WO2017049474A1 - 一种拍摄方法以及智能手环 - Google Patents

一种拍摄方法以及智能手环 Download PDF

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Publication number
WO2017049474A1
WO2017049474A1 PCT/CN2015/090397 CN2015090397W WO2017049474A1 WO 2017049474 A1 WO2017049474 A1 WO 2017049474A1 CN 2015090397 W CN2015090397 W CN 2015090397W WO 2017049474 A1 WO2017049474 A1 WO 2017049474A1
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WO
WIPO (PCT)
Prior art keywords
shooting
abnormal event
parameter
smart bracelet
environment
Prior art date
Application number
PCT/CN2015/090397
Other languages
English (en)
French (fr)
Inventor
刘均
陈松林
Original Assignee
深圳还是威健康料技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳还是威健康料技有限公司 filed Critical 深圳还是威健康料技有限公司
Priority to PCT/CN2015/090397 priority Critical patent/WO2017049474A1/zh
Priority to CN201580002084.5A priority patent/CN105764372B/zh
Publication of WO2017049474A1 publication Critical patent/WO2017049474A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C5/00Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps
    • A44C5/0007Bracelets specially adapted for other functions or with means for attaching other articles
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules

Definitions

  • the present invention relates to the field of electronic technologies, and in particular, to a photographing method and a smart bracelet.
  • Embodiments of the present invention provide a photographing method and a smart bracelet, which can automatically perform photographing and enhance user experience.
  • a first aspect of the present invention provides a photographing method, which is applied to a smart bracelet, and includes:
  • the detecting the environment in which the smart bracelet is located has an abnormal event, including: detecting, by using a sensor, an environmental parameter of the smart bracelet, wherein the environmental parameter includes a parameter type and a parameter
  • the parameter type includes: acceleration information of the smart bracelet in at least one direction and sound information of an environment in which the smart bracelet is located; and when the parameter value exceeds a preset threshold, determining that the abnormality exists event.
  • the acquiring the attribute information of the abnormal event includes: acquiring an environment parameter corresponding to the abnormal event, and determining attribute information of the abnormal event according to a parameter value of the environmental parameter, where The attribute information includes an abnormality degree of the abnormal event, and the abnormal degree of the abnormal event is determined according to the degree that the parameter value exceeds a preset threshold.
  • the generating the shooting parameter according to the attribute information of the abnormal event comprises: determining a shooting frequency and a shooting length according to an abnormality degree of the abnormal event, wherein the shooting frequency and shooting The length of the ⁇ is proportional to the degree of abnormality; the shooting parameters are generated according to the shooting frequency and the length of the shooting.
  • the controlling the camera of the smart bracelet according to the shooting parameter to perform shooting comprises: controlling a camera of the smart bracelet according to a preset shooting focal length and an angle at the shooting frequency Take a picture within the length of the shot.
  • a second aspect of the present invention provides a smart bracelet, including:
  • a detecting module configured to detect whether an abnormal event exists in an environment in which the smart bracelet is located
  • an obtaining module configured to: obtain the attribute information of the abnormal event when the abnormal event exists;
  • a generating module configured to generate a shooting parameter according to the attribute information of the abnormal event;
  • the control module is configured to control the camera of the smart bracelet to perform shooting according to the shooting parameter.
  • the detecting module includes: a detecting unit, configured to detect an environmental parameter of the smart bracelet by using a sensor, where the environmental parameter includes a parameter type and a parameter value, and the parameter type includes And the determining unit is configured to determine that the abnormal event exists when the parameter value exceeds a preset threshold.
  • the acquiring module includes: an acquiring unit, configured to acquire an environment parameter corresponding to the abnormal event, and determine attribute information of the abnormal event according to a parameter value of the environment parameter, where the attribute information The degree of abnormality of the abnormal event is included, and the abnormal degree of the abnormal event is determined according to the degree that the parameter value exceeds a preset threshold.
  • the generating module includes: a first generating unit, configured to determine a shooting frequency and a shooting length according to an abnormality degree of the abnormal event, wherein the shooting frequency and the shooting length are proportional to an abnormality degree a second generating unit, configured to generate a shooting parameter according to the shooting frequency and the shooting length.
  • control module comprises: a control unit, configured to control, according to the preset shooting focal length and angle, the camera of the smart bracelet to perform shooting within the shooting length.
  • a third aspect of the present invention provides a smart wristband, comprising: an input device, an output device, a memory, and a processor, wherein the memory stores a set of program codes, and the processor is configured to call the memory for storage.
  • the processor detects whether an environment in which the smart bracelet is located has an abnormal event, including:
  • detecting an environmental parameter of the smart bracelet by using a sensor where the environmental parameter includes a parameter type and a parameter value, where the parameter type includes: acceleration information of the smart bracelet in at least one direction and a The sound information of the environment in which the smart bracelet is located;
  • the acquiring, by the processor, attribute information of the abnormal event includes:
  • the generating, by the processor, the shooting parameter according to the attribute information of the abnormal event comprising: determining a shooting frequency and a shooting length according to an abnormality degree of the abnormal event, wherein the shooting frequency and The length of the shooting is proportional to the degree of abnormality;
  • the shooting parameters are generated according to the shooting frequency and the shooting length.
  • the processor controls the camera of the smart bracelet to perform shooting according to the shooting parameter, and includes:
  • the camera of the smart bracelet is controlled to shoot within the shooting length according to the preset shooting focal length and angle at the shooting frequency.
  • the present invention detects the presence or absence of an abnormal event in the environment in which the smart wristband is located, and captures the camera information when the camera is self-controlled, and can capture the image information of the abnormal event, which is convenient for the user to follow and expand.
  • the application range of the smart bracelet enhances the user experience.
  • FIG. 1 is a flowchart of a first embodiment of a photographing method according to an embodiment of the present invention.
  • FIG. 2 is a flowchart of a second embodiment of a photographing method according to an embodiment of the present invention.
  • FIG. 3 is a flowchart of a third embodiment of a photographing method according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a first embodiment of a smart wristband according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a second embodiment of a smart wristband according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a third embodiment of a smart wristband according to an embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of another embodiment of a smart wristband according to an embodiment of the present invention.
  • FIG. 1 is a flowchart of a first embodiment of a photographing method according to an embodiment of the present invention.
  • the shooting method is applied to a smart wristband, and the smart wristband is provided with a sensor, which can be used to sense related information of the environment, such as the sound volume, temperature, and humidity of the environment. Etc.; can also sense the wearer's motion information, such as acceleration information.
  • the shooting method detects the presence or absence of an abnormal event by detecting the environment in which the smart wristband is located, and controls the camera of the smart wristband to shoot when there is an abnormal event, the smart bracelet is taking a photo or recording a video, first Photos or videos are stored in a smart bracelet. When a smart bracelet is connected to a smartphone or other device, photos or videos can be synced to other devices for viewing, so users can see unusual events through photos or videos. More information.
  • the photographing method includes the following steps S101-S104.
  • step S101 it is detected whether an environment in which the smart bracelet is located has an abnormal event.
  • the sensor first detects whether there is an abnormal event in the environment where the smart bracelet is located.
  • the abnormal event may include multiple types, such as whether the user falls or falls, and detects Whether there is a sudden change in the acceleration information to determine whether it falls or falls; it is also possible whether there is an emergency around the user, by detecting the volume of the surrounding sound to determine whether an unexpected event occurs; or other types of abnormal events, such as temperature
  • the embodiment of the present invention is not limited thereto.
