WO2020225626A1 - 一种睡眠环境的调节方法、系统及装置 - Google Patents

一种睡眠环境的调节方法、系统及装置 Download PDF

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Publication number
WO2020225626A1
WO2020225626A1 PCT/IB2020/053649 IB2020053649W WO2020225626A1 WO 2020225626 A1 WO2020225626 A1 WO 2020225626A1 IB 2020053649 W IB2020053649 W IB 2020053649W WO 2020225626 A1 WO2020225626 A1 WO 2020225626A1
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WO
WIPO (PCT)
Prior art keywords
user
sleep
environment
data
environmental
Prior art date
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PCT/IB2020/053649
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English (en)
French (fr)
Inventor
廖醇祖
Original Assignee
廖醇祖
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 廖醇祖 filed Critical 廖醇祖
Priority to JP2021563124A priority Critical patent/JP2022531844A/ja
Priority to US17/609,706 priority patent/US20220226601A1/en
Priority to EP20802187.3A priority patent/EP3968121A4/en
Publication of WO2020225626A1 publication Critical patent/WO2020225626A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M21/00Other devices or methods to cause a change in the state of consciousness; Devices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis
    • A61M21/02Other devices or methods to cause a change in the state of consciousness; Devices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis for inducing sleep or relaxation, e.g. by direct nerve stimulation, hypnosis, analgesia
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/48Other medical applications
    • A61B5/4806Sleep evaluation
    • A61B5/4815Sleep quality
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B15/00Systems controlled by a computer
    • G05B15/02Systems controlled by a computer electric
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M21/00Other devices or methods to cause a change in the state of consciousness; Devices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis
    • A61M2021/0005Other devices or methods to cause a change in the state of consciousness; Devices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis by the use of a particular sense, or stimulus
    • A61M2021/0044Other devices or methods to cause a change in the state of consciousness; Devices for producing or ending sleep by mechanical, optical, or acoustical means, e.g. for hypnosis by the use of a particular sense, or stimulus by the sight sense
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/25Pc structure of the system
    • G05B2219/25168Domotique, access through internet protocols
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/26Pc applications
    • G05B2219/2642Domotique, domestic, home control, automation, smart house

Definitions

  • the present invention relates to the technical field of environmental regulation, and in particular to a method, system, and device for regulating a sleeping environment.
  • the current rest device can only provide a sleeping place for the user, but cannot adjust the sleeping environment to ensure the comfort of the user's sleep and realize the user's high-quality sleep. Therefore, an improved solution is urgently needed.
  • the purpose of the present invention is to overcome the above-mentioned technical deficiencies and provide a sleep environment adjustment method, system and device, which can adjust the user’s sleep environment, thereby ensuring the user’s sleep comfort and realizing the user’s high-quality sleep .
  • the first aspect of the present invention provides a sleep environment adjustment method, including the following steps: a data collection structure collects user sleep data and sends it to a data analysis server, where the user sleep data includes user sleep data and user sleep environment data Environmental data; The data analysis server analyzes and processes the received sleep data of the user to obtain the sleep information of the user and the environmental information of the user's sleep environment, and sends the sleep information of the user and the environmental information of the user's sleep environment to the adjustment server;
  • the adjustment server generates corresponding environmental control instructions according to the received sleep information of the user and the environmental information of the user's sleep environment and sends the environmental control instructions to the local server;
  • the local server sends the environmental control instruction to the corresponding regulator after receiving the environmental control instruction
  • the regulator controls and adjusts the lighting intensity of the LED light, the volume of the audio player, and the speed of the fan according to the received environmental control instructions to adjust the light, sound and airflow speed in the user's sleep environment, thereby realizing the user's sleep environment adjust.
  • the adjustment server generates the user's sleep data report according to the received user's sleep information and stores the user's sleep data report in the database.
  • the user manually inputs the lighting intensity of the LED light, the volume of the audio player, and the rotation speed of the fan through the control panel;
  • the control panel outputs adjustment instructions to the regulator according to the intensity of the LED light, the volume of the audio player, and the speed of the fan manually input by the user;
  • the adjuster controls and adjusts the lighting intensity of the LED light, the volume of the audio player, and the speed of the fan according to the received adjustment command to realize the first adjustment of the light, sound and airflow speed in the user's sleep environment, thereby realizing the user's sleep environment Make the first adjustment.
  • the user’s sleep data includes the user’s heart rate, body motion and/or breathing rate;
  • the user’s sleep environment environmental data includes the user’s sleep environment noise level, air temperature and Humidity.
  • the user's sleep information includes the user's sleep time, wake-up time, and sleep stage;
  • the user's sleep environment environmental information includes the user's sleep environment noise level, air temperature and humidity level.
  • a second aspect of the present invention provides a sleep environment adjustment system, including:
  • a data collection structure for collecting and sending data about the user's sleep to a data analysis server, where the data about the user's sleep includes the user's sleep data and environmental data of the user's sleep environment;
  • the data analysis server is used to analyze and process the received user sleep data to obtain the user's sleep information and the environmental information of the user's sleep environment and send the user's sleep information and the environmental information of the user's sleep environment to the adjustment server;
  • the adjustment server is used to generate corresponding environmental control instructions according to the received sleep information of the user and the environmental information of the user's sleep environment and send the environmental control instructions to the local server;
  • a local server which is used to send the environmental control instruction to the corresponding regulator after receiving the environmental control instruction
  • the regulator is used to control and adjust the lighting intensity of the LED light, the volume of the audio player, and the speed of the fan according to the received environmental control instruction to realize the user's adjustment of the light, sound, and airflow speed in the sleeping environment, thereby realizing the user
  • the sleep environment is adjusted.
  • the adjustment server is further configured to generate a sleep data report of the user according to the received sleep information of the user and store the sleep data report of the user in a database.
  • control panel for the user to manually input the lighting intensity of the LED light, the volume of the audio player, and the speed of the fan, and the lighting intensity of the LED light and the volume of the audio player manually input by the user.
  • the size and the speed of the fan output an adjustment instruction to the regulator; the regulator is also used to control and adjust the lighting intensity of the LED light according to the received adjustment instruction.
  • the volume of the audio player and the speed of the fan are used to adjust the light, sound, and airflow speed in the user's sleep environment for the first time, so as to realize the first adjustment of the user's sleep environment.
  • the user's sleep data includes the user's heart rate, body motion and/or breathing frequency;
  • the user's sleep environment environmental data includes the user's sleep environment noise level, air temperature and humidity.
  • the user's sleep information includes the user's sleep time, wake-up time, and sleep stage;
  • the user's sleep environment environmental information includes the user's sleep environment noise level, air temperature and humidity level.
  • a third aspect of the present invention provides a sleep environment adjusting device, including a data collection structure, a regulator, an LED light, an audio player, and a fan, the LED light, the audio player, and the fan are respectively connected to the regulator;
  • the data collection structure is used to collect data about the user’s sleep and send it to the server.
  • the data about the user’s sleep includes the user’s sleep data and environmental data of the user’s sleep environment.
  • the environmental control command controls and adjusts the lighting intensity of the LED lights, the volume of the audio player, and the rotation speed of the fan to adjust the light, sound, and airflow speed in the user's sleep environment, so that the user's sleep environment can be adjusted.
  • the regulator includes a casing and a processing module, a power supply module, and a communication module arranged in the casing, the power supply module and the communication module are respectively connected to the processing module, and a power interface is provided on the casing, The power interface is connected to the power module; the audio player is arranged in the housing, and the housing is provided with a through hole corresponding to the audio player; the LED lights, the audio player, and the fan are all Connect with the processing module and the power supply module.
  • the power supply module is provided with a first voltage conversion unit and a second voltage conversion unit
  • the processing module, the LED lamp and the audio player are respectively connected to the first voltage conversion unit
  • the first voltage conversion unit is used for Convert the power supply voltage of the power module into the processing module, LED lights and audio broadcast
  • the working voltage of the amplifier, the fan is connected to the second voltage conversion unit
  • the second voltage conversion unit is configured to convert the power supply voltage of the power module into the working voltage of the fan.
