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WO2019090613A1 - 一种智能终端的闹钟的响铃方法及响铃系统 - Google Patents

一种智能终端的闹钟的响铃方法及响铃系统 Download PDF

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Publication number
WO2019090613A1
WO2019090613A1 PCT/CN2017/110226 CN2017110226W WO2019090613A1 WO 2019090613 A1 WO2019090613 A1 WO 2019090613A1 CN 2017110226 W CN2017110226 W CN 2017110226W WO 2019090613 A1 WO2019090613 A1 WO 2019090613A1
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WO
WIPO (PCT)
Prior art keywords
current
ringing
smart terminal
sleep state
preset
Prior art date
Legal status (The legal status 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 status listed.)
Ceased
Application number
PCT/CN2017/110226
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English (en)
French (fr)
Inventor
池文羽
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shenzhen Transsion Communication Co Ltd
Original Assignee
Shenzhen Transsion Communication Co Ltd
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.)
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Publication date
Application filed by Shenzhen Transsion Communication Co Ltd filed Critical Shenzhen Transsion Communication Co Ltd
Priority to PCT/CN2017/110226 priority Critical patent/WO2019090613A1/zh
Priority to CN201780096617.XA priority patent/CN111316623A/zh
Publication of WO2019090613A1 publication Critical patent/WO2019090613A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M19/00Current supply arrangements for telephone systems
    • H04M19/02Current supply arrangements for telephone systems providing ringing current or supervisory tones, e.g. dialling tone or busy tone
    • H04M19/04Current supply arrangements for telephone systems providing ringing current or supervisory tones, e.g. dialling tone or busy tone the ringing-current being generated at the substations
    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G13/00Producing acoustic time signals
    • G04G13/02Producing acoustic time signals at preselected times, e.g. alarm clocks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones

Definitions

  • the present invention relates to the field of control of intelligent terminals, and in particular, to a method for ringing an alarm clock of an intelligent terminal and a ringing system.
  • the alarm clock based on the intelligent terminal has received the favor of users and gradually replaced the traditional alarm clock, which has become a necessity in people's lives.
  • the alarm clock of the existing smart terminal usually plays a reminder or wakes up the user based on the preset alarm time point, and the sudden sound is often easy to cause discomfort to the user who is awake, especially in deep sleep. Users, when they are woken up by the alarm clock, are prone to cause discomfort to the body and even cause blood pressure to rise.
  • an intelligent terminal-based alarm clock needs to provide a new ringing method and a ringing system, which can ensure that an alarm ringing tone is issued at a preset time to remind the user, and can avoid generation of users in deep sleep.
  • the adverse effects make the user wake up in a more comfortable state and avoid the user's physical discomfort.
  • the present invention provides a method for ringing an alarm clock of an intelligent terminal and a ringing system. Based on the judgment of the current sleep state of the user, different alarm ringing modes are adopted for users in deep sleep and shallow sleep. Make sure to alert the user at the preset time point to avoid the user's adverse reactions.
  • the present invention provides a method for ringing an alarm clock of a smart terminal, the ringing method comprising the following steps:
  • the step of determining the current sleep state of the current user further includes:
  • the current sleep state is identified based on the current acceleration and the current respiratory loudness value.
  • the step of identifying whether the current sleep state is a deep sleep state according to the acceleration and the respiratory loudness value further comprises:
  • the interval range is the first 10 minutes of the preset alarm time point.
  • the smart terminal is further connected to the wearable device
  • the current user wears the smart terminal on the body through the wearable device
  • the smart terminal monitors a current sleep state of the current user by using the wearable device.
  • the present invention further provides a ringing system for an alarm clock of an intelligent terminal, the ringing system comprising: a starting module, a determining module and a control module;
  • the startup module is in communication with the determination module.
  • the activation terminal is activated within a range of a preset alarm time point.
  • Alarm clock ringing procedure
  • the determining module is in communication with the startup module and the control module to determine a current sleep state of the current user;
  • the control module When the current sleep state is deep sleep, the control module immediately controls the alarm clock to emit a ringing tone, and gradually increases the loudness value of the ringing ringtone;
  • control module controls the alarm clock to emit a ringing tone at the preset alarm time point.
  • the determining module further comprises: a detecting unit, an acquiring unit and an identifying unit;
  • the detecting unit detects a current acceleration of the smart terminal
  • the collecting unit collects a current respiratory loudness value of the current user
  • the identification unit identifies the current sleep state according to the current acceleration and the current respiratory loudness value.
  • the identification unit further comprises: a comparison component and a determination component;
  • the comparing component compares the change magnitude and the change frequency of the current acceleration and the current respiratory loudness value with a preset change threshold and a preset breath loudness value, respectively;
  • the determining component determines that the current sleep state is Shallow sleep state
  • the determining component determines the current sleep The state is in a deep sleep state.
  • the interval range is the first 10 minutes of the preset alarm time point.
  • the ringing system is further connected to the wearable device;
  • the current user wears the smart terminal on the body through the wearable device
  • the ringing system monitors a current sleep state of the current user by the wearable device.
  • the invention utilizes an acceleration detector and a microphone device in the smart terminal or a wearable device connected to the smart terminal to determine the user's deep sleep or shallow sleep in combination with the user's turning over state and the loudness of the snoring, and adopts according to different sleep states. Different alarm methods to achieve a ring alert to avoid adverse reactions to the user's body.
