WO2018049842A1 - 睡眠控制系统、睡眠设备的控制方法及处理设备 - Google Patents

睡眠控制系统、睡眠设备的控制方法及处理设备 Download PDF

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Publication number
WO2018049842A1
WO2018049842A1 PCT/CN2017/085815 CN2017085815W WO2018049842A1 WO 2018049842 A1 WO2018049842 A1 WO 2018049842A1 CN 2017085815 W CN2017085815 W CN 2017085815W WO 2018049842 A1 WO2018049842 A1 WO 2018049842A1
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WIPO (PCT)
Prior art keywords
sleep
instruction
processing device
control
environment
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PCT/CN2017/085815
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English (en)
French (fr)
Inventor
黄建新
蔡洁凌
戴鹏
沈劲鹏
陈祯坤
黄锦锋
Original Assignee
深圳市迈迪加科技发展有限公司
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Publication of WO2018049842A1 publication Critical patent/WO2018049842A1/zh

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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/418Total factory control, i.e. centrally controlling a plurality of machines, e.g. direct or distributed numerical control [DNC], flexible manufacturing systems [FMS], integrated manufacturing systems [IMS] or computer integrated manufacturing [CIM]
    • 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
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • 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
    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

Definitions

  • the invention relates to the field of smart homes, in particular to a sleep control system, a control method of a sleep device and a processing device.
  • sleep monitoring equipment including a variety of sensors that can monitor people's heart rate, respiratory rate, and exercise status.
  • the sleep monitoring device After the sleep monitoring device detects these parameters, it sends it to the sleep assisting device, such as a controllable lamp, a music player, etc., after the sleep assisting device receives these parameters, analyzes the parameters, and if it is determined that the user has slept, according to the people in advance Set the habit of controlling these sleep aids to produce corresponding actions, such as turning off the controllable lights and music, to create a quiet sleeping environment for people.
  • the intelligent sleep improvement system generally, includes sleep monitoring equipment and sleep aids, which need to be used together.
  • sleep monitoring equipment When the sleep monitoring equipment is removed from the sleep aid or one party is damaged, the whole set of equipment cannot be used normally, resulting in waste of resources. And can not add extra sleep equipment, use is not flexible enough, not smart enough.
  • the present invention provides a sleep control system, including: a sleep device, a processing device, and a control terminal, the sleep device is communicatively coupled to the processing device, and the processing device is communicatively coupled to the control terminal;
  • the control terminal controls the sleep device to work by the processing device, the sleep device sends sleep data to the processing device, and the processing device generates a control instruction for controlling the sleep device to generate a corresponding operation according to the sleep data.
  • the sleep device receives the control instruction and performs the corresponding operation;
  • the number of the sleep devices is one or two, and the types of the two or more sleep devices are the same or different; the types of the sleep devices include a sleep monitoring device, a sleep assist device, and a sleep environment improving device.
  • the sleep device and the processing device are connected by wire or wireless communication, wherein the wireless mode includes one or more of Bluetooth, zigbee, and wifi.
  • the present invention provides a method of controlling a sleep apparatus, the sleep control system according to any one of claims 1 or 2, comprising:
  • the processing device acquires a monitoring control command sent by the control terminal, and starts monitoring the sleep device according to the monitoring control command;
  • the processing device acquires sleep data sent by the sleep device
  • the processing device generates a control instruction that controls the sleep device to generate a corresponding operation according to the sleep data, so that the sleep device receives the control instruction and performs the corresponding operation.
  • the processing device acquires sleep data sent by the sleep device, and generates according to the sleep data.
  • the step of controlling the sleep device to generate a control instruction for the corresponding operation is specifically:
  • the processing device acquires sleep data corresponding to the sleep state of the user monitored by the sleep monitoring device;
  • the processing device gives an auxiliary operation instruction to the sleep assisting device according to the sleep data
  • the processing device acquires sleep data sent by the sleep device, and generates according to the sleep data.
  • the step of controlling the sleep device to generate a control instruction for the corresponding operation is specifically:
  • the processing device acquires sleep data corresponding to the sleep state of the user monitored by the sleep monitoring device;
  • the processing device gives an auxiliary operation instruction to the sleep assisting device according to the sleep data, and gives an environmental improvement instruction to the sleep environment improving device.
  • the processing device acquires sleep data sent by the sleep device, and generates according to the sleep data.
  • the step of controlling the sleep device to generate a control instruction for the corresponding operation is specifically:
  • the processing device acquires sleep data corresponding to the sleep state of the user monitored by the sleep monitoring device;
  • the processing device determines a sleep state of the user according to the sleep data, and sends the sleep state as a triggering control command to the sleep assisting device and the sleep environment improving device.
  • the present invention provides a processing apparatus comprising:
  • a startup module configured to acquire a monitoring control command sent by the control terminal, and start monitoring the sleep device according to the monitoring control instruction
  • An acquiring module configured to acquire sleep data sent by the sleep device
  • an instruction generating module configured to generate, according to the sleep data, a control instruction that controls the sleep device to generate a corresponding operation, so that the sleep device receives the control instruction and performs the corresponding operation.
  • the sleep device includes three types of a sleep monitoring device, a sleep assisting device, and a sleep environment improving device
  • the instruction generating module includes:
  • An auxiliary instruction generating module configured to provide an auxiliary operation instruction to the sleep assisting device according to the sleep data
  • An environment instruction forwarding module configured to receive an environment improvement instruction sent by the sleep assistance device, and forward the environment improvement instruction to the sleep environment improvement device, where the environment improvement instruction is the sleep assistance device according to the auxiliary
  • the operational instructions generate instructions that control the sleep environment to improve device operation.
  • the sleep device includes three types of a sleep monitoring device, a sleep assisting device, and a sleep environment improving device
  • the instruction generating module includes the auxiliary instruction generating module and an environment instruction generating module, the environment instruction The generating module is configured to give an environmental improvement instruction to the sleep environment improving device according to the sleep data.