  • the power supply voltage of the power module is 220V
  • the working voltage of the processing module, the LED lamp and the audio player is 5V
  • the working voltage of the fan is 12V.
  • a socket is provided on the housing, and the socket is connected to the power module.
  • the adjusting device further includes a control panel, and the control panel is connected to the processing module.
  • control panel includes a main control module, and a lighting control module, a volume control module, and a fan speed control module connected to the main control module, and the main control module is connected to the processing module.
  • a data interface is provided on the housing, and the main control module is connected to the processing module through the data interface.
  • the communication module is a WIFI module or a wireless AP module.
  • the data collection structure includes a sleep sensor and an environment sensor.
  • the sleep sensor is used to collect sleep data of the user.
  • the sleep data of the user includes the user's heart rate, body motion and/or breathing rate, and the environment
  • the sensor is used to collect environmental data of the user's sleep environment, where the environmental data of the user's sleep environment includes the noise level, air temperature, and humidity of the user's sleep environment.
  • the present invention collects the user’s sleep data and the environmental data of the user’s sleep environment, and analyzes and processes the user’s sleep data and the environmental data of the user’s sleep environment to obtain the user’s sleep information and the environmental information of the user’s sleep environment, and according to the user’s sleep Information and environmental information of the user’s sleeping environment generate corresponding environmental control instructions, and according to the environmental control instructions, control and adjust the lighting intensity of the LED lights, the sound of the audio player, and the speed of the fan to realize the user’s understanding of the light, sound and airflow in the sleeping environment The speed adjustment realizes the adjustment of the user's sleeping environment, thereby ensuring the user's sleep comfort and realizing the user's high-quality sleep.
  • FIG. 1 is a schematic block diagram of a sleep environment adjusting system provided by the first embodiment of the present invention
  • FIG. 2 is a schematic flow chart of a sleep environment adjusting method provided by the second embodiment of the present invention
  • FIG. 3 is the first embodiment of the present invention
  • FIG. 4 is a schematic structural diagram of the adjusting device shown in FIG. 3 (where the regulator is an exploded view);
  • Fig. 5 is a block diagram of the regulator shown in Fig. 4;
  • Fig. 6 is a block diagram of the control panel of the adjusting device shown in Fig. 3.
  • a sleep environment adjustment system provided by the present invention includes a data collection structure 10, a data analysis server 11, an adjustment server 12, a local server 13, a regulator 14, an LED light 15, an audio player 16, and a fan 17. And control panel 18.
  • the data collection structure 10 is used to collect the sleep data of the user and send it to the data analysis server 11.
  • the data of the user's sleep includes the user's sleep data and the environmental data of the user's sleep environment.
  • the user's sleep data includes the user's heart rate, body movement (ie, the user's body flipping movement) and/or breathing rate;
  • the user's sleep environment environmental data includes the user's sleep environment noise level, air temperature and humidity.
  • the data analysis server 11 is configured to analyze and process the received user sleep data to obtain the user's sleep information and the environmental information of the user's sleep environment and send the user's sleep information and the environmental information of the user's sleep environment to the adjustment server 12.
  • the user's sleep information includes the user's sleep time, wake-up time, and sleep stage; sleep stages such as light sleep stage and deep sleep stage.
  • User sleep The environmental information of the environment includes the noise level, air temperature and humidity level of the user's sleep environment.
  • the adjustment server 12 is used for generating corresponding environmental control instructions and sending the environmental control instructions to the local server 13 according to the received sleep information of the user and the environmental information of the user's sleep environment. For example, the adjustment server 12 generates close, increase, decrease, and open environmental control commands according to the received sleep time, wake-up time, and sleep stage of the user, and generate it according to the noise level, air temperature, and humidity level of the user’s sleep environment.
  • the local server 13 is used to send the environmental control instruction to the corresponding regulator 14 after receiving the environmental control instruction.
  • the regulator 14 is used to control and adjust the lighting intensity of the LED lamp 15, the volume of the audio player 16 and the rotation speed of the fan 17 according to the received environmental control instruction to realize the adjustment of the light, sound, and airflow speed in the user's sleep environment, thereby Realize the adjustment of the user's sleeping environment.
  • the regulator 14 corresponds to the data collection structure 10. For example, if the regulator 14 receives a shutdown environment control instruction, indicating that the user’s sleep time is up, the lighting intensity of the LED lamp 15 is controlled to promote the user to fall asleep, and the volume of the audio player 16 is to promote the user to fall asleep.
  • the rotation speed of the fan 17 is a rotation speed that promotes the user to fall asleep, which helps the user fall asleep at this time; if the regulator 14 receives an open environment control command, indicating that the user wakes up, it controls and adjusts the lighting intensity of the LED lamp 15 to A certain value means that the LED light 15 is turned on, the volume of the audio player 16 is a certain level, the audio player 16 is turned on, and the fan 17 is turned on when the speed of the fan 17 is a certain value, which helps the user to wake up easily; if the regulator 14 Receiving an environment control instruction to increase, indicating that the user is in a light sleep stage, control and adjust the lighting intensity of the LED light 15 to 0, that is, turn off the LED light 15, and the volume of the audio player 16 is 0, that is, turn off the audio player 16 and the fan The increase in the speed of 17 will help the user to go from light sleep to deep sleep at this time, because the body temperature will rise after a person falls asleep, and a cool environment will help people sleep, so the speed of the fan 17
  • the regulator 14 If the regulator 14 receives a lowered environmental control command, which indicates that the user’s sleep environment has low noise and low air temperature and humidity, it controls and adjusts the LED light 15 to increase the lighting intensity and audio The volume of the player 16 decreases and the rotation speed of the fan 17 decreases.
  • the data collection structure 10 is preferably connected to the data analysis server 11 through a local router to send the collected user sleep data to the data analysis server 11.
  • the adjustment server 12 preferably sends the environmental control instruction to the local server 13 through the local router.
  • the regulator 14 and the local server 13 are connected through a wireless network, and the wireless network is, for example, wireless WIFI or wireless AP.
  • the LED light 15, the audio player 16, and the fan 17 are connected to the regulator 14 respectively.
  • the audio player 16 is a speaker, and the speaker is arranged at the bottom of the adjuster 14.
  • the adjustment server 12 is also used to generate a sleep data report of the user according to the received sleep information of the user and store the sleep data report of the user in a database, so that the user can know his sleep status.
  • the control panel 18 is used for the user to manually input the lighting intensity of the LED light 15, the volume of the audio player 16, the speed of the fan 17, and the lighting intensity of the LED light 15 and the volume of the audio player 16 manually input by the user.
  • the size and the rotation speed of the fan 17 output an adjustment command to the regulator 14.
  • the regulator 14 is also used to control and adjust the lighting intensity of the LED lamp 15, the volume of the audio player 16 and the rotation speed of the fan 17 according to the received adjustment instruction to adjust the light, sound and airflow speed in the user's sleep environment for the first time, thereby Realize the first adjustment of the user's sleep environment.
  • this embodiment is based on a sleep environment adjustment method provided by the first embodiment, and includes the following steps:
  • the data collection structure 10 collects the sleep data of the user and sends it to the data analysis server 11.
  • the sleep data of the user includes the sleep data of the user and the environmental data of the user's sleep environment.
  • the data collection structure 10 sends the collected user sleep data to the data analysis server through the local router
  • the data analysis server 11 analyzes and processes the received sleep data of the user to obtain the sleep information of the user and the environmental information of the user's sleep environment, and sends the sleep information of the user and the environmental information of the user's sleep environment to the adjustment server 12.
  • the adjustment server 12 generates a corresponding environmental control instruction according to the received sleep information of the user and the environmental information of the user's sleep environment and sends the environmental control instruction to the local server 13.
  • the local server 13 sends the environmental control instruction to the corresponding regulator 14 after receiving the environmental control instruction.