  • FIG. 1 is a schematic flow chart of a method for ringing an alarm clock of an intelligent terminal according to an embodiment of the invention
  • FIG. 2 is a schematic flow chart of a method for ringing an alarm clock of an intelligent terminal according to an embodiment of the invention
  • FIG. 3 is a schematic flow chart of a method for ringing an alarm clock of a smart terminal according to an embodiment of the invention
  • FIG. 4 is a schematic structural diagram of a ringing system of an alarm clock of an intelligent terminal according to an embodiment of the present invention
  • FIG. 5 is a schematic structural diagram of a ringing system of an alarm clock of an intelligent terminal according to an embodiment of the invention.
  • FIG. 6 is a schematic structural diagram of a ringing system of an alarm clock of an intelligent terminal according to an embodiment of the invention.
  • the alarm clock of the smart terminal basically simply emits an alarm ring based on the alarm time point preset by the user, so as to achieve the technical effect of reminding the user.
  • the long-term awakening from the deep sleep state by the alarm clock is very harmful to the body, and it is likely to cause adverse effects such as blood pressure soaring, rapid heartbeat or mental stress.
  • the present invention provides a method for ringing an alarm clock of a smart terminal.
  • FIG. 1 is a schematic flowchart diagram of a method for ringing an alarm clock of a smart terminal according to a preferred embodiment of the present invention. It can be seen from the figure that the method for ringing the alarm clock of the smart terminal provided by this embodiment specifically includes the following steps:
  • the user can start up at 6 o'clock every morning according to his own needs, and first create a new alarm reminder. Therefore, the alarm clock creation module in the smart terminal captures an operation instruction input by the user to the smart terminal, and first establishes an alarm event according to the operation instruction, and the preset alarm time point of the alarm time is 6 in the morning. point.
  • the interval is the first 10 minutes of the preset time point, that is, the current time is between 5:50 and 6:00 in the morning.
  • the smart terminal automatically starts its alarm ringing program and prepares to trigger the alarm. Further, the smart terminal should be placed on the current user for subsequent data collection by the smart terminal.
  • the smart terminal Before the alarm clock is officially ringing to wake up the technical effect of the current user, the smart terminal first needs to judge the current sleep state of the current user, and determine whether the current user is in deep sleep or shallow sleep, and correspondingly according to different sleeps. Status, perform different alarm ringing methods. There are various ways to determine the current sleep state of the user, for example, using the smart terminal to directly contact the current user to collect information such as turning over, buzzing, heartbeat, respiratory frequency, body temperature, and the like of the current user.
  • the smart terminal may further connect a wearable device, and the user wears the smart terminal on the wearable device, and the smart terminal connects the wearable device to collect the current user's vital signs information, thereby determining the current sleep of the user. status.
  • the smart terminal determines that the current user's sleep state is deep sleep, in order to prevent the current user in the deep sleep state from being suddenly awakened by the alarm bell, the smart terminal controls the alarm to immediately ring the bell according to the ringing method in this embodiment.
  • the ringing tone of the alarm clock is a ringing sound with a gradually increasing loudness value, so that the current user gradually transitions from a deep sleep state to a shallow sleep state to an awake state.
  • the increased ringing sound will not wake up the current user who is in deep sleep, effectively avoiding the adverse reaction of the current user to the body when he is awakened from deep sleep.
  • the smart terminal determines that the sleep state of the current user is shallow sleep, since the user does not need to wake up from deep sleep, the alarm clock does not need to be ringed in advance, so the smart terminal controls the alarm clock to ring the ringing tone at the preset time point.
  • the loudness value of the ringtone is gradually increased or the preset loudness value can be determined according to the current user's preset.
  • the step of determining the current sleep state of the current user further includes:
  • the smart terminal is placed on the current user, and the acceleration sensor built in the smart terminal detects the acceleration of the intelligent terminal in the three-axis direction of the X, Y, and Z axes in a predetermined period of time, and calculates the acceleration according to the acquisition.
  • the magnitude of the acceleration change and the frequency of the acceleration change Based on the magnitude of the acceleration change and the frequency of change, the user can perform data collection on the turning motion and the turning frequency of the user within a preset time period, so as to easily judge the sleep state of the current user according to the turning frequency.
  • the loudness value of the current user's breath is collected by the microphone or other sound collecting device of the smart terminal, that is, the current respiratory loudness value.
  • the smart terminal further identifies, according to the acceleration data and the respiratory loudness value data, that the sleep state of the current user is a deep sleep state or a shallow sleep state.
  • the step of identifying whether the current sleep state is a deep sleep state according to the acceleration and the respiratory loudness value further includes:
  • the smart terminal calculates the change size and the change frequency of the current acceleration according to the current acceleration within a preset time period. Since the smart terminal is placed on the current user, when the current user turns over, the smart terminal can detect a current acceleration through its acceleration sensor. When the magnitude and frequency of the change of the acceleration exceed a preset change threshold, the current The user has a turning over motion during the preset time period and the turning frequency is high, and the current user should be in a shallow sleep state; otherwise, the user should be in a deep sleep state.
  • the smart terminal compares the collected current respiratory loudness value with the preset respiratory loudness value.
  • the current respiratory loudness value exceeds the preset respiratory loudness value, that is, the current user is in a doze state, the current user should be in a deep sleep state; On the contrary, it should be a shallow sleep state.
