WO2017114435A1 - 一种智能生发装置及系统 - Google Patents

一种智能生发装置及系统 Download PDF

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Publication number
WO2017114435A1
WO2017114435A1 PCT/CN2016/112776 CN2016112776W WO2017114435A1 WO 2017114435 A1 WO2017114435 A1 WO 2017114435A1 CN 2016112776 W CN2016112776 W CN 2016112776W WO 2017114435 A1 WO2017114435 A1 WO 2017114435A1
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Prior art keywords
temperature
unit
intelligent
light emitting
humidity
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PCT/CN2016/112776
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English (en)
French (fr)
Inventor
邹健
张炜
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深圳市智连众康科技有限公司
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Publication of WO2017114435A1 publication Critical patent/WO2017114435A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N5/0613Apparatus adapted for a specific treatment
    • A61N5/0616Skin treatment other than tanning
    • A61N5/0617Hair treatment
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N5/0613Apparatus adapted for a specific treatment
    • A61N5/0625Warming the body, e.g. hyperthermia treatment
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61NELECTROTHERAPY; MAGNETOTHERAPY; RADIATION THERAPY; ULTRASOUND THERAPY
    • A61N5/00Radiation therapy
    • A61N5/06Radiation therapy using light
    • A61N5/067Radiation therapy using light using laser light
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection

Definitions

  • the invention relates to the technical field of hair care and treatment, and in particular to an intelligent hair growth device and system.
  • the present invention provides an intelligent hair growth device, an intelligent hair growth device control method, and an intelligent hair growth system. details as follows:
  • An intelligent hair growth device includes an illumination unit for optically illuminating a user, wherein the method further includes:
  • a temperature and humidity sensing unit configured to detect temperature and humidity of a portion of the user being irradiated during use of the intelligent hair growth device
  • a processing unit connected to the light emitting unit and the temperature and humidity sensing unit, configured to control an output power of the light emitting unit according to the detected temperature and/or calculate a grease degree of the user's irradiated portion according to the detected humidity.
  • the processing unit controls the light emitting unit to reduce the output power when the detected temperature is higher than the preset temperature T1; and controls the light emitting unit to increase the output power when the detected temperature is lower than the preset temperature T2; When the detected temperature is between T2 and T1, the output power of the light emitting unit is controlled to be unchanged; wherein T2 is smaller than T1.
  • the processing unit reduces the output power by reducing the output duty ratio of the light emitting unit or changing the output of the light emitting unit from the steady light state to the blinking state output; the first processing The unit realizes that the light emitting unit increases the output power by increasing the output duty ratio of the light emitting unit or changing the light emitting unit from the blinking state output to the normally bright state output.
  • the first processing unit calculates the grease degree of the irradiated portion based on the detected humidity and the ratio of water to oil in the secretion of the irradiated portion.
  • the number of the temperature and humidity sensing units is plural, respectively disposed in different areas of the intelligent germinal device, and one temperature and humidity sensing unit detects the temperature and humidity of the irradiated part corresponding to one area;
  • the unit is configured to control the output power of the light emitting unit of the area according to the detected temperature of the irradiated part corresponding to each area and/or calculate the fat of the irradiated part according to the detected humidity of the irradiated part corresponding to each area. degree.
  • a circuit board and a first temperature sensing unit for detecting the temperature of the circuit board, the light emitting unit and the first temperature sensing unit are located on the circuit board; the first temperature sensing unit Also connected to the processing unit for transmitting the detected circuit board temperature to the processing unit; the processing unit determining the lighting unit according to the board temperature and total irradiation energy before the lighting unit operates This working time.
  • the method further includes a timing unit for timing the operation of the light emitting unit, and is connected to the processing unit; the number of the first temperature sensing units is plural, respectively set in different ones of the smart hair generating devices a first temperature sensing unit detecting a board temperature of an area; the timing unit transmitting a recalculated instruction to the processing unit when the lighting unit operates T3; the processing unit receiving the re After the calculated command, the remaining working time of the light-emitting unit in the area is recalculated according to the board temperature of each area and the remaining irradiation energy at this time.
  • the smart hair growth device is an intelligent hair growth helmet
  • the light emitting unit is one or more of an LED, an edge emitting laser diode, and a vertical cavity surface emitting laser diode.
  • a method for controlling an intelligent hair growth device comprising: a light emitting unit for optically illuminating a user, wherein the method comprises the following steps:
  • the step S20 is further: when the temperature of the irradiated portion is higher than the preset temperature T1, controlling the light emitting unit to reduce the output power; when the temperature of the irradiated portion is lower than the preset temperature T2, controlling the The light emitting unit increases the output power; when the temperature of the irradiated portion is between T2 and T1, the output power of the light emitting unit is controlled to be unchanged; wherein T2 is smaller than T1.
  • the output unit reduces the output power by reducing the output duty ratio of the light emitting unit or changing the output of the light emitting unit from the always bright state to the blinking state; by increasing the output of the light emitting unit The ratio of the light-emitting unit is changed from the flashing state output to the normally-on state output, and the light-emitting unit is realized to increase the output power.
  • the degree of grease in the irradiated portion is calculated based on the detected humidity and the ratio of water to oil in the secretion of the irradiated portion.
  • the number of the temperature and humidity sensing units is plural, respectively disposed in different regions of the intelligent germinal device, and one temperature and humidity sensing unit detects the temperature and humidity of the irradiated portion corresponding to one region;
  • the temperature of the irradiated portion corresponding to each region controls the output power of the light-emitting unit in the region and/or calculates the grease degree of the irradiated portion based on the detected humidity of the irradiated portion corresponding to each region.
  • the intelligent germinal device further includes a circuit board and a first temperature sensing unit for detecting the temperature of the circuit board, the light emitting unit and the first temperature sensing unit are located on the circuit board; Before the lighting unit works, the following steps are also included:
  • the number of the first temperature sensing units is multiple, respectively disposed in different areas of the intelligent germinal device, and one first temperature sensing unit detects the electrical area of one area.
  • a board temperature when the light unit operates T3, sending a recalculated instruction to the processing unit; after receiving the recalculated command, the processing unit receives the recalculated instruction according to the board temperature and residual irradiation of each area at this time. The energy recalculates the remaining operating time of the lighting unit in the area.
  • An intelligent germinal system comprising the above-mentioned intelligent germinal device and cloud server, the smart germinal device further comprising a communication device, wherein the cloud server communicates with the communication device.
  • An intelligent germinal system comprising the above-mentioned intelligent germinal device, an application device and a cloud server, the smart device further comprising a communication device, the application device being installed on a portable processing terminal or a computer, the cloud server Communication with the communication device is through the application device.
  • the intelligent germinal device, the intelligent germinal device control method and the intelligent germinal system ensure the safety of the user by avoiding the high temperature damage of the user and the safety hazard by managing the temperature of the irradiated part of the user.
  • FIG. 1 is a schematic structural diagram of an intelligent hair generating device according to Embodiment 1 of the present invention.
  • FIG. 2 is a schematic structural diagram of an intelligent hair generating device according to Embodiment 2 of the present invention.
  • FIG. 3 is a schematic bottom view of the intelligent hair growth device according to Embodiment 2 of the present invention.
  • FIG. 4 is a flow chart of a method for controlling an intelligent hair generating device according to Embodiment 1 of the present invention.
  • FIG. 5 is a flowchart of a method for controlling an intelligent hair generating device according to Embodiment 2 of the present invention.
  • FIG. 6 is a schematic structural diagram of an intelligent germinal system according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of another intelligent germinal system according to an embodiment of the present invention.