  • the sleep device includes three types of a sleep monitoring device, a sleep assisting device, and a sleep environment improving device
  • the instruction generating module includes:
  • a sleep state determining module configured to determine a sleep state of the user according to the sleep data
  • a sleep state sending module configured to send the sleep state as a triggering control instruction to the sleep assisting device and the sleep environment improving device.
  • the sleep control system, the control method and the processing device of the sleep device including a sleep device, a processing device, and a control terminal, wherein the sleep device is in communication connection with the processing device, the processing device is communicatively connected with the control terminal, and the control terminal is processed
  • the device controls the operation of the sleep device, the sleep device sends sleep data to the processing device, and receives control instructions of the processing device, the number of the sleep devices may be multiple, and the types may be multiple; adding a process outside the sleep device a device, the information exchange between the sleep devices is implemented by the processing device.
  • the processing device analyzes and processes the sleep data, and gives an operation instruction of the sleep device. To achieve the purpose of improving user sleep; to achieve independent control of each sleep device, new sleep devices can be added according to user needs, making the entire smart sleep improvement system more intelligent.
  • Figure 1 is a block diagram of a sleep control system in an embodiment
  • Figure 2 is a structural diagram of a sleep control system in another embodiment
  • Figure 3 is a structural diagram of a sleep control system in still another embodiment
  • FIG. 4 is a flowchart of a control method of a sleep device in the first embodiment
  • Figure 5 is a flowchart of a method of controlling a sleep device in the second embodiment
  • FIG. 6 is a flowchart of a control method of a sleep device in a third embodiment
  • FIG. 7 is a flowchart of a control method of a sleep device in a fourth embodiment
  • Figure 8 is a block diagram of a processing device in an embodiment.
  • Figure 1 is a block diagram of a sleep control system in an embodiment.
  • the sleep control system includes a sleep device 20, a processing device 10, and a control terminal 30.
  • the sleep device 20 is communicatively coupled to the processing device 10, and the processing device 10 is communicatively coupled to the control terminal 30.
  • the control terminal 30 controls the operation of the sleep device 20 by the processing device 10, which transmits sleep data to the processing device 10 and receives control instructions of the processing device 10.
  • the number of the sleep devices 20 is one or two, and the sleep device 20 and the processing device 10 are connected by wire or wireless communication, wherein the wireless mode includes one or two of Bluetooth, zigbee, and wifi. Moreover, each sleep device 20 is connected to the processing device 10 in two lines, and the processing device 10 can achieve independent control of each sleep device 20 under the control action of the control terminal 30.
  • two or more types of sleep devices 20 are the same or different; the types of sleep devices 20 include a sleep monitoring device 21, a sleep assist device 22, and a sleep environment improving device 23.
  • the sleep monitoring device 21 is configured to monitor a sleep state of the user and convert the sleep state into corresponding sleep data; the sleep assisting device 22 is configured to perform a sleep assist operation under the control of the processing device 10 to improve the sleep of the user;
  • the environment improvement device 23 is for performing an environmental improvement operation under the control of the processing device 10 to improve the sleep environment of the user.
  • the sleep monitoring device 21 includes a plurality of sensors or laser monitors, which can monitor a plurality of physiological indicators of the human body, such as heart rate, respiratory rate, exercise state, etc., thereby determining whether the user is asleep, and sleep time and sleep degree. Wait.
  • sensors or laser monitors can be placed in multiple locations on the user's bed, such as the surface of the mattress, under the bed cover, under the pillow, under the quilt, or by setting a camera on the bedside to capture the user's image and analyze the user's sleep state. .
  • the sleep assisting device 22 includes a controllable light, a music player, and the like that can improve the sleep of the user.
  • the sleep environment improving device 23 can be an air conditioner, a controllable curtain, an aromatherapy machine, or the like.
  • the sleep monitoring device 21 detects the sleep data corresponding to the sleep state of the user
  • the sleep data is sent to the processing device 10, and the processing device 10 controls the sleep assisting device 22 and the sleep environment improving device 23 to perform corresponding operations according to the sleep data,
  • the processing device 10 can be provided separately, such as a separate central controller, or can be placed in the control terminal 30 or a certain sleep device 20.
  • the control terminal 30 can be a mobile phone, a smart watch, a PAD, a desktop computer, a server, or the like.
  • the processing device 10 and the control terminal 30 are connected by wifi communication.
  • the processing device 10 turns on or off the operation control of the sleep device 20 under the action of the control terminal 30.
  • the control terminal 30 such as a mobile phone
  • the user can individually control a certain sleep device 20 through the mobile phone, such as turning on the sleep monitoring device 21 Monitoring, the mobile phone sends the monitoring instruction to the processing device 10, the processing device 10 implements the operation control of the sleep monitoring device 21, and acquires the sleep data monitored by the sleep monitoring device 21, and feeds the sleep data to the mobile phone, the user You can view your current sleep data on your phone.
  • the user can also perform simultaneous monitoring on the plurality of sleep devices 20 through the mobile phone, such as turning on the monitoring of the sleep monitoring device 21, the sleep assisting device 22, and the sleep environment improving device 23, and transmitting the monitoring command to the processing device 10, where the sleep device 20 is The corresponding operations are respectively performed under the control of the processing device 10.
  • the sleep monitoring device 21 detects that the user has fallen asleep and sends the sleep data corresponding to the sleep state of the user to In the above processing device 10, the processing device 10 analyzes the sleep data, and sends corresponding instructions to the sleep assisting device 22 and the sleep environment improving device 23 respectively, controls the controllable light to adjust to a soft light mode, and closes the controllable curtain.
  • the processing device 10 is integrated with a Bluetooth communication module, a zigbee communication module, a wifi module, and a wired communication module.
  • a connection with each sleep device 20 can be implemented by setting a corresponding communication module in the processing device 10.