  • the smart terminal determines that the current user belongs to the deep sleep state;
  • the smart terminal determines that the current user is in a shallow sleep state based on the change of the current acceleration and the change frequency and the current respiratory loudness value and the preset change threshold value and the preset respiratory loudness value, the smart terminal determines that the current user is in a shallow state. Degree of sleep.
  • FIG. 4 it is a schematic structural diagram of a ringing system of an alarm clock of a smart terminal according to a preferred embodiment of the present invention.
  • the ringing system of the alarm clock of the smart terminal provided by this embodiment specifically includes: Dynamic module, judgment module and control module;
  • the activation module is in communication with the determination module, and when the smart terminal is worn on a plane position of a current user's body, within a range of a preset alarm time point, a user is placed in the current user An alarm clock ringing program in the smart terminal on the body;
  • the user can start up at 6 o'clock every morning according to his own needs, and first create a new alarm reminder. Therefore, the alarm clock creation module in the smart terminal captures an operation instruction input by the user to the smart terminal, and first establishes an alarm event according to the operation instruction, and the preset alarm time point of the alarm time is 6 in the morning. point. After the creation is completed, when the current time is within a range of 6:1 am, preferably, the interval is the first 10 minutes of the preset time point, that is, the current time is between 5:50 and 6:00 in the morning. At any time point, at this time, the startup module of the smart terminal automatically starts its alarm ringing program to prepare for triggering the alarm. Further, the smart terminal should be placed on the current user for subsequent data collection by the smart terminal.
  • the determining module is in communication with the startup module and the control module to determine a current sleep state of the current user
  • the judging module of the smart terminal needs to judge the current sleep state of the current user, and determine whether the current user is in deep sleep or shallow sleep, and is connected through communication.
  • the control module performs different alarm ringing modes according to different sleep states.
  • the judging module can determine the current sleep state of the user in various ways, for example, using the smart terminal to directly contact the current user to collect information such as turning over, buzzing, heartbeat, respiratory frequency, body temperature, and the like of the current user.
  • the smart terminal may further connect a wearable device, and the user wears the smart terminal on the wearable device, and the smart terminal connects the wearable device to collect the physical information of the current user, so that the determining module can determine the user. Current sleep state.
  • the control module immediately controls the alarm clock to emit a ringing tone, and gradually increases the loudness value of the ringing ringtone;
  • the control module of the smart terminal is controlled based on the ringing system in this embodiment.
  • the alarm bell rings immediately.
  • the ringing tone of the alarm clock is a ringing sound with a gradually increasing loudness value, so that the current user gradually transitions from a deep sleep state to a shallow sleep state to an awake state.
  • the increased ringing sound will not wake up the current user who is in deep sleep, effectively avoiding the adverse reaction of the current user to the body when he is awakened from deep sleep.
  • control module controls to control the alarm clock to emit a ringing tone at the preset alarm time point.
  • the control module of the smart terminal controls the alarm clock to be sent at a preset time point.
  • Ringing ringtone the ringing value of the ringing ringtone is gradually increasing or directly hitting the preset loudness value may be determined according to the current user's preset.
  • the determining module further includes: a detecting unit, an acquiring unit, and an identifying unit;
  • the detecting unit detecting a current acceleration of the smart terminal
  • the collecting unit collecting the current respiratory loudness value of the current user
  • the identification unit identifying the current sleep state based on the current acceleration and the current respiratory loudness value.
  • the smart terminal is placed on the current user, and the acceleration sensor built in the detecting unit detects the acceleration of the intelligent terminal in the three-axis direction of the X, Y, and Z axes, and calculates the acceleration change and the acceleration change according to the collected acceleration. frequency. Based on the magnitude of the acceleration change and the frequency of change, the judging module of the intelligent terminal can The data is collected by the user's turning action and the turning frequency within a preset time period, so as to make a judgment on the sleep state of the current user according to the turning frequency.
  • the collecting unit further collects the loudness value of the current user's breath through a microphone or other sound collecting device, that is, the current respiratory loudness value.
  • the identification unit further identifies, according to the acceleration data and the respiratory loudness value data, that the sleep state of the current user is a deep sleep state or a shallow sleep state.
  • FIG. 6 is a schematic structural diagram of a ringing system of an alarm clock of an intelligent terminal according to an embodiment of the present invention.
  • the identification unit further includes: a comparison component and a determination component;
  • the comparison component compares the change magnitude and the change frequency of the current acceleration and the current respiratory loudness value with a preset change threshold and a preset breath loudness value, respectively;
  • the determining component determines the current sleep The state is in a deep sleep state.
  • the detecting unit of the determining module obtains the change magnitude and the changing frequency of the current acceleration according to the detected current acceleration. Since the smart terminal is placed on the current user, when the current user turns over, the detecting unit can detect a current acceleration through the acceleration sensor, and the comparing component in the identifying unit will change the acceleration according to the detected current acceleration and The change frequency is compared with a preset change threshold. When a preset change threshold is exceeded, that is, the current user turns over the frequency, the current user should be in a shallow sleep state; otherwise, the deep sleep state.
  • the comparison component of the identification unit compares the collected current respiratory loudness value with the preset respiratory loudness value.
  • the current respiratory loudness value exceeds the preset respiratory loudness value, that is, the current user is in a doze state, the current user should be in the depth. Sleep state; otherwise, it should be a shallow sleep state.
  • the determining component determines that the current user belongs to the deep sleep state;
  • the determining component determines that the current user is in a shallow sleep state based on the change of the current acceleration and the change frequency and the current respiratory loudness value and the preset change threshold value and the preset respiratory loudness value, the determining component determines that the current user is in a shallow state. Degree of sleep.