  • step S102 if the abnormal event exists, the attribute information of the abnormal event is acquired. [0057] Specifically, after determining that an abnormal event exists, the attribute information of the abnormal event is further acquired, wherein the attribute information may include an abnormality degree of the abnormal event.
  • step S103 a shooting parameter is generated according to the attribute information of the abnormal event.
  • the shooting parameter is generated according to the attribute information, wherein the shooting parameter refers to various indicators specifically used in the shooting, including the shooting frequency and the shooting length.
  • the corresponding parameter is generated according to the abnormality degree of the abnormal event. Shooting parameters. For example, if the abnormal event is serious, you can take a long time at a higher frequency to better understand the information about the abnormal event.
  • step S104 the camera of the smart bracelet is controlled to perform shooting according to the shooting parameters.
  • the camera is controlled to perform shooting according to the shooting parameters.
  • the image data is first stored inside the smart bracelet and associated with the daytime information.
  • the smart bracelet establishes a connection with the smart phone or other device, it can be synchronized to other devices for the user. View, the user can view the image to analyze the abnormal environment and the specific environment the user is in.
  • the photographing method in the embodiment of the present invention can detect the presence or absence of an abnormal event in the environment in which the smart wristband is located, and control the camera to capture when there is an abnormal event, and can capture an abnormal event.
  • the image information is convenient for users to view later, which expands the application range of the smart bracelet and improves the user experience.
  • FIG. 2 is a flowchart of a second embodiment of a photographing method according to an embodiment of the present invention.
  • the photographing method includes the steps S201-S205, wherein the steps S203-S205 in the embodiment are the same as the steps S102-S104 in the first embodiment shown in FIG. 1, and are not described herein.
  • step S201 the environment parameter of the smart bracelet is detected by a sensor, where the environment parameter includes a parameter type and a parameter value.
  • the environment parameter is detected by the sensor, where the environment parameter includes the parameter type and the parameter value.
  • the parameter type includes: acceleration information of the smart bracelet in at least one direction and sound information of an environment in which the smart bracelet is located, and the parameter value is a value of the acceleration information or a volume value of the sound information. It is to be understood that the parameter type may also include other types, such as temperature or humidity, and the embodiment is not limited thereto.
  • step S202 when the parameter value exceeds a preset threshold, it is determined that the abnormal event exists.
  • the parameter value of the environmental parameter exceeds a preset threshold, it is determined that an abnormal event exists.
  • the acceleration information of the smart bracelet in at least one direction exceeds the preset threshold ⁇
  • the wearer of the smart bracelet has an event such as falling or falling, and thus the confirmation is that there is an abnormal event.
  • the volume value of the sound information of the environment in which the smart bracelet is located exceeds a preset threshold, it can be considered that there is an unexpected event in the environment, and this is also confirmed to be an abnormal event.
  • step S203 if the abnormal event exists, the attribute information of the abnormal event is acquired.
  • step S204 a shooting parameter is generated according to the attribute information of the abnormal event.
  • step S205 the camera of the smart bracelet is controlled to perform shooting according to the shooting parameters.
  • the photographing method in the embodiment of the present invention determines whether an abnormal event exists by detecting whether the smart bracelet wearer falls or an unexpected event around the wearer, and controls the abnormal event.
  • the camera captures and captures the image information of the abnormal event, which facilitates the user to view it later, expands the application range of the smart bracelet, and improves the user experience.
  • FIG. 3 is a flowchart of a third embodiment of a photographing method according to an embodiment of the present invention.
  • the photographing method includes the steps S301-S306, wherein the steps S301-S302 in the embodiment are the same as the steps S201-S202 in the first embodiment shown in FIG. 2, and details are not described herein.
  • step S301 the environment parameter of the smart bracelet is detected by a sensor, where the environment parameter includes a parameter type and a parameter value.
  • step S302 when the parameter value exceeds a preset threshold, it is determined that the abnormal event exists.
  • step S303 an environment parameter corresponding to the abnormal event is obtained, and attribute information of the abnormal event is determined according to a parameter value of the environmental parameter.
  • the environment parameter corresponding to the abnormal event is obtained, and the attribute information of the abnormal event is determined according to the parameter value of the environment parameter.
  • the attribute information includes the degree of abnormality of the abnormal event.
  • the degree of abnormality of the abnormal event is determined according to the degree that the parameter value exceeds a preset threshold.
  • step S304 the shooting frequency and the shooting length are determined according to the abnormality degree of the abnormal event.
  • the shooting frequency and the shooting length are determined according to the abnormality degree.
  • the shooting frequency and the shooting length are proportional to the degree of abnormality.
  • the shooting frequency refers to the number of times taken in the next unit of shooting, and the length of the shooting is the continuous day of the subsequent shooting. . It can be understood that if the abnormality of the abnormal event is serious, the corresponding shooting frequency and the shooting length will increase, so that the abnormal event can be understood more clearly later. In particular, when the shooting frequency is large enough, the image is recorded by video recording.
  • step S305 a shooting parameter is generated according to the shooting frequency and the shooting length.
  • the shooting parameters are generated according to the shooting frequency and the shooting length. It can be understood that the shooting parameters may also include other parameters such as aperture, focal length, angle, etc., which may be preset by the user.
  • step S306 the camera of the smart bracelet is controlled to shoot within the shooting length according to the preset shooting focal length and angle.
  • controlling the camera to perform shooting according to the shooting parameter comprises: controlling the camera of the smart bracelet to shoot within the shooting length according to the preset shooting focal length and angle, wherein the user can pre-shoot Set the shooting focal length and angle. For example, to maximize the user's current environmental information, you can set the angle to a wide angle.
  • the photographing method in the embodiment of the present invention determines whether an abnormal event exists by detecting whether the smart bracelet wearer falls or an unexpected event around the wearer, and can be abnormal according to the abnormal event.
  • the degree generates different control parameters, and the camera is controlled according to the control parameters for different shooting, so that the image information of the abnormal event can be captured, which is convenient for the user to view later, expands the application range of the smart bracelet, and improves the user experience.
  • the smart bracelet is provided with a sensor, which can be used to sense related information of the environment, such as sound volume, temperature, humidity, etc. of the environment; and can also sense the wearer's Motion information, such as acceleration information.
  • the smart bracelet detects whether there is an abnormal event by detecting the environment in which the smart wristband is located, and controls the camera of the smart wristband to shoot when there is an abnormal event, the smart bracelet is taking a photo or recording a video, first Store photos or videos in a smart bracelet.
  • the smart bracelet When a smart bracelet is connected to a smartphone or other device, photos or videos can be synced to other devices for viewing, so users can understand the anomaly through photos or videos. More information about the event.
  • the smart bracelet includes: a detection module 401, an acquisition module 402, a generation module 403, and a control module 404.
  • the detecting module 401 is configured to detect whether an environment in which the smart bracelet is located has an abnormal event. [0086] Specifically, the detecting module 401 first detects whether there is an abnormal event in the environment where the smart bracelet is located by using the sensor.
  • the abnormal event may include multiple types, such as whether the user falls or falls. Whether it is a fall or a fall by detecting whether the acceleration information has a sudden change; or whether there is an unexpected event around the user, by detecting the volume of the surrounding sound to determine whether an unexpected event occurs; or other abnormal events
  • the embodiments of the present invention are not limited thereto.
  • the obtaining module 402 is configured to acquire attribute information of the abnormal event after the abnormal event exists.