  • the regulator 14 controls and adjusts the lighting intensity of the LED lamp 15, the volume of the audio player 16 and the rotation speed of the fan 17 according to the received environmental control instruction to realize the adjustment of the light, sound, and airflow speed in the user's sleep environment, thereby Realize the adjustment of the user's sleeping environment.
  • the adjustment server 12 generates a sleep data report of the user according to the received sleep information of the user and stores the sleep data report of the user in a database.
  • the user manually inputs the illumination intensity of the LED lamp 15, the volume of the audio player 16 and the rotation speed of the fan 17 through the control panel 18.
  • the control panel 18 outputs an adjustment command to the regulator 14 according to the illuminance of the LED lamp 15 manually input by the user, the volume of the audio player 16 and the rotation speed of the fan 17.
  • the adjuster 14 controls and adjusts the lighting intensity of the LED lamp 15, the volume of the audio player 16 and the rotation speed of the fan 17 according to the received adjustment instruction to realize the first adjustment of the light, sound and airflow speed in the user's sleep environment, thereby realizing the adjustment
  • the user's sleep environment is adjusted for the first time.
  • the user’s sleep data includes the user’s heart rate, body motion (ie, the user’s body turning motion) and/or breathing rate;
  • the user’s sleep environment environmental data includes the user’s sleep environment noise level, air temperature, and humidity.
  • the user's sleep information includes the user's sleep time, wake-up time, and sleep stage; the user's sleep environment environmental information includes the user's sleep environment noise level, air temperature and humidity level.
  • the present invention collects the user’s sleep data and the environmental data of the user’s sleep environment, and analyzes and processes the user’s sleep data and the environmental data of the user’s sleep environment to obtain the user’s sleep information and the environmental information of the user’s sleep environment.
  • the user’s sleep information and the environmental information of the user’s sleep environment generate environmental control instructions, and according to the environmental control instructions, the lighting intensity of the LED lamp 15, the volume of the audio player 16, and the rotation speed of the fan 17 are adjusted to achieve the user’s control of the light in the sleep environment. , Sound and airflow speed adjustment, so as to realize the adjustment of the user's sleeping environment, thereby ensuring the user's sleep comfort and realizing the user's high-quality sleep.
  • this embodiment is based on a sleep environment adjusting device provided by the first embodiment, which is used to install in a rest device, and includes a data collection structure (not shown in the figure), a regulator 14, and an LED lamp 15. , Audio player 16 and fan 17.
  • the LED light 15, the audio player 16, and the fan 17 are connected to the regulator 14 respectively.
  • the data collection structure is used to collect the sleep data of the user and send it to the server (ie, data According to analysis server).
  • the data of the user's sleep includes the user's sleep data and the environmental data of the user's sleep environment.
  • the data collection structure includes a sleep sensor and an environmental sensor.
  • the sleep sensor is generally installed under the bed in the rest device to collect the user's sleep data.
  • the user's sleep data includes the user's heart rate, body movement (that is, the user's body flipping movement) and/or breathing rate.
  • Environmental sensors are generally installed on the wall in the rest device to collect environmental data of the user's sleep environment.
  • the environmental data of the user's sleep environment includes the noise level, air temperature and humidity of the user's sleep environment.
  • the regulator 14 is used to receive the environmental control instruction sent by the server (ie, the local server) and adjust the lighting intensity of the LED lamp 15, the volume of the audio player 16, and the rotation speed of the fan 17 according to the environmental control instruction to realize the sleep environment for the user
  • the adjustment of the light, sound, and airflow speed can realize the adjustment of the user’s sleeping environment.
  • the regulator 14 receives an environmental control instruction for shutting down the server, indicating that the user’s sleep time is up, it controls and adjusts the lighting intensity of the LED lamp 15 to promote the user to fall asleep, and the volume of the audio player 16 to promote the user to fall asleep.
  • the volume and the rotation speed of the fan 17 are the rotation speeds that promote the user to fall asleep, which is helpful for the user to fall asleep at this time; if the regulator 14 receives the server's turn-on environmental control instruction, indicating that the user wakes up, it controls and adjusts the LED light 15 When the lighting intensity reaches a certain value, the LED light 15 is turned on, the volume of the audio player 16 is a certain level, the audio player 16 is turned on, and the fan 17 is turned on when the speed of the fan 17 is a certain value, which helps the user to wake up easily; If the regulator 14 receives the server’s increased environmental control command, indicating that the user is in a light sleep phase, it controls and adjusts the lighting intensity of the LED light 15 to 0 to turn off the LED light 15, and the audio player 16 to turn it off when the volume is 0 The increase in the speed of the audio player 16 and the fan 17 will help the user to go from light sleep to deep sleep, because the body temperature will rise after a person falls asleep, and a cool environment will help people
  • the regulator 14 receives an environment control instruction to increase the height of the server, indicating that the user’s sleeping environment is noisy, and the air temperature and humidity are high, it controls and adjusts the LED lamp 15 to reduce the lighting intensity and the audio player 16 The volume is increased and the speed of the fan 17 is increased; if the regulator 14 receives the server's lowering environment control command, indicating that the user's sleep environment has low noise and low air temperature and humidity, it controls and adjusts the lighting of the LED lamp 15 The intensity increases, the volume of the audio player 16 decreases, and the rotation speed of the fan 17 decreases.
  • LED lamps 15, and several LED lamps 15 form a light strip 150.
  • the audio player 16 is preferably a speaker. There are two audio players 16. The number of LED lights 15 and audio players 16 can be set according to actual conditions.
  • the regulator 14 includes a square housing 117 and a processing module 111, a power supply module 112, and a communication module 113 arranged in the housing 117.
  • the processing module 111 is preferably a CPU (central processing unit).
  • the power module 112 is located on one side of the housing 117.
  • the power supply module 112 and the communication module 113 are respectively connected to the processing module 111.
  • a power interface 114 is provided on one side of the housing 117 at a position corresponding to the power module 112, and the power interface 114 is connected to the power module 112.
  • the power module 112 is preferably a mobile power source.
  • the power interface 114 is preferably a Type-C interface, a USB2.0 interface, or a USB3.0 interface, and is used to connect to an external power source, so as to charge the power module 112.
  • the top of the casing 117 is provided with a power switch, which is connected to the processing module 111, and the power switch is used to control the on and off of the power source.
  • the audio player 16 is arranged in a housing 117, and the housing 117 is provided with a through hole corresponding to the audio player 16.
  • the audio player 16 is arranged at the bottom of the housing 117, and on the bottom of the housing 117 The through hole corresponding to the audio player 16 is provided.
  • the LED light 15, the audio player 16 and the fan 17 are all connected to the processing module 111 and the power supply module 112.
  • the power supply module 112 provides the processing module 111, LED The lamp 15, the audio player 16, and the fan 17 supply power.
  • the processing module 111 is used to control and adjust the lighting intensity of the LED lamp 15, the volume of the audio player 16 and the rotation speed of the fan 17 to adjust the light, sound, and airflow speed in the user's sleep environment.
  • the communication module 113 is a wireless AP module. After the regulator 14 is powered on, the wireless AP module will act as an AP hotspot. After the user connects the phone to the Internet using a smart terminal such as a mobile phone, the phone is connected to the Internet. After the connection is successful, the regulator 14 is connected to the Internet. , You can receive the environmental control commands sent by the server. Understandably, the communication module 113 may also be a WIFI module, which is connected to the Internet through the WIFI module, and can also realize the reception of environmental control instructions sent by the server.
  • the power module 112 is provided with a first voltage conversion unit and a second voltage conversion unit.
  • the processing module 111, the LED light 15 and the audio player 16 are respectively connected to a first voltage conversion unit, and the first voltage conversion unit is used to convert the supply voltage of the power supply module 112 into the processing module 111, the LED light 15 and the audio player 16 Operating Voltage.