  • the present invention utilizes an acceleration detector in a smart terminal and a microphone device or a wearable device connected to the smart terminal to determine whether the user is in deep sleep or shallow sleep in combination with the user's turning-over condition and the loudness of the click, and according to different The sleep state uses different alarm methods to achieve a ringing reminder that avoids adverse reactions to the user's body.

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Electric Clocks (AREA)
  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)

Abstract

本发明提供了一种智能终端的闹钟的响铃方法及响铃系统,响铃方法包括:将智能终端佩戴于一当前用户的身体的平面位置上;于一预设闹钟时间点的区间范围内,启动智能终端中的闹钟响铃程序;判断当前用户的当前睡眠状态;若为深度睡眠,控制闹钟立即发出响铃铃声,并逐渐增加响铃铃声的响度值;若为浅度睡眠,控制闹钟于预设闹钟时间点发出响铃铃声。响铃系统包括:启动模块,判断模块和控制模块。本发明利用智能终端中的加速度检测器和麦克风装置或与智能终端连接的穿戴设备结合用户的翻身状况、鼾声的响度对用户处于深度睡眠或浅度睡眠作判断,并根据不同的睡眠状态,采用不同的闹铃方式,以实现避免对用户身体造成不良反应的响铃提醒。

Description

一种智能终端的闹钟的响铃方法及响铃系统 技术领域
本发明涉及智能终端的控制领域,尤其涉及一种智能终端的闹钟的响铃方法及响铃系统。
背景技术
随着科技的发展和进步,智能终端的发展也是日新月异,智能终端当前因其便利性和功能性,已经逐渐渗入到人们生活的方方面面,成为人们生活中不可或缺的辅助设备。同时,随着智能终端功能性的多样化,智能终端各功能的便捷性也成为用户的选择因素之一。
基于智能终端的闹钟因其便捷性,收到用户的青睐,逐渐替代传统的闹钟,成为人们生活中的必须品。然而,现有的智能终端的闹钟通常基于预设的闹钟时间点播放音乐实现提醒或者叫醒用户的作用,突如其来的响声往往容易对被闹醒的用户带来不适,尤其是处于深度睡眠中的用户,被闹钟闹醒时容易对身体造成不适甚至引起血压上升等危害。
为此,基于智能终端的闹钟,需要提供一种新的响铃方法及响铃系统,既能确保在预设的时间点发出闹铃铃声提醒用户,又能避免对处于深度睡眠中的用户产生不良影响,使得用户在一较为舒适的状态下被闹铃闹醒,避免用户出现身体不适。
发明内容
为解决上述问题,本发明提供一种智能终端的闹钟的响铃方法及响铃系统,基于对用户当前睡眠状态的判断,对处于深度睡眠和浅度睡眠的用户采用不同的闹钟响铃方式,确保在预设时间点发出闹铃铃声提醒用户的同时,避免用户产生不良反应。
本发明提供给了一种智能终端的闹钟的响铃方法,所述响铃方法包括以下步骤:
将所述智能终端佩戴于一当前用户的身体的平面位置上;
于一预设闹钟时间点的区间范围内,启动所述智能终端中的闹钟响铃程序;
判断所述当前用户的当前睡眠状态;
当所述当前睡眠状态为深度睡眠时,控制所述闹钟立即发出响铃铃声,并逐渐增加所述响铃铃声的响度值;
当所述当前睡眠状态为浅度睡眠时,控制所述闹钟于所述预设闹钟时间点发出响铃铃声。
优选地,判断所述当前用户的当前睡眠状态的步骤中,进一步包括:
通过所述智能终端的加速度传感器检测所述智能终端的当前加速度;
通过所述智能终端的麦克风,采集所述当前用户的当前呼吸响度值;
根据所述当前加速度和所述当前呼吸响度值,识别所述当前睡眠状态。
优选地,根据所述加速度和所述呼吸响度值,识别所述当前睡眠状态是否为深度睡眠状态的步骤中,进一步包括:
将所述当前加速度的变化大小及变化频率、当前呼吸响度值分别与一预设变化阈值和一预设呼吸响度值比较;
当所述当前加速度的变化大小及变化频率超过所述预设变化阈值,和/或时所述当前 呼吸响度值小于所述预设呼吸响度值,则判定所述当前睡眠状态处于浅度睡眠状态;
当所述当前加速度的变化大小及变化频率小于或等于所述预设变化阈值,且所述当前呼吸响度值大于或等于所述预设呼吸响度值时,则判定所述当前睡眠状态处于深度睡眠状态。
优选地,所述区间范围为预设闹钟时间点的前10分钟。
