WO2018014498A1 - 一种穿戴设备的显示方法及装置 - Google Patents
一种穿戴设备的显示方法及装置 Download PDFInfo
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- WO2018014498A1 WO2018014498A1 PCT/CN2016/111025 CN2016111025W WO2018014498A1 WO 2018014498 A1 WO2018014498 A1 WO 2018014498A1 CN 2016111025 W CN2016111025 W CN 2016111025W WO 2018014498 A1 WO2018014498 A1 WO 2018014498A1
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/02—Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
- A61B5/024—Detecting, measuring or recording pulse rate or heart rate
- A61B5/0245—Detecting, measuring or recording pulse rate or heart rate by using sensing means generating electric signals, i.e. ECG signals
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/44—Arrangements for executing specific programs
- G06F9/451—Execution arrangements for user interfaces
Definitions
- the present invention relates to the field of wearable devices, and in particular, to a display method and apparatus for a wearable device.
- a smart watch is generally used to detect a user's sleep quality or to detect a user's movement.
- the user can only see the data of sleep or acceleration, and the data that the user can view is single, which is not conducive to the reasonable scheduling time of the user.
- the main object of the present invention is to provide a method for displaying the above-mentioned purposes, which is intended to display various data, and to facilitate the user to arrange the working hours reasonably.
- the invention provides a display method of a wearable device, and the display method comprises the following steps:
- the data of each state and the standard data are displayed according to the received viewing instruction.
- the step of determining, according to the physiological characteristic data, whether the user is in a state of sleep, waking, active or strenuous exercise further comprises:
- the step of determining whether the user is in a state of sleep, waking, active or strenuous exercise according to the physiological characteristic data comprises:
- the step of displaying the data of each state and the standard data according to the received viewing instruction includes:
- a histogram of each state data and the standard data is displayed.
- the present invention further provides a display method of a wearable device, the display method comprising the following steps:
- the data of each state is displayed according to the received viewing instruction.
- the physiological characteristic data includes pulse data of the user.
- the step of determining, according to the physiological characteristic data, whether the user is in a state of sleep, waking, active or strenuous exercise further comprises:
- the step of determining whether the user is in a state of sleep, waking, active or strenuous exercise according to the physiological characteristic data comprises:
- the step of displaying data of each state according to the received viewing instruction includes:
- the data of each state and the standard data are displayed according to the received viewing instruction.
- the step of displaying the data of each state and the standard data according to the received viewing instruction includes:
- a histogram of each state data and the standard data is displayed.
- the present invention further provides a display device for a wearable device, the display device comprising:
- An acquisition module configured to collect physiological characteristic data of the user
- a determining module configured to determine, according to the physiological characteristic data, whether the user is in a state of sleep, waking, active, or strenuous exercise
- a display module is configured to display data of each state according to the received viewing instruction.
- the physiological characteristic data includes pulse data of the user.
- the display device further includes:
- An obtaining module configured to obtain acceleration data of the wearable device
- the determining module is further configured to determine, according to the physiological characteristic data and the acceleration data, whether the user is in a state of sleep, waking, active, or strenuous exercise.
- the display module includes:
- a obtaining unit configured to perform a search in the preset data according to the data of each state, to obtain corresponding standard data
- a display unit configured to display data of each state and the standard data according to the received viewing instruction.
- the display unit is further configured to display a histogram of each state data and the standard data.
- the invention collects physiological characteristic data of the user; determines whether the user is in a sleep, awake, active or vigorous motion state according to the physiological characteristic data; and displays data of each state according to the received viewing instruction.
- the present invention determines whether the user is in a state of sleep, waking, active, or strenuous exercise based on the collected physiological characteristic data of the user, and then displays data of each state according to the user's viewing instruction. Due to the actual use, the reasonable work of the user is related to the time when the user is in various states. For example, when a user has more intense exercise, the rest time generally needs to be increased accordingly, so that the user can arrange his/her own work according to the data of each state displayed. time.
- FIG. 1 is a schematic flow chart of a first embodiment of a display method of a wearable device according to the present invention
- FIG. 2 is a schematic flow chart of a second embodiment of a display method of a wearable device according to the present invention.