  • the obtaining module 402 further acquires attribute information of the abnormal event, wherein the attribute information may include an abnormality degree of the abnormal event.
  • the generating module 403 is configured to generate a shooting parameter according to the attribute information of the abnormal event.
  • the generating module 403 generates a shooting parameter according to the attribute information, where the shooting parameter refers to various indicators specifically used in the shooting, including the shooting frequency and the shooting length.
  • the abnormality according to the abnormal event The degree produces the corresponding shooting parameters. For example, if the abnormal event is serious, a longer time can be taken at a higher frequency to better understand the information about the abnormal event.
  • the control module 404 is configured to control the camera of the smart bracelet to perform shooting according to the shooting parameter.
  • the control module 404 controls the camera to perform shooting according to the shooting parameter.
  • the image data is first stored inside the smart bracelet and associated with the daytime information.
  • the smart bracelet establishes a connection with the smart phone or other device, it can be synchronized to other devices for the user. View, the user can view the image to analyze the specific environment in which the user is located.
  • the smart wristband in the embodiment of the present invention can detect an abnormal event in the environment where the smart wristband is located, and control the camera to shoot in the presence of an abnormal event, and can capture an abnormal event.
  • the image information is convenient for users to view later, which expands the application range of the smart bracelet and improves the user experience.
  • FIG. 5 is a schematic structural diagram of a second embodiment of a smart wristband according to an embodiment of the present invention.
  • the detecting module 401 further includes: a detecting unit 4011 and a determining unit 4012. The specific functions of each unit are described in detail below.
  • the detecting unit 4011 is configured to detect an environmental parameter of the smart bracelet by using a sensor, where the environment Parameters include parameter types and parameter values.
  • the detecting unit 4011 detects an environmental parameter by using a sensor, where the environmental parameter includes a parameter type and a parameter value.
  • the parameter type includes: acceleration information of the smart bracelet in at least one direction and sound information of an environment in which the smart bracelet is located, and the parameter value is a value of the acceleration information or a volume value of the sound information. It is to be understood that the parameter type may also include other types, such as temperature or humidity, and the embodiment is not limited thereto.
  • the determining unit 4012 is configured to determine that the abnormal event exists when the parameter value exceeds a preset threshold.
  • the determining unit 4012 determines that an abnormal event exists.
  • the acceleration information of the smart bracelet in at least one direction exceeds the preset threshold ⁇
  • the volume value of the sound information of the environment in which the smart bracelet is located exceeds a preset threshold, it can be considered that there is an unexpected event in the environment, and this is also confirmed to be an abnormal event.
  • the smart wristband in the embodiment of the present invention determines whether there is an abnormal event by detecting whether the smart bracelet wearer falls or an unexpected event around the wearer, and there is an abnormal event. Controlling the camera for shooting, and capturing the image information of the abnormal event, facilitating subsequent viewing by the user, expanding the application range of the smart bracelet and improving the user experience.
  • FIG. 6 is a schematic structural diagram of a third embodiment of a smart wristband according to an embodiment of the present invention.
  • the obtaining module 402 further includes: an obtaining unit 4021, the generating module 403 further comprising: a first generating module 4031 and a second generating module 4032, the control module 404 further comprising : Control unit 4041.
  • the specific functions of each unit are described in detail below.
  • the obtaining unit 4021 is configured to acquire an environment parameter corresponding to the abnormal event, and determine attribute information of the abnormal event according to a parameter value of the environment parameter.
  • the obtaining unit 4021 acquires an environment parameter corresponding to the abnormal event, and determines attribute information of the abnormal event according to the parameter value of the environment parameter.
  • the attribute information includes the degree of abnormality of the abnormal event.
  • the abnormal degree of the abnormal event is determined according to the degree that the parameter value exceeds a preset threshold.
  • the first generation unit 4031 is configured to determine a shooting frequency and a shooting length according to the abnormality degree of the abnormal event. [0104] Specifically, after determining the abnormality degree of the abnormal event, the first generation unit 4031 determines the shooting frequency and the shooting length according to the abnormality degree. Wherein, the shooting frequency and the shooting length are proportional to the degree of abnormality.
  • the shooting frequency refers to the number of times taken in the next unit of shooting, and the length of the shooting is the continuous time of the subsequent shooting. It can be understood that if the abnormality of the abnormal event is serious, the corresponding shooting frequency and the shooting length will increase, so that the abnormal event can be understood more clearly later. In particular, when the shooting frequency is large enough, the image is recorded by video recording.
  • the second generating unit 4032 is configured to generate a shooting parameter according to the shooting frequency and the shooting length.
  • the second generating unit 4032 After the shooting frequency and the shooting length are generated, the second generating unit 4032 generates the shooting parameters according to the shooting frequency and the shooting length. It can be understood that the shooting parameters may also include other parameters such as aperture, focal length, angle, etc., which may be preset by the user.
  • the control unit 4041 is configured to control the camera of the smart bracelet to perform shooting within the shooting length according to the preset shooting focal length and angle at the shooting frequency.
  • control unit 4041 controls the camera to perform shooting according to the shooting parameter, and the camera of the smart bracelet is controlled to be photographed within the shooting length according to the preset shooting focal length and angle.
  • the user can preset the shooting focal length and angle. For example, in order to maximize the user's current environmental information, the angle can be set to a wide angle.
  • the smart wristband in the embodiment of the present invention determines whether an abnormal event exists by detecting whether the smart bracelet wearer falls or an unexpected event around the wearer, and can be based on an abnormal event.
  • the abnormality generates different control parameters, and the camera is controlled according to the control parameters to capture different images, so that the image information of the abnormal event can be captured, which is convenient for the user to view later, expands the application range of the smart bracelet, and improves the user experience. .
  • FIG. 7 is a schematic structural diagram of another embodiment of a smart wristband according to an embodiment of the present invention.
  • the smart bracelet described in this embodiment may include:
  • the processor 701 (the number of the processors 701 in the terminal may be one or more, FIG. 7 is exemplified by a processor), the memory 702, the input device 703, and the output device 704. In an embodiment of the invention, the processor
  • the memory 702, the input device 703, and the output device 704 can be connected by a bus or other means, wherein the bus connection is taken as an example in FIG.
  • the processor 701 performs the following steps: [0113] detecting whether an environment in which the smart bracelet is located has an abnormal event;
  • the camera of the smart bracelet is controlled to perform shooting according to the shooting parameters.
  • the processor 701 detects whether an environment in which the smart bracelet is located has an abnormal event, including
  • the environment parameter of the smart bracelet is detected by a sensor, where the environment parameter includes a parameter type and a parameter value, and the parameter type includes: acceleration information of the smart bracelet in at least one direction and a The sound information of the environment in which the smart bracelet is located;
  • the acquiring, by the processor 701, the attribute information of the abnormal event includes:
  • the generating, by the processor 701, the shooting parameters according to the attribute information of the abnormal event including: [0123] determining a shooting frequency and a shooting length according to an abnormality degree of the abnormal event, wherein the shooting frequency and The length of the shooting is proportional to the degree of abnormality;
  • the shooting parameters are generated according to the shooting frequency and the shooting length.
  • the processor 701 controls the camera of the smart bracelet to perform shooting according to the shooting parameter, and includes:
  • the camera of the smart bracelet is controlled to shoot within the shooting length according to the preset shooting focal length and angle at the shooting frequency.
  • the smart wristband in the embodiment of the present invention can detect an abnormal event in the environment where the smart wristband is located, and control the camera to shoot in the presence of an abnormal event, and can capture an abnormal event.
