿度值是否落入预存储的对应温度及湿度值区间范围内。若该侦测的温度值落入预存储的温度区间范围内且该侦测的湿度值没有落入预存储的湿度值区间范围内,则电子烟控制系统20判定使用者含住烟嘴31。若该侦测的温度值没有落入预存储的温度区间范围内及/或该侦测的湿度值没有落入预存储的湿度值区间范围内,则电子烟控制系统20判定使用者没有含住烟嘴31。
步骤S18,电子烟控制系统20获取使用者的生理信息。
步骤S20,电子烟控制系统20根据获取的生理信息判断使用者是否进行吸食动作。在使用者进行吸食动作时,执行步骤S22;在使用者没有进行吸食动作时,返回执行步骤S18。
在本较佳实施例中,电子烟控制系统20通过以下方法判断使用者进行吸食动作:电子烟控制系统20判断该获取的使用者生理信息的值是否从烟 瘾发作需要吸食电子烟300的区间范围内变化至对应的吸食电子烟300的区间范围内;在使用者的各项生理信息的值,例如心率、血压及体温值,均从烟瘾发作需要吸食电子烟300的区间范围内变化至对应的吸食电子烟300的区间范围内时,则电子烟控制系统20判定使用者进行吸食动作;若使用者的一项或多项生理信息的值,例如心率值,没有从烟瘾发作需要吸食电子烟300的区间范围内变化至对应的吸食电子烟300的区间范围内,则电子烟控制系统20判定使用者没有进行吸食动作。
在其他较佳实施例中,电子烟控制系统20通过以下方法判断使用者进行吸食动作:电子烟控制系统20分析数据库500中预存储的烟瘾发作需要吸食电子烟300时的生理信息及其对应的吸食电子烟300时的生理信息,并获得吸食电子烟300时使用者的生理信息变化范围,该生理信息变化范围优选包括心率的变化范围、血压的变化范围及体温的变化范围;电子烟控制系统20判断各项生理信息的变化值是否在对应的吸食电子烟300时使用者的生理信息变化范围内;若各项生理信息的变化值均在其对应的吸食电子烟300时使用者的生理信息变化范围内,则电子烟控制系统20判定使用者进行吸食动作;若一项或多项生理信息的变化值不在其对应的吸食电子烟300时使用者的生理信息变化范围内,则电子烟控制系统20判定使用者没有进行吸食动作。
步骤S22,电子烟控制系统20发送控制信号至电子烟300,以控制雾化组件34产生烟雾供使用者吸食。
步骤S24,电子烟控制系统20侦测使用者的生理信息。
步骤S26,电子烟控制系统20根据侦测的生理信息判断使用者是否已经达到吸食效果。在使用者已经达到吸食效果时,执行步骤S28;在使用者没有达到吸食效果时,执行步骤S24。
在本较佳实施例中,电子烟控制系统20通过以下步骤判断使用者是否达到吸食效果:
电子烟控制系统20判断该侦测的使用者生理信息的值是否从吸食电子烟300的区间范围内变化至对应的吸食电子烟300达到吸食效果的区间范围内;在使用者的各项生理信息的值均从吸食电子烟300的区间范围内变化至对应的吸食电子烟300达到吸食效果的区间范围内时,则判定使用者达到吸食效果;若使用者的一项或多项生理信息的值没有从吸食电子烟300的区间范围内变化至对应的吸食电子烟300达到吸食效果的区间范围内,则判定使用者没有达到吸食效果;在本较佳实施例中,一项或两项生理信息可以在吸食电子烟300时与吸食电子烟300达到吸食效果时具有相同的区间范围。例如,血压及/或体温在吸食电子烟300时与吸食电子烟300达到吸食效果时具有相同的区间范围。
步骤S28,电子烟控制系统20对电子烟300执行断电操作。该断电操作包括直接发送控制信号至电子烟300控制雾化组件34关闭以关闭电子烟300,或者通过可穿戴式电子设备100或电子烟300发送信息给使用者以提示关闭电子烟300。