- FIG. 3 is a schematic diagram showing a refinement process of displaying data of each state according to a received viewing instruction according to an embodiment of the present invention
- FIG. 4 is a schematic diagram of functional modules of a first embodiment of a display device for a wearable device according to the present invention.
- FIG. 5 is a schematic diagram of functional modules of a second embodiment of a display device for a wearable device according to the present invention.
- FIG. 6 is a schematic diagram of a refinement function module of a display module according to an embodiment of the present invention.
- the invention provides a display method of a wearable device.
- FIG. 1 is a schematic flowchart of a first embodiment of a display device for a wearable device according to the present invention
- the display method of the wearable device includes:
- Step S10 collecting physiological characteristic data of the user
- the wearable device may be an electronic device closely related to the user, such as a smart watch or a smart wristband.
- the wearable device is provided with a sensor for collecting physiological characteristic data of the user, such as a pulse sensor, a body temperature sensor, a humidity sensor, and the like.
- the physiological characteristic data of the user is obtained by collecting the user's physiological characteristic data in real time by using the sensors provided on the wearable device.
- the physiological characteristic data in the embodiment includes the pulse data of the user, and the physiological characteristic data in the specific implementation may further include body temperature data and the like. .
- Step S20 determining, according to the physiological characteristic data, whether the user is in a state of sleep, waking, active or strenuous exercise
- the respiratory rate, body temperature and heartbeat frequency will change, and each state has a corresponding relationship with respiratory frequency, body temperature and heartbeat frequency. Therefore, the analysis can be performed according to the physiological characteristic data of the obtained user, thereby determining the state of the user.
- the state of the user is divided into four types of sleep, awake, active, and strenuous exercise states, and the specific implementation is also divided into other states according to needs, such as a dangerous state.
- the heartbeat frequency of the user is obtained, and the general user is in a sleep, awake, active or strenuous exercise state, and the heartbeat of the user is incrementally changed, that is, the heartbeat in the sleep state is less than the awake state.
- the heartbeat in the awake state is smaller than the heartbeat in the active state
- the heartbeat in the active state is smaller than the heartbeat in the strenuous exercise state.
- a first heartbeat threshold, a second heartbeat threshold, a third heartbeat threshold, and a fourth heartbeat threshold may be set.
- the fifth heartbeat threshold may be set, where the fifth heartbeat threshold is smaller than the first heartbeat threshold.
- Step S30 displaying data of each state according to the received viewing instruction.
- the corresponding viewing command can be generated through the control menu, and after receiving the control command, the wearable device displays the data of each state according to the control command.
- the user may select to view data of a time period such as the current day, the current month, or the last 7 days.
- the user can know the current or recent schedule of work according to the data of each state displayed. Therefore, reasonable schedules can be arranged according to actual conditions.
- the invention collects physiological characteristic data of the user; determines whether the user is in a sleep, awake, active or vigorous motion state according to the physiological characteristic data; and displays data of each state according to the received viewing instruction.
- the present invention determines whether the user is in a state of sleep, waking, active, or strenuous exercise based on the collected physiological characteristic data of the user, and then displays data of each state according to the user's viewing instruction. Due to the actual use, the reasonable work of the user is related to the time when the user is in various states. For example, when a user has more intense exercise, the rest time generally needs to be increased accordingly, so that the user can arrange his/her own work according to the data of each state displayed. time.
- FIG. 2 is a schematic flowchart of a second embodiment of a display device for a wearable device according to the present invention
- the display method of the wearable device may further include:
- Step S40 obtaining acceleration data of the wearable device
- the wearable device is further provided with an acceleration sensor in the embodiment, and the acceleration sensor is used to obtain the acceleration data of the wearable device. Since the wearable device is closely related to the user, the motion of the user drives the movement of the wearable device. Therefore, obtaining acceleration data of the wearable device also acquires acceleration data of the user.
- the acceleration data can verify the respective states in which the user is located.
- Step S50 determining whether the user is in a state of sleep, waking, active or strenuous exercise according to the physiological characteristic data and the acceleration data.
- the physiological characteristic data obtained in step S10 and the acceleration data obtained in step S40 are used to determine whether the user is in a state of sleep, waking, active or strenuous exercise. Specifically, in the embodiment, the data of the user in each state is first determined by the physiological feature data, and then the determined data is verified according to the acceleration data, thereby improving the accuracy of the determination. Alternatively, the states of the user may be pre-divided by the physiological feature data, and then the acceleration data is used to determine the states of the user.