  • the core idea of the invention is to ensure the safety of the user by managing the temperature of the irradiated part of the user, avoiding the high temperature damage of the user and eliminating the safety hazard.
  • FIG. 1 is a schematic structural diagram of an intelligent hair generating device according to Embodiment 1 of the present invention.
  • an intelligent hair growth device includes a light emitting unit 400, a temperature and humidity sensing unit 600, and a processing unit 100.
  • the intelligent hair growth device can promote hair growth with the head, and can also be used for promoting hair growth in its parts.
  • the intelligent hair growth device is applied to the head, and then the irradiated portion is a different part in the head or the head.
  • the intelligent hair growth device is preferably an intelligent hair-generating helmet, so that the user can perform other things while using the product, such as watching TV, doing housework, or working, which is convenient for the user to use.
  • the illuminating unit 400 is configured to optically illuminate the user.
  • the working mode of the light emitting unit 400 has a flashing state output mode and a constant light state output mode, wherein the blinking state output mode means that the lighting unit 400 is alternately turned on and off during a certain period of time, and the two time allocations are performed by Duty cycle control.
  • the normally-on state output mode means that the light-emitting unit 400 is always on for a certain period of time.
  • the light emitting unit 400 of the present embodiment is one or more of an LED, an edge emitting laser diode, and a vertical cavity surface emitting laser diode.
  • the light emitting unit 400 is a vertical cavity surface emitting type laser diode, and the vertical The cavity surface emitting type laser diode generates laser light of one or more wavelengths from 630 nm to 690 nm, and further preferably, it generates laser light of 655 nm.
  • the number of the light-emitting units 400 is preferably plural, for example, 40, 80, and 200, etc., and the specific number can be determined by a person skilled in the art according to actual needs.
  • the temperature and humidity sensing unit 600 is configured to detect the temperature and humidity of the illuminated portion (such as the head) of the user during use of the smart hair generating device, and specifically, preferably, during the operation of the light emitting unit 400, the temperature and humidity are transmitted.
  • the sensing unit 600 detects the temperature and humidity of the illuminated portion in real time.
  • the temperature and humidity sensing unit 600 can measure temperature and humidity indirectly through infrared.
  • the temperature and humidity sensing unit 600 is in contact with (or nearly in contact with) the irradiated portion, that is, the distance between the two is less than 5 mm, and the temperature and humidity are measured.
  • the temperature and humidity sensing unit 600 of the embodiment of the present invention is a DHT11 temperature and humidity sensor.
  • the processing unit 100 may be an ECU or an MCU, and the embodiment is preferably an MCU.
  • the processing unit 100 is connected to the light emitting unit 400 and the temperature and humidity sensing unit 600 for controlling the output power of the light emitting unit according to the detected temperature and/or calculating the grease degree of the user's irradiated portion according to the detected humidity. Specifically, the processing unit 100 controls the output power of the light emitting unit and/or calculates the grease degree of the irradiated portion in real time according to the real-time temperature and humidity.
  • the temperature and humidity sensor are used to measure the temperature and the grease degree, and the two important physiological parameters can be measured at the same time, which reduces the volume occupation, and overcomes the large volume of the grease sensor in the prior art, which is not suitable for the intelligence of the embodiment. Difficulties in hair growth devices.
  • the use of the temperature and humidity sensor is a pioneering work of the inventor of the present invention, and is a very good compromise.
  • the larger grease sensor in the prior art is omitted, and the grease degree is calculated by the humidity, which satisfies the measurement in a small space.
  • the requirements of grease degree meet the measurement accuracy of certain grease degree.
  • the processing unit 100 controlling the light emitting unit to reduce output power; when the detected temperature is lower than a preset temperature T2 (for example, 37.8 degrees), the processing unit 100 controls the light emitting unit to increase output power; when the detected temperature is between T2 and T1
  • the processing unit 100 controls the output power of the light emitting unit to be constant; wherein T2 is less than T1, preferably 37.6 ⁇ T2 ⁇ 38.5, 39.8 ⁇ T1 ⁇ 41.1, unit, Celsius.
  • the processing unit 100 reduces the output power by reducing the output duty ratio of the light emitting unit 400 or changing the output of the light emitting unit 400 from the steady light state to the blinking state output.
  • the processing unit 100 reduces the output power by increasing the light output.
  • the output duty ratio of the unit 400 or the output of the light-emitting unit 400 from the flashing state to the steady-state state is achieved, and the light-emitting unit 400 is realized to increase the output power.
  • the processing unit 100 calculates the grease degree of the irradiated portion based on the detected humidity and the ratio of water to oil in the secretion of the irradiated portion.
  • the content of various components in the secretions of various epidermal tissues is mostly fixed, especially the ratio of water and oil in the scalp secretion.
  • the humidity detected by the temperature and humidity sensor 600 can be used to know the water content in the scalp secretion, and then the ratio of water to oil can be used to determine the oil content.
  • the accuracy of this grease is not very high, but the need for hair loss treatment has been met.
  • the ratio of water to oil in the scalp secretion can be obtained by a person skilled in the art through experiments or experience, and will not be described herein.
  • the number of the temperature and humidity sensing units 600 is multiple, respectively disposed in different areas of the smart hair generating device, and one temperature and humidity sensing unit 600 detects the temperature and humidity of the irradiated portion corresponding to one region;
  • the processing unit 100 is configured to control the output power of the light emitting unit 400 of the area according to the detected temperature of the irradiated part (the different part in the head) corresponding to each area and/or according to the detected corresponding area
  • the humidity of the irradiated portion is used to calculate the grease degree of the irradiated portion.
  • the method for controlling the smart hair growth device of the present embodiment includes the following steps:
  • the working mode of the light emitting unit has a flashing state output mode and a constant light state output mode, wherein the blinking state output mode means that the lighting unit is alternately turned on and off during a certain period of time, and the two time allocations are occupied by the duty.
  • the temperature and humidity sensing unit is disposed on the smart hair growth device for detecting the temperature and humidity of the illuminated portion of the user during use of the smart hair generating device, and specifically, preferably, during the operation of the light emitting unit, the temperature and humidity The sensing unit detects the temperature and humidity of the illuminated portion in real time.
  • the temperature and humidity sensing unit can measure temperature and humidity indirectly through infrared.
  • the temperature and humidity sensing unit is in contact with the irradiated portion, and the temperature and humidity thereof are measured.
  • the temperature and humidity sensing unit of the embodiment of the invention is a DHT11 temperature and humidity sensor.
  • the output power of the light emitting unit is controlled in real time according to the real-time collected temperature and humidity, and/or the grease degree of the irradiated portion is calculated.
  • the temperature of the irradiated portion is higher than the preset temperature T1 (for example, 40.2 degrees)
  • the light emitting unit is controlled to reduce the output power
  • the temperature of the irradiated portion is lower than the preset temperature T2 (for example, 37.8 degrees)
  • the light emitting unit is controlled.
  • Increasing the output power controlling the output power of the light-emitting unit when the temperature of the irradiated portion is between T2 and T1; wherein, T2 is less than T1, preferably 37.6 ⁇ T2 ⁇ 38.5, 39.8 ⁇ T1 ⁇ 41.1, unit, Celsius.
  • Reducing the output power of the light-emitting unit by reducing the output duty ratio of the light-emitting unit or changing the output of the light-emitting unit from the steady-state state to the blinking state; by increasing the output duty ratio of the light-emitting unit or The light-emitting unit is changed from the flashing state output to the normally-on state output, and the light-emitting unit is realized to increase the output power.