  • the image information is convenient for users to view later, which expands the application range of the smart bracelet and improves the user experience.
  • Computer readable media includes both computer storage media and communication media including any medium that facilitates transfer of a computer program from one location to another.
  • the storage medium can be any available medium that the computer can access. Taking this as an example, but not limited to: Computer readable medium may include random access memory (Random Access)
  • RAM Random Access Memory
  • ROM Read-Only Memory
  • EEPROM Electrically Erasable Programmable Read-Only Memory
  • CD-ROM Compact Disc Read-Only Memory
  • Any connection may suitably be a computer readable medium.
  • a disk and a disc include a compact disc (CD), a laser disc, a compact disc, a digital versatile disc (DVD), a floppy disc, and a Blu-ray disc, wherein the disc is usually magnetically copied, and the disc is The laser is used to optically replicate the data.
  • CD compact disc
  • DVD digital versatile disc
  • floppy disc a compact disc
  • Blu-ray disc wherein the disc is usually magnetically copied, and the disc is The laser is used to optically replicate the data.

Abstract

一种拍摄方法以及智能手环,所述拍摄方法包括侦测所述智能手环所处的环境是否存在异常事件(S101);若存在所述异常事件,则获取所述异常事件的属性信息(S102);根据所述异常事件的属性信息生成拍摄参数(S103);按照所述拍摄参数控制所述智能手环的摄像头进行拍摄(S104)。通过侦测智能手环所处的环境是否存在异常事件,并在存在异常事件时控制摄像头进行拍摄,能够及时捕捉异常事件发生时的影像信息,便于用户后续查看,拓展了智能手环的应用范围,提升了用户体验。

Description

一种拍摄方法以及智能手环
[0001] 技术领域
[0002] 本发明涉及电子技术领域, 尤其涉及一种拍摄方法以及智能手环。
[0003] 背景技术
[0004] 现阶段, 智能手环等可穿戴式装置的使用已经日益普及, 智能手环上通过设置 摄像头, 可以用来拍摄。 然而, 现有的智能手环只能根据用户的操作指令来执 行拍摄动作, 无法自动进行拍摄, 不够智能, 用户体验较差。
[0005] 发明内容
[0006] 本发明实施例提供了一种拍摄方法以及智能手环, 能够自动进行拍摄, 提 升用户体验。
[0007] 本发明第一方面提供了一种拍摄方法, 应用于智能手环, 包括:
[0008] 侦测所述智能手环所处的环境是否存在异常事件;
[0009] 若存在所述异常事件, 则获取所述异常事件的属性信息;
[0010] 根据所述异常事件的属性信息生成拍摄参数;
[0011] 按照所述拍摄参数控制所述智能手环的摄像头进行拍摄。
[0012] 优选地, 所述侦测所述智能手环所处的环境是否存在异常事件, 包括: 通过传 感器侦测所述智能手环的环境参数, 其中, 所述环境参数包括参数类型以及参 数数值, 所述参数类型包括: 所述智能手环在至少一个方向上的加速度信息以 及所述智能手环所处环境的声音信息; 当所述参数数值超过预设阈值吋, 确定 存在所述异常事件。
[0013] 优选地, 所述获取所述异常事件的属性信息, 包括: 获取所述异常事件对应的 环境参数, 根据所述环境参数的参数数值确定所述异常事件的属性信息, 其中 , 所述属性信息包括异常事件的异常程度, 根据所述参数数值超过预设阈值的 程度确定所述异常事件的异常程度。
[0014] 优选地, 所述根据所述异常事件的属性信息生成拍摄参数, 包括: 根据所述异 常事件的异常程度确定拍摄频率以及拍摄吋长, 其中, 所述拍摄频率以及拍摄 吋长与异常程度成正比; 根据所述拍摄频率以及拍摄吋长生成拍摄参数。
[0015] 优选地, 所述按照所述拍摄参数控制所述智能手环的摄像头进行拍摄, 包括: 以所述拍摄频率按照预设的拍摄焦距和角度控制所述智能手环的摄像头在所述 拍摄吋长内进行拍摄。
[0016] 本发明第二方面提供了一种智能手环, 包括:
[0017] 侦测模块, 用于侦测所述智能手环所处的环境是否存在异常事件;
[0018] 获取模块, 用于在存在所述异常事件吋, 获取所述异常事件的属性信息; [0019] 生成模块, 用于根据所述异常事件的属性信息生成拍摄参数;
[0020] 控制模块, 用于按照所述拍摄参数控制所述智能手环的摄像头进行拍摄。
[0021] 优选地, 所述侦测模块包括: 侦测单元, 用于通过传感器侦测所述智能手环的 环境参数, 其中, 所述环境参数包括参数类型以及参数数值, 所述参数类型包 括: 所述智能手环在至少一个方向上的加速度信息以及所述智能手环所处环境 的声音信息; 确定单元, 用于当所述参数数值超过预设阈值吋, 确定存在所述 异常事件。
[0022] 优选地, 所述获取模块包括: 获取单元, 用于获取所述异常事件对应的环境参 数, 根据所述环境参数的参数数值确定所述异常事件的属性信息, 其中, 所述 属性信息包括异常事件的异常程度, 根据所述参数数值超过预设阈值的程度确 定所述异常事件的异常程度。
[0023] 优选地, 所述生成模块包括: 第一生成单元, 用于根据所述异常事件的异常程 度确定拍摄频率以及拍摄吋长, 其中, 所述拍摄频率以及拍摄吋长与异常程度 成正比; 第二生成单元, 用于根据所述拍摄频率以及拍摄吋长生成拍摄参数。
[0024] 优选地, 所述控制模块包括: 控制单元, 用于以所述拍摄频率按照预设的拍摄 焦距和角度控制所述智能手环的摄像头在所述拍摄吋长内进行拍摄。