- FIG. 3 is a schematic diagram showing a refinement process of displaying data of each state according to a received viewing instruction according to an embodiment of the present invention.
- step S30 may include:
- Step S31 performing a search in the preset data according to the data of each state, and obtaining corresponding standard data
- Step S32 displaying data of each state and the standard data according to the received viewing instruction.
- a plurality of standard data are pre-stored in the wearing device, and each person is different due to different living habits and physical constitutions of different people. The status of the situation will be different, so the criteria for different users should be different.
- the search is performed in the preset data, and the data with the closest ratio of the state data of the user in the preset data is found as the standard data of the user.
- the data of each state and the standard data are then displayed in accordance with a viewing instruction that receives the user input. Therefore, the user can compare the state data according to his own and the standard data, and arrange the working time reasonably.
- the histogram of each state data and the standard data is displayed in this embodiment.
- the histogram is used to visually see the distribution state of each state, and the distribution status of each state is clear at a glance, so that the user can view the distribution of each state.
- the invention also provides a display device for a wearable device.
- FIG. 4 is a schematic diagram of functional modules of a first embodiment of a display device for a wearable device according to the present invention.
- the display device of the wearable device includes:
- the collecting module 10 is configured to collect physiological characteristic data of the user
- the wearable device may be an electronic device closely related to the user, such as a smart watch or a smart wristband.
- the wearable device is provided with a sensor for collecting physiological characteristic data of the user, such as a pulse sensor, a body temperature sensor, a humidity sensor, and the like.
- the physiological characteristic data of the user is obtained by collecting the user's physiological characteristic data in real time by using the sensors provided on the wearable device.
- the physiological characteristic data in the embodiment includes the pulse data of the user, and the physiological characteristic data in the specific implementation may further include body temperature data and the like. .
- a determining module 20 configured to determine, according to the physiological characteristic data, whether the user is in a state of sleep, waking, active, or strenuous exercise;
- the respiratory rate, body temperature and heartbeat frequency will change, and each state has a corresponding relationship with respiratory frequency, body temperature and heartbeat frequency. Therefore, the analysis can be performed according to the physiological characteristic data of the obtained user, thereby determining the state of the user.
- the state of the user is divided into four types of sleep, awake, active, and strenuous exercise states, and the specific implementation is also divided into other states according to needs, such as a dangerous state.
- the heartbeat frequency of the user is obtained, and the general user is in a sleep, awake, active or strenuous exercise state, and the heartbeat of the user is incrementally changed, that is, the heartbeat in the sleep state is less than awake.
- the heartbeat in the state, the heartbeat in the awake state is smaller than the heartbeat in the active state, and the heartbeat in the active state is smaller than the heartbeat in the strenuous exercise state.
- a first heartbeat threshold, a second heartbeat threshold, a third heartbeat threshold, and a fourth heartbeat threshold may be set.
- the fifth heartbeat threshold may be set, where the fifth heartbeat threshold is smaller than the first heartbeat threshold.
- the display module 30 is configured to display data of each state according to the received viewing instruction.
- the corresponding viewing command can be generated through the control menu, and after receiving the control command, the wearable device displays the data of each state according to the control command.
- the user may select to view data of a time period such as the current day, the current month, or the last 7 days.
- the user can know the current or recent schedule of work according to the data of each state displayed. Therefore, reasonable schedules can be arranged according to actual conditions.
- the invention collects physiological characteristic data of the user; determines whether the user is in a sleep, awake, active or vigorous motion state according to the physiological characteristic data; and displays data of each state according to the received viewing instruction.
- the present invention determines whether the user is in a state of sleep, waking, active, or strenuous exercise based on the collected physiological characteristic data of the user, and then displays data of each state according to the user's viewing instruction. Due to the actual use, the reasonable work of the user is related to the time when the user is in various states. For example, when a user has more intense exercise, the rest time generally needs to be increased accordingly, so that the user can arrange his/her own work according to the data of each state displayed. time.
- FIG. 5 is a schematic diagram of functional modules of a second embodiment of a display device for a wearable device according to the present invention.