优选地,所述智能终端进一步连有穿戴设备;
所述当前用户通过所述穿戴设备将所述智能终端穿戴于身上;
所述智能终端通过所述穿戴设备监测所述当前用户的当前睡眠状态。
本发明进一步提供了一种智能终端的闹钟的响铃系统,所述响铃系统包括:启动模块,判断模块和控制模块;
所述启动模块,与所述判断模块通讯连接,当所述智能终端佩戴于一当前用户的身体的平面位置上时,于一预设闹钟时间点的区间范围内,启动所述智能终端中的闹钟响铃程序;
所述判断模块,与所述启动模块、控制模块通讯连接,判断所述当前用户的当前睡眠状态;
当所述当前睡眠状态为深度睡眠时,所述控制模块立即控制所述闹钟发出响铃铃声,并逐渐增加所述响铃铃声的响度值;
当所述当前睡眠状态为浅度睡眠时,所述控制模块控制所述闹钟于所述预设闹钟时间点发出响铃铃声。
优选地,所述判断模块进一步包括:检测单元,采集单元和识别单元;
所述检测单元,检测所述智能终端的当前加速度;
所述采集单元,采集所述当前用户的当前呼吸响度值;
所述识别单元,根据所述当前加速度和所述当前呼吸响度值,识别所述当前睡眠状态。
优选地,所述识别单元进一步包括:比较元件和判定元件;
所述比较元件,将所述当前加速度的变化大小及变化频率、当前呼吸响度值分别与一预设变化阈值和一预设呼吸响度值比较;
当所述当前加速度的变化大小及变化频率超过所述预设变化阈值,和/或时所述当前呼吸响度值小于所述预设呼吸响度值,则所述判定元件判定所述当前睡眠状态处于浅度睡眠状态;
当所述当前加速度的变化大小及变化频率小于或等于所述预设变化阈值,且所述当前呼吸响度值大于或等于所述预设呼吸响度值时,则所述判定元件判定所述当前睡眠状态处于深度睡眠状态。
优选地,所述区间范围为预设闹钟时间点的前10分钟。
优选地,所述响铃系统进一步连有穿戴设备;
所述当前用户通过所述穿戴设备将所述智能终端穿戴于身上;
所述响铃系统通过所述穿戴设备监测所述当前用户的当前睡眠状态。
与现有技术相比较,本发明的技术优势在于:
本发明利用智能终端中的加速度检测器和麦克风装置或与智能终端连接的穿戴设备结合用户的翻身状况、鼾声的响度对用户处于深度睡眠或浅度睡眠作判断,并根据不同的睡眠状态,采用不同的闹铃方式,以实现避免对用户身体造成不良反应的响铃提醒。
附图说明
图1为一符合本发明一实施例中的一种智能终端的闹钟的响铃方法的流程示意图;
图2为一符合本发明一实施例中的一种智能终端的闹钟的响铃方法的流程示意图;
图3为一符合本发明一实施例中的一种智能终端的闹钟的响铃方法的流程示意图;
图4为一符合本发明一实施例中的一种智能终端的闹钟的响铃系统的结构示意图;
图5为一符合本发明一实施例中的一种智能终端的闹钟的响铃系统的结构示意图;
图6为一符合本发明一实施例中的一种智能终端的闹钟的响铃系统的结构示意图。
具体实施方式
下面结合附图及具体实施例,详细阐述本发明的优势。
下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开的一些方面相一致的装置和方法的例子。
现有技术中,智能终端的闹钟基本仅简单地基于用户预设的闹钟时间点发出闹铃响铃,以达到提醒用户的技术效果。但是,对于每天通过闹钟叫醒的用户而言,长期从深度睡眠状态被闹钟惊醒对身体的危害是很大的,很有可能对人体产生血压飙升、心跳加速或者精神紧张等不良影响。鉴于上述问题,本发明提供一种智能终端的闹钟的响铃方法。
参阅图1,其为一符合本发明一优选实施例的一种智能终端的闹钟的响铃方法的流程示意图。从图中可以看出,本实施例所提供的智能终端的闹钟的响铃方法具体包括以下步骤:
-将所述智能终端佩戴于一当前用户的身体的平面位置上;
-于一预设闹钟时间点的区间范围内,启动所述智能终端中的闹钟响铃程序;
本实施例中,用户可以根据自身的需求,如,希望每天早上6点起床,先创建一新的闹钟提醒。从而,所述智能终端中的闹钟创建模块,将捕获用户对所述智能终端输入的操作指令,并根据该操作指令,首先建立一闹钟事件,该闹钟时间的预设闹钟时间点为每天早上6点。创建完成后,当当前时间为距离早上6点一区间范围内时,优选地,该区间范围为预设时间点的前10分钟,即当前时间为早上5点50分-6点00分之间任意一时间点时,此时,智能终端自动启动其闹钟响铃程序,作好触发闹铃的准备。进一步地,该智能终端应放置于当前用户身上,以便智能终端后续的数据采集。
-判断所述当前用户的当前睡眠状态;
在闹钟正式发出响铃达到叫醒当前用户的技术效果之前,首先智能终端需要对当前用户的当前睡眠状态作判断,判断当前用户是处于深度睡眠亦或是浅度睡眠,并相应根据不同的睡眠状态,执行不同的闹钟响铃方式。其判断用户当前睡眠状态的方式有多种,例如:利用智能终端直接与当前用户接触采集当前用户的翻身、鼾声、心跳、呼吸频率、体温等信息判断。在一优选实施例中,智能终端也可以进一步连接一穿戴设备,用户通过穿戴设备将智能终端穿戴于身上,智能终端连接穿戴设备对当前用户的各项体征信息进行采集,从而判定用户的当前睡眠状态。