  • a plurality of communication modules are integrated in the processing device 10 to achieve and different The data interaction between the sleep devices 20, and thus the operation control thereof.
  • specific settings can be made according to the communication mode of the sleep device 20.
  • FIG. 3 is a physical structure diagram of the sleep control system shown in FIG. 2.
  • Each sleep device 20 and the processing device 10 are bidirectionally connected, and the user can control the processing device 10 through the mobile terminal 30, such as a mobile phone, thereby implementing The monitoring of each sleep device 20 is simple and convenient.
  • a core controller that is, the processing device 10
  • the processing device 10 acquires the sleep monitoring device 21 to send
  • the sleep data is analyzed and processed, and the operation instructions of the sleep assisting device 22 and the sleep environment improving device 23 are given, and the sleep assisting device 22 and the sleep environment improving device 23 perform corresponding operations.
  • independent control of each sleep device 20 can be achieved, and a new sleep device 20 can be added according to user needs, so that the entire smart sleep improvement system is more intelligent.
  • FIG. 4 is a flowchart of a method of controlling a sleep device in the first embodiment.
  • control method of the sleep device is based on the sleep control system, and includes:
  • the processing device acquires a monitoring control command sent by the control terminal, and starts monitoring the sleep device according to the monitoring control command.
  • the user can open individual monitoring of a single sleeping device by controlling the terminal, and can also simultaneously monitor multiple sleeping devices.
  • the processing device acquires sleep data sent by the sleep device.
  • the processing device generates, according to the sleep data, a control instruction that controls the sleep device to generate a corresponding operation, so that the sleep device receives the control instruction and performs the corresponding operation.
  • the processing device performs operation control on a certain sleep device according to a monitoring instruction of the control terminal, or performs operation control on multiple sleep devices, where the sleep device includes a sleep monitoring device, a sleep assisting device, and a sleep environment improving device.
  • the process of controlling the operation of the three types of sleep devices by the processing device under the action of the control terminal may specifically be:
  • steps S202 to S204 are as follows:
  • the processing device acquires sleep data corresponding to a sleep state of the user monitored by the sleep monitoring device.
  • the processing device provides an auxiliary operation instruction to the sleep assisting device according to the sleep data.
  • the sleep monitoring device detects that the user has fallen asleep and corresponds the sleep state of the user.
  • the sleep data is sent to the processing device, the processing device analyzes the sleep state, and sends an auxiliary operation instruction to the sleep assisting device, and the auxiliary operation command controls the controllable light to adjust to a soft light mode, and controls the music player to play the advance Set light music.
  • the processing device receives an environment improvement instruction sent by the sleep assistance device, and forwards the environment improvement instruction to the sleep environment improvement device.
  • the sleep assisting device generates an environment improvement instruction for controlling the operation of the sleep environment improving device according to the auxiliary operation instruction, and the sleep assisting device performs the sleep assisting operation according to the auxiliary operation instruction given by the processing device, according to the auxiliary operation.
  • the instruction is obtained by an environment improvement instruction that controls the sleep environment improvement device to generate a corresponding operation, and sends the environment improvement instruction to the processing device.
  • the processing device forwards the environmental improvement instruction to the sleep environment improving device, and controls the sleep environment improving device to generate an environment improving operation.
  • the sleep assisting device receives the sleep assist command sent by the processing device, and controls the controllable.
  • the sleep assisting device After the light is adjusted to the soft light mode, and after controlling the music player to play the preset light music, the sleep assisting device generates an environmental improvement instruction for controlling the sleep environment improving device to generate a corresponding operation according to the sleep assisting instruction, and the environment is processed by the processing device
  • the improved instruction is forwarded to the sleeping environment improving device, and the environmental improvement device turns off the controllable curtain under the control of the environmental improvement instruction, and automatically adjusts the air conditioner to 26 degrees, and the user can enter the sleeping environment of his or her own without manual operation, and then Go to sleep easily.
  • the user can add a new sleep device according to his own needs, and only needs to establish a communication connection between the sleep device and the control object, and add an operation control function for the sleep device in the processing device in advance.
  • steps S302 to S303 are as follows:
  • the processing device acquires sleep data corresponding to a sleep state of the user monitored by the sleep monitoring device.
  • the processing device provides an auxiliary operation instruction to the sleep assisting device according to the sleep data, and gives an environment improvement instruction to the sleep environment improving device.
  • the processing device after acquiring the sleep data corresponding to the sleep state of the user, the processing device respectively provides a sleep assist instruction for controlling the sleep assisting device to perform a corresponding operation according to the sleep data, and an environment improvement for controlling the sleep environment improving device to perform the corresponding operation.
  • the instruction controls the sleep assisting device and the sleeping environment device to perform corresponding operations at the same time. For example, after the user sets his or her sleep mode on the mobile phone end, when the user is detected to be in a sleep state, the processing device adjusts the controllable light to a soft light mode according to the sleep state, and controls the music player to play the preset. The light music is set, the controllable curtains are closed, and the air conditioner is automatically adjusted to 26 degrees.
  • each sleep device is controlled by the processing device, and the correlation degree is small, and the system is more intelligent. Users can customize their sleep mode according to their own needs. Each sleep device can be increased or decreased without affecting the normal use of the entire smart sleep improvement system.
  • steps S402 to S403 are as follows:
  • the processing device acquires sleep data corresponding to a sleep state of the user monitored by the sleep monitoring device.
  • the processing device determines, according to the sleep data, a sleep state of the user, and sends the sleep state as a trigger control command to the sleep assisting device and the sleep environment improving device.
  • the processing device analyzes the data to determine the current sleep state of the user, and if it is determined that the user has fallen asleep according to the sleep data, the processing device sends the sleep state to the sleep assisting device and
  • the sleep environment improving device triggers the sleep assisting device to perform a sleep assisting operation while triggering the sleep environment improving device to perform an environment improving operation.
  • the sleep device receives the control instruction and performs the corresponding operation.