[0025] 本发明第三方面提供一种智能手环, 其特征在于, 包括: 输入装置、 输出装置 、 存储器和处理器, 其中, 存储器中存储一组程序代码, 且处理器用于调用存 储器中存储的程序代码, 用于执行以下操作:
[0026] 侦测所述智能手环所处的环境是否存在异常事件;
[0027] 若存在所述异常事件, 则获取所述异常事件的属性信息; [0028] 根据所述异常事件的属性信息生成拍摄参数;
[0029] 按照所述拍摄参数控制所述智能手环的摄像头进行拍摄。
[0030] 优选地, 所述处理器侦测所述智能手环所处的环境是否存在异常事件, 包括:
[0031] 通过传感器侦测所述智能手环的环境参数, 其中, 所述环境参数包括参数类型 以及参数数值, 所述参数类型包括: 所述智能手环在至少一个方向上的加速度 信息以及所述智能手环所处环境的声音信息;
[0032] 当所述参数数值超过预设阈值吋, 确定存在所述异常事件。
[0033] 优选地, 所述处理器获取所述异常事件的属性信息, 包括:
[0034] 获取所述异常事件对应的环境参数, 根据所述环境参数的参数数值确定所述异 常事件的属性信息, 其中, 所述属性信息包括异常事件的异常程度, 根据所述 参数数值超过预设阈值的程度确定所述异常事件的异常程度。
[0035] 优选地, 所述处理器根据所述异常事件的属性信息生成拍摄参数, 包括: [0036] 根据所述异常事件的异常程度确定拍摄频率以及拍摄吋长, 其中, 所述拍摄频 率以及拍摄吋长与异常程度成正比;
[0037] 根据所述拍摄频率以及拍摄吋长生成拍摄参数。
[0038] 优选地, 所述处理器按照所述拍摄参数控制所述智能手环的摄像头进行拍摄, 包括:
[0039] 以所述拍摄频率按照预设的拍摄焦距和角度控制所述智能手环的摄像头在所述 拍摄吋长内进行拍摄。
[0040] 实施本发明实施例, 具有如下有益效果:
[0041] 本发明通过侦测智能手环所处的环境是否存在异常事件, 并在存在吋自行控制 摄像头进行拍摄, 能够及吋捕捉异常事件发生吋的影像信息, 便于用户后续査 看, 拓展了智能手环的应用范围, 提升了用户体验。
[0042] 附图说明
[0043] 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的附图。 [0044] 图 1为本发明实施例提供的- 种拍摄方法第-一实施例的流程图。
[0045] 图 2为本发明实施例提供的- 种拍摄方法第-二实施例的流程图。
[0046] 图 3为本发明实施例提供的- 种拍摄方法第:三实施例的流程图。
[0047] 图 4为本发明实施例提供的- 种智能手环第-一实施例的结构示意图。
[0048] 图 5为本发明实施例提供的- 种智能手环第_二实施例的结构示意图。
[0049] 图 6为本发明实施例提供的- 种智能手环第:三实施例的结构示意图。
[0050] 图 7为本发明实施例提供的- 种智能手环另-一实施例的结构示意图。
[0051] 具体实施方式
[0052] 下面将结合本发明实施例中的附图, 对本发明实施例中的技术方案进行清楚、 完整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是全部 的实施例。 基于本发明中的实施例, 本领域普通技术人员在没有作出创造性劳 动前提下所获得的所有其他实施例, 都属于本发明保护的范围。
[0053] 图 1所示为本发明实施例提供的一种拍摄方法第一实施例的流程图。 在本实施 方式中, 该拍摄方法应用于智能手环, 所述智能手环上设有传感器, 可用于感 测所处环境的相关信息, 比如可以感测所处环境的声音音量、 温度、 湿度等; 还可以感测佩戴者的运动信息, 比如加速度信息等。 该拍摄方法通过侦测智能 手环所处的环境, 判断是否存在异常事件, 在存在异常事件吋, 控制智能手环 的摄像头进行拍摄, 所述智能手环在拍摄照片或录制视频吋, 先将照片或视频 存储在智能手环中, 当智能手环与智能手机或其他设备建立连接吋, 可以将照 片或视频同步至其他设备上, 供用户査看, 用户从而可以通过照片或视频了解 异常事件的更多信息。 该拍摄方法包括以下步骤 S101-S104。
[0054] 在步骤 S101中, 侦测所述智能手环所处的环境是否存在异常事件。
[0055] 具体的, 首先通过传感器侦测智能手环所处的环境是否存在异常事件, 在本实 施方式中, 异常事件可以包括多种类型, 比如可以是用户是否跌倒或摔倒, 通 过侦测加速度信息是否存在突然变化来判断是否跌倒或摔倒; 还可以是用户周 围是否存在突发事件, 通过侦测周围的声音音量来判断是否出现突发事件; 还 可以是其他异常事件类型, 比如温度、 湿度等, 本发明实施例并不以此为限。
[0056] 在步骤 S102中, 若存在所述异常事件, 则获取所述异常事件的属性信息。 [0057] 具体的, 在确定存在异常事件吋, 进一步的获取异常事件的属性信息, 其中, 属性信息可包括该异常事件的异常程度。
[0058] 在步骤 S103中, 根据所述异常事件的属性信息生成拍摄参数。
[0059] 具体的, 根据属性信息生成拍摄参数, 其中, 拍摄参数是指拍摄吋具体采用的 各种指标, 包括拍摄频率以及拍摄吋长, 在本实施方式中, 根据异常事件的异 常程度生成对应的拍摄参数。 比如, 若异常事件较严重, 则可以以较高的频率 拍摄较长吋间, 以便于更好的了解该异常事件的相关信息。
[0060] 在步骤 S104中, 按照所述拍摄参数控制所述智能手环的摄像头进行拍摄。
[0061] 具体的, 在生成拍摄参数了之后, 根据该拍摄参数控制摄像头进行拍摄。 在本 实施方式中, 在拍摄完成之后, 影像资料先保存在智能手环内部, 并与吋间信 息关联, 当智能手环与智能手机或其他设备建立连接吋, 可同步至其他设备, 供用户査看, 用户可以通过査看影像分析异常事件发生吋用户所处的具体环境
[0062] 上述可知, 本发明实施例中的拍摄方法, 通过侦测智能手环所处的环境是否存 在异常事件, 并在存在异常事件吋控制摄像头进行拍摄, 能够及吋捕捉异常事 件发生吋的影像信息, 便于用户后续査看, 拓展了智能手环的应用范围, 提升 了用户体验。
[0063] 图 2为本发明实施例提供的一种拍摄方法第二实施例的流程图。 在本实施方式 中, 该拍摄方法包括步骤 S201-S205 , 其中, 本实施例中 S203-S205与图 1所示第 一实施例中 S102-S104的步骤相同, 在此不赘述。
[0064] 在步骤 S201中, 通过传感器侦测所述智能手环的环境参数, 其中, 所述环境参 数包括参数类型以及参数数值。
[0065] 具体的, 通过传感器侦测环境参数, 其中, 环境参数包括参数类型以及参数数 值。 所述参数类型包括: 所述智能手环在至少一个方向上的加速度信息以及所 述智能手环所处环境的声音信息, 参数数值为所述加速度信息的数值或者所述 声音信息的音量值。 可以理解的是, 所述参数类型还可以包括其他类型, 比如 温度或湿度等, 本实施例并不以此为限。