  • the fan 17 is connected to a second voltage conversion unit, and the second voltage conversion unit is used to convert the power supply voltage of the power supply module 112 into the working voltage of the fan 17.
  • the power supply voltage of the power supply module 112 is 220V
  • the working voltage of the processing module 111, the LED lamp 15 and the audio player 16 is 5V
  • the working voltage of the fan 17 is 12V.
  • a socket 115 is provided on the housing 117, and the socket 115 is connected to the power module 112.
  • the socket 115 can be used for charging other electronic devices.
  • the number of sockets 115 in this embodiment is three.
  • the number of sockets 115 can be set according to actual conditions.
  • the socket 115 is preferably a three-pin socket. Understandably, the socket 115 may also be other types of sockets.
  • a cooling fan 119 connected to the processing module 111 is provided in the housing 117, and the cooling fan
  • the housing 117 includes a housing body 117a with two ends open, and a top plate 117b and a bottom plate 117c provided at both ends of the housing body 117a.
  • the adjusting device of the present invention further includes a control panel 18, and the control panel 18 is connected to the processing module 111.
  • the control panel 18 is used to send adjustment instructions to the processing module 111
  • the processing module 111 is used to control and adjust the lighting intensity of the LED lamp 15, the volume of the audio player 16, and the speed of the fan 17 according to the adjustment instructions.
  • the control panel 18 includes a main control module 151, a light control module 152, a volume control module 153, and a fan speed control module 154 connected to the main control module 151.
  • the main control module 151 is connected to the processing module 111.
  • the lighting control module 152 is preferably a lighting control button, and the lighting intensity of the LED lamp 15 can be manually set through the lighting control button.
  • the volume control module 153 is preferably a volume control button, and the volume of the audio player 16 can be manually set through the volume control button.
  • the fan speed control module 154 is preferably a fan speed control button, and the speed of the fan 17 can be manually set through the fan speed control button.
  • the control panel 18 After manually setting the lighting intensity of the LED light 15, the volume of the audio player 16 and the speed of the fan 17, the control panel 18 outputs an adjustment instruction to the processing module 11.
  • the processing module 111 can control and adjust the LED light 15 after receiving the adjustment instruction.
  • the lighting intensity, the volume of the audio player 16 and the speed of the fan 17 are changed.
  • the housing 117 is provided with a data interface 116 (see FIG. 4 and FIG. 5), and the main control module 151 is connected to the processing module 111 through the data interface 116.
  • the data interface 116 and the power interface 114 are respectively arranged on two opposite sides of the housing body 117a.
  • the data interface 116 is, for example, a USB interface or the like.
  • the present utility model can realize the control and adjustment of the lighting intensity of the LED lamp 15, the sound of the audio player 16 and the rotation speed of the fan 17 through the data acquisition structure and the regulator 14 provided in the sleep environment to realize the control of the light, sound and