在电子烟300关闭后,电子烟控制系统20将本次吸食时间、不需要吸食电子烟300时的生理信息、烟瘾发作需要吸食电子烟300的生理信息、吸食电子烟300时的生理信息、吸食电子烟300达到吸食效果时的生理信息、及温湿度感应器32侦测的烟嘴31的温度和湿度值发送至数据库500进行存储;在可穿戴式电子设备100或电子烟300提示使用者关闭电子烟100但使用者还继续吸食时,电子烟控制系统20统计使用者当天的吸食次数,并根据该吸食次数及每次吸食时间调整电子烟300的输出功率。
应当理解,虽然本说明书按照实施方式加以描述,但并非每个实施方式仅包含一个独立的技术方案,说明书的这种叙述方式仅仅是为清楚起见,本领域技术人员应当将说明书作为一个整体,各实施方式中的技术方案也可以经适当组合,形成本领域技术人员可以理解的其他实施方式。
上文所列出的一系列的详细说明仅仅是针对本发明的可行性实施方式的 具体说明,它们并非用以限制本发明的保护范围,凡未脱离本发明技艺精神所作的等效实施方式或变更均应包含在本发明的保护范围之内。

Claims (13)

  1. 一种吸入式设备控制系统,运行于可穿戴式电子设备或吸入式设备中,该可穿戴式电子设备与吸入式设备通信连接,其特征在于,该系统用于:
    控制可穿戴式电子设备的传感器监测使用者的多项生理信息,并根据该监测的生理信息判断使用者是否需要吸食吸入式设备;
    在使用者需要吸食吸入式设备时,控制吸入式设备进行上电准备;及
    在使用者进行吸食动作时,控制吸入式设备供使用者吸食。
  2. 根据权利要求1所述的吸入式设备控制系统,其特征在于,所述吸入式设备为电子烟,所述系统还用于:
    侦测使用者生理信息,并根据该侦测的生理信息判断使用者是否已经达到吸食效果;及
    在使用者已经达到吸食效果时,对电子烟执行断电操作。
  3. 根据权利要求2所述的吸入式设备控制系统,其特征在于,所述对电子烟执行断电操作包括:
    发送控制信号至电子烟关闭电子烟或发送提示信息以提示使用者关闭;及
    在使用者不关闭电子烟且继续吸食时,统计使用者当天的吸食次数及每次吸食时间,并根据该吸食次数及每次吸食时间调整电子烟的输出功率。
  4. 根据权利要求1所述的吸入式设备控制系统,其特征在于,所述吸入式设备为电子烟,所述系统还用于:
    在可穿戴式电子设备的存储单元或与可穿戴式电子设备通信连接的数据库中,预存储使用者不需要吸食电子烟时的不同区间范围的生理信息,对应的在烟瘾发作需要吸食电子烟时的生理信息,对应的吸食电子烟时的生理信息,以及对应的在吸食电子烟达到吸食效果时的生理信息,该生理信息包括心率、血压及体温。
  5. 根据权利要求1所述的吸入式设备控制系统,其特征在于,所述吸入式设备为电子烟,所述系统还用于:
    控制电子烟通过温湿度感应器侦测烟嘴的温度和湿度值;
    将所述侦测的温度和湿度值与预存储的温度及湿度值进行比对,判断该侦测的温度和湿度值是否落入预存储的对应温度及湿度值区间范围内以判断使用者是否含住烟嘴;
    若该侦测的温度值落入预存储的温度区间范围内且该侦测的湿度值没有落入预存储的湿度值区间范围内,则判定使用者含住烟嘴,并设定电子烟的输出功率;及
    若该侦测的温度值没有落入预存储的温度区间范围内及/或该侦测的湿度值没有落入预存储的湿度值区间范围内,则判定使用者没有含住烟嘴。
  6. 一种吸入式设备控制方法,应用于可穿戴式电子设备或吸入式设备上,该可穿戴式电子设备与吸入式设备通信连接,其特征在于,该方法包括以下步骤:
    监测使用者的多项生理信息,并根据该监测的生理信息判断使用者是否需要吸食吸入式设备;
    在使用者需要吸食吸入式设备时,控制吸入式设备进行上电准备;及
    在使用者进行吸食动作时,控制吸入式设备供使用者吸食。
  7. 根据权利要求6所述的电子烟控制方法,其特征在于,所述吸入式设备为电子烟,通过以下步骤判断使用者是否需要吸食电子烟:
    判断监测的使用者生理信息的值是否从不需要吸食电子烟的区间范围内变化至对应的烟瘾发作需要吸食电子烟的区间范围内;