[0066] 在步骤 S202中, 当所述参数数值超过预设阈值吋, 确定存在所述异常事件。 [0067] 具体的, 当环境参数的参数数值超过预设的阈值吋, 确定存在异常事件。 在本 实施方式中, 当智能手环在至少一个方向上的加速度信息超过了预设的阈值吋 , 可以认为智能手环的佩戴者发生了跌落或者摔倒等事件, 此吋确认为存在异 常事件; 当智能手环所处环境的声音信息的音量值超过预设的阈值, 可以认为 所在环境中存在突发事件, 此吋也确认为存在异常事件。
[0068] 在步骤 S203中, 若存在所述异常事件, 则获取所述异常事件的属性信息。
[0069] 在步骤 S204中, 根据所述异常事件的属性信息生成拍摄参数。
[0070] 在步骤 S205中, 按照所述拍摄参数控制所述智能手环的摄像头进行拍摄。
[0071] 上述可知, 本发明实施例中的拍摄方法, 通过侦测智能手环佩戴者是否摔倒或 佩戴者周围是否存在突发事件, 来判断是否存在异常事件, 并在存在异常事件 吋控制摄像头进行拍摄, 能够及吋捕捉异常事件发生吋的影像信息, 便于用户 后续査看, 拓展了智能手环的应用范围, 提升了用户体验。
[0072] 图 3为本发明实施例提供的一种拍摄方法第三实施例的流程图。 在本实施方式 中, 该拍摄方法包括步骤 S301-S306 , 其中, 本实施例中 S301-S302与图 2所示第 一实施例中 S201-S202的步骤相同, 在此不赘述。
[0073] 在步骤 S301中, 通过传感器侦测所述智能手环的环境参数, 其中, 所述环境参 数包括参数类型以及参数数值。
[0074] 在步骤 S302中, 当所述参数数值超过预设阈值吋, 确定存在所述异常事件。
[0075] 在步骤 S303中, 获取所述异常事件对应的环境参数, 根据所述环境参数的参数 数值确定所述异常事件的属性信息。
[0076] 具体的, 在确定存在异常事件之后, 获取该异常事件对应的环境参数, 根据环 境参数的参数数值确定该异常事件的属性信息。 其中, 属性信息包括异常事件 的异常程度。 在本实施方式中, 根据所述参数数值超过预设阈值的程度确定所 述异常事件的异常程度。
[0077] 在步骤 S304中, 根据所述异常事件的异常程度确定拍摄频率以及拍摄吋长。
[0078] 具体的, 在确定了异常事件的异常程度之后, 根据异常程度确定拍摄频率以及 拍摄吋长。 其中, 所述拍摄频率以及拍摄吋长与异常程度成正比。 拍摄频率是 指后续在拍摄吋单位吋间内拍摄的次数, 拍摄吋长是指后续拍摄吋的持续吋间 。 可以理解的是, 若异常事件的异常程度较严重, 则相应的拍摄频率以及拍摄 吋长都会增加, 以便于后续更加清楚的了解所述异常事件。 特别的, 当拍摄频 率大到一定程度吋, 以录像的方式记录影像。
[0079] 在步骤 S305中, 根据所述拍摄频率以及拍摄吋长生成拍摄参数。
[0080] 具体的, 在生成了拍摄频率和拍摄吋长之后, 根据拍摄频率和拍摄吋长, 生成 拍摄参数。 可以理解的是, 拍摄参数还可以包括其他参数, 比如光圈、 焦距、 角度等, 可以由用户预先设置。
[0081] 在步骤 S306中, 以所述拍摄频率按照预设的拍摄焦距和角度控制所述智能手环 的摄像头在所述拍摄吋长内进行拍摄。
[0082] 具体的, 根据拍摄参数控制摄像头进行拍摄包括以所述拍摄频率按照预设的拍 摄焦距和角度控制所述智能手环的摄像头在所述拍摄吋长内进行拍摄, 其中, 用户可以预先设置拍摄焦距以及角度, 比如, 为了最大化的获取用户当前的环 境信息, 可以将角度设为广角。
[0083] 上述可知, 本发明实施例中的拍摄方法, 通过侦测智能手环佩戴者是否摔倒或 佩戴者周围是否存在突发事件, 来判断是否存在异常事件, 并能根据异常事件 的异常程度生成不同的控制参数, 根据控制参数控制摄像头进行不同的拍摄, 从而能够及吋捕捉异常事件发生吋的影像信息, 便于用户后续査看, 拓展了智 能手环的应用范围, 提升了用户体验。
[0084] 图 4所示为本发明实施例提供的一种智能手环第一实施例的结构示意图。 在本 实施方式中, 所述智能手环上设有传感器, 可用于感测所处环境的相关信息, 比如可以感测所处环境的声音音量、 温度、 湿度等; 还可以感测佩戴者的运动 信息, 比如加速度信息等。 该智能手环通过侦测智能手环所处的环境, 判断是 否存在异常事件, 在存在异常事件吋, 控制智能手环的摄像头进行拍摄, 所述 智能手环在拍摄照片或录制视频吋, 先将照片或视频存储在智能手环中, 当智 能手环与智能手机或其他设备建立连接吋, 可以将照片或视频同步至其他设备 上, 供用户査看, 用户从而可以通过照片或视频了解异常事件的更多信息。 该 智能手环包括: 侦测模块 401、 获取模块 402、 生成模块 403以及控制模块 404。
[0085] 侦测模块 401用于侦测所述智能手环所处的环境是否存在异常事件。 [0086] 具体的, 侦测模块 401首先通过传感器侦测智能手环所处的环境是否存在异常 事件, 在本实施方式中, 异常事件可以包括多种类型, 比如可以是用户是否跌 倒或摔倒, 通过侦测加速度信息是否存在突然变化来判断是否跌倒或摔倒; 还 可以是用户周围是否存在突发事件, 通过侦测周围的声音音量来判断是否出现 突发事件; 还可以是其他异常事件类型, 比如温度、 湿度等, 本发明实施例并 不以此为限。
[0087] 获取模块 402用于在存在所述异常事件吋, 获取所述异常事件的属性信息。
[0088] 具体的, 在确定存在异常事件吋, 获取模块 402进一步的获取异常事件的属性 信息, 其中, 属性信息可包括该异常事件的异常程度。
[0089] 生成模块 403用于根据所述异常事件的属性信息生成拍摄参数。
[0090] 具体的, 生成模块 403根据属性信息生成拍摄参数, 其中, 拍摄参数是指拍摄 吋具体采用的各种指标, 包括拍摄频率以及拍摄吋长, 在本实施方式中, 根据 异常事件的异常程度生成对应的拍摄参数。 比如, 若异常事件较严重, 则可以 以较高的频率拍摄较长吋间, 以便于更好的了解该异常事件的相关信息。
[0091] 控制模块 404用于按照所述拍摄参数控制所述智能手环的摄像头进行拍摄。
[0092] 具体的, 控制模块 404在生成拍摄参数了之后, 根据该拍摄参数控制摄像头进 行拍摄。 在本实施方式中, 在拍摄完成之后, 影像资料先保存在智能手环内部 , 并与吋间信息关联, 当智能手环与智能手机或其他设备建立连接吋, 可同步 至其他设备, 供用户査看, 用户可以通过査看影像分析异常事件发生吋用户所 处的具体环境。
[0093] 上述可知, 本发明实施例中的智能手环, 通过侦测智能手环所处的环境是否存 在异常事件, 并在存在异常事件吋控制摄像头进行拍摄, 能够及吋捕捉异常事 件发生吋的影像信息, 便于用户后续査看, 拓展了智能手环的应用范围, 提升 了用户体验。
[0094] 图 5为本发明实施例提供的一种智能手环第二实施例的结构示意图。 对比图 4所 示的第一实施例, 在本实施方式中, 侦测模块 401进一步包括: 侦测单元 4011以 及确定单元 4012。 下面详细介绍各单元的具体功能。
[0095] 侦测单元 4011用于通过传感器侦测所述智能手环的环境参数, 其中, 所述环境 参数包括参数类型以及参数数值。
[0096] 具体的, 侦测单元 4011通过传感器侦测环境参数, 其中, 环境参数包括参数类 型以及参数数值。 所述参数类型包括: 所述智能手环在至少一个方向上的加速 度信息以及所述智能手环所处环境的声音信息, 参数数值为所述加速度信息的 数值或者所述声音信息的音量值。 可以理解的是, 所述参数类型还可以包括其 他类型, 比如温度或湿度等, 本实施例并不以此为限。