  • S205 Send the working status information of the sleep monitoring device, the sleep assisting device, and the sleep environment improving device to the control terminal.
  • the processing device sends the status information of each sleep device to the control terminal, and the user can view the status of each sleep device on the control terminal, such as a mobile phone, and perform the sleep mode according to the status information displayed by the mobile phone. Adjusting, and then controlling the processing device to adjust each sleep device according to the sleep mode, conveniently and quickly adjusting the state of each sleep device to a satisfactory comfortable state, thereby improving the user experience.
  • the control method of the sleep device after the processing device acquires the sleep state of the user sent by the sleep monitoring device, analyzes and processes the sleep state, and gives instructions for controlling the sleep assist device and the sleep environment improving device to generate corresponding operations in two ways.
  • the processing device gives control sleep
  • the auxiliary device generates an instruction for the corresponding operation
  • the sleep assisting device generates an instruction for controlling the sleep environment improving device according to the instruction, and feeds the instruction to the processing device, and the processing device forwards the instruction to the sleep environment improving device to control the corresponding operation.
  • the method adds a core controller, that is, a processing device, to the sleep device, and the control commands of the sleep device are all issued by the processing device to implement independent control between the respective sleep devices, and a new sleep device can be added according to the user demand, so that The entire smart sleep improvement system is more intelligent.
  • a core controller that is, a processing device
  • Figure 8 is a block diagram of a processing device in an embodiment.
  • the processing device 10 includes:
  • the startup module 11 is configured to acquire a monitoring control command sent by the control terminal 30, and turn on monitoring of the sleep device 20 according to the monitoring control command.
  • the obtaining module 12 is configured to acquire sleep data sent by the sleep device 20.
  • the instruction generating module 13 is configured to generate, according to the sleep data, a control instruction that controls the sleep device 20 to generate a corresponding operation, so that the sleep device 20 receives the control instruction and performs the corresponding operation.
  • the sleep device 20 includes three types: a sleep monitoring device 21, a sleep assisting device 22, and a sleep environment improving device 23.
  • the instruction generating module 13 includes:
  • the auxiliary instruction generating module 131 is configured to provide an auxiliary operation instruction to the sleep assisting device 22 according to the sleep data.