  • the degree of grease is calculated based on the detected humidity and the ratio of water to oil in the secretion of the irradiated portion.
  • the content of various components in the secretions of various epidermal tissues is mostly fixed, especially the ratio of water and oil in the scalp secretion.
  • the ratio of water to oil can be used to determine the fat content.
  • the accuracy of this grease is not very high, but the need for hair loss treatment has been met.
  • the ratio of water to oil in the scalp secretion can be obtained by a person skilled in the art through experiments or experience, and will not be described herein.
  • the number of the temperature and humidity sensing units is multiple, respectively disposed in different areas of the intelligent germinal device, and one temperature and humidity sensing unit detects one area correspondingly. Temperature and humidity of the irradiated portion; controlling the output power of the light-emitting unit of the region according to the detected temperature of the irradiated portion corresponding to each region and/or calculating the humidity of the irradiated portion corresponding to each region detected The degree of grease in the irradiated area.
  • the intelligent hair growth device and the control method thereof of the embodiment obtain the temperature and humidity of the irradiated portion (such as the head) by using the temperature and humidity sensing unit, and adjust the output power of the light emitting unit by the temperature, so that the temperature of the irradiated portion is always at The right scope, no security risks, and improved user experience.
  • the smart hair-generating device of the embodiment of the present invention is an intelligent hair-emitting helmet 6, including a processing unit 100, a storage unit 200, a first temperature sensing unit 300, a light-emitting unit 400, a timing unit 500, and a temperature and humidity.
  • Sensing unit 600 and circuit board (not shown).
  • the circuit board is disposed in the smart hair-emitting helmet 6 for mounting the above units to provide energy and communication.
  • the light emitting unit 400 is preferably the vertical cavity surface emitting type laser diode.
  • the relationship between the output power and the operating temperature of the vertical cavity surface emitting laser diode is determined, and the relationship can be determined experimentally or by supply.
  • the power-temperature curve is stored in the storage unit 200 for facilitating the processing unit 100 to invoke.
  • the first temperature sensing unit 300 and the temperature and humidity sensing unit 600 are connected to the processing unit 100.
  • the first temperature sensing unit 300 is configured to detect a circuit board temperature.
  • the first temperature sensing unit 300 is in the light emitting unit 400.
  • the circuit board temperature is detected to be sent to the processing unit 100 before the operation or after the lighting unit 400 has been operated for a certain period of time, and the processing unit 100 stores the board temperature for calculation and storage in the storage unit 200.
  • the first temperature sensing unit 300 may be a positive temperature coefficient sensor or a negative temperature coefficient sensor.
  • the first temperature sensing unit 300 is preferably a PT100 temperature sensor.
  • the temperature and humidity sensing unit 600 is configured to detect the temperature and humidity of the illuminated portion (such as the head) of the user during use of the smart hair generating device, and specifically, preferably, during the operation of the light emitting unit 400, the temperature and humidity are transmitted.
  • the sensing unit 600 detects the temperature and humidity of the illuminated portion in real time.
  • the temperature and humidity sensing unit 600 transmits the detected temperature and humidity values of the irradiated portion to the processing unit 100, and the processing unit 100 uses the temperature and humidity values for calculation and storage, and stores them in the storage unit 200.
  • the processing unit 100 is based on the temperature of the circuit board before the operation of the light emitting unit And the total irradiation energy determines the current working time of the light emitting unit 400. Specifically, the processing unit 100 determines the current working time of the light emitting unit 400 according to the circuit board temperature, the power-temperature curve, and the total irradiation energy. After the processing unit 100 obtains the working time of the light-emitting unit 400, the smart hair-emitting helmet 6 starts working, and supplies power to the light-emitting unit 400 to emit light, and the timing unit 500 starts to work to record the work of the light-emitting unit 400. The time of the conduct.
  • the temperature and humidity sensing unit 600 detects the temperature and humidity of the illuminated portion (such as the head) in real time, and the processing unit 100 controls the output power of the light-emitting unit in real time according to the real-time collected temperature and humidity. And/or calculating the degree of grease in the illuminated portion.
  • the processing unit 100 controls the light emitting unit to reduce the output power; when the detected temperature is lower than the preset temperature T2 (for example, 37.8) The processing unit 100 controls the lighting unit to increase the output power; when the detected temperature is between T2 and T1, the processing unit 100 controls the output power of the lighting unit to be unchanged; wherein, T2 is less than T1, preferably 37.6 ⁇ T2 ⁇ 38.5, 39.8 ⁇ T1 ⁇ 41.1, unit, Celsius.
  • the processing unit 100 reduces the output power by reducing the output duty ratio of the light emitting unit 400 or changing the output of the light emitting unit 400 from the steady light state to the blinking state output.
  • the processing unit 100 reduces the output power by increasing the light output.
  • the output duty ratio of the unit 400 or the output of the light-emitting unit 400 from the flashing state to the steady-state state is achieved, and the light-emitting unit 400 is realized to increase the output power.
  • the timing unit 500 transmits a recalculated instruction to the processing unit 100 when the lighting unit 100 operates T3 (for example, T3 is half of the working time); the processing unit 100 receives the After the recalculated instruction, the remaining operating time of the illumination unit 400 is recalculated according to the board temperature, the power-temperature curve, and the remaining irradiation energy.
  • the number of the first temperature sensing units 300 is plural, for example, three, respectively being a first PT100 temperature sensor 310, a second PT100 temperature sensor 320, and a third PT100 temperature sensor 330, respectively disposed in the Different areas of the intelligent hair growth device 6;
  • the number of the temperature and humidity sensing unit 600 is plural, for example, three, respectively, the first DHT11 temperature and humidity sensor 610, the second DHT11 temperature and humidity sensor 620, and the third DHT11 temperature and humidity sensor 630, respectively, are disposed in different areas of the smart hair-generating device 6; for example, the smart hair-emitting helmet 6 is divided into three regions, which are a left region 61, a middle region 62, and a right region 63, and the first light-emitting unit 410 in the left region 61 Irradiating the left-hand part of the user, the second light-emitting unit 420
  • the first DHT11 temperature and humidity sensor 610, the second DHT11 temperature and humidity sensor 620, and the third DHT11 temperature and humidity sensor 630 respectively detect the temperature and humidity of the irradiated portion corresponding to the left region 61, the middle region 62, and the right region 63
  • the processing unit 100 is configured to control the light emitting unit of the area according to the detected temperature of the irradiated portion corresponding to the left area 61, the middle area 62, and the right area 63 (the first light emitting unit 410, the second light emitting unit 420, and the third light emitting unit)
  • the oil output of the irradiated portion is calculated based on the output power of 430) and/or based on the detected humidity of the irradiated portion corresponding to the left region 61, the middle region 62, and the right region 63.
  • the processing unit 100 After receiving the recalculated instruction, the processing unit 100 determines the remaining working time of the lighting unit of the area according to the board temperature of each area when recalculating. That is, the processing unit 100 is based on the first PT100 temperature sensor 310, the second PT100 temperature sensor 320, and the third The temperature detected by the PT100 temperature sensor 330 determines the current remaining working time of the first lighting unit 410, the second lighting unit 420, and the third lighting unit 430, respectively.
  • FIG. 5 is a flowchart of a method for controlling an intelligent hair generating device according to Embodiment 2 of the present invention.
  • the smart hair generating device further includes a circuit board (not shown) and a first temperature sensing unit (310, 320, 330) for detecting the temperature of the circuit board, the lighting unit and the The first temperature sensing unit is located on the circuit board.