  • the adjustment of the airflow speed can thereby realize the regulation of the user's sleeping environment, so that the comfort of the user's sleep can be ensured and the user's high-quality sleep can be achieved.

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Abstract

一种睡眠环境的方法、系统及装置,该方法包括以下步骤:数据采集结构(10)采集用户睡眠的数据并发送到数据分析服务器(11)(S1);数据分析服务器(11)对接收到的用户睡眠的数据进行分析处理得到用户的睡眠信息以及用户睡眠环境的环境信息并将用户的睡眠信息以及用户睡眠环境的环境信息发送到调节服务器(12)(S3);调节服务器(12)根据接收到的用户的睡眠信息以及用户睡眠环境的环境信息生成相应的环境控制指令并将环境控制指令发送到本地服务器(13)(S5);调节器(14)根据接收到的环境控制指令控制调整LED灯(15)的照明强度、音频播放器(16)的音量以及风扇(17)的转速(S9)。

Description

一种睡眠环境的调节方法、 系统及装置
【技术领域】
本发明涉及环境调节技术领域, 尤其是涉及一种睡眠环境的调节方法、 系 统及装置。
【背景技术】
目前对于一些空间受限或者有限的场所的住宿需求在不断增长, 比如人口 较密集的香港、 东京、 北京等大都市, 或者对短期住宿有高需求的地方, 如机 场、 火车站等等, 通常需要廉价的和临时的睡眠的住宿场所, 该住宿场所一方 面要确保有足够的私密性, 另一方面又不占用大量的空间。 因此, 一种休息装 置应运而生。
目前的休息装置只是能够给用户提供睡眠的场所, 但不能对睡眠环境进行 调节以保证用户睡眠的舒适度以及实现用户的高质量的睡眠, 因此, 亟需一种 改进的方案。
【发明内容】
本发明的目的在于克服上述技术的不足, 提供一种睡眠环境的调节方法、 系统及装置, 可实现对用户的睡眠环境进行调节, 从而可保证用户睡眠的舒适 度以及实现用户的高质量的睡眠。
本发明的第一方面提供一种睡眠环境的调节方法, 包括以下步骤: 数据采集结构采集用户睡眠的数据并发送到数据分析服务器, 所述用户睡 眠的数据包括用户的睡眠数据和用户睡眠环境的环境数据; 数据分析服务器对接收到的用户睡眠的数据进行分析处理得到用户的睡眠 信息以及用户睡眠环境的环境信息并将用户的睡眠信息以及用户睡眠环境的环 境信息发送到调节服务器;
调节服务器根据接收到的用户的睡眠信息以及用户睡眠环境的环境信息生 成相应的环境控制指令并将环境控制指令发送到本地服务器;
本地服务器在接收到环境控制指令后将环境控制指令发送到相应的调节 器;
调节器根据接收到的环境控制指令控制调整 LED灯的照明强度、 音频播放 器的音量以及风扇的转速以对用户睡眠环境中的光、 声音以及气流速度的调节, 从而实现对用户的睡眠环境进行调节。
进一步地, 还包括以下步骤:
调节服务器根据接收到的用户的睡眠信息生成用户的睡眠数据报告并将用 户的睡眠数据报告存储到数据库。
进一步地, 在数据采集结构采集用户的睡眠数据之前还包括以下步骤: 用户通过控制面板手动输入 LED灯的照明强度大小、 音频播放器的音量大 小以及风扇的转速大小;
控制面板根据用户手动输入的 LED灯的照明强度大小、 音频播放器的音量 大小以及风扇的转速大小向调节器输出调整指令;
调节器根据接收到的调整指令控制调整 LED灯的照明强度、 音频播放器的 音量以及风扇的转速以实现对用户睡眠环境中的光、 声音以及气流速度的首次 调节, 从而实现对用户的睡眠环境进行首次调节。
进一步地, 所述用户的睡眠数据包括用户的心率、 身体的运动和 /或呼吸频 率; 所述用户睡眠环境的环境数据包括用户睡眠环境的噪音水平、 空气温度和 湿度。
进一步地, 所述用户的睡眠信息包括用户的睡眠时间、 唤醒时间以及睡眠 阶段; 所述用户睡眠环境的环境信息包括用户睡眠环境的噪音大小、 空气温度 和湿度大小。
本发明的第二方面提供一种睡眠环境的调节系统, 包括:
数据采集结构, 用于采集用户睡眠的数据并发送到数据分析服务器, 所述 用户睡眠的数据包括用户的睡眠数据和用户睡眠环境的环境数据;
数据分析服务器, 用于对接收到的用户睡眠的数据进行分析处理得到用户 的睡眠信息以及用户睡眠环境的环境信息并将用户的睡眠信息以及用户睡眠环 境的环境信息发送到调节服务器;
调节服务器, 用于根据接收到的用户的睡眠信息以及用户睡眠环境的环境 信息生成相应的环境控制指令并将环境控制指令发送到本地服务器;
本地服务器, 用于在接收到环境控制指令后将环境控制指令发送到相应的 调节器;
调节器, 用于根据接收到的环境控制指令控制调整 LED灯的照明强度、 音 频播放器的音量以及风扇的转速以实现用户对睡眠环境中的光、 声音以及气流 速度的调节, 从而实现对用户的睡眠环境进行调节。
进一步地, 所述调节服务器还用于根据接收到的用户的睡眠信息生成用户 的睡眠数据报告并将用户的睡眠数据报告存储到数据库。
进一步地,还包括控制面板,用于供用户手动输入 LED灯的照明强度大小、 音频播放器的音量大小以及风扇的转速大小以及根据用户手动输入的 LED灯的 照明强度大小、 音频播放器的音量大小以及风扇的转速大小向调节器输出调整 指令; 所述调节器还用于根据接收到的调整指令控制调整 LED灯的照明强度、 音频播放器的音量以及风扇的转速以对用户睡眠环境中的光、 声音以及气流速 度的首次调节, 从而实现对用户的睡眠环境进行首次调节。
进一步地, 所述用户的睡眠数据包括用户的心率、 身体的运动和 /或呼吸频 率; 所述用户睡眠环境的环境数据包括用户睡眠环境的噪音水平、 空气温度和 湿度。
进一步地, 所述用户的睡眠信息包括用户的睡眠时间、 唤醒时间以及睡眠 阶段; 所述用户睡眠环境的环境信息包括用户睡眠环境的噪音大小、 空气温度 和湿度大小。
本发明的第三方面提供一种睡眠环境的调节装置, 包括数据采集结构、 调 节器、 LED灯、 音频播放器和风扇, 所述 LED灯、 音频播放器和风扇分别与所 述调节器连接; 所述数据采集结构用于采集用户睡眠的数据并发送到服务器, 所述用户睡眠的数据包括用户的睡眠数据和用户睡眠环境的环境数据, 所述调 节器用于接收服务器发送的环境控制指令并根据环境控制指令控制调整所述 LED灯的照明强度、 音频播放器的音量以及风扇的转速以实现对用户睡眠环境 中的光、 声音以及气流速度的调节, 从而可实现对用户的睡眠环境进行调节。
进一步地, 所述调节器包括壳体以及设置在壳体内的处理模块、 电源模块、 通信模块, 所述电源模块和通信模块分别与所述处理模块连接, 所述壳体上设 有电源接口, 所述电源接口与所述电源模块连接; 所述音频播放器设置在所述 壳体内, 所述壳体上设有与音频播放器对应的通孔; 所述 LED灯、 音频播放器 和风扇都与所述处理模块、 电源模块连接。
进一步地, 所述电源模块设有第一电压转换单元和第二电压转换单元, 所 述处理模块、 LED灯和音频播放器分别与所述第一电压转换单元连接, 第一电 压转换单元用于将电源模块的供电电压转换为所述处理模块、 LED灯和音频播 放器的工作电压, 所述风扇与所述第二电压转换单元连接, 第二电压转换单元 用于将电源模块的供电电压转换为所述风扇的工作电压。
进一步地, 所述电源模块的供电电压为 220V, 所述处理模块、 LED灯和音 频播放器的工作电压为 5V, 所述风扇的工作电压为 12V。
进一步地, 所述壳体上设有插座, 所述插座与所述电源模块连接。
进一步地, 所述调节装置还包括控制面板, 所述控制面板与所述处理模块 连接。
进一步地, 所述控制面板包括主控模块以及与主控模块连接的灯光控制模 块、 音量控制模块和风扇转速控制模块, 所述主控模块与所述处理模块连接。
进一步地, 所述壳体上设有数据接口, 所述主控模块通过所述数据接口与 所述处理模块连接。
进一步地, 所述通信模块为 WIFI模块或无线 AP模块。
进一步地, 所述数据采集结构包括睡眠传感器和环境传感器, 所述睡眠传 感器用于采集用户的睡眠数据, 所述用户的睡眠数据包括用户的心率、 身体的 运动和 /或呼吸频率, 所述环境传感器用于采集用户睡眠环境的环境数据, 所述 用户睡眠环境的环境数据包括用户睡眠环境的噪音水平、 空气温度和湿度。