-当所述当前睡眠状态为深度睡眠时,控制所述闹钟立即发出响铃铃声,并逐渐增加所述响铃铃声的响度值;
当智能终端判断当前用户的睡眠状态为深度睡眠时,为避免处于深度睡眠状态的当前用户突然被闹钟的响铃惊醒,基于本实施例中的响铃方法,智能终端控制闹钟立即发出响铃铃声。基于当前还未到达预设闹钟时间点,故,闹钟发出的响铃铃声为一响度值逐渐增加的响铃声,以使当前用户自深度睡眠状态逐渐过渡到浅度睡眠状态再到清醒状态,逐渐增加的响铃声也不会将处于深度睡眠的当前用户惊醒,有效避免当前用户自深度睡眠中被惊醒时对身体产生的不良反应。
-当所述当前睡眠状态为浅度睡眠时,控制所述闹钟于所述预设闹钟时间点发出响 铃铃声。
当智能终端判断当前用户的睡眠状态为浅度睡眠时,因无需将用户从深度睡眠中唤醒,闹钟无需提前响铃,故,智能终端会控制闹钟在预设时间点发出响铃铃声,该响铃铃声的响度值为逐渐递增或直接打到预设响度值可具体根据当前用户的预先设置而定。
参阅图2,为符合本发明实施例中的一种智能终端的闹钟的响铃方法的流程示意图。如图所示,在一优选实施例中,判断所述当前用户的当前睡眠状态的步骤中,进一步包括:
-通过所述智能终端的加速度传感器检测所述智能终端的当前加速度;
-通过所述智能终端的麦克风,采集所述当前用户的当前呼吸响度值;
-根据所述当前加速度和所述当前呼吸响度值,识别所述当前睡眠状态。
本实施例中,基于智能终端放置于当前用户的身上,通过智能终端内置的加速度传感器检测智能终端在一预设时间段内在X、Y、Z轴三轴方向加速度,并根据采集所得的加速度计算加速度变化大小及加速度变化频率。基于加速度变化大小和变化频率,可以对用户在一预设时间段内的翻身动作及翻身频率作数据采集,便于根据翻身频率对当前用户的睡眠状态作判断。此外,本实施例中进一步通过智能终端的麦克风或其他收音装置采集当前用户呼吸的响度值,即为当前呼吸响度值。采集完成后,智能终端进一步根据加速度数据和呼吸响度值数据,识别当前用户处于的睡眠状态为深度睡眠状态或浅度睡眠状态。
参阅图3,为符合本发明实施例中的一种智能终端的闹钟的响铃方法的流程示意图。如图所示,在一优选实施例中,根据所述加速度和所述呼吸响度值,识别所述当前睡眠状态是否为深度睡眠状态的步骤中,进一步包括:
-将所述当前加速度的变化大小及变化频率、当前呼吸响度值分别与一预设变化阈值和一预设呼吸响度值比较;
-当所述当前加速度的变化大小及变化频率超过所述预设变化阈值,和/或时所述当前呼吸响度值小于所述预设呼吸响度值,则判定所述当前睡眠状态处于浅度睡眠状态;
-当所述当前加速度的变化大小及变化频率小于或等于所述预设变化阈值,且所述当前呼吸响度值大于或等于所述预设呼吸响度值时,则判定所述当前睡眠状态处于深度睡眠状态。
优选地,本实施例中,智能终端根据检测所得一预设时间段内的当前加速度,计算获得当前加速度的变化大小及变化频率。由于智能终端放置于当前用户的身上,因此,当当前用户翻身时,智能终端可以通过其加速度传感器检测到一当前加速度,当加速度的变化大小及变化频率超过一预设变化阈值时,即表明当前用户在该预设时间段内有翻身动作且翻身频率较高,当前用户应处于浅度睡眠状态;反之,则应为深度睡眠状态。
此外,智能终端还将采集所得的当前呼吸响度值与预设呼吸响度值进行比较,当当前呼吸响度值超过预设呼吸响度值时,即当前用户处于打鼾状态,当前用户应处于深度睡眠状态;反之,则应为浅度睡眠状态。
当基于当前加速度的变化大小及变化频率和当前呼吸响度值与预设变化阈值和预设呼吸响度值的比较,均判定当前用户处于深度睡眠状态时,则智能终端判断当前用户属于深度睡眠状态;当基于当前加速度的变化大小及变化频率和当前呼吸响度值与预设变化阈值和预设呼吸响度值的比较,部分或均判定当前用户处于浅度睡眠状态时,则智能终端判断当前用户处于浅度睡眠状态。
参阅图4,其为一符合本发明一优选实施例的一种智能终端的闹钟的响铃系统的结构示意图。从图中可以看出,本实施例所提供的智能终端的闹钟的响铃系统具体包括:启 动模块,判断模块和控制模块;
-所述启动模块,与所述判断模块通讯连接,当所述智能终端佩戴于一当前用户的身体的平面位置上时,于一预设闹钟时间点的区间范围内,启动一放置于当前用户身上的智能终端中的闹钟响铃程序;
本实施例中,用户可以根据自身的需求,如,希望每天早上6点起床,先创建一新的闹钟提醒。从而,所述智能终端中的闹钟创建模块,将捕获用户对所述智能终端输入的操作指令,并根据该操作指令,首先建立一闹钟事件,该闹钟时间的预设闹钟时间点为每天早上6点。创建完成后,当当前时间为距离早上6点一区间范围内时,优选地,该区间范围为预设时间点的前10分钟,即当前时间为早上5点50分-6点00分之间任意一时间点时,此时,智能终端的启动模块自动启动其闹钟响铃程序,作好触发闹铃的准备。进一步地,该智能终端应放置于当前用户身上,以便智能终端后续的数据采集。