  • the environment instruction forwarding module 132 is configured to receive an environment improvement instruction sent by the sleep assistance device 22, and forward the environment improvement instruction to the sleep environment improvement device 23, where the environment improvement instruction is the sleep assistance device 22
  • An instruction to control the operation of the sleep environment improving device 23 is generated according to the auxiliary operation command.
  • the sleep device 20 includes three types of a sleep monitoring device 21, a sleep assisting device 22, and a sleep environment improving device 23, the instruction generating module 13 including the auxiliary instruction generating module 131 and environment instruction generating The module 133, the environment instruction generating module 133 is configured to give an environment improvement instruction to the sleep environment improving device 23 according to the sleep data.
  • the sleep device 20 includes three types: a sleep monitoring device 21, a sleep assisting device 22, and a sleep environment improving device 23.
  • the instruction generating module 13 includes:
  • the sleep state determining module 134 is configured to determine a sleep state of the user according to the sleep data.
  • the sleep state transmitting module 135 transmits a control command for triggering the sleep state as a trigger to the sleep assisting device 22 and the sleep environment improving device 23.

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Abstract

一种睡眠控制系统,包括睡眠设备(20)、处理设备(10)以及控制终端(30),睡眠设备(20)与处理设备(10)通信连接,处理设备(10)与控制终端(30)通信连接,控制终端(30)通过处理设备(10)控制睡眠设备(20)工作,睡眠设备(20)向处理设备(10)发送睡眠数据、并接收处理设备(10)的控制指令,睡眠设备(20)的数量可以为多个,类型可以为多种;在睡眠设备(20)之外增加一个处理设备(10),由该处理设备(10)来实现各个睡眠设备(20)之间的信息交互,该处理设备(10)获取到睡眠监测设备(21)发送的用户的睡眠数据之后,对睡眠数据进行分析处理,给出睡眠设备(20)的操作指令,以达到改善用户睡眠的目的;能够实现各睡眠设备(20)的独立控制,可以根据用户需求增加新的睡眠设备(20),使得整个智能睡眠改善系统更加智能化。

Description

睡眠控制系统、睡眠设备的控制方法及处理设备
【技术领域】
本发明涉及智能家居领域,尤其涉及一种睡眠控制系统、睡眠设备的控制方法及处理设备。
【背景技术】
随着智能家居的发展,各种有助于睡眠的设备进入了人们的日常生活,如睡眠监测设备,包括多种传感器可以监测到人们的心率、呼吸频率、运动状态等。睡眠监测设备监测到这些参数之后将其发送到睡眠辅助设备,如可控灯、音乐播放器等,睡眠辅助设备接收到这些参数后,对其进行分析,若判定用户已经睡了,根据人们预先设定的习惯,控制这些睡眠辅助设备产生相应的动作,如将可控灯和音乐关掉,给人们营造一个安静的睡眠环境。
目前,智能睡眠改善系统,一般的,包括睡眠监测设备和睡眠辅助设备,二者需配套使用,当睡眠监测设备脱离睡眠辅助设备或者一方损坏之后,整套设备都无法正常使用,造成了资源的浪费,并且不能增加额外的睡眠设备,使用不够灵活,不够智能。
【发明内容】
基于此,有必要提供一种睡眠控制系统、睡眠设备的控制方法及处理设备,能够实现各睡眠设备的独立控制,可以根据用户需求增加新的睡眠设备,使得整个智能睡眠改善系统更加智能化。
一方面,本发明提出一种睡眠控制系统,包括:睡眠设备、处理设备以及控制终端,所述睡眠设备与所述处理设备通信连接,所述处理设备与所述控制终端通信连接;
所述控制终端通过所述处理设备控制所述睡眠设备工作,所述睡眠设备向所述处理设备发送睡眠数据,所述处理设备根据所述睡眠数据生成控制所述睡眠设备产生相应操作的控制指令,所述睡眠设备接收所述控制指令并执行所述相应操作;
其中,所述睡眠设备的数量为一个或两个以上,两个以上的所述睡眠设备的类型相同或不同;所述睡眠设备的类型包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备。
在其中一个实施例中,所述睡眠设备与所述处理设备之间通过有线或无线方式通信连接,其中所述无线方式包括蓝牙、zigbee和wifi中的一种或两种以上。
另一方面,本发明提出一种睡眠设备的控制方法,基于权利要求1或2中任意一项所述的睡眠控制系统,包括:
处理设备获取控制终端发送的监测控制指令,根据所述监测控制指令开启对睡眠设备的监控;
所述处理设备获取所述睡眠设备发送的睡眠数据;
所述处理设备根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令,以使所述睡眠设备接收所述控制指令并执行所述相应操作。
在其中一个实施例中,当所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型时,所述处理设备获取所述睡眠设备发送的睡眠数据,根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令的步骤具体为:
处理设备获取所述睡眠监测设备监测到的用户的睡眠状态对应的睡眠数据;
所述处理设备根据所述睡眠数据给出辅助操作指令到所述睡眠辅助设备;
所述处理设备接收所述睡眠辅助设备发送的环境改善指令,并将所述环境改善指令转发给所述睡眠环境改善设备,所述环境改善指令为所述睡眠辅助设备根据所述辅助操作指令产生控制所述睡眠环境改善设备操作的指令。