  • the intelligent germinal device control method of this embodiment includes:
  • the lighting unit 400 includes:
  • the first temperature sensing unit is used to obtain the temperature of the circuit board of the circuit board where the light emitting unit 400 is located.
  • the first temperature sensing unit is preferably a PT100 temperature sensor.
  • the current working time can be calculated according to the output power function of the light emitting unit 400, or can be obtained by other means.
  • the present embodiment is preferably obtained by determining the current operating time of the lighting unit according to the power-temperature curve of the lighting unit, the board temperature, and the total irradiation energy.
  • the step S2 is preferably included in the embodiment, and when the light-emitting unit operates T3, according to the circuit board temperature, the power-temperature curve and the remaining irradiation energy, Calculating the remaining working time of the lighting unit this time.
  • the number of the first temperature sensing units is preferably multiple, respectively disposed in different regions of the smart hair growth device, and a first temperature transfer.
  • the sensing unit detects the board temperature of an area; During the recalculation, the remaining working time of the light-emitting unit of the area is determined according to the board temperature of each area.
  • the light emitting unit 400 When the light emitting unit 400 is in operation, it includes:
  • the working mode of the light emitting unit has a flashing state output mode and a constant light state output mode, wherein the blinking state output mode means that the lighting unit is alternately turned on and off during a certain period of time, and the two time allocations are occupied by the duty.
  • the temperature and humidity sensing unit is disposed on the smart hair growth device for detecting the temperature and humidity of the illuminated portion of the user during use of the smart hair generating device, and specifically, preferably, during the operation of the light emitting unit, the temperature and humidity The sensing unit detects the temperature and humidity of the illuminated portion in real time.
  • the temperature and humidity sensing unit can measure temperature and humidity indirectly through infrared.
  • the temperature and humidity sensing unit is in contact with the irradiated portion, and the temperature and humidity thereof are measured.
  • the temperature and humidity sensing unit of the embodiment of the invention is a DHT11 temperature and humidity sensor.
  • the output power of the light emitting unit is controlled in real time according to the real-time collected temperature and humidity, and/or the grease degree of the irradiated portion is calculated.
  • the temperature of the irradiated portion is higher than the preset temperature T1 (for example, 40.2 degrees)
  • the light emitting unit is controlled to reduce the output power
  • the temperature of the irradiated portion is lower than the preset temperature T2 (for example, 37.8 degrees)
  • the light emitting unit is controlled.
  • Increasing the output power controlling the output power of the light-emitting unit when the temperature of the irradiated portion is between T2 and T1; wherein, T2 is less than T1, preferably 37.6 ⁇ T2 ⁇ 38.5, 39.8 ⁇ T1 ⁇ 41.1, unit, Celsius.
  • Reducing the output power of the light-emitting unit by reducing the output duty ratio of the light-emitting unit or changing the output of the light-emitting unit from the steady-state state to the blinking state; by increasing the output duty ratio of the light-emitting unit or The light-emitting unit is changed from the flashing state output to the normally-on state output, and the light-emitting unit is realized to increase the output power.
  • the degree of grease is calculated based on the detected humidity and the ratio of water to oil in the secretion of the irradiated portion.