- the display device of the wearable device further includes:
- An obtaining module 40 configured to obtain acceleration data of the wearable device
- the wearable device is further provided with an acceleration sensor in the embodiment, and the acceleration sensor is used to obtain the acceleration data of the wearable device. Since the wearable device is closely related to the user, the motion of the user drives the movement of the wearable device. Therefore, obtaining acceleration data of the wearable device also acquires acceleration data of the user.
- the acceleration data can verify the respective states in which the user is located.
- the determining module 20 is further configured to determine, according to the physiological feature data and the acceleration data, whether the user is in a state of sleep, waking, active, or strenuous exercise.
- the embodiment determines whether the user is in a state of sleep, waking, active or strenuous exercise according to the physiological characteristic data obtained by the acquisition module 10 and the acceleration data obtained by the acquisition module 40. Specifically, in the embodiment, the data of the user in each state is first determined by the physiological feature data, and then the determined data is verified according to the acceleration data, thereby improving the accuracy of the determination. Alternatively, the states of the user may be pre-divided by the physiological feature data, and then the acceleration data is used to determine the states of the user.
- FIG. 6 is a schematic diagram of a refinement function module of a display module according to an embodiment of the present invention.
- the display module 30 may include:
- the obtaining unit 31 is configured to perform a search in the preset data according to the data of each state to obtain corresponding standard data;
- the display unit 32 is configured to display data of each state and the standard data according to the received viewing instruction.
- a plurality of standard data are pre-stored in the wearing device, and each person is different due to different living habits and physical constitutions of different people. The status of the situation will be different, so the criteria for different users should be different.