在其中一个实施例中,当所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型时,所述处理设备获取所述睡眠设备发送的睡眠数据,根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令的步骤具体为:
处理设备获取所述睡眠监测设备监测到的用户的睡眠状态对应的睡眠数据;
所述处理设备根据所述睡眠数据给出辅助操作指令到所述睡眠辅助设备,并给出环境改善指令到所述睡眠环境改善设备。
在其中一个实施例中,当所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型时,所述处理设备获取所述睡眠设备发送的睡眠数据,根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令的步骤具体为:
处理设备获取所述睡眠监测设备监测到的用户的睡眠状态对应的睡眠数据;
所述处理设备根据所述睡眠数据判断用户的睡眠状态,将所述睡眠状态作为触发的控制指令发送给所述睡眠辅助设备和睡眠环境改善设备。
再一方面,本发明提出一种处理设备,包括:
启动模块,用于获取控制终端发送的监测控制指令,根据所述监测控制指令开启对睡眠设备的监控;
获取模块,用于获取所述睡眠设备发送的睡眠数据;
指令生成模块,用于根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令,以使所述睡眠设备接收所述控制指令并执行所述相应操作。
在其中一个实施例中,所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型,所述指令生成模块包括:
辅助指令生成模块,用于根据所述睡眠数据给出辅助操作指令到所述睡眠辅助设备;
环境指令转发模块,用于接收所述睡眠辅助设备发送的环境改善指令,并将所述环境改善指令转发给所述睡眠环境改善设备,所述环境改善指令为所述睡眠辅助设备根据所述辅助操作指令产生控制所述睡眠环境改善设备操作的指令。
在其中一个实施例中,所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型,所述指令生成模块包括所述辅助指令生成模块和环境指令生成模块,所述环境指令生成模块用于根据所述睡眠数据给出环境改善指令到所述睡眠环境改善设备。
在其中一个实施例中,所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型,所述指令生成模块包括:
睡眠状态判断模块,用于根据所述睡眠数据判断用户的睡眠状态;
睡眠状态发送模块,用于将所述睡眠状态作为触发的控制指令发送给所述睡眠辅助设备和睡眠环境改善设备。
上述睡眠控制系统、睡眠设备的控制方法及处理设备,包括睡眠设备、处理设备以及控制终端,所述睡眠设备与处理设备通信连接,所述处理设备与控制终端通信连接,所述控制终端通过处理设备控制睡眠设备工作,所述睡眠设备向处理设备发送睡眠数据、并接收处理设备的控制指令,所述睡眠设备的数量可以为多个,类型可以为多种;在睡眠设备之外增加一个处理设备,由该处理设备来实现各个睡眠设备之间的信息交互,该处理设备获取到睡眠监测设备发送的用户的睡眠数据之后,对该睡眠数据进行分析处理,给出睡眠设备的操作指令,以达到改善用户睡眠的目的;能够实现各睡眠设备的独立控制,可以根据用户需求增加新的睡眠设备,使得整个智能睡眠改善系统更加智能化。
【附图说明】
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他实施例的附图。
图1是一实施例中睡眠控制系统的结构图;
图2是另一实施例中睡眠控制系统的结构图;
图3是再一实施例中睡眠控制系统的结构图;
图4是第一实施例中睡眠设备的控制方法的流程图;
图5是第二实施例中睡眠设备的控制方法的流程图;
图6是第三实施例中睡眠设备的控制方法的流程图;
图7是第四实施例中睡眠设备的控制方法的流程图;
图8是一实施例中处理设备的结构图。
【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。
除非另有定义,本文所使用的所有的技术和科学术语与属于本发明的技术领域的技术人员通常理解的含义相同。本文中在本发明的说明书中所使用的术语只是为了描述具体的实施例的目的,不是旨在于限制本发明。本文所使用的术语“及/或”包括一个或多个相关的所列项目的任意的和所有的组合。
参见图1,图1是一实施例中睡眠控制系统的结构图。
在本实施例中,该睡眠控制系统包括睡眠设备20、处理设备10以及控制终端30,所述睡眠设备20与处理设备10通信连接,所述处理设备10与控制终端30通信连接。
所述控制终端30通过处理设备10控制睡眠设备20工作,所述睡眠设备20向处理设备10发送睡眠数据,并接收处理设备10的控制指令。
其中,所述睡眠设备20的数量为一个或两个以上,所述睡眠设备20与处理设备10之间通过有线或无线方式通信连接,其中无线方式包括蓝牙、zigbee和wifi中的一种或两种以上,每个睡眠设备20均与处理设备10双线连接,处理设备10可以在控制终端30的控制作用实现对各个睡眠设备20的独立控制。
参见图2,两个以上的睡眠设备20的类型相同或不同;所述睡眠设备20的类型包括睡眠监测设备21、睡眠辅助设备22和睡眠环境改善设备23。该睡眠监测设备21用于监测用户的睡眠状态,并将该睡眠状态转化为相应的睡眠数据;该睡眠辅助设备22用于在处理设备10的控制作用下执行睡眠辅助操作改善用户的睡眠;睡眠环境改善设备23用于在处理设备10的控制作用下执行环境改善操作改善用户的睡眠环境。
其中,该睡眠监测设备21包括多种传感器或镭射监测器,可以监测到人体的多个生理指标,如心率、呼吸率、运动状态等,从而判断出用户是否睡着,以及睡眠时间、睡眠程度等。这些传感器或镭射监测器可以放置在用户床上的多个位置,如床垫表面、床套下面、枕头下、被子中等,也可以通过在床头设置摄像头来获取用户的影像从而分析用户的睡眠状态。
该睡眠辅助设备22包括可控灯、音乐播放器等可以改善用户睡眠的设备,该睡眠环境改善设备23可以为空调、可控窗帘、香薰机等。
当睡眠监测设备21监测到用户的睡眠状态对应的睡眠数据时,将该睡眠数据发送给处理设备10,处理设备10根据该睡眠数据控制睡眠辅助设备22和睡眠环境改善设备23执行相应的操作,通过对上述三种睡眠设备20的控制,可以很好的调节用户的睡眠情况,从而提高其睡眠质量。该处理设备10可以单独设置,如单独的中心控制器,也可以设置在控制终端30或某个睡眠设备20中。该控制终端30可以为手机、智能手表、PAD、台式电脑、服务器等。
在其中一个实施例中,所述处理设备10与控制终端30之间通过wifi通信连接。处理设备10在控制终端30的作用下开启或关闭对上述睡眠设备20的操作控制,在控制终端30,如手机,用户可以通过手机对某个睡眠设备20进行单独控制,如开启睡眠监测设备21的监控,手机将该监控指令发送给处理设备10,由处理设备10实现对该睡眠监测设备21的操作控制,并获取睡眠监测设备21监测到的睡眠数据,将该睡眠数据反馈给手机,用户可以在自己的手机上查看当前的睡眠数据。