-所述判断模块,与所述启动模块、控制模块通讯连接,判断所述当前用户的当前睡眠状态;
在闹钟正式发出响铃达到叫醒当前用户的技术效果之前,首先智能终端的判断模块需要对当前用户的当前睡眠状态作判断,判断当前用户是处于深度睡眠亦或是浅度睡眠,通过通讯连接,控制模块根据不同的睡眠状态,执行不同的闹钟响铃方式。判断模块判断用户当前睡眠状态的方式有多种,例如:利用智能终端直接与当前用户接触采集当前用户的翻身、鼾声、心跳、呼吸频率、体温等信息判断。在一优选实施例中,智能终端也可以进一步连接一穿戴设备,用户通过穿戴设备将智能终端穿戴于身上,智能终端连接穿戴设备对当前用户的各项体征信息进行采集,从而判断模块能够判定用户的当前睡眠状态。
-当所述当前睡眠状态为深度睡眠时,所述控制模块立即控制所述闹钟发出响铃铃声,并逐渐增加所述响铃铃声的响度值;
当智能终端的判断模块判断当前用户的睡眠状态为深度睡眠时,为避免处于深度睡眠状态的当前用户突然被闹钟的响铃惊醒,基于本实施例中的响铃系统,智能终端的控制模块控制闹钟立即发出响铃铃声。基于当前还未到达预设闹钟时间点,故,闹钟发出的响铃铃声为一响度值逐渐增加的响铃声,以使当前用户自深度睡眠状态逐渐过渡到浅度睡眠状态再到清醒状态,逐渐增加的响铃声也不会将处于深度睡眠的当前用户惊醒,有效避免当前用户自深度睡眠中被惊醒时对身体产生的不良反应。
-当所述当前睡眠状态为浅度睡眠时,所述控制模块控制控制所述闹钟于所述预设闹钟时间点发出响铃铃声。
当智能终端的判断模块判断当前用户的睡眠状态为浅度睡眠时,因无需将用户从深度睡眠中唤醒,闹钟无需提前响铃,故,智能终端的控制模块会控制闹钟在预设时间点发出响铃铃声,该响铃铃声的响度值为逐渐递增或直接打到预设响度值可具体根据当前用户的预先设置而定。
参阅图5,为符合本发明实施例中的一种智能终端的闹钟的响铃系统的结构示意图。如图所示,在一优选实施例中,所述判断模块进一步包括:检测单元,采集单元和识别单元;
-所述检测单元,检测所述智能终端的当前加速度;
-所述采集单元,采集所述当前用户的当前呼吸响度值;
-所述识别单元,根据所述当前加速度和所述当前呼吸响度值,识别所述当前睡眠状态。
本实施例中,基于智能终端放置于当前用户的身上,通过检测单元内置的加速度传感器检测智能终端在X、Y、Z轴三轴方向加速度,并根据采集所得的加速度计算加速度变化大小及加速度变化频率。基于加速度变化大小和变化频率,智能终端的判断模块可 以对用户在一预设时间段内的翻身动作及翻身频率作数据采集,以便于后续根据翻身频率对当前用户的睡眠状态作判断。此外,本实施例中采集单元进一步通过麦克风或其他收音装置采集当前用户呼吸的响度值,即为当前呼吸响度值。检测和采集完成后,识别单元进一步根据加速度数据和呼吸响度值数据,识别当前用户处于的睡眠状态为深度睡眠状态或浅度睡眠状态。
参阅图6,为符合本发明实施例中的一种智能终端的闹钟的响铃系统的结构示意图。如图所示,在一优选实施例中,所述识别单元进一步包括:比较元件和判定元件;
-所述比较元件,将所述当前加速度的变化大小及变化频率、当前呼吸响度值分别与一预设变化阈值和一预设呼吸响度值比较;
-当所述当前加速度的变化大小及变化频率超过所述预设变化阈值,和/或时所述当前呼吸响度值小于所述预设呼吸响度值,则所述判定元件判定所述当前睡眠状态处于浅度睡眠状态;
当所述当前加速度的变化大小及变化频率小于或等于所述预设变化阈值,且所述当前呼吸响度值大于或等于所述预设呼吸响度值时,则所述判定元件判定所述当前睡眠状态处于深度睡眠状态。
优选地,本实施例中,判断模块的检测单元根据检测所得的当前加速度,获得当前加速度的变化大小及变化频率。由于智能终端放置于当前用户的身上,因此,当当前用户翻身时,检测单元可以通过其加速度传感器检测到一当前加速度,识别单元中的比较元件根据检测所得的当前加速度将当加速度的变化大小及变化频率与一预设变化阈值比较,当超过一预设变化阈值时,即当前用户翻身频率较高,当前用户应处于浅度睡眠状态;反之,则应为深度睡眠状态。
此外,识别单元的比较元件还将采集所得的当前呼吸响度值与预设呼吸响度值进行比较,当当前呼吸响度值超过预设呼吸响度值时,即当前用户处于打鼾状态,当前用户应处于深度睡眠状态;反之,则应为浅度睡眠状态。
当基于当前加速度的变化大小及变化频率和当前呼吸响度值与预设变化阈值和预设呼吸响度值的比较,均判定当前用户处于深度睡眠状态时,则判定元件判断当前用户属于深度睡眠状态;当基于当前加速度的变化大小及变化频率和当前呼吸响度值与预设变化阈值和预设呼吸响度值的比较,部分或均判定当前用户处于浅度睡眠状态时,则判定元件判断当前用户处于浅度睡眠状态。
综上所述,本发明利用智能终端中的加速度检测器和麦克风装置或与智能终端连接的穿戴设备结合用户的翻身状况、鼾声的响度对用户处于深度睡眠或浅度睡眠作判断,并根据不同的睡眠状态,采用不同的闹铃方式,以实现避免对用户身体造成不良反应的响铃提醒。