  • the content of various components in the secretions of various epidermal tissues is mostly fixed, especially the ratio of water and oil in the scalp secretion.
  • the ratio of water to oil can be used to determine the fat content.
  • the accuracy of this grease is not very high, but the need for hair loss treatment has been met.
  • the ratio of water to oil in the scalp secretion can be obtained by a person skilled in the art through experiments or experience, and will not be described herein.
  • the number of the temperature and humidity sensing units is multiple, respectively disposed in different areas of the intelligent germinal device, and one temperature and humidity sensing unit detects one area correspondingly. Temperature and humidity of the irradiated portion; controlling the output power of the light-emitting unit of the region according to the detected temperature of the irradiated portion corresponding to each region and/or calculating the humidity of the irradiated portion corresponding to each region detected The degree of grease in the irradiated area.
  • FIG. 6 is a schematic structural diagram of an intelligent germinal system according to an embodiment of the present invention.
  • an embodiment of the present invention further provides an intelligent germinal system 700.
  • the system 700 includes the above-mentioned intelligent mass generating device 6 and a cloud server 710.
  • the smart device 6 further includes a communication device 64, and the cloud server 710 and The communication device 64 communicates.
  • FIG. 7 is a schematic structural diagram of another intelligent germinal system according to an embodiment of the present invention.
  • an embodiment of the present invention further provides an intelligent germinal system 800, which includes the above-mentioned intelligent hair growth
  • the device 6, the application device 820 and the cloud server 810 further comprise a communication device 64.
  • the application device 820 is installed on a portable processing terminal or a computer, and the cloud server 810 communicates with the communication device 820 through the application device 820.
  • Device 64 communicates.
  • the system 700 and the system 800 of the embodiment of the present invention have a communication and cloud management function, and the user can interact with the expert, and a more efficient solution can be obtained to improve the user experience of the smart hair generating device provided by the embodiment of the present invention.

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Abstract

本发明属于毛发护理和治疗技术领域,尤其涉及一种智能生发装置、智能生发装置控制方法以及智能生发系统。该智能生发装置,包括发光单元,用于对使用者进行光学照射,其中,还包括:温湿度传感单元,用于在所述智能生发装置使用过程中检测使用者被照射部位的温度和湿度;与所述发光单元和温湿度传感单元连接的处理单元,用于根据检测的温度控制所述发光单元的输出功率和/或根据检测的湿度计算使用者被照射部位的油脂度。通过对使用者被照射部位温度的管理,保证了使用者安全,避免使用者高温损伤,消除安全隐患。

Description

一种智能生发装置及系统 技术领域
本发明涉及毛发护理和治疗技术领域,尤其涉及一种智能生发装置及系统。
背景技术
头发问题困扰了很多人,影响了大家的正常生活。常见的问题有脱发、秃发、枯发和白发。随着人们生活水平的不断提高,人们对外表形象提出了更高的要求。弱激光照射治疗作为一种安全、有效、无副作用的治疗和保健方法今年来已被大多数接受和喜爱。弱激光有其独特的生物刺激作用,它可以促进血液循环。激光照射会对头皮产生一定温升,这个温升与激光的输出能量有关,当温升超过一定值时,头皮的生物组织会产生热损伤,这是使用者所不希望发生的。但是现有的激光生发装置都没有对头皮温度进行管理,产生安全隐患。
发明内容
本发明为了解决现有技术中激光生发装置缺乏温度管理的技术问题,提供一种智能生发装置、智能生发装置控制方法以及智能生发系统。具体如下:
一种智能生发装置,包括发光单元,用于对使用者进行光学照射,其中,还包括:
温湿度传感单元,用于在所述智能生发装置使用过程中检测使用者被照射部位的温度和湿度;
与所述发光单元和温湿度传感单元连接的处理单元,用于根据检测的温度控制所述发光单元的输出功率和/或根据检测的湿度计算使用者被照射部位的油脂度。
进一步优选,所述处理单元,当检测的温度高于预设温度T1时,控制所述发光单元降低输出功率;当检测的温度低于预设温度T2时,控制所述发光单元提高输出功率;当检测的温度位于T2和T1之间,控制所述发光单元输出功率不变;其中,T2小于T1。
进一步优选,所述处理单元通过降低所述发光单元的输出占空比或者将所述发光单元由常亮状态输出改为闪亮状态输出,实现所述发光单元降低输出功率;所述第一处理单元通过提高所述发光单元的输出占空比或者将所述发光单元由闪亮状态输出改为常亮状态输出,实现所述发光单元提高输出功率。
进一步优选,所述第一处理单元根据检测的湿度以及被照射部位分泌物中水与油脂的比例计算所述被照射部位的油脂度。
进一步优选,所述温湿度传感单元的数量是多个,分别设置在所述智能生发装置的不同区域,一个温湿度传感单元检测一个区域对应的被照射部位的温度和湿度;所述处理单元用于根据检测到的各个区域对应的被照射部位的温度控制该区域的所述发光单元的输出功率和/或根据检测到的各个区域对应的被照射部位的湿度计算该被照射部位的油脂度。
进一步优选,还包括电路板和用于检测电路板温度的第一温度传感单元,所述发光单元和所述第一温度传感单元位于所述电路板上;所述第一温度传感单元还与所述处理单元连接用于将检测的电路板温度发送给所述处理单元;在所述发光单元工作之前,所述处理单元根据所述电路板温度和总辐照能量确定所述发光单元本次工作时间。