用户也可以通过手机对多个睡眠设备20进行同时监控,如开启睡眠监测设备21、睡眠辅助设备22和睡眠环境改善设备23的监控,将该监控指令发送给处理设备10,上述睡眠设备20在处理设备10的控制作用下分别执行相应的操作。例如,若用户喜欢在柔和的灯光中入睡,在手机端开启对上述三种睡眠设备20的监控之后,睡眠监测设备21监测到用户已经睡下,将用户的该睡眠状态对应的睡眠数据发送给上述处理设备10,处理设备10对该睡眠数据进行分析,并向睡眠辅助设备22和睡眠环境改善设备23分别发送相应的指令,控制可控灯调节至柔和的灯光模式,并关上可控窗帘。
在其中一个实施例中,所述处理设备10同时集成有蓝牙通信模块、zigbee通信模块、wifi模块以及有线通信模块。在处理设备10中设置对应的通信模块即可实现和各睡眠设备20的连接,为了满足和不同的睡眠设备20之间的通信需求,在处理设备10中集成多种通信模块,以实现和不同的睡眠设备20之间的数据交互,进而对其进行操作控制。同时也可以根据睡眠设备20的通信方式进行具体的设置。
参见图3,图3是基于图2所示的睡眠控制系统的实体结构图,各睡眠设备20和处理设备10双向连接,用户可以通过移动终端30,如手机对处理设备10进行控制,进而实现各睡眠设备20的监控,操作简单方便。
上述睡眠控制系统,在睡眠设备20之外增加一个核心控制器,即处理设备10,由该处理设备10来实现各个睡眠设备20之间的信息交互,该处理设备10获取到睡眠监测设备21发送的用户的睡眠状态对应的睡眠数据之后,对该睡眠数据进行分析处理,给出睡眠辅助设备22和睡眠环境改善设备23的操作指令,睡眠辅助设备22和睡眠环境改善设备23执行相应的操作,以达到改善用户睡眠的目的;能够实现各睡眠设备20的独立控制,可以根据用户需求增加新的睡眠设备20,使得整个智能睡眠改善系统更加智能化。
参见图4,图4是第一实施例中睡眠设备的控制方法的流程图。
在本实施例中,该睡眠设备的控制方法基于上述睡眠控制系统,包括:
S101,处理设备获取控制终端发送的监测控制指令,根据所述监测控制指令开启对睡眠设备的监控。
具体实现中,用户可以通过控制终端开启对单个睡眠设备的单独监控,也可以开启对多个睡眠设备的同时监控。
S102,所述处理设备获取所述睡眠设备发送的睡眠数据。
S103,所述处理设备根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令,以使所述睡眠设备接收所述控制指令并执行所述相应操作。
具体实现中,处理设备根据控制终端的监控指令对某一个睡眠设备进行操作控制,或者对多个睡眠设备进行操作控制,当上述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型时,处理设备在控制终端的作用下对这三种类型的睡眠设备进行的操作控制的流程具体可以为:
方式一
参见图5,步骤S202~S204所示:
S202、处理设备获取所述睡眠监测设备监测到的用户的睡眠状态对应的睡眠数据。
S203、所述处理设备根据所述睡眠数据给出辅助操作指令到所述睡眠辅助设备。
具体实现中,例如,若用户喜欢在柔和的灯光和轻音乐的陪伴下入睡,在手机端开启对上述睡眠设备的监控之后,睡眠监测设备监测到用户已经睡下,将用户的该睡眠状态对应的睡眠数据发送给上述处理设备,处理设备对该睡眠状态进行分析,并向睡眠辅助设备发送辅助操作指令,由该辅助操作指令控制可控灯调节至柔和的灯光模式,并控制音乐播放器播放预先设定的轻音乐。
S204、所述处理设备接收所述睡眠辅助设备发送的环境改善指令,并将所述环境改善指令转发给所述睡眠环境改善设备。
具体实现中,睡眠辅助设备根据所述辅助操作指令产生控制所述睡眠环境改善设备操作的环境改善指令,睡眠辅助设备根据处理设备给到的辅助操作指令执行了睡眠辅助操作之后,根据该辅助操作指令得到控制睡眠环境改善设备产生相应操作的环境改善指令,并将该环境改善指令发送给处理设备。处理设备将该环境改善指令转发给睡眠环境改善设备,控制睡眠环境改善设备产生环境改善操作。
具体实现中,若上述用户还习惯在关掉窗帘,并将空调调节至26度的环境下入睡,在监测到该用户入睡之后,睡眠辅助设备接收处理设备发送的睡眠辅助指令,并控制可控灯调节至柔和的灯光模式,且控制音乐播放器播放预先设定的轻音乐之后,睡眠辅助设备根据该睡眠辅助指令产生控制睡眠环境改善设备产生相应操作的环境改善指令,并由处理设备将该环境改善指令转发给睡眠环境改善设备,环境改善设备在该环境改善指令的控制下关上可控窗帘,并将空调自动调节到26度,用户无需手动,就可以进入自己喜欢的睡眠环境中,进而可以轻松入睡。
具体实现中,用户可以根据自己的需求增加新的睡眠设备,只需要建立该睡眠设备和该控制对象的通信连接,并预先在该处理设备中增加对该睡眠设备的操作控制功能。
方式二
参见图6,步骤S302~S303所示:
S302、处理设备获取所述睡眠监测设备监测到的用户的睡眠状态对应的睡眠数据。
S303、所述处理设备根据所述睡眠数据给出辅助操作指令到所述睡眠辅助设备,并给出环境改善指令到所述睡眠环境改善设备。
具体实现中,处理设备在获取到用户的睡眠状态对应的睡眠数据之后,根据该睡眠数据分别给出控制睡眠辅助设备执行相应操作的睡眠辅助指令,和控制睡眠环境改善设备执行相应操作的环境改善指令,控制睡眠辅助设备和睡眠环境设备同时执行相应的操作。例如,上述用户在手机端设定了自己的睡眠模式之后,当监测到该用户处于入睡状态时,处理设备根据该入睡状态将可控灯调节至柔和的灯光模式、控制音乐播放器播放预先设定的轻音乐、关上可控窗帘并将空调自动调节到26度,一步到位,各睡眠设备均由处理设备来控制,彼此关联度小,系统更加智能化。用户可以根据自己的需求个性化定制自己的睡眠模式,各睡眠设备可以增加或减少,不影响整个智能睡眠改善系统的正常使用。
方式三
参见图7,步骤S402~S403所示:
S402、处理设备获取所述睡眠监测设备监测到的用户的睡眠状态对应的睡眠数据。
S403、所述处理设备根据所述睡眠数据判断用户的睡眠状态,将所述睡眠状态作为触发的控制指令发送给所述睡眠辅助设备和睡眠环境改善设备。
具体实现中,处理设备在获取到用户的睡眠数据之后,对该数据进行分析,判断用户当前的睡眠状态,若根据该睡眠数据判断用户已经睡下了,将该睡眠状态发送给睡眠辅助设备和睡眠环境改善设备,触发睡眠辅助设备执行睡眠辅助操作,同时触发睡眠环境改善设备执行环境改善操作。
S103,所述睡眠设备接收所述控制指令并执行所述相应操作。
参见图5,在该步骤之后,还包括步骤:
S205,将所述睡眠监测设备、睡眠辅助设备和睡眠环境改善设备的工作状态信息发送给所述控制终端。具体实现中,处理设备将各睡眠设备的状态信息发送给控制终端,用户可以在该控制终端,如手机上对各睡眠设备的状态进行查看,并根据手机显示的状态信息对自己的睡眠模式进行调整,进而控制处理设备根据该睡眠模式对各睡眠设备进行调节,方便快捷的将各睡眠设备的状态调节到满意的舒适状态,提升了用户的体验感。
上述睡眠设备的控制方法,处理设备获取到睡眠监测设备发送的用户的睡眠状态之后,对该睡眠状态进行分析处理,通过两种方式给出控制睡眠辅助设备和睡眠环境改善设备产生相应操作的指令,其一,同时给出控制二者产生相应操作的指令,一步到位,各睡眠设备之间不直接进行信息交互,增强了各睡眠设备之间的独立性;其二,处理设备给出控制睡眠辅助设备产生相应操作的指令,睡眠辅助设备根据该指令产生控制睡眠环境改善设备的指令,并将该指令反馈给处理设备,处理设备将该指令转发给睡眠环境改善设备,控制其产生相应的操作。该方法在睡眠设备之外增加一个核心控制器,即处理设备,睡眠设备的控制指令均由该处理设备发出以实现各个睡眠设备之间的独立控制,可根据用户需求增加新的睡眠设备,使得整个智能睡眠改善系统更加智能化。