- the search is performed in the preset data, and the data with the closest ratio of the state data of the user in the preset data is found as the standard data of the user.
- the data of each state and the standard data are then displayed in accordance with a viewing instruction that receives the user input. Therefore, the user can compare the state data according to his own and the standard data, and arrange the working time reasonably.
- the display unit 32 is further configured to display each state data and a histogram of the standard data.
- the histogram of each state data and the standard data is displayed in this embodiment.
- the histogram is used to visually see the distribution state of each state, and the distribution status of each state is clear at a glance, so that the user can view the distribution of each state.
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Abstract
一种穿戴设备的显示方法,该方法包括:采集用户的生理特征数据(S10);根据该生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态(S20);根据接收到的查看指令显示各状态的数据(S30)。以及一种可穿戴设备的显示装置。能够显示多种数据,方便用户合理安排作息时间。
Description
技术领域
本发明涉及穿戴设备领域,尤其涉及一种穿戴设备的显示方法及装置。
背景技术
近年来,随着科技的发展和人们生活水平的不断提高,智能手表因为其便利性,采集数据的及时性,美观的外表等等,已经逐渐成为了人们日常生活中不可缺少的电子设备。
现有技术中,智能手表一般用来检测用户的睡眠质量或者检测用户的运动情况。现有技术中,用户只能看到睡眠或者加速度的数据,用户能够查看的数据单一,不利于用户合理安排作息时间。
发明内容
本发明的主要目的在于提出一种为实现上述目的,旨在显示多种数据,方便用户合理安排作息时间。
本发明提供一种穿戴设备的显示方法,所述显示方法包括如下步骤:
采集用户的生理特征数据, 所述生理特征数据包括用户的脉搏数据;
根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;
根据各状态的数据在预设数据中进行查找,获得对应的标准数据;
根据接收到的查看指令显示各状态的数据和所述标准数据。
其中,所述根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态的步骤之前还包括:
获得所述穿戴设备的加速度数据;
所述根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态的步骤包括:
根据所述生理特征数据和所述加速度数据确定用户处于睡眠、清醒、活动还是剧烈运动状态。
其中,所述根据接收到的查看指令显示各状态的数据和所述标准数据的步骤包括:
显示各状态数据和所述标准数据的直方图。
此外,为实现上述目的,本发明还提供一种穿戴设备的显示方法,所述显示方法包括如下步骤:
采集用户的生理特征数据;
根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;
根据接收到的查看指令显示各状态的数据。
其中,所述生理特征数据包括用户的脉搏数据。
其中,所述根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态的步骤之前还包括:
获得所述穿戴设备的加速度数据;
所述根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态的步骤包括:
根据所述生理特征数据和所述加速度数据确定用户处于睡眠、清醒、活动还是剧烈运动状态。
其中,所述根据接收到的查看指令显示各状态的数据的步骤包括:
根据各状态的数据在预设数据中进行查找,获得对应的标准数据;
根据接收到的查看指令显示各状态的数据和所述标准数据。
其中,所述根据接收到的查看指令显示各状态的数据和所述标准数据的步骤包括:
显示各状态数据和所述标准数据的直方图。
此外,为实现上述目的,本发明还提供一种可穿戴设备的显示装置,所述显示装置包括:
采集模块,用于采集用户的生理特征数据;