本发明通过采集用户的睡眠数据和用户睡眠环境的环境数据, 并对用户的 睡眠数据和用户睡眠环境的环境数据进行分析处理得到用户的睡眠信息以及用 户睡眠环境的环境信息, 并根据用户的睡眠信息以及用户睡眠环境的环境信息 生成相应的环境控制指令, 并根据环境控制指令控制调整 LED灯的照明强度、 音频播放器的声音以及风扇的转速以实现用户对睡眠环境中的光、 声音以及气 流速度的调节, 从而实现对用户的睡眠环境进行调节, 从而可保证用户睡眠的 舒适度以及实现用户的高质量的睡眠。 【附图说明】
图 1为本发明第一实施例提供的一种睡眠环境的调节系统的框图示意图; 图 2为本发明第二实施例提供的一种睡眠环境的调节方法的流程示意图; 图 3为本发明第三实施例提供的一种睡眠环境的调节装置的框图示意图; 图 4是图 3所示调节装置的结构示意图 (其中调节器为爆炸图);
图 5是图 4所示调节器的框图示意图;
图 6是图 3所示调节装置的控制面板的框图示意图。
【具体实施方式】
下面结合附图和实施例对本发明作进一步的描述。
第一实施例
参考图 1, 本发明提供的一种睡眠环境的调节系统,包括数据采集结构 10、 数据分析服务器 11、 调节服务器 12、 本地服务器 13、 调节器 14、 LED灯 15、 音频播放器 16、 风扇 17以及控制面板 18。
数据采集结构 10用于采集用户睡眠的数据并发送到数据分析服务器 11。用 户睡眠的数据包括用户的睡眠数据和用户睡眠环境的环境数据。 用户的睡眠数 据包括用户的心率、 身体的运动 (即用户身体的翻转运动) 和 /或呼吸频率; 用 户睡眠环境的环境数据包括用户睡眠环境的噪音水平、 空气温度和湿度。
数据分析服务器 11用于对接收到的用户睡眠的数据进行分析处理得到用户 的睡眠信息以及用户睡眠环境的环境信息并将用户的睡眠信息以及用户睡眠环 境的环境信息发送到调节服务器 12。 用户的睡眠信息包括用户的睡眠时间、 唤 醒时间以及睡眠阶段; 睡眠阶段例如轻度睡眠阶段、 深度睡眠阶段。 用户睡眠 环境的环境信息包括用户睡眠环境的噪音大小、 空气温度和湿度大小。
调节服务器 12用于根据接收到的用户的睡眠信息以及用户睡眠环境的环境 信息生成相应的环境控制指令并将环境控制指令发送到本地服务器 13。 例如, 调节服务器 12根据接收到的用户的睡眠时间、 唤醒时间以及睡眠阶段, 分别生 成关闭、 调大、 调小、 打开的环境控制指令, 根据用户睡眠环境的噪音大小、 空气温度和湿度大小生成调高或调低的环境控制指令。
本地服务器 13用于在接收到环境控制指令后将环境控制指令发送到相应的 调节器 14。
调节器 14用于根据接收到的环境控制指令控制调整 LED灯 15的照明强度、 音频播放器 16的音量以及风扇 17的转速以实现对用户睡眠环境中的光、 声音 以及气流速度的调节, 从而实现对用户的睡眠环境进行调节。 调节器 14与数据 采集结构 10对应。 例如, 若调节器 14接收到关闭的环境控制指令, 表明用户 的睡眠时间到了, 则控制调整 LED灯 15的照明强度为促进用户入睡的照明强 度、 音频播放器 16的音量为促进用户入睡的音量以及风扇 17的转速为促进用 户入睡的转速,此时有助于用户入睡;若调节器 14接收到打开的环境控制指令, 表明用户醒来的时间到了, 则控制调整 LED灯 15的照明强度到一定数值即打 开 LED灯 15、音频播放器 16的音量为一定大小即打开音频播放器 16以及风扇 17 的转速为一定数值即打开风扇 17, 此时有助于用户容易醒来; 若调节器 14 接收到调大的环境控制指令, 表明用户在轻度睡眠阶段, 则控制调整 LED灯 15 的照明强度为 0即关闭 LED灯 15、 音频播放器 16的音量为 0即关闭音频播放 器 16以及风扇 17的转速增大, 此时有助于用户从轻度睡眠进入深度睡眠, 因 为一个人入睡后身体温度会上升, 而凉爽的环境有助于人睡眠, 因而需调整风 扇 17的转速增大, 使得用户睡眠的环境温度降低, 从而实现帮助用户从轻度睡 眠进入深度睡眠; 若调节器 14接收到调小的环境控制指令, 表明用户在深度睡 眠阶段, 则控制调整 LED灯 15的照明强度为 0即关闭 LED灯 15、 音频播放器 16的音量为 0即关闭音频播放器 16以及风扇 17的转速减小。 又例如, 若调节 器 14接收到调高的环境控制指令, 表明用户的睡眠环境的噪音大、 空气温度和 湿度大, 则控制调整 LED灯 15的照明强度减小、 音频播放器 16的音量增大以 及风扇 17的转速增大; 若调节器 14接收到调低的环境控制指令, 表明用户的 睡眠环境的噪音小、 空气温度和湿度小, 则控制调整 LED灯 15的照明强度增 大、 音频播放器 16的音量减小以及风扇 17的转速减小。
数据采集结构 10优选通过本地路由器与数据分析服务器 11连接以将采集 的用户睡眠的数据发送到数据分析服务器 11。调节服务器 12优选通过本地路由 器将环境控制指令发送到本地服务器 13。 调节器 14与本地服务器 13通过无线 网络连接, 无线网络例如为无线 WIFI或无线 AP等等。 LED灯 15、音频播放器 16以及风扇 17分别与调节器 14连接。优选地, 音频播放器 16为一扬声器, 该 扬声器设置在调节器 14的底部。
本实施例中, 调节服务器 12还用于根据接收到的用户的睡眠信息生成用户 的睡眠数据报告并将用户的睡眠数据报告存储到数据库, 从而用户可知晓自己 的睡眠情况。
控制面板 18用于供用户手动输入 LED灯 15的照明强度大小、 音频播放器 16的音量大小以及风扇 17的转速大小以及根据用户手动输入的 LED灯 15的照 明强度大小、 音频播放器 16的音量大小以及风扇 17的转速大小向调节器 14输 出调整指令。 调节器 14还用于根据接收到的调整指令控制调整 LED灯 15的照 明强度、 音频播放器 16的音量以及风扇 17的转速以对用户睡眠环境中的光、 声音以及气流速度的首次调节, 从而实现对用户的睡眠环境进行首次调节。 第二实施例
参考图 2, 本实施例是基于第一实施例提供的一种睡眠环境的调节方法, 包 括以下步骤:
S1、数据采集结构 10采集用户睡眠的数据并发送到数据分析服务器 11, 用 户睡眠的数据包括用户的睡眠数据和用户睡眠环境的环境数据。 优选地, 数据 采集结构 10 通过本地路由器将采集的用户睡眠的数据发送到数据分析服务器
11。
S3、 数据分析服务器 11对接收到的用户睡眠的数据进行分析处理得到用户 的睡眠信息以及用户睡眠环境的环境信息并将用户的睡眠信息以及用户睡眠环 境的环境信息发送到调节服务器 12。
S5、调节服务器 12根据接收到的用户的睡眠信息以及用户睡眠环境的环境 信息生成相应的环境控制指令并将环境控制指令发送到本地服务器 13。
S7、本地服务器 13在接收到环境控制指令后将环境控制指令发送到相应的 调节器 14。
S9、调节器 14根据接收到的环境控制指令控制调整 LED灯 15的照明强度、 音频播放器 16的音量以及风扇 17的转速以实现对用户睡眠环境中的光、 声音 以及气流速度的调节, 从而实现对用户的睡眠环境进行调节。
进一步地, 还包括以下步骤: 调节服务器 12根据接收到的用户的睡眠信息 生成用户的睡眠数据报告并将用户的睡眠数据报告存储到数据库。
进一步地, 在数据采集结构 10采集用户的睡眠数据之前还包括以下步骤: 用户通过控制面板 18手动输入 LED灯 15的照明强度大小、音频播放器 16 的音量大小以及风扇 17的转速大小。 控制面板 18根据用户手动输入的 LED灯 15的照明强度大小、 音频播放器 16的音量大小以及风扇 17的转速大小向调节器 14输出调整指令。
调节器 14根据接收到的调整指令控制调整 LED灯 15的照明强度、 音频播 放器 16的音量以及风扇 17的转速以实现对用户睡眠环境中的光、 声音以及气 流速度的首次调节, 从而实现对用户的睡眠环境进行首次调节。
本实施例中, 用户的睡眠数据包括用户的心率、 身体的运动 (即用户身体 的翻转运动) 和 /或呼吸频率; 所述用户睡眠环境的环境数据包括用户睡眠环境 的噪音水平、 空气温度和湿度。
用户的睡眠信息包括用户的睡眠时间、 唤醒时间以及睡眠阶段; 所述用户 睡眠环境的环境信息包括用户睡眠环境的噪音大小、 空气温度和湿度大小。
综上, 本发明通过采集用户的睡眠数据和用户睡眠环境的环境数据, 并对 用户的睡眠数据和用户睡眠环境的环境数据进行分析处理得到用户的睡眠信息 以及用户睡眠环境的环境信息, 并根据用户的睡眠信息以及用户睡眠环境的环 境信息生成环境控制指令, 并根据环境控制指令控制调整 LED灯 15的照明强 度、 音频播放器 16的音量以及风扇 17的转速以实现用户对睡眠环境中的光、 声音以及气流速度的调节, 从而实现对用户的睡眠环境进行调节, 从而可保证 用户睡眠的舒适度以及实现用户的高质量的睡眠。 第三实施例