进一步优选,还包括用于对所述发光单元工作进行计时的计时单元,与所述处理单元连接;所述第一温度传感单元的数量为多个,分别设置在所述智能生发装置的不同区域,一个第一温度传感单元检测一个区域的电路板温度;所述计时单元在所述发光单元工作了T3时,向所述处理单元发送重新计算的指令;所述处理单元接收所述重新计算的指令后,根据此时各个区域的电路板温度以及剩余辐照能量重新计算该区域的发光单元本次剩下工作时间。
进一步优选,所述智能生发装置为智能生发头盔,所述发光单元为LED、边发射型激光二极管以及垂直腔面发射型激光二极管中的一种或者多种。
一种智能生发装置的控制方法,所述智能生发装置包括发光单元,用于对使用者进行光学照射,其中,包括如下步骤:
S10、在所述智能生发装置使用过程中,通过温湿度传感单元获取使用者被照射部位的温度和湿度;
S20、根据检测的温度控制所述发光单元的输出功率和/或根据检测的湿度计算使用者被照射部位的油脂度。
进一步优选,所述步骤S20进一步为:当被照射部位的温度高于预设温度T1时,控制所述发光单元降低输出功率;当被照射部位的温度低于预设温度T2时,控制所述发光单元提高输出功率;当被照射部位的温度位于T2和T1之间,控制所述发光单元输出功率不变;其中,T2小于T1。
进一步优选,通过降低所述发光单元的输出占空比或者将所述发光单元由常亮状态输出改为闪亮状态输出,实现所述发光单元降低输出功率;通过提高所述发光单元的输出占空比或者将所述发光单元由闪亮状态输出改为常亮状态输出,实现所述发光单元提高输出功率。
进一步优选,根据检测的湿度以及被照射部位分泌物中水与油脂的比例计算所述被照射部位的油脂度。
进一步优选,所述温湿度传感单元的数量是多个,分别设置在所述智能生发装置的不同区域,一个温湿度传感单元检测一个区域对应的被照射部位的温度和湿度;根据检测到的各个区域对应的被照射部位的温度控制该区域的所述发光单元的输出功率和/或根据检测到的各个区域对应的被照射部位的湿度计算该被照射部位的油脂度。
进一步优选,所述智能生发装置还包括电路板和用于检测电路板温度的第一温度传感单元,所述发光单元和所述第一温度传感单元位于所述电路板上;在所述发光单元工作之前,还包括如下步骤:
S1、通过所述第一温度传感单元获取所述电路板温度;
S2、根据所述电路板温度和总辐照能量确定所述发光单元本次工作时间。
进一步优选,所述第一温度传感单元的数量为多个,分别设置在所述智能生发装置的不同区域,一个第一温度传感单元检测一个区域的电 路板温度;在述发光单元工作了T3时,向所述处理单元发送重新计算的指令;所述处理单元接收所述重新计算的指令后,根据此时各个区域的电路板温度以及剩余辐照能量重新计算该区域的发光单元本次剩下工作时间。
一种智能生发系统,其中,包括上述智能生发装置和云服务器,所述智能生发装置还包括通讯装置,所述云服务器与所述通讯装置进行通信。
一种智能生发系统,其中,包括上述的智能生发装置、应用程序装置和云服务器,所述智能生发装置还包括通讯装置,所述应用程序装置安装于便携处理终端或者电脑上,所述云服务器通过所述应用程序装置与所述通讯装置进行通信。
有益效果:
本发明实施例提供的智能生发装置、智能生发装置控制方法以及智能生发系统,通过对使用者被照射部位温度的管理,保证了使用者安全,避免使用者高温损伤,消除安全隐患。
附图说明
图1是本发明实施例一的智能生发装置结构示意图。
图2是本发明实施例二的智能生发装置结构示意图。
图3是本发明实施例二的智能生发装置仰视结构示意图。
图4是本发明实施例一的智能生发装置控制方法流程图。
图5是本发明实施例二的智能生发装置控制方法流程图。
图6是本发明实施例的一智能生发系统结构示意图。
图7是本发明实施例的又一智能生发系统结构示意图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明的核心思想是通过对使用者被照射部位温度的管理,保证了使用者安全,避免使用者高温损伤,消除安全隐患。
实施例一
图1是本发明实施例一的智能生发装置结构示意图。
请参照图1,本发明实施例的种智能生发装置包括发光单元400、温湿度传感单元600和处理单元100。该智能生发装置可以用头部促进头发生长,也可以用于它部位促进毛发生长。本实施例优选该智能生发装置应用于头部,那么被照射部位就为头部或者头部中的不同部位。该智能生发装置优选为智能生发头盔,这样使用者在使用本产品的同时可以干其他事情,例如看电视、做家务、或者工作,方便使用者使用。该发光单元400,用于对使用者进行光学照射,当使用者将本实施例的智能生发头盔戴在头上并使其工作时,该发光单元400就发出光线照射使用者的头部(头皮)。该发光单元400的工作模式有闪亮状态输出模式和常亮状态输出模式,该闪亮状态输出模式是指在某个时间段内,该发光单元400亮和灭交替进行,两个时间分配由占空比控制。该常亮状态输出模式是指在某个时间段内,该发光单元400一直亮着。本实施例的发光单元400为LED、边发射型激光二极管以及垂直腔面发射型激光二极管中的一种或者多种。为了使效果更佳,本实施例优选该发光单元400为垂直腔面发射型激光二极管,该垂直 腔面发射型激光二极管产生630nm至690nm中一种或者多种波长的激光,进一步优选,其产生655nm的激光。为了照射足够区域,本实施例优选该发光单元400的数量是复数个,例如可以为40、80以及200个等等,具体数量本领域技术人员可以根据实际需求确定。该温湿度传感单元600用于在所述智能生发装置使用过程中检测使用者被照射部位(如头部)的温度和湿度,具体优选,在发光单元400工作的过程中,该温湿度传感单元600实时检测该被照射部位的温度和湿度。一般,该温湿度传感单元600可以通过红外间接测量温度和湿度。但是为了减少干扰和测量精度,本实施例优选,该温湿度传感单元600与该被照射部位接触(或者几乎接触,即两者之间的距离小于5mm),测量其温度和湿度。本发明实施例的温湿度传感单元600为DHT11温湿度传感器。该处理单元100可以为ECU也可以为MCU,本实施例优选为MCU。该处理单元100与所述发光单元400和温湿度传感单元600连接,用于根据检测的温度控制所述发光单元的输出功率和/或根据检测的湿度计算使用者被照射部位的油脂度,具体优选,该处理单元100根据实时采集温度和湿度实时控制该发光单元的输出功率和/或计算该被照射部位的油脂度。本实施例采用温湿度传感器测量温度和油脂度,可以同时测量两个重要生理参数,减小了体积占用,也克服了现有技术中油脂度传感器体积较大不适宜放在本实施例的智能生发装置的困难。采用温湿度传感器是本发明的发明人的一个创举,是一个非常好的折中办法,将现有技术中较大的油脂度传感器省略,通过湿度计算油脂度,既满足了较小空间中测量油脂度的要求,又满足了一定油脂度测量精度。当该温湿度传感单元600检测的温度高于预设温度T1(例如40.2度)时,该处理单元 100控制所述发光单元降低输出功率;当检测的温度低于预设温度T2(例如37.8度)时,该处理单元100控制所述发光单元提高输出功率;当检测的温度位于T2和T1之间,该处理单元100控制所述发光单元输出功率不变;其中,T2小于T1,优选37.6<T2<38.5,39.8<T1<41.1,单位,摄氏度。该处理单元100通过降低该发光单元400的输出占空比或者将该发光单元400由常亮状态输出改为闪亮状态输出,实现该发光单元400降低输出功率;该处理单元100通过提高该发光单元400的输出占空比或者将该发光单元400由闪亮状态输出改为常亮状态输出,实现该发光单元400提高输出功率。该处理单元100根据检测的湿度以及被照射部位分泌物中水与油脂的比例计算所述被照射部位的油脂度。在人体中,各个表皮组织的分泌物中各种成分的含量大都固定,尤其是头皮分泌物中的水和油脂比例。通过温湿度传感器600检测的湿度,可以得知头皮分泌物中的水的含量,再通过水和油脂的比例,可以确定油脂含量即可以得知油脂度。这个油脂度的精度的确不会很高,但是已经满足了脱发治疗的需求。本领域技术人员可以通过实验或者经验得出该头皮分泌物中的水和油脂比例,在此,不再赘述。本实施例进一步优选,该温湿度传感单元600的数量是多个,分别设置在该智能生发装置的不同区域,一个温湿度传感单元600检测一个区域对应的被照射部位的温度和湿度;该处理单元100用于根据检测到的各个区域对应的被照射部位(头部中的不同部位)的温度控制该区域的该发光单元400的输出功率和/或根据检测到的各个区域对应的被照射部位的湿度计算该被照射部位的油脂度,详细说明请参见实施例二。
图4是本发明实施例一的智能生发装置控制方法的流程图。请参照图4,本实施例的智能生发装置(该智能生发装置包括发光单元,用于对使用者进行光学照射。)的控制方法包括如下步骤:
S10、在所述智能生发装置使用过程中,通过温湿度传感单元获取使用者被照射部位的温度和湿度;
该发光单元的工作模式有闪亮状态输出模式和常亮状态输出模式,该闪亮状态输出模式是指在某个时间段内,该发光单元亮和灭交替进行,两个时间分配由占空比控制。该温湿度传感单元设置在该智能生发装置上,用于在所述智能生发装置使用过程中检测使用者被照射部位的温度和湿度,具体优选,在发光单元工作的过程中,该温湿度传感单元实时检测该被照射部位的温度和湿度。一般,该温湿度传感单元可以通过红外间接测量温度和湿度。但是为了减少干扰和测量精度,本实施例优选,该温湿度传感单元与该被照射部位接触,测量其温度和湿度。本发明实施例的温湿度传感单元为DHT11温湿度传感器。