确定模块,用于根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;
显示模块,用于根据接收到的查看指令显示各状态的数据。
其中,所述生理特征数据包括用户的脉搏数据。
其中,所述显示装置还包括:
获取模块,用于获得所述穿戴设备的加速度数据;
所述确定模块还用于根据所述生理特征数据和所述加速度数据确定用户处于睡眠、清醒、活动还是剧烈运动状态。
其中,所述显示模块包括:
获得单元,用于根据各状态的数据在预设数据中进行查找,获得对应的标准数据;
显示单元,用于根据接收到的查看指令显示各状态的数据和所述标准数据。
其中,所述显示单元还用于显示各状态数据和所述标准数据的直方图。
本发明通过采集用户的生理特征数据;根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;根据接收到的查看指令显示各状态的数据。通过上述方式,本发明根据采集到的用户生理特征数据确定用户是处于睡眠、清醒、活动还是剧烈运动状态,然后根据用户查看指令,显示各状态的数据。由于实际使用时,用户的合理作息与用户处于各状态的时间有关,比如某用户剧烈运动比较多时,休息时间一般也需要对应增加,从而方便用户可以根据显示的各状态的数据合理安排自己的作息时间。
附图说明
图1为本发明穿戴设备的显示方法第一实施例的流程示意图;
图2为本发明穿戴设备的显示方法第二实施例的流程示意图;
图3为本发明实施例中根据接收到的查看指令显示各状态的数据的细化流程示意图;
图4为本发明可穿戴设备的显示装置第一实施例的功能模块示意图;
图5为本发明可穿戴设备的显示装置第二实施例的功能模块示意图;
图6为本发明实施例中显示模块的细化功能模块示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明提供一种穿戴设备的显示方法。
参照图1,图1为本发明穿戴设备的显示方法第一实施例的流程示意图;
在本实施例中,该穿戴设备的显示方法包括:
步骤S10,采集用户的生理特征数据;
本发明中穿戴设备可以为智能手表、智能手环等与用户关系密切的电子设备,穿戴设备上设置有采集用户生理特征数据的传感器,比如脉搏传感器、体温传感器、湿度传感器等。通过设置在所述穿戴设备上的各个传感器对用户进行实时采集,获得用户的生理特征数据,其中本实施例中生理特征数据包括用户的脉搏数据,具体实施中生理特征数据还可以包括体温数据等。
步骤S20,根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;
由于用户处于不同的状态时,其呼吸频率、体温和心跳频率等会产生变化,并且各状态与呼吸频率、体温和心跳频率等存在对应的关系。因此可以根据获得用户的生理特征数据进行分析,从而确定用户所处的状态。本发明中将用户的状态分为睡眠、清醒、活动和剧烈运动状态四种,具体实施中也根据需要分为其他的状态,比如危险状态。
本实施例中根据步骤S10获得的用户的脉搏数据进行分析,获得用户的心跳频率,一般用户处于睡眠、清醒、活动或剧烈运动状态对应用户心跳呈递增变化,即睡眠状态下的心跳小于清醒状态下的心跳,清醒状态下的心跳小于活动状态下的心跳,活动状态下的心跳小于剧烈运动状态下的心跳。具体地,可以设置第一心跳阈值、第二心跳阈值、第三心跳阈值和第四心跳阈值。在心跳频率小于第一心跳阈值时,确定用户处于睡眠状态;在心跳频率处于第一心跳阈值和第二心跳阈值之间时,确定用户处于清醒状态;在心跳频率处于第二心跳阈值和第三心跳阈值之间时,确定用户处于活动状态;在心跳频率处于第三心跳阈值和第四心跳阈值之间时,确定用户处于剧烈运动状态。当然还可以设置第五心跳阈值,其中第五心跳阈值小于第一心跳阈值,在判断到心跳频率小于第五心跳阈值或大于第四心跳阈值时,说明用户心跳过慢或过快,此时可以确定用户处于危险状态。
步骤S30,根据接收到的查看指令显示各状态的数据。
在用户想要查看各状态的数据时,可以通过控制菜单,产生对应的查看指令,穿戴设备接收到该控制指令后,根据所述控制指令显示各状态的数据。
具体地,本实施例中用户可以选择查看当天、当月或者最近7天等时间段的数据。用户则可以根据显示的各状态的数据了解自己当天或者近期的作息规律。从而可以根据实际情况进行合理安排作息时间。
本发明通过采集用户的生理特征数据;根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;根据接收到的查看指令显示各状态的数据。通过上述方式,本发明根据采集到的用户生理特征数据确定用户是处于睡眠、清醒、活动还是剧烈运动状态,然后根据用户查看指令,显示各状态的数据。由于实际使用时,用户的合理作息与用户处于各状态的时间有关,比如某用户剧烈运动比较多时,休息时间一般也需要对应增加,从而方便用户可以根据显示的各状态的数据合理安排自己的作息时间。
参照图2,图2为本发明穿戴设备的显示方法第二实施例的流程示意图;
基于本发明穿戴设备的显示方法第一实施例,该穿戴设备的显示方法还可以包括:
步骤S40,获得所述穿戴设备的加速度数据;
为提高各状态的判断准确率,本实施例中穿戴设备还设置有加速度传感器,提高该加速度传感器获取穿戴设备的加速度数据,由于穿戴设备与用户关系比较紧密,用户的运动会带动穿戴设备的运动,因此获取穿戴设备的加速度数据也就获取到用户的加速度数据。