    在使用者的各项生理信息的值均从不需要吸食电子烟的区间范围内变化至对应的烟瘾发作需要吸食电子烟的区间范围内时,则判定使用者需要吸食电子烟;及
    若使用者的一项或多项生理信息的值没有从不需要吸食电子烟的区间范 围内变化至对应的烟瘾发作需要吸食电子烟的区间范围内时,则判定使用者不需要吸食电子烟。
  8. 根据权利要求6所述的吸入式设备控制方法,其特征在于,所述吸入式设备为电子烟,通过以下步骤判断使用者是否需要吸食电子烟:
    分析预存储的不需要吸食电子烟时的生理信息及其对应的在烟瘾发作需要吸食电子烟时的生理信息,并获得需要吸食电子烟时使用者的生理信息变化范围;
    判断各项生理信息的变化值是否在对应的需要吸食电子烟时使用者的生理信息变化范围内;
    若各项生理信息的变化值均在其对应的需要吸食电子烟时使用者的生理信息变化范围内,则判定使用者需要吸食电子烟;及
    若一项或多项生理信息的变化值不在其对应的需要吸食电子烟时使用者的生理信息变化范围内,则判定使用者不需要吸食电子烟。
  9. 根据权利要求6所述的吸入式设备控制方法,其特征在于,所述吸入式设备为电子烟,该方法还包括以下步骤:
    获取使用者的生理信息,并根据该获取的生理信息判断使用者是否进行吸食动作;
    判断该获取的使用者生理信息的值是否从烟瘾发作需要吸食电子烟的区间范围内变化至对应的吸食电子烟的区间范围内;
    在使用者的各项生理信息的值均从烟瘾发作需要吸食电子烟的区间范围内变化至对应的吸食电子烟的区间范围内时,则判定使用者进行吸食动作;及
    若使用者的一项或多项生理信息的值没有从烟瘾发作需要吸食电子烟的区间范围内变化至对应的吸食电子烟的区间范围内,则判定使用者没有进行吸食动作。
  10. 根据权利要求6所述的吸入式设备控制方法,其特征在于,所述吸 入式设备为电子烟,该方法还包括以下步骤:
    获取使用者的生理信息,并根据该获取的生理信息判断使用者是否进行吸食动作;
    分析预存储的烟瘾发作需要吸食电子烟时的生理信息及其对应的吸食电子烟时的生理信息,并获得吸食电子烟时使用者的生理信息变化范围;
    判断各项生理信息的变化值是否在对应的吸食电子烟时使用者的生理信息变化范围内;
    若各项生理信息的变化值均在其对应的吸食电子烟时使用者的生理信息变化范围内,则判定使用者进行吸食动作;及
    若一项或多项生理信息的变化值不在其对应的吸食电子烟时使用者的生理信息变化范围内,则判定使用者没有进行吸食动作。
  11. 根据权利要求6所述的吸入式设备控制方法,其特征在于,所述吸入式设备为电子烟,该方法还包括以下步骤:
    侦测使用者生理信息,并根据该侦测的生理信息判断使用者是否已经达到吸食效果;及
    在使用者已经达到吸食效果时,对电子烟执行断电操作。
  12. 根据权利要求11所述的吸入式设备控制方法,其特征在于,通过以下步骤判断使用者是否已经达到吸食效果:
    判断该侦测的使用者生理信息的值是否从吸食电子烟的区间范围内变化至对应的吸食电子烟达到吸食效果的区间范围内;
    在使用者的各项生理信息的值均从吸食电子烟的区间范围内变化至对应的吸食电子烟达到吸食效果的区间范围内时,则判定使用者达到吸食效果;及
    若使用者的一项或多项生理信息的值没有从吸食电子烟的区间范围内变化至对应的吸食电子烟达到吸食效果的区间范围内,则判定使用者没有达到吸食效果。
  13. 根据权利要求11所述的吸入式设备控制方法,其特征在于,通过以下步骤对电子烟执行断电操作:
    发送控制信号至电子烟关闭电子烟或发送提示信息以提示使用者关闭;及
    在使用者不关闭电子烟且继续吸食时,统计使用者当天的吸食次数及每次吸食时间,并根据该吸食次数及每次吸食时间调整电子烟的输出功率。
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