应当注意的是,本发明的实施例有较佳的实施性,且并非对本发明作任何形式的限制,任何熟悉该领域的技术人员可能利用上述揭示的技术内容变更或修饰为等同的有效实施例,但凡未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所作的任何修改或等同变化及修饰,均仍属于本发明技术方案的范围内。

Claims (10)

  1. 一种智能终端的闹钟的响铃方法,其特征在于,
    所述响铃方法包括以下步骤:
    将所述智能终端佩戴于一当前用户的身体的平面位置上;
    于一预设闹钟时间点的区间范围内,启动所述智能终端中的闹钟响铃程序;
    判断所述当前用户的当前睡眠状态;
    当所述当前睡眠状态为深度睡眠时,控制所述闹钟立即发出一响铃铃声,并逐渐增加所述响铃铃声的响度值;
    当所述当前睡眠状态为浅度睡眠时,控制所述闹钟于所述预设闹钟时间点发出所述响铃铃声。
  2. 如权利要求1所述的响铃方法,其特征在于,
    判断所述当前用户的当前睡眠状态的步骤中,进一步包括:
    通过所述智能终端的加速度传感器检测所述智能终端的当前加速度;
    通过所述智能终端的麦克风采集所述当前用户的当前呼吸响度值;
    根据所述当前加速度和所述当前呼吸响度值,识别所述当前睡眠状态。
  3. 如权利要求2所述的响铃方法,其特征在于,
    根据所述加速度和所述呼吸响度值,识别所述当前睡眠状态是否为深度睡眠状态的步骤中,进一步包括:
    将所述当前加速度的变化大小及变化频率、当前呼吸响度值分别与一预设变化阈值和一预设呼吸响度值比较;
    当所述当前加速度的变化大小及变化频率超过所述预设变化阈值,和/或时所述当前呼吸响度值小于所述预设呼吸响度值,则判定所述当前睡眠状态处于浅度睡眠状态;
    当所述当前加速度的变化大小及变化频率小于或等于所述预设变化阈值,且所述当前呼吸响度值大于或等于所述预设呼吸响度值时,则判定所述当前睡眠状态处于深度睡眠状态。
  4. 如权利要求1-3任一项所述的响铃方法,其特征在于,
    所述区间范围为预设闹钟时间点的前10分钟。
  5. 如权利要求1-3任一项所述的响铃方法,其特征在于,
    所述智能终端进一步连有穿戴设备;
    所述当前用户通过所述穿戴设备将所述智能终端穿戴于身上;
    所述智能终端通过所述穿戴设备监测所述当前用户的当前睡眠状态。
  6. 一种智能终端的闹钟的响铃系统,其特征在于,
    所述响铃系统包括:启动模块,判断模块和控制模块;
    所述启动模块,与所述判断模块通讯连接,当所述智能终端放置于一当前用户的身体的平面位置上时,于一预设闹钟时间点的区间范围内,启动所述智能终端中的闹钟响铃程序;
    所述判断模块,与所述启动模块、控制模块通讯连接,判断所述当前用户的当前睡眠状态;
    当所述当前睡眠状态为深度睡眠时,所述控制模块立即控制所述闹钟发出响铃铃声,并逐渐增加所述响铃铃声的响度值;
    当所述当前睡眠状态为浅度睡眠时,所述控制模块控制所述闹钟于所述预设闹钟时间点发出响铃铃声。
  7. 如权利要求6所述的响铃系统,其特征在于,
    所述判断模块进一步包括:检测单元,采集单元和识别单元;
    所述检测单元,检测所述智能终端的当前加速度;
    所述采集单元,采集所述当前用户的当前呼吸响度值;
    所述识别单元,根据所述当前加速度和所述当前呼吸响度值,识别所述当前睡眠状态。
  8. 如权利要求7所述的响铃系统,其特征在于,
    所述识别单元进一步包括:比较元件和判定元件;
    所述比较元件,将所述当前加速度的变化大小及变化频率、当前呼吸响度值分别与一预设变化阈值和一预设呼吸响度值比较;
    当所述当前加速度的变化大小及变化频率超过所述预设变化阈值,和/或时所述当前呼吸响度值小于所述预设呼吸响度值,则所述判定元件判定所述当前睡眠状态处于浅度睡眠状态;
    当所述当前加速度的变化大小及变化频率小于或等于所述预设变化阈值,且所述当前呼吸响度值大于或等于所述预设呼吸响度值时,则所述判定元件判定所述当前睡眠状态处于深度睡眠状态。
  9. 如权利要求6-9任一项所述的响铃系统,其特征在于,
    所述区间范围为预设闹钟时间点的前10分钟。
  10. 如权利要求6-9任一项所述的响铃系统,其特征在于,
    所述响铃系统进一步连有穿戴设备;
    所述当前用户通过所述穿戴设备将所述智能终端穿戴于身上;
    所述响铃系统通过所述穿戴设备监测所述当前用户的当前睡眠状态。
PCT/CN2017/110226 2017-11-09 2017-11-09 一种智能终端的闹钟的响铃方法及响铃系统 Ceased WO2019090613A1 (zh)

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