用户处于不同的状态时,用户带动穿戴设备进行运动的情况也有区别,因此加速度数据可以对用户所处的各个状态进行验证。
步骤S50,根据所述生理特征数据和所述加速度数据确定用户处于睡眠、清醒、活动还是剧烈运动状态。
本实施例根据步骤S10获得生理特征数据和步骤S40获得的加速度数据确定用户处于睡眠、清醒、活动还是剧烈运动状态。具体地,本实施例中先通过生理特征数据确定用户处于各状态的数据,然后根据加速度数据对确定的数据进行验证,从而提高判断的准确率。或者说可以通过生理特征数据对用户的各状态进行预划分,然后采用加速度数据进行确定用户的各状态。
参照图3,图3为本发明实施例中根据接收到的查看指令显示各状态的数据的细化流程示意图。
基于本发明穿戴设备的显示方法第一实施例,步骤S30可以包括:
步骤S31,根据各状态的数据在预设数据中进行查找,获得对应的标准数据;
步骤S32,根据接收到的查看指令显示各状态的数据和所述标准数据。
具体的,本实施例中为方便用户根据显示的各状态进行合理安排作息时间,本实施例中在穿戴设备中预存有多个标准数据,由于不同人的生活习惯、体质不同,每个人处于不同的状态的情况会有所区别,因此对于不同的用户的标准应当有所区别。
因此本实施例中在确定用户的各个状态数据后,在预设数据中进行查找,查找出预设数据中与用户的各个状态数据比例最接近的数据,作为该用户的标准数据。然后根据接收到用户输入的查看指令,显示各状态的数据和所述标准数据。从而用户可以根据自己的各状态数据和标准数据进行对比,合理安排作息时间。
进一步地,为了方便用户查看,本实施例中显示各状态数据和所述标准数据的直方图。
本实施例中采用直方图比较直观地看出各状态的分布状态,对于各状态的分布状况一目了然,因此便于用户查看其各状态的分布情况。
本发明还提供一种可穿戴设备的显示装置。
参照图4,图4为本发明可穿戴设备的显示装置第一实施例的功能模块示意图。
在本实施例中,该可穿戴设备的显示装置包括:
采集模块10,用于采集用户的生理特征数据;
本发明中穿戴设备可以为智能手表、智能手环等与用户关系密切的电子设备,穿戴设备上设置有采集用户生理特征数据的传感器,比如脉搏传感器、体温传感器、湿度传感器等。通过设置在所述穿戴设备上的各个传感器对用户进行实时采集,获得用户的生理特征数据,其中本实施例中生理特征数据包括用户的脉搏数据,具体实施中生理特征数据还可以包括体温数据等。
确定模块20,用于根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;
由于用户处于不同的状态时,其呼吸频率、体温和心跳频率等会产生变化,并且各状态与呼吸频率、体温和心跳频率等存在对应的关系。因此可以根据获得用户的生理特征数据进行分析,从而确定用户所处的状态。本发明中将用户的状态分为睡眠、清醒、活动和剧烈运动状态四种,具体实施中也根据需要分为其他的状态,比如危险状态。
本实施例中根据采集模块10获得的用户的脉搏数据进行分析,获得用户的心跳频率,一般用户处于睡眠、清醒、活动或剧烈运动状态对应用户心跳呈递增变化,即睡眠状态下的心跳小于清醒状态下的心跳,清醒状态下的心跳小于活动状态下的心跳,活动状态下的心跳小于剧烈运动状态下的心跳。具体地,可以设置第一心跳阈值、第二心跳阈值、第三心跳阈值和第四心跳阈值。在心跳频率小于第一心跳阈值时,确定用户处于睡眠状态;在心跳频率处于第一心跳阈值和第二心跳阈值之间时,确定用户处于清醒状态;在心跳频率处于第二心跳阈值和第三心跳阈值之间时,确定用户处于活动状态;在心跳频率处于第三心跳阈值和第四心跳阈值之间时,确定用户处于剧烈运动状态。当然还可以设置第五心跳阈值,其中第五心跳阈值小于第一心跳阈值,在判断到心跳频率小于第五心跳阈值或大于第四心跳阈值时,说明用户心跳过慢或过快,此时可以确定用户处于危险状态。
显示模块30,用于根据接收到的查看指令显示各状态的数据。
在用户想要查看各状态的数据时,可以通过控制菜单,产生对应的查看指令,穿戴设备接收到该控制指令后,根据所述控制指令显示各状态的数据。
具体地,本实施例中用户可以选择查看当天、当月或者最近7天等时间段的数据。用户则可以根据显示的各状态的数据了解自己当天或者近期的作息规律。从而可以根据实际情况进行合理安排作息时间。
本发明通过采集用户的生理特征数据;根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;根据接收到的查看指令显示各状态的数据。通过上述方式,本发明根据采集到的用户生理特征数据确定用户是处于睡眠、清醒、活动还是剧烈运动状态,然后根据用户查看指令,显示各状态的数据。由于实际使用时,用户的合理作息与用户处于各状态的时间有关,比如某用户剧烈运动比较多时,休息时间一般也需要对应增加,从而方便用户可以根据显示的各状态的数据合理安排自己的作息时间。
参照图5,图5为本发明可穿戴设备的显示装置第二实施例的功能模块示意图。
基于本发明可穿戴设备的显示装置第一实施例,该可穿戴设备的显示装置还包括:
获取模块40,用于获得所述穿戴设备的加速度数据;
为提高各状态的判断准确率,本实施例中穿戴设备还设置有加速度传感器,提高该加速度传感器获取穿戴设备的加速度数据,由于穿戴设备与用户关系比较紧密,用户的运动会带动穿戴设备的运动,因此获取穿戴设备的加速度数据也就获取到用户的加速度数据。
用户处于不同的状态时,用户带动穿戴设备进行运动的情况也有区别,因此加速度数据可以对用户所处的各个状态进行验证。