S20、根据检测的温度控制所述发光单元的输出功率和/或根据检测的湿度计算使用者被照射部位的油脂度。
具体优选,根据实时采集温度和湿度实时控制该发光单元的输出功率和/或计算该被照射部位的油脂度。当被照射部位的温度高于预设温度T1(例如40.2度)时,控制该发光单元降低输出功率;当被照射部位的温度低于预设温度T2(例如37.8度)时,控制该发光单元提高输出功率;当被照射部位的温度位于T2和T1之间,控制该发光单元输出功率不变;其中,T2小于T1,优选37.6<T2<38.5,39.8<T1<41.1,单位,摄氏度。具体, 通过降低该发光单元的输出占空比或者将所述发光单元由常亮状态输出改为闪亮状态输出,实现该发光单元降低输出功率;通过提高该发光单元的输出占空比或者将所述发光单元由闪亮状态输出改为常亮状态输出,实现该发光单元提高输出功率。该油脂度根据检测的湿度以及被照射部位分泌物中水与油脂的比例计算所述被照射部位的油脂度。在人体中,各个表皮组织的分泌物中各种成分的含量大都固定,尤其是头皮分泌物中的水和油脂比例。通过检测的湿度,可以得知头皮分泌物中的水的含量,再通过水和油脂的比例,可以确定油脂含量即可以得知油脂度。这个油脂度的精度的确不会很高,但是已经满足了脱发治疗的需求。本领域技术人员可以通过实验或者经验得出该头皮分泌物中的水和油脂比例,在此,不再赘述。为了实现更精确控制,产生良好的用户体验,本实施例优选,该温湿度传感单元的数量是多个,分别设置在该智能生发装置的不同区域,一个温湿度传感单元检测一个区域对应的被照射部位的温度和湿度;根据检测到的各个区域对应的被照射部位的温度控制该区域的该发光单元的输出功率和/或根据检测到的各个区域对应的被照射部位的湿度计算该被照射部位的油脂度。
本实施例的智能生发装置及其控制方法,通过采用温湿传感单元获取被照射部位(如头部)的温度和湿度,通过该温度调节发光单元输出功率,使被照射部位的温度始终处于合适的范围,没有安全隐患,并且提高了用户体验。
实施例二
图2是本发明实施例二的智能生发装置结构示意图。图3是本发明实施例二的智能生发装置仰视结构示意图。请参照图2和图3,本发明实施例的智能生发装置为一智能生发头盔6,包括处理单元100、存储单元200、第一温度传感单元300、发光单元400、计时单元500、温湿度传感单元600和电路板(图中未示出)。该电路板设置在该智能生发头盔6内,用于安装上述各个单元,为其提供能量和联络。该发光单元400优选为该垂直腔面发射型激光二极管,一般该垂直腔面发射型激光二极管出厂时其输出功率与工作温度之间的关系就已经确定了,这个关系可以通过实验确定或者由供应商提供,我们称之为功率-温度曲线。该功率-温度曲线存储在存储单元200中,方便该处理单元100调用。该第一温度传感单元300和温湿度传感单元600与该处理单元100连接,该第一温度传感单元300用于检测电路板温度,该第一温度传感单元300在该发光单元400工作之前或者在该发光单元400工作了一定时间后检测该电路板温度发给该处理单元100,该处理单元100将该电路板温度用于计算和存储,存储在该存储单元200中。该第一温度传感单元300可以为正温度系数传感器也可以为负温度系数传感器,本实施例优选该第一温度传感单元300为PT100温度传感器。该温湿度传感单元600用于在所述智能生发装置使用过程中检测使用者被照射部位(如头部)的温度和湿度,具体优选,在发光单元400工作的过程中,该温湿度传感单元600实时检测该被照射部位的温度和湿度。该温湿度传感单元600将检测的被照射部位的温度和湿度值发送给该处理单元100,该处理单元100将该温度和湿度值用于计算和存储,存储在该存储单元200中。在所述发光单元工作之前,该处理单元100根据该电路板温度 和总辐照能量确定该发光单元400本次工作时间。具体的,该处理单元100根据该电路板温度、功率-温度曲线以及总辐照能量确定该发光单元400本次工作时间。在该智能生发头盔6在该处理单元100获得该发光单元400本次工作时间后,开始工作,给发光单元400供电使其工作发射光线,同时该计时单元500开始工作记录该发光单元400的工作进行的时间。在该发光单元400工作的同时,该温湿度传感单元600实时检测该被照射部位(如头部)的温度和湿度,该处理单元100根据实时采集温度和湿度实时控制该发光单元的输出功率和/或计算该被照射部位的油脂度。当该温湿度传感单元600检测的温度高于预设温度T1(例如40.2度)时,该处理单元100控制所述发光单元降低输出功率;当检测的温度低于预设温度T2(例如37.8度)时,该处理单元100控制所述发光单元提高输出功率;当检测的温度位于T2和T1之间,该处理单元100控制所述发光单元输出功率不变;其中,T2小于T1,优选37.6<T2<38.5,39.8<T1<41.1,单位,摄氏度。该处理单元100通过降低该发光单元400的输出占空比或者将该发光单元400由常亮状态输出改为闪亮状态输出,实现该发光单元400降低输出功率;该处理单元100通过提高该发光单元400的输出占空比或者将该发光单元400由闪亮状态输出改为常亮状态输出,实现该发光单元400提高输出功率。为了提高精确度和效果,该计时单元500在该发光单元100工作了T3时(例如T3为本次工作时间的一半)时,向该处理单元100发送重新计算的指令;该处理单元100接收该重新计算的指令后,根据此时电路板温度、功率-温度曲线以及剩余辐照能量重新计算该发光单元400本次剩下工作时间。进一步,考虑到智能生发装置6不同区域的温度可能不一样,请参照图3,本 实施例优选,该第一温度传感单元300的数量为多个,例如为三个,分别为第一PT100温度传感器310、第二PT100温度传感器320以及第三PT100温度传感器330,分别设置在该智能生发装置6的不同区域;该温湿度传感单元600的数量为多个,例如为三个,分别为第一DHT11温湿度传感器610、第二DHT11温湿度传感器620以及第三DHT11温湿度传感器630,分别设置在该智能生发装置6的不同区域;例如,该智能生发头盔6分成3个区域,分别为左区61、中区62以及右区63,该左区61中第一发光单元410照射使用者的头左部位、该中区62中第二发光单元420照射使用者的头中部位、该右区63中第三发光单元430照射使用者的头右部位,该一个第一温度传感单元检测一个区域的电路板温度,该一个温湿度传感单元检测一个区域对应的被照射部位(头部中的不同部位)的温度和湿度;即第一PT100温度传感器310、第二PT100温度传感器320以及第三PT100温度传感器330分别检测该左区61、中区62以及右区63中的温度。第一DHT11温湿度传感器610、第二DHT11温湿度传感器620以及第三DHT11温湿度传感器630分别检测该左区61、中区62以及右区63对应的被照射部位的温度和湿度,该处理单元100用于根据检测到的该左区61、中区62以及右区63对应的被照射部位的温度控制该区域的该发光单元(第一发光单元410、第二发光单元420和第三发光单元430)的输出功率和/或根据检测到的该左区61、中区62以及右区63对应的被照射部位的湿度计算该被照射部位的油脂度。该处理单元100接收该重新计算的指令后,重新计算时根据各个区域的电路板温度分别确定该区域的发光单元本次剩下工作时间。即,该处理单元100根据第一PT100温度传感器310、第二PT100温度传感器320以及第三 PT100温度传感器330检测的温度分别确定该第一发光单元410、第二发光单元420以及第三发光单元430的本次剩下工作时间。
图5是本发明实施例二的智能生发装置控制方法流程图。请参照图3和图5,该智能生发装置还包括电路板(图中未示出)和用于检测电路板温度的第一温度传感单元(310、320、330),该发光单元和该第一温度传感单元位于所述电路板上。本实施例的智能生发装置控制方法包括:
在该智能生发装置6启动之后,该发光单元400工作之前包括:
S1、通过所述第一温度传感单元获取所述电路板温度。
本步骤采用该第一温度传感单元获取该发光单元400所在电路板的电路板温度,为了获得更高准确性的温度,本实施例优选该第一温度传感单元为PT100温度传感器。
S2、根据所述电路板温度和总辐照能量确定所述发光单元本次工作时间。
该本次工作时间可以根据该发光单元400的输出功率函数计算获得,也可以通过其他方式获得。本实施例优选通过以下方式获得:根据所述发光单元的功率-温度曲线、所述电路板温度以及总辐照能量确定所述发光单元本次工作时间。为了提高精确度和效果,在该发光单元400工作时,本实施例优选该步骤S2还包括所述发光单元工作了T3时,根据此时电路板温度、功率-温度曲线以及剩余辐照能量重新计算所述发光单元本次剩下工作时间。进一步,考虑到智能生发装置6不同区域的温度可能不一样,本实施例优选该第一温度传感单元的数量为多个,分别设置在所述智能生发装置的不同区域,一个第一温度传感单元检测一个区域的电路板温度; 重新计算时根据各个区域的电路板温度分别确定该区域的发光单元本次剩下的工作时间。
在该发光单元400工作时包括:
S10、在所述智能生发装置使用过程中,通过温湿度传感单元获取使用者被照射部位的温度和湿度;