参考图 3 , 本实施例是基于第一实施例提供的一种睡眠环境的调节装置, 用 于安装到休息装置内, 包括数据采集结构 (图上未示出)、 调节器 14、 LED 灯 15、 音频播放器 16和风扇 17。 LED灯 15、 音频播放器 16和风扇 17分别与调 节器 14连接。 数据采集结构用于采集用户睡眠的数据并发送到服务器 (即, 数 据分析服务器)。 用户睡眠的数据包括用户的睡眠数据和用户睡眠环境的环境数 据。 优选地, 数据采集结构包括睡眠传感器和环境传感器。 睡眠传感器一般安 装到休息装置内的床底, 用于采集用户的睡眠数据, 用户的睡眠数据包括用户 的心率、 身体的运动 (即用户身体的翻转运动) 和 /或呼吸频率。 环境传感器一 般安装到休息装置内的墙壁上, 用于采集用户睡眠环境的环境数据, 用户睡眠 环境的环境数据包括用户睡眠环境的噪音水平、 空气温度和湿度。 调节器 14用 于接收服务器 (即, 本地服务器) 发送的环境控制指令并根据环境控制指令控 制调整 LED灯 15的照明强度、 音频播放器 16的音量以及风扇 17的转速以实 现对用户睡眠环境中的光、 声音以及气流速度的调节, 从而可实现对用户的睡 眠环境进行调节。
例如, 若调节器 14接收到服务器的关闭的环境控制指令, 表明用户的睡眠 时间到了, 则控制调整 LED灯 15的照明强度为促进用户入睡的照明强度、 音 频播放器 16的音量为促进用户入睡的音量以及风扇 17的转速为促进用户入睡 的转速, 此时有助于用户入睡; 若调节器 14接收到服务器的打开的环境控制指 令, 表明用户醒来的时间到了, 则控制调整 LED灯 15的照明强度到一定数值 即打开 LED灯 15、音频播放器 16的音量为一定大小即打开音频播放器 16以及 风扇 17的转速为一定数值即打开风扇 17, 此时有助于用户容易醒来; 若调节器 14接收到服务器的调大的环境控制指令, 表明用户在轻度睡眠阶段, 则控制调 整 LED灯 15的照明强度为 0即关闭 LED灯 15、 音频播放器 16的音量为 0即 关闭音频播放器 16以及风扇 17的转速增大, 此时有助于用户从轻度睡眠进入 深度睡眠, 因为一个人入睡后身体温度会上升, 而凉爽的环境有助于人睡眠, 因而需调整风扇 17的转速增大, 使得用户睡眠的环境温度降低, 从而实现帮助 用户从轻度睡眠进入深度睡眠; 若调节器 14接收服务器的到调小的环境控制指 令, 表明用户在深度睡眠阶段, 则控制调整 LED灯 15的照明强度为 0即关闭 LED灯 15、 音频播放器 16的音量为 0即关闭音频播放器 16以及风扇 17的转 速减小。 又例如, 若调节器 14接收到服务器的调高的环境控制指令, 表明用户 的睡眠环境的噪音大、 空气温度和湿度大, 则控制调整 LED灯 15的照明强度 减小、 音频播放器 16的音量增大以及风扇 17的转速增大; 若若调节器 14接收 到服务器的调低的环境控制指令, 表明用户的睡眠环境的噪音小、 空气温度和 湿度小, 则控制调整 LED灯 15的照明强度增大、 音频播放器 16的音量减小以 及风扇 17的转速减小。
优选地, LED灯 15为若干个, 若干个 LED灯 15组成一灯光带 150。 音频 播放器 16优选为一扬声器。 音频播放器 16为两个。 LED灯 15和音频播放器 16的数量可根据实际情况进行设定。
参考图 4和图 5 , 具体的, 调节器 14包括方形的壳体 117以及设置在壳体 117内的处理模块 111、 电源模块 112、 通信模块 113。 处理模块 111优选为一 CPU (中央处理器)。 电源模块 112位于壳体 117内的一侧。 电源模块 112和通 信模块 113分别与处理模块 111连接。 壳体 117的一侧上在对应电源模块 112 的位置处设有电源接口 114, 电源接口 114与电源模块 112连接。 电源模块 112 优选为一移动电源。电源接口 114优选为一 Type-C接口、 USB2.0接口或 USB3.0 接口, 用于与外部电源连接, 从而实现给电源模块 112充电。 壳体 117的顶部 设有电源开关, 电源开关与处理模块 111连接, 电源开关用于控制电源的通断。 音频播放器 16设置在壳体 117内, 壳体 117上设有与音频播放器 16对应的通 孔, 优选地, 音频播放器 16设置在壳体 117内的底部, 壳体 117内的底部上设 有与音频播放器 16对应的所述通孔。 LED灯 15、 音频播放器 16和风扇 17都 与处理模块 111、 电源模块 112连接。 电源模块 112分别给处理模块 111、 LED 灯 15、 音频播放器 16和风扇 17供电。 处理模块 111用于控制调整 LED灯 15 的照明强度、 音频播放器 16的音量以及风扇 17的转速以实现对用户睡眠环境 中的光、 声音以及气流速度的调节。
通信模块 113为一无线 AP模块。 在调节器 14通电后, 无线 AP模块会作 为一个 AP热点, 用户使用智能终端例如手机连接到该 AP热点后, 将手机连接 到互联网, 连接成功后, 该调节器 14就连接到互联网了, 如此, 就可接收服务 器发送的环境控制指令了。 可以理解地, 通信模块 113也可以是一 WIFI模块, 通过 WIFI模块连接到互联网, 同样可实现接收服务器发送的环境控制指令。
本实施例中, 电源模块 112设有第一电压转换单元和第二电压转换单元。 处理模块 111、 LED灯 15和音频播放器 16分别与第一电压转换单元连接,第一 电压转换单元用于将电源模块 112的供电电压转换为处理模块 111、 LED灯 15 和音频播放器 16的工作电压。 风扇 17与第二电压转换单元连接, 第二电压转 换单元用于将电源模块 112的供电电压转换为风扇 17的工作电压。 优选地, 电 源模块 112的供电电压为 220V, 处理模块 111、 LED灯 15和音频播放器 16的 工作电压为 5V, 风扇 17的工作电压为 12V。
进一步地, 壳体 117上设有插座 115 , 插座 115与电源模块 112连接。 插座 115可供其他电子设备充电用。 本实施例的插座 115的数量为三个。 插座 115的 数量可根据实际情况进行设定。 插座 115 优选为三脚插座, 可以理解地, 插座 115还可以是其他类型的插座。
进一步地, 壳体 117内设有与处理模块 111连接的冷却风扇 119, 冷却风扇
119用于散热。
本实施例中, 壳体 117包括两端开口的壳体本体 117a以及设置在壳体本体 117a两端的顶板 117b、 底板 117c。 处理模块 111、 电源模块 112、 通信模块 113 设置在壳体本体 117a内, 电源接口 114、 插座 115设置在壳体本体 117a的同一 侦 IJ, 音频播放器 16、 通孔设置在底板 117c上, 电源开关设置在顶板 117b上。
参考图 3和图 6, 本实用新型的调节装置还包括控制面板 18, 控制面板 18 与处理模块 111连接。 控制面板 18用于向处理模块 111发送调整指令, 处理模 块 111用于根据调整指令控制调整 LED灯 15的照明强度、 音频播放器 16的音 量以及风扇 17的转速。
具体的, 控制面板 18包括主控模块 151以及与主控模块 151连接的灯光控 制模块 152、 音量控制模块 153和风扇转速控制模块 154。 主控模块 151与处理 模块 111连接。 灯光控制模块 152优选为灯光控制按键, 通过灯光控制按键可 手动设置 LED灯 15的照明强度大小。 音量控制模块 153优选为音量控制按键, 通过音量控制按键可手动设置音频播放器 16的音量大小。风扇转速控制模块 154 优选为风扇转速控制按键, 通过风扇转速控制按键可手动设置风扇 17的转速大 小。 手动设置好 LED灯 15的照明强度、 音频播放器 16的音量以及风扇 17的 转速后,控制面板 18向处理模块 11输出调整指令,处理模块 111接收到调整指 令后即可控制调整 LED灯 15的照明强度、 音频播放器 16的音量以及风扇 17 的转速了。 在控制面板 18上手动设置 LED灯 15的照明强度大小、 音频播放器 16的音量大小以及风扇 17的转速大小, 一般在用户睡眠之前就设置, 这样可实 现对用户睡眠环境的首次调节。 通过该种结构, 用户可根据自身的情况手动设 置 LED灯 15的照明强度大小、 音频播放器 16的音量大小以及风扇 17的转速 大小。