所述确定模块20还用于根据所述生理特征数据和所述加速度数据确定用户处于睡眠、清醒、活动还是剧烈运动状态。
本实施例根据采集模块10获得生理特征数据和获取模块40获得的加速度数据确定用户处于睡眠、清醒、活动还是剧烈运动状态。具体地,本实施例中先通过生理特征数据确定用户处于各状态的数据,然后根据加速度数据对确定的数据进行验证,从而提高判断的准确率。或者说可以通过生理特征数据对用户的各状态进行预划分,然后采用加速度数据进行确定用户的各状态。
参照图6,图6为本发明实施例中显示模块的细化功能模块示意图。
基于本发明可穿戴设备的显示装置第二实施例,显示模块30可以包括:
获得单元31,用于根据各状态的数据在预设数据中进行查找,获得对应的标准数据;
显示单元32,用于根据接收到的查看指令显示各状态的数据和所述标准数据。
具体的,本实施例中为方便用户根据显示的各状态进行合理安排作息时间,本实施例中在穿戴设备中预存有多个标准数据,由于不同人的生活习惯、体质不同,每个人处于不同的状态的情况会有所区别,因此对于不同的用户的标准应当有所区别。
因此本实施例中在确定用户的各个状态数据后,在预设数据中进行查找,查找出预设数据中与用户的各个状态数据比例最接近的数据,作为该用户的标准数据。然后根据接收到用户输入的查看指令,显示各状态的数据和所述标准数据。从而用户可以根据自己的各状态数据和标准数据进行对比,合理安排作息时间。
进一步地,显示单元32还用于显示各状态数据和所述标准数据的直方图。
进一步地,为了方便用户查看,本实施例中显示各状态数据和所述标准数据的直方图。
本实施例中采用直方图比较直观地看出各状态的分布状态,对于各状态的分布状况一目了然,因此便于用户查看其各状态的分布情况。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (13)
- 一种穿戴设备的显示方法,其特征在于,所述显示方法包括如下步骤:采集用户的生理特征数据, 所述生理特征数据包括用户的脉搏数据;根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;根据各状态的数据在预设数据中进行查找,获得对应的标准数据;根据接收到的查看指令显示各状态的数据和所述标准数据。
- 如权利要求1所述的显示方法,其特征在于,所述根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态的步骤之前还包括:获得所述穿戴设备的加速度数据;所述根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态的步骤包括:根据所述生理特征数据和所述加速度数据确定用户处于睡眠、清醒、活动还是剧烈运动状态。
- 如权利要求1所述的显示方法,其特征在于,所述根据接收到的查看指令显示各状态的数据和所述标准数据的步骤包括:显示各状态数据和所述标准数据的直方图。
- 一种穿戴设备的显示方法,其特征在于,所述显示方法包括如下步骤:采集用户的生理特征数据;根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;根据接收到的查看指令显示各状态的数据。
- 如权利要求1所述的显示方法,其特征在于,所述生理特征数据包括用户的脉搏数据。
- 如权利要求1所述的显示方法,其特征在于,所述根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态的步骤之前还包括:获得所述穿戴设备的加速度数据;所述根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态的步骤包括:根据所述生理特征数据和所述加速度数据确定用户处于睡眠、清醒、活动还是剧烈运动状态。
- 如权利要求1所述的显示方法,其特征在于,所述根据接收到的查看指令显示各状态的数据的步骤包括:根据各状态的数据在预设数据中进行查找,获得对应的标准数据;根据接收到的查看指令显示各状态的数据和所述标准数据。
- 如权利要求7所述的显示方法,其特征在于,所述根据接收到的查看指令显示各状态的数据和所述标准数据的步骤包括:显示各状态数据和所述标准数据的直方图。
- 一种可穿戴设备的显示装置,其特征在于,所述显示装置包括:采集模块,用于采集用户的生理特征数据;确定模块,用于根据所述生理特征数据确定用户处于睡眠、清醒、活动还是剧烈运动状态;显示模块,用于根据接收到的查看指令显示各状态的数据。
- 如权利要求9所述的显示装置,其特征在于,所述生理特征数据包括用户的脉搏数据。
- 如权利要求9所述的显示装置,其特征在于,所述显示装置还包括:获取模块,用于获得所述穿戴设备的加速度数据;所述确定模块还用于根据所述生理特征数据和所述加速度数据确定用户处于睡眠、清醒、活动还是剧烈运动状态。
- 如权利要求9所述的显示装置,其特征在于,所述显示模块包括:获得单元,用于根据各状态的数据在预设数据中进行查找,获得对应的标准数据;显示单元,用于根据接收到的查看指令显示各状态的数据和所述标准数据。
- 如权利要求12所述的显示装置,其特征在于,所述显示单元还用于显示各状态数据和所述标准数据的直方图。
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