该发光单元的工作模式有闪亮状态输出模式和常亮状态输出模式,该闪亮状态输出模式是指在某个时间段内,该发光单元亮和灭交替进行,两个时间分配由占空比控制。该温湿度传感单元设置在该智能生发装置上,用于在所述智能生发装置使用过程中检测使用者被照射部位的温度和湿度,具体优选,在发光单元工作的过程中,该温湿度传感单元实时检测该被照射部位的温度和湿度。一般,该温湿度传感单元可以通过红外间接测量温度和湿度。但是为了减少干扰和测量精度,本实施例优选,该温湿度传感单元与该被照射部位接触,测量其温度和湿度。本发明实施例的温湿度传感单元为DHT11温湿度传感器。
S20、根据检测的温度控制所述发光单元的输出功率和/或根据检测的湿度计算使用者被照射部位的油脂度。
具体优选,根据实时采集温度和湿度实时控制该发光单元的输出功率和/或计算该被照射部位的油脂度。当被照射部位的温度高于预设温度T1(例如40.2度)时,控制该发光单元降低输出功率;当被照射部位的温度低于预设温度T2(例如37.8度)时,控制该发光单元提高输出功率;当被照射部位的温度位于T2和T1之间,控制该发光单元输出功率不变;其中,T2小于T1,优选37.6<T2<38.5,39.8<T1<41.1,单位,摄氏度。具体, 通过降低该发光单元的输出占空比或者将所述发光单元由常亮状态输出改为闪亮状态输出,实现该发光单元降低输出功率;通过提高该发光单元的输出占空比或者将所述发光单元由闪亮状态输出改为常亮状态输出,实现该发光单元提高输出功率。该油脂度根据检测的湿度以及被照射部位分泌物中水与油脂的比例计算所述被照射部位的油脂度。在人体中,各个表皮组织的分泌物中各种成分的含量大都固定,尤其是头皮分泌物中的水和油脂比例。通过检测的湿度,可以得知头皮分泌物中的水的含量,再通过水和油脂的比例,可以确定油脂含量即可以得知油脂度。这个油脂度的精度的确不会很高,但是已经满足了脱发治疗的需求。本领域技术人员可以通过实验或者经验得出该头皮分泌物中的水和油脂比例,在此,不再赘述。为了实现更精确控制,产生良好的用户体验,本实施例优选,该温湿度传感单元的数量是多个,分别设置在该智能生发装置的不同区域,一个温湿度传感单元检测一个区域对应的被照射部位的温度和湿度;根据检测到的各个区域对应的被照射部位的温度控制该区域的该发光单元的输出功率和/或根据检测到的各个区域对应的被照射部位的湿度计算该被照射部位的油脂度。
图6是本发明实施例的一智能生发系统结构示意图。请参照图6,本发明实施例还提供一种智能生发系统700,该系统700包括上述智能生发装置6和云服务器710,所述智能生发装置6还包括通讯装置64,所述云服务器710与该通讯装置64进行通信。
图7是本发明实施例的又一智能生发系统结构示意图。请参照图7,本发明实施例还提供一种智能生发系统800,该系统800包括上述智能生发 装置6、应用程序装置820和云服务器810,该智能生发装置6还包括通讯装置64,该应用程序装置820安装于便携处理终端或者电脑上,该云服务器810通过该应用程序装置820与该通讯装置64进行通信。
本发明实施例的系统700和系统800,具有通讯和云管理功能,使用者可以与专家互动,也可以得到更高效的方案,提高使用者使用本发明实施例提供的智能生发装置的用户体验。
以上对本发明所提供的智能生发装置、智能生发装置控制方法以及智能生发系统进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的核心思想;同时,对于本领域的一般技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。

Claims (17)

  1. 一种智能生发装置,包括发光单元,用于对使用者进行光学照射,其特征在于,还包括:
    温湿度传感单元,用于在所述智能生发装置使用过程中检测使用者被照射部位的温度和湿度;
    与所述发光单元和温湿度传感单元连接的处理单元,用于根据检测的温度控制所述发光单元的输出功率和/或根据检测的湿度计算使用者被照射部位的油脂度。
  2. 如权利要求1所述的智能生发装置,其特征在于,所述处理单元,当检测的温度高于预设温度T1时,控制所述发光单元降低输出功率;当检测的温度低于预设温度T2时,控制所述发光单元提高输出功率;当检测的温度位于T2和T1之间,控制所述发光单元输出功率不变;其中,T2小于T1。
  3. 如权利要求2所述的智能生发装置,其特征在于,所述处理单元通过降低所述发光单元的输出占空比或者将所述发光单元由常亮状态输出改为闪亮状态输出,实现所述发光单元降低输出功率;所述第一处理单元通过提高所述发光单元的输出占空比或者将所述发光单元由闪亮状态输出改为常亮状态输出,实现所述发光单元提高输出功率。
  4. 如权利要求1所述的智能生发装置,其特征在于,所述第一处理单元根据检测的湿度以及被照射部位分泌物中水与油脂的比例计算所述被照射部位的油脂度。
  5. 如权利要求1至4任一项所述的智能生发装置,其特征在于,所述温湿度传感单元的数量是多个,分别设置在所述智能生发装置的不同区域,一个温湿度传感单元检测一个区域对应的被照射部位的温度和湿度;所述处理单元用于根据检测到的各个区域对应的被照射部位的温度控制该区域的所述发光单元的输出功率和/或根据检测到的各个区域对应的被照射部位的湿度计算该被照射部位的油脂度。
  6. 如权利要求1至4任一项所述的智能生发装置,其特征在于,还包括电路板和用于检测电路板温度的第一温度传感单元,所述发光单元和所述第一温度传感单元位于所述电路板上;所述第一温度传感单元还与所述处理单元连接用于将检测的电路板温度发送给所述处理单元;在所述发光单元工作之前,所述处理单元根据所述电路板温度和总辐照能量确定所述发光单元本次工作时间。
  7. 如权利要求6所述的智能生发装置,其特征在于,还包括用于对所述发光单元工作进行计时的计时单元,与所述处理单元连接;所述第一温度传感单元的数量为多个,分别设置在所述智能生发装置的不同区域,一个第一温度传感单元检测一个区域的电路板温度;所述计时单元在所述发光单元工作了T3时,向所述处理单元发送重新计算的指令;所述处理单元接收所述重新计算的指令后,根据此时各个区域的电路板温度以及剩余辐照能量重新计算该区域的发光单元本次剩下工作时间。
  8. 如权利要求1至4任一项所述的智能生发装置,其特征在于,所述智能生发装置为智能生发头盔,所述发光单元为LED、边发射型激光二极管以及垂直腔面发射型激光二极管中的一种或者多种。
  9. 一种智能生发装置的控制方法,所述智能生发装置包括发光单元,用于对使用者进行光学照射,其特征在于,包括如下步骤:
    S10、在所述智能生发装置使用过程中,通过温湿度传感单元获取使用者被照射部位的温度和湿度;
    S20、根据检测的温度控制所述发光单元的输出功率和/或根据检测的湿度计算使用者被照射部位的油脂度。
  10. 如权利要求9所述的智能生发装置的控制方法,其特征在于,所述步骤S20进一步为:当被照射部位的温度高于预设温度T1时,控制所述发光单元降低输出功率;当被照射部位的温度低于预设温度T2时,控制所述发光单元提高输出功率;当被照射部位的温度位于T2和T1之间,控制所述发光单元输出功率不变;其中,T2小于T1。
  11. 如权利要求10所述的智能生发装置的控制方法,其特征在于,通过降低所述发光单元的输出占空比或者将所述发光单元由常亮状态输出改为闪亮状态输出,实现所述发光单元降低输出功率;通过提高所述发光单元的输出占空比或者将所述发光单元由闪亮状态输出改为常亮状态输出,实现所述发光单元提高输出功率。
  12. 如权利要求9所述的智能生发装置的控制方法,其特征在于,根据检测的湿度以及被照射部位分泌物中水与油脂的比例计算所述被照射部位的油脂度。
  13. 如权利要求9至12任一项所述的智能生发装置的控制方法,其特征在于,所述温湿度传感单元的数量是多个,分别设置在所述智能生发装置的不同区域,一个温湿度传感单元检测一个区域对应的被照射部位的温度 和湿度;根据检测到的各个区域对应的被照射部位的温度控制该区域的所述发光单元的输出功率和/或根据检测到的各个区域对应的被照射部位的湿度计算该被照射部位的油脂度。
  14. 如权利要求9至12任一项所述的智能生发装置的控制方法,其特征在于,所述智能生发装置还包括电路板和用于检测电路板温度的第一温度传感单元,所述发光单元和所述第一温度传感单元位于所述电路板上;在所述发光单元工作之前,还包括如下步骤:
    S1、通过所述第一温度传感单元获取所述电路板温度;
    S2、根据所述电路板温度和总辐照能量确定所述发光单元本次工作时间。
  15. 如权利要求14所述的智能生发装置的控制方法,其特征在于,所述第一温度传感单元的数量为多个,分别设置在所述智能生发装置的不同区域,一个第一温度传感单元检测一个区域的电路板温度;在所述发光单元工作了T3时,根据此时各个区域的电路板温度以及剩余辐照能量重新计算该区域的发光单元本次剩下工作时间。
  16. 一种智能生发系统,其特征在于,包括权利要求1至8任一项所述的智能生发装置和云服务器,所述智能生发装置还包括通讯装置,所述云服务器与所述通讯装置进行通信。
  17. 一种智能生发系统,其特征在于,包括权利要求1至8任一项所述的智能生发装置、应用程序装置和云服务器,所述智能生发装置还包括通讯装置,所述应用程序装置安装于便携处理终端或者电脑上,所述云服务器通过所述应用程序装置与所述通讯装置进行通信。
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