进一步地, 壳体 117上设有数据接口 116 (见图 4和图 5), 主控模块 151 通过数据接口 116与处理模块 111连接。优选地, 数据接口 116和电源接口 114 分别设置在壳体本体 117a的相对的两侧。 数据接口 116例如为 USB接口等。 综上, 本实用新型通过设置的数据采集结构和调节器 14, 可实现控制调整 LED灯 15的照明强度、音频播放器 16的声音以及风扇 17的转速以实现对睡眠 环境中的光、 声音以及气流速度的调节, 从而可实现对用户的睡眠环境进行调 节, 如此, 可保证用户睡眠的舒适度以及实现用户高质量的睡眠。 以上实施例仅表达了本发明的优选实施方式, 其描述较为具体和详细, 但 并不能因此而理解为对本发明专利范围的限制。 应当指出的是, 对于本领域的 普通技术人员来说, 在不脱离本发明构思的前提下, 还可以做出若干变形和改 进, 如对各个实施例中的不同特征进行组合等, 这些都属于本发明的保护范围。

Claims

权 利 要 求 书
1.一种睡眠环境的调节方法, 其特征在于, 包括以下步骤:
数据采集结构采集用户睡眠的数据并发送到数据分析服务器, 所述用户睡 眠的数据包括用户的睡眠数据和用户睡眠环境的环境数据;
数据分析服务器对接收到的用户睡眠的数据进行分析处理得到用户的睡眠 信息以及用户睡眠环境的环境信息并将用户的睡眠信息以及用户睡眠环境的环 境信息发送到调节服务器;
调节服务器根据接收到的用户的睡眠信息以及用户睡眠环境的环境信息生 成相应的环境控制指令并将环境控制指令发送到本地服务器;
本地服务器在接收到环境控制指令后将环境控制指令发送到相应的调节 器;
调节器根据接收到的环境控制指令控制调整 LED灯的照明强度、 音频播放 器的音量以及风扇的转速以对用户睡眠环境中的光、 声音以及气流速度的调节, 从而实现对用户的睡眠环境进行调节。
2.根据权利要求 1所述的睡眠环境的调节方法, 其特征在于, 还包括以下步 骤:
调节服务器根据接收到的用户的睡眠信息生成用户的睡眠数据报告并将用 户的睡眠数据报告存储到数据库。
3.根据权利要求 1所述的睡眠环境的调节方法, 其特征在于, 在数据采集结 构采集用户的睡眠数据之前还包括以下步骤:
用户通过控制面板手动输入 LED灯的照明强度大小、 音频播放器的音量大 小以及风扇的转速大小;
控制面板根据用户手动输入的 LED灯的照明强度大小、 音频播放器的音量 大小以及风扇的转速大小向调节器输出调整指令; 调节器根据接收到的调整指令控制调整 LED灯的照明强度、 音频播放器的 音量以及风扇的转速以实现对用户睡眠环境中的光、 声音以及气流速度的首次 调节, 从而实现对用户的睡眠环境进行首次调节。
4.根据权利要求 1所述的睡眠环境的调节方法, 其特征在于, 所述用户的睡 眠数据包括用户的心率、 身体的运动和 /或呼吸频率; 所述用户睡眠环境的环境 数据包括用户睡眠环境的噪音水平、 空气温度和湿度。
5.根据权利要求 4所述的睡眠环境的调节方法, 其特征在于, 所述用户的睡 眠信息包括用户的睡眠时间、 唤醒时间以及睡眠阶段; 所述用户睡眠环境的环 境信息包括用户睡眠环境的噪音大小、 空气温度和湿度大小。
6.—种睡眠环境的调节系统, 其特征在于, 包括:
数据采集结构, 用于采集用户睡眠的数据并发送到数据分析服务器, 所述 用户睡眠的数据包括用户的睡眠数据和用户睡眠环境的环境数据;
数据分析服务器, 用于对接收到的用户睡眠的数据进行分析处理得到用户 的睡眠信息以及用户睡眠环境的环境信息并将用户的睡眠信息以及用户睡眠环 境的环境信息发送到调节服务器;
调节服务器, 用于根据接收到的用户的睡眠信息以及用户睡眠环境的环境 信息生成相应的环境控制指令并将环境控制指令发送到本地服务器;
本地服务器, 用于在接收到环境控制指令后将环境控制指令发送到相应的 调节器;
调节器, 用于根据接收到的环境控制指令控制调整 LED灯的照明强度、 音 频播放器的音量以及风扇的转速以实现用户对睡眠环境中的光、 声音以及气流 速度的调节, 从而实现对用户的睡眠环境进行调节。
7.根据权利要求 6所述的睡眠环境的调节系统, 其特征在于, 所述调节服务 器还用于根据接收到的用户的睡眠信息生成用户的睡眠数据报告并将用户的睡 眠数据报告存储到数据库。
8.根据权利要求 7所述的睡眠环境的调节系统, 其特征在于, 还包括控制面 板, 用于供用户手动输入 LED灯的照明强度大小、 音频播放器的音量大小以及 风扇的转速大小以及根据用户手动输入的 LED灯的照明强度大小、 音频播放器 的音量大小以及风扇的转速大小向调节器输出调整指令; 所述调节器还用于根 据接收到的调整指令控制调整 LED灯的照明强度、 音频播放器的音量以及风扇 的转速以对用户睡眠环境中的光、 声音以及气流速度的首次调节, 从而实现对 用户的睡眠环境进行首次调节。
9.根据权利要求 6所述的睡眠环境的调节系统, 其特征在于, 所述用户的睡 眠数据包括用户的心率、 身体的运动和 /或呼吸频率; 所述用户睡眠环境的环境 数据包括用户睡眠环境的噪音水平、 空气温度和湿度。
10.根据权利要求 9所述的睡眠环境的调节系统, 其特征在于, 所述用户的 睡眠信息包括用户的睡眠时间、 唤醒时间以及睡眠阶段; 所述用户睡眠环境的 环境信息包括用户睡眠环境的噪音大小、 空气温度和湿度大小。
11.一种睡眠环境的调节装置, 其特征在于, 包括数据采集结构、 调节器、 LED灯、 音频播放器和风扇, 所述 LED灯、 音频播放器和风扇分别与所述调节 器连接; 所述数据采集结构用于采集用户睡眠的数据并发送到服务器, 所述用 户睡眠的数据包括用户的睡眠数据和用户睡眠环境的环境数据, 所述调节器用 于接收服务器发送的环境控制指令并根据环境控制指令控制调整所述 LED灯的 照明强度、 音频播放器的音量以及风扇的转速以实现对用户睡眠环境中的光、 声音以及气流速度的调节, 从而可实现对用户的睡眠环境进行调节。
12.根据权利要求 11所述的睡眠环境的调节装置, 其特征在于, 所述调节器 包括壳体以及设置在壳体内的处理模块、 电源模块、 通信模块, 所述电源模块 和通信模块分别与所述处理模块连接, 所述壳体上设有电源接口, 所述电源接 口与所述电源模块连接; 所述音频播放器设置在所述壳体内, 所述壳体上设有 与音频播放器对应的通孔;所述 LED灯、音频播放器和风扇都与所述处理模块、 电源模块连接。
13.根据权利要求 12所述的睡眠环境的调节装置, 其特征在于, 所述电源模 块设有第一电压转换单元和第二电压转换单元, 所述处理模块、 LED灯和音频 播放器分别与所述第一电压转换单元连接, 第一电压转换单元用于将电源模块 的供电电压转换为所述处理模块、 LED灯和音频播放器的工作电压, 所述风扇 与所述第二电压转换单元连接, 第二电压转换单元用于将电源模块的供电电压 转换为所述风扇的工作电压。
14.根据权利要求 13所述的睡眠环境的调节装置, 其特征在于, 所述电源模 块的供电电压为 220V, 所述处理模块、 LED灯和音频播放器的工作电压为 5V, 所述风扇的工作电压为 12V。
15.根据权利要求 12所述的睡眠环境的调节装置, 其特征在于, 所述壳体上 设有插座, 所述插座与所述电源模块连接。
16.根据权利要求 12所述的睡眠环境的调节装置, 其特征在于, 所述调节装 置还包括控制面板, 所述控制面板与所述处理模块连接。
17.根据权利要求 16所述的睡眠环境的调节装置, 其特征在于, 所述控制面 板包括主控模块以及与主控模块连接的灯光控制模块、 音量控制模块和风扇转 速控制模块, 所述主控模块与所述处理模块连接。
18.根据权利要求 17所述的睡眠环境的调节装置, 其特征在于, 所述壳体上 设有数据接口, 所述主控模块通过所述数据接口与所述处理模块连接。
19.根据权利要求 12所述的睡眠环境的调节装置, 其特征在于, 所述通信模 块为 WIFI模块或无线 AP模块。
20.根据权利要求 11所述的睡眠环境的调节装置, 其特征在于, 所述数据采 集结构包括睡眠传感器和环境传感器, 所述睡眠传感器用于采集用户的睡眠数 据, 所述用户的睡眠数据包括用户的心率、 身体的运动和 /或呼吸频率, 所述环 境传感器用于采集用户睡眠环境的环境数据, 所述用户睡眠环境的环境数据包 括用户睡眠环境的噪音水平、 空气温度和湿度。
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