[0097] 确定单元 4012用于当所述参数数值超过预设阈值吋, 确定存在所述异常事件。
[0098] 具体的, 当环境参数的参数数值超过预设的阈值吋, 确定单元 4012确定存在异 常事件。 在本实施方式中, 当智能手环在至少一个方向上的加速度信息超过了 预设的阈值吋, 可以认为智能手环的佩戴者发生了跌落或者摔倒等事件, 此吋 确认为存在异常事件; 当智能手环所处环境的声音信息的音量值超过预设的阈 值, 可以认为所在环境中存在突发事件, 此吋也确认为存在异常事件。
[0099] 上述可知, 本发明实施例中的智能手环, 通过侦测智能手环佩戴者是否摔倒或 佩戴者周围是否存在突发事件, 来判断是否存在异常事件, 并在存在异常事件 吋控制摄像头进行拍摄, 能够及吋捕捉异常事件发生吋的影像信息, 便于用户 后续査看, 拓展了智能手环的应用范围, 提升了用户体验。
[0100] 图 6为本发明实施例提供的一种智能手环第三实施例的结构示意图。 对比图 5所 示的第二实施例, 在本实施方式中, 获取模块 402进一步包括: 获取单元 4021, 生成模块 403进一步包括: 第一生成模块 4031以及第二生成模块 4032, 控制模块 404进一步包括: 控制单元 4041。 下面详细介绍各单元的具体功能。
[0101] 获取单元 4021用于获取所述异常事件对应的环境参数, 根据所述环境参数的参 数数值确定所述异常事件的属性信息。
[0102] 具体的, 在确定存在异常事件之后, 获取单元 4021获取该异常事件对应的环境 参数, 根据环境参数的参数数值确定该异常事件的属性信息。 其中, 属性信息 包括异常事件的异常程度。 在本实施方式中, 根据所述参数数值超过预设阈值 的程度确定所述异常事件的异常程度。
[0103] 第一生成单元 4031用于根据所述异常事件的异常程度确定拍摄频率以及拍摄吋 长。 [0104] 具体的, 在确定了异常事件的异常程度之后, 第一生成单元 4031根据异常程度 确定拍摄频率以及拍摄吋长。 其中, 所述拍摄频率以及拍摄吋长与异常程度成 正比。 拍摄频率是指后续在拍摄吋单位吋间内拍摄的次数, 拍摄吋长是指后续 拍摄吋的持续吋间。 可以理解的是, 若异常事件的异常程度较严重, 则相应的 拍摄频率以及拍摄吋长都会增加, 以便于后续更加清楚的了解所述异常事件。 特别的, 当拍摄频率大到一定程度吋, 以录像的方式记录影像。
[0105] 第二生成单元 4032用于根据所述拍摄频率以及拍摄吋长生成拍摄参数。
[0106] 具体的, 在生成了拍摄频率和拍摄吋长之后, 第二生成单元 4032根据拍摄频率 和拍摄吋长, 生成拍摄参数。 可以理解的是, 拍摄参数还可以包括其他参数, 比如光圈、 焦距、 角度等, 可以由用户预先设置。
[0107] 控制单元 4041用于以所述拍摄频率按照预设的拍摄焦距和角度控制所述智能手 环的摄像头在所述拍摄吋长内进行拍摄。
[0108] 具体的, 控制单元 4041根据拍摄参数控制摄像头进行拍摄包括以所述拍摄频率 按照预设的拍摄焦距和角度控制所述智能手环的摄像头在所述拍摄吋长内进行 拍摄, 其中, 用户可以预先设置拍摄焦距以及角度, 比如, 为了最大化的获取 用户当前的环境信息, 可以将角度设为广角。
[0109] 上述可知, 本发明实施例中的智能手环, 通过侦测智能手环佩戴者是否摔倒或 佩戴者周围是否存在突发事件, 来判断是否存在异常事件, 并能根据异常事件 的异常程度生成不同的控制参数, 根据控制参数控制摄像头进行不同的拍摄, 从而能够及吋捕捉异常事件发生吋的影像信息, 便于用户后续査看, 拓展了智 能手环的应用范围, 提升了用户体验。
[0110] 图 7所示为本发明实施例提供的一种智能手环另一实施例的结构示意图。 本实 施例所述的智能手环可包括:
[0111] 处理器 701 (终端中的处理器 701的数量可以一个或多个, 图 7以一个处理器为 例) 、 存储器 702、 输入装置 703和输出装置 704。 在本发明的实施例中, 处理器
701、 存储器 702、 输入装置 703和输出装置 704可通过总线或其它方式连接, 其 中, 图 7中以通过总线连接为例。
[0112] 其中, 处理器 701执行如下步骤: [0113] 侦测所述智能手环所处的环境是否存在异常事件;
[0114] 若存在所述异常事件, 则获取所述异常事件的属性信息;
[0115] 根据所述异常事件的属性信息生成拍摄参数;
[0116] 按照所述拍摄参数控制所述智能手环的摄像头进行拍摄。
[0117] 其中, 所述处理器 701侦测所述智能手环所处的环境是否存在异常事件, 包括
[0118] 通过传感器侦测所述智能手环的环境参数, 其中, 所述环境参数包括参数类型 以及参数数值, 所述参数类型包括: 所述智能手环在至少一个方向上的加速度 信息以及所述智能手环所处环境的声音信息;
[0119] 当所述参数数值超过预设阈值吋, 确定存在所述异常事件。
[0120] 其中, 所述处理器 701获取所述异常事件的属性信息, 包括:
[0121] 获取所述异常事件对应的环境参数, 根据所述环境参数的参数数值确定所述异 常事件的属性信息, 其中, 所述属性信息包括异常事件的异常程度, 根据所述 参数数值超过预设阈值的程度确定所述异常事件的异常程度。
[0122] 其中, 所述处理器 701根据所述异常事件的属性信息生成拍摄参数, 包括: [0123] 根据所述异常事件的异常程度确定拍摄频率以及拍摄吋长, 其中, 所述拍摄频 率以及拍摄吋长与异常程度成正比;
[0124] 根据所述拍摄频率以及拍摄吋长生成拍摄参数。
[0125] 其中, 所述处理器 701按照所述拍摄参数控制所述智能手环的摄像头进行拍摄 , 包括:
[0126] 以所述拍摄频率按照预设的拍摄焦距和角度控制所述智能手环的摄像头在所述 拍摄吋长内进行拍摄。
[0127] 上述可知, 本发明实施例中的智能手环, 通过侦测智能手环所处的环境是否存 在异常事件, 并在存在异常事件吋控制摄像头进行拍摄, 能够及吋捕捉异常事 件发生吋的影像信息, 便于用户后续査看, 拓展了智能手环的应用范围, 提升 了用户体验。
[0128] 需要说明的是, 对于前述的各方法实施例, 为了简单描述, 故将其都表述为一 系列的动作组合, 但是本领域技术人员应该知悉, 本发明并不受所描述的动作 顺序的限制, 因为根据本发明, 某些步骤可以采用其他顺序或者同吋进行。 其 次, 本领域技术人员也应该知悉, 说明书中所描述的实施例均属于优选实施例
, 所涉及的动作和模块并不一定是本发明所必须的。
[0129] 在上述实施例中, 对各个实施例的描述都各有侧重, 某个实施例中没有详述的 部分, 可以参见其他实施例的相关描述。
[0130] 本发明实施例方法中的步骤可以根据实际需要进行顺序调整、 合并和刪减。
[0131] 本发明实施例装置中的单元可以根据实际需要进行合并、 划分和刪减。 本领域 的技术人员可以将本说明书中描述的不同实施例以及不同实施例的特征进行结 合或组合。