参见图8,图8是一实施例中处理设备的结构图。
在本实施例中,该处理设备10包括:
启动模块11,用于获取控制终端30发送的监测控制指令,根据所述监测控制指令开启对睡眠设备20的监控。
获取模块12,用于获取所述睡眠设备20发送的睡眠数据。
指令生成模块13,用于根据所述睡眠数据产生控制所述睡眠设备20产生相应操作的控制指令,以使所述睡眠设备20接收所述控制指令并执行所述相应操作。
在其中一个实施例中,所述睡眠设备20包括睡眠监测设备21、睡眠辅助设备22和睡眠环境改善设备23三种类型,所述指令生成模块13包括:
辅助指令生成模块131,用于根据所述睡眠数据给出辅助操作指令到所述睡眠辅助设备22。
环境指令转发模块132,用于接收所述睡眠辅助设备22发送的环境改善指令,并将所述环境改善指令转发给所述睡眠环境改善设备23,所述环境改善指令为所述睡眠辅助设备22根据所述辅助操作指令产生控制所述睡眠环境改善设备23操作的指令。
在其中一个实施例中,所述睡眠设备20包括睡眠监测设备21、睡眠辅助设备22和睡眠环境改善设备23三种类型,所述指令生成模块13包括所述辅助指令生成模块131和环境指令生成模块133,所述环境指令生成模块133用于根据所述睡眠数据给出环境改善指令到所述睡眠环境改善设备23。
在其中一个实施例中,所述睡眠设备20包括睡眠监测设备21、睡眠辅助设备22和睡眠环境改善设备23三种类型,所述指令生成模块13包括:
睡眠状态判断模块134,用于根据所述睡眠数据判断用户的睡眠状态。
睡眠状态发送模块135,用于将所述睡眠状态作为触发的控制指令发送给所述睡眠辅助设备22和睡眠环境改善设备23。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本发明的几种实施方式,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,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (10)

  1. 一种睡眠控制系统,其特征在于,包括:睡眠设备、处理设备以及控制终端,所述睡眠设备与所述处理设备通信连接,所述处理设备与所述控制终端通信连接;
    所述控制终端通过所述处理设备控制所述睡眠设备工作,所述睡眠设备向所述处理设备发送睡眠数据,所述处理设备根据所述睡眠数据生成控制所述睡眠设备产生相应操作的控制指令,所述睡眠设备接收所述控制指令并执行所述相应操作;
    其中,所述睡眠设备的数量为一个或两个以上,两个以上的所述睡眠设备的类型相同或不同;所述睡眠设备的类型包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备。
  2. 根据权利要求1所述的睡眠控制系统,其特征在于,所述睡眠设备与所述处理设备之间通过有线或无线方式通信连接,其中所述无线方式包括蓝牙、zigbee和wifi中的一种或两种以上。
  3. 一种睡眠设备的控制方法,基于权利要求1或2中任意一项所述的睡眠控制系统,其特征在于,包括:
    处理设备获取控制终端发送的监测控制指令,根据所述监测控制指令开启对睡眠设备的监控;
    所述处理设备获取所述睡眠设备发送的睡眠数据;
    所述处理设备根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令,以使所述睡眠设备接收所述控制指令并执行所述相应操作。
  4. 根据权利要求3所述的控制方法,其特征在于,当所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型时,所述处理设备获取所述睡眠设备发送的睡眠数据,根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令的步骤具体为:
    处理设备获取所述睡眠监测设备监测到的用户的睡眠状态对应的睡眠数据;
    所述处理设备根据所述睡眠数据给出辅助操作指令到所述睡眠辅助设备;
    所述处理设备接收所述睡眠辅助设备发送的环境改善指令,并将所述环境改善指令转发给所述睡眠环境改善设备,所述环境改善指令为所述睡眠辅助设备根据所述辅助操作指令产生控制所述睡眠环境改善设备操作的指令。
  5. 根据权利要求3所述的控制方法,其特征在于,当所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型时,所述处理设备获取所述睡眠设备发送的睡眠数据,根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令的步骤具体为:
    处理设备获取所述睡眠监测设备监测到的用户的睡眠状态对应的睡眠数据;
    所述处理设备根据所述睡眠数据给出辅助操作指令到所述睡眠辅助设备,并给出环境改善指令到所述睡眠环境改善设备。
  6. 根据权利要求3所述的控制方法,其特征在于,当所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型时,所述处理设备获取所述睡眠设备发送的睡眠数据,根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令的步骤具体为:
    处理设备获取所述睡眠监测设备监测到的用户的睡眠状态对应的睡眠数据;
    所述处理设备根据所述睡眠数据判断用户的睡眠状态,将所述睡眠状态作为触发的控制指令发送给所述睡眠辅助设备和睡眠环境改善设备。
  7. 一种处理设备,其特征在于,包括:
    启动模块,用于获取控制终端发送的监测控制指令,根据所述监测控制指令开启对睡眠设备的监控;
    获取模块,用于获取所述睡眠设备发送的睡眠数据;
    指令生成模块,用于根据所述睡眠数据产生控制所述睡眠设备产生相应操作的控制指令,以使所述睡眠设备接收所述控制指令并执行所述相应操作。
  8. 根据权利要求7所述的处理设备,其特征在于,所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型,所述指令生成模块包括:
    辅助指令生成模块,用于根据所述睡眠数据给出辅助操作指令到所述睡眠辅助设备;
    环境指令转发模块,用于接收所述睡眠辅助设备发送的环境改善指令,并将所述环境改善指令转发给所述睡眠环境改善设备,所述环境改善指令为所述睡眠辅助设备根据所述辅助操作指令产生控制所述睡眠环境改善设备操作的指令。
  9. 根据权利要求8所述的处理设备,其特征在于,所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型,所述指令生成模块包括所述辅助指令生成模块和环境指令生成模块,所述环境指令生成模块用于根据所述睡眠数据给出环境改善指令到所述睡眠环境改善设备。
  10. 根据权利要求7所述的处理设备,其特征在于,所述睡眠设备包括睡眠监测设备、睡眠辅助设备和睡眠环境改善设备三种类型,所述指令生成模块包括:
    睡眠状态判断模块,用于根据所述睡眠数据判断用户的睡眠状态;
    睡眠状态发送模块,用于将所述睡眠状态作为触发的控制指令发送给所述睡眠辅助设备和睡眠环境改善设备。
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