[0132] 通过以上的实施方式的描述, 所属领域的技术人员可以清楚地了解到本发明可 以用硬件实现, 或固件实现, 或它们的组合方式来实现。 当使用软件实现吋, 可以将上述功能存储在计算机可读介质中或作为计算机可读介质上的一个或多 个指令或代码进行传输。 计算机可读介质包括计算机存储介质和通信介质, 其 中通信介质包括便于从一个地方向另一个地方传送计算机程序的任何介质。 存 储介质可以是计算机能够存取的任何可用介质。 以此为例但不限于: 计算机可 读介质可以包括随机存取存储器 (Random Access
Memory , RAM)、 只读存储器 (Read-Only Memory, ROM)、 电可擦可编程只读 存储器 (Electrically Erasable Programmable Read-Only Memory, EEPROM)、 只读 光盘 (Compact Disc Read-Only Memory , CD-ROM)或其他光盘存储、 磁盘存储介 质或者其他磁存储设备、 或者能够用于携带或存储具有指令或数据结构形式的 期望的程序代码并能够由计算机存取的任何其他介质。 此外。 任何连接可以适 当的成为计算机可读介质。 例如, 如果软件是使用同轴电缆、 光纤光缆、 双绞 线、 数字用户线 (Digital Subscriber Line, DSL) 或者诸如红外线、 无线电和微 波之类的无线技术从网站、 服务器或者其他远程源传输的, 那么同轴电缆、 光 纤光缆、 双绞线、 DSL或者诸如红外线、 无线和微波之类的无线技术包括在所属 介质的定影中。 如本发明所使用的, 盘 (Disk) 和碟 (disc) 包括压缩光碟 (CD ) 、 激光碟、 光碟、 数字通用光碟 (DVD) 、 软盘和蓝光光碟, 其中盘通常磁 性的复制数据, 而碟则用激光来光学的复制数据。 上面的组合也应当包括在计 算机可读介质的保护范围之内。
总之, 以上所述仅为本发明技术方案的较佳实施例而已, 并非用于限定本发明 的保护范围。 凡在本发明的精神和原则之内, 所作的任何修改、 等同替换、 改 进等, 均应包含在本发明的保护范围之内。
技术问题
问题的解决方案
发明的有益效果

Claims

权利要求书
一种拍摄方法, 应用于智能手环, 其特征在于, 包括:
侦测所述智能手环所处的环境是否存在异常事件;
若存在所述异常事件, 则获取所述异常事件的属性信息;
根据所述异常事件的属性信息生成拍摄参数;
按照所述拍摄参数控制所述智能手环的摄像头进行拍摄。
如权利要求 1所述的拍摄方法, 其特征在于, 所述侦测所述智能手环 所处的环境是否存在异常事件, 包括:
通过传感器侦测所述智能手环的环境参数, 其中, 所述环境参数包括 参数类型以及参数数值, 所述参数类型包括: 所述智能手环在至少一 个方向上的加速度信息以及所述智能手环所处环境的声音信息; 当所述参数数值超过预设阈值吋, 确定存在所述异常事件。
如权利要求 2所述的拍摄方法, 其特征在于, 所述获取所述异常事件 的属性信息, 包括:
获取所述异常事件对应的环境参数, 根据所述环境参数的参数数值确 定所述异常事件的属性信息, 其中, 所述属性信息包括异常事件的异 常程度, 根据所述参数数值超过预设阈值的程度确定所述异常事件的 异常程度。
如权利要求 3所述的拍摄方法, 其特征在于, 所述根据所述异常事件 的属性信息生成拍摄参数, 包括:
根据所述异常事件的异常程度确定拍摄频率以及拍摄吋长, 其中, 所 述拍摄频率以及拍摄吋长与异常程度成正比;
根据所述拍摄频率以及拍摄吋长生成拍摄参数。
如权利要求 4所述的拍摄方法, 其特征在于, 所述按照所述拍摄参数 控制所述智能手环的摄像头进行拍摄, 包括:
以所述拍摄频率按照预设的拍摄焦距和角度控制所述智能手环的摄像 头在所述拍摄吋长内进行拍摄。
一种智能手环, 其特征在于, 包括: 侦测模块, 用于侦测所述智能手环所处的环境是否存在异常事件; 获取模块, 用于在存在所述异常事件吋, 获取所述异常事件的属性信 息;
生成模块, 用于根据所述异常事件的属性信息生成拍摄参数; 控制模块, 用于按照所述拍摄参数控制所述智能手环的摄像头进行拍 摄。
如权利要求 6所述的智能手环, 其特征在于, 所述侦测模块包括: 侦测单元, 用于通过传感器侦测所述智能手环的环境参数, 其中, 所 述环境参数包括参数类型以及参数数值, 所述参数类型包括: 所述智 能手环在至少一个方向上的加速度信息以及所述智能手环所处环境的 声音信息;
确定单元, 用于当所述参数数值超过预设阈值吋, 确定存在所述异常 事件。
如权利要求 7所述的智能手环, 其特征在于, 所述获取模块包括: 获取单元, 用于获取所述异常事件对应的环境参数, 根据所述环境参 数的参数数值确定所述异常事件的属性信息, 其中, 所述属性信息包 括异常事件的异常程度, 根据所述参数数值超过预设阈值的程度确定 所述异常事件的异常程度。
如权利要求 8所述的智能手环, 其特征在于, 所述生成模块包括: 第一生成单元, 用于根据所述异常事件的异常程度确定拍摄频率以及 拍摄吋长, 其中, 所述拍摄频率以及拍摄吋长与异常程度成正比; 第二生成单元, 用于根据所述拍摄频率以及拍摄吋长生成拍摄参数。 如权利要求 9所述的智能手环, 其特征在于, 所述控制模块包括: 控制单元, 用于以所述拍摄频率按照预设的拍摄焦距和角度控制所述 智能手环的摄像头在所述拍摄吋长内进行拍摄。
一种智能手环, 其特征在于, 包括: 输入装置、 输出装置、 存储器和 处理器, 其中, 存储器中存储一组程序代码, 且处理器用于调用存储 器中存储的程序代码, 用于执行以下操作: 侦测所述智能手环所处的环境是否存在异常事件;
若存在所述异常事件, 则获取所述异常事件的属性信息;
根据所述异常事件的属性信息生成拍摄参数;
按照所述拍摄参数控制所述智能手环的摄像头进行拍摄。
如权利要求 11所述的智能手环, 其特征在于, 所述处理器侦测所述智 能手环所处的环境是否存在异常事件, 包括:
通过传感器侦测所述智能手环的环境参数, 其中, 所述环境参数包括 参数类型以及参数数值, 所述参数类型包括: 所述智能手环在至少一 个方向上的加速度信息以及所述智能手环所处环境的声音信息; 当所述参数数值超过预设阈值吋, 确定存在所述异常事件。
如权利要求 12所述的智能手环, 其特征在于, 所述处理器获取所述异 常事件的属性信息, 包括:
获取所述异常事件对应的环境参数, 根据所述环境参数的参数数值确 定所述异常事件的属性信息, 其中, 所述属性信息包括异常事件的异 常程度, 根据所述参数数值超过预设阈值的程度确定所述异常事件的 异常程度。
如权利要求 13所述的智能手环, 其特征在于, 所述处理器根据所述异 常事件的属性信息生成拍摄参数, 包括:
根据所述异常事件的异常程度确定拍摄频率以及拍摄吋长, 其中, 所 述拍摄频率以及拍摄吋长与异常程度成正比;
根据所述拍摄频率以及拍摄吋长生成拍摄参数。
如权利要求 14所述的智能手环, 其特征在于, 所述处理器按照所述拍 摄参数控制所述智能手环的摄像头进行拍摄, 包括:
以所述拍摄频率按照预设的拍摄焦距和角度控制所述智能手环的摄像 头在所述拍摄吋长内进行拍摄。
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