WO2019109904A1 - 智能终端控制方法、智能终端及具有存储功能的装置 - Google Patents
智能终端控制方法、智能终端及具有存储功能的装置 Download PDFInfo
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- the present invention relates to the field of intelligent terminals, and in particular, to an intelligent terminal control method, an intelligent terminal, and a device having a storage function.
- the technical problem to be solved by the present invention is to provide an intelligent terminal control method, an intelligent terminal, and a device having a storage function, which can solve the problem that the existing smart terminal cannot exit the usage mode following the change of the environment.
- an intelligent terminal control method which includes: an intelligent terminal starts a virtual reality mode, and acquires environment sensing data, and the smart terminal uses the environment sensing data to calculate an environmental sensing value. Determining whether the environmental sensing value is not less than a preset value, and if the environmental sensing value is not less than the preset value, exiting the virtual reality mode of the smart terminal, and issuing a prompt message to prompt the user to exit the virtual reality mode of the smart terminal;
- the environmental sensing data includes at least one of humidity data and light intensity data, the light intensity data including at least one of light data, a screen brightness value, a color distribution value, and a light reflection value.
- an intelligent terminal including: a communication circuit and a processor connected to each other for implementing the method as described above.
- Still another technical solution adopted by the present invention is to provide an apparatus having a storage function, comprising: storing program data, the program data being executable to implement the method as described above.
- the present invention activates the virtual reality mode by the smart terminal to obtain the environment sensing data, and the smart terminal uses the environment sensing data to calculate the environmental sensing value, and determines whether the environmental sensing value is not less than The preset value, if the environmental sensing value is not less than the preset value, exits the virtual reality mode of the smart terminal.
- the intelligent terminal can automatically determine whether the usage mode should be exited, thereby protecting the smart terminal and the user who uses the smart terminal.
- FIG. 1 is a schematic flow chart of a first embodiment of a method for controlling a smart terminal according to the present invention
- FIG. 2 is a schematic flow chart of a second embodiment of a method for controlling a smart terminal according to the present invention
- FIG. 3 is a schematic flowchart of a third embodiment of a method for controlling a smart terminal according to the present invention.
- FIG. 4 is a schematic flow chart of a fourth embodiment of a method for controlling a smart terminal according to the present invention.
- FIG. 5 is a schematic flowchart of a fifth embodiment of a method for controlling an intelligent terminal according to the present invention.
- FIG. 6 is a schematic flowchart of a sixth embodiment of a method for controlling an intelligent terminal according to the present invention.
- FIG. 7 is a schematic flowchart of a seventh embodiment of a method for controlling a smart terminal according to the present invention.
- FIG. 8 is a schematic structural diagram of an embodiment of a smart terminal according to the present invention.
- FIG. 9 is a schematic structural diagram of an embodiment of an apparatus having a storage function according to the present invention.
- the first embodiment of the intelligent terminal control method of the present invention includes:
- S1 The smart terminal starts the virtual reality mode and acquires the environment sensing data.
- the environmental sensing data includes at least one of humidity data and light intensity data, the light intensity data including at least one of light data, a screen brightness value, a color distribution value, and a light reflection value.
- the environment-sensing data may be the environment-sensing data of the environment in which the user is located, or the environment-sensing data of the environment in which the smart terminal is located, and may also be other types of environment-sensing data, which is not specifically limited herein.
- the humidity data and the light data are acquired by the sensor
- the screen brightness value and the color distribution value are acquired by the intelligent terminal
- the reflection value is acquired by the camera.
- the screen brightness value is the brightness value of the smart terminal display
- the color distribution value includes the image index related to the color distribution such as the color tone index, color temperature, contrast, and saturation of the smart terminal display
- the reflection value is the reflected light intensity value.
- the sensor obtains the environment sensing data before the smart terminal starts the virtual reality mode, and after the smart terminal starts the virtual reality mode, the sensor may register the monitoring event of the corresponding sensor of the service object before the sensor acquires the environment sensing data, and monitor the sensor state in real time. In order to obtain environmental sensing data.
- the sensor obtains the humidity data and the light data at the same time, or may be performed in sequence.
- the sensor for obtaining the humidity data and the sensor for obtaining the light data may be turned on only one or both, if only the sensor that obtains the humidity data is turned on, The smart terminal only obtains the humidity data. Similarly, if only the sensor that obtains the light data is turned on, the smart terminal only obtains the light data. When both are turned on, the smart terminal acquires both the humidity data and the light data.
- other sensors can be turned on to obtain humidity data and light data, which are not specifically limited herein.
- the user wears a virtual reality head-mounted display device
- the smart terminal is stuck in the wearable virtual reality head-mounted display device
- the smart terminal turns on the virtual reality mode
- the humidity sensor acquires the virtual reality head-mounted display.
- the humidity data of the device is sent to the smart terminal.
- the light sensor obtains the light intensity of the virtual reality head mounted display device, and sends the light data to the smart terminal.
- the intelligent terminal calculates the environmental sensing value by using the environmental sensing data.
- the environmental sensing value includes at least one of a humidity value and a comprehensive light intensity value
- the intelligent terminal calculates the environmental sensing value through the environmental sensing data, that is, the intelligent terminal calculates the humidity value through the humidity data, and calculates the integrated light intensity value by using the light intensity data.
- the calculation method includes, but is not limited to, a multi-data fusion algorithm, an image recognition technology, a pattern matching algorithm, and an image matrix algorithm.
- the calculation process of the humidity value and the light intensity comprehensive value may be performed simultaneously, or may have a sequence, and is not specifically limited herein. .
- the smart terminal acquires the humidity value sent by the humidity sensor, and simultaneously obtains the screen brightness value and the color distribution value, first calculates the humidity value by using the humidity data through the pattern matching algorithm, and obtains the humidity value and then uses the same.
- the image recognition technology recognizes the screen brightness value and the color distribution value to calculate a light intensity integrated value.
- the preset value includes at least one of a preset humidity value and a preset light intensity integrated value, and the smart terminal compares the environmental sensing value with a preset value, and if the environmental sensing value is greater than or equal to the preset value, the smart terminal determines the ambient humidity. If the smart terminal is too large and/or too strong, the smart terminal exits the virtual reality mode, and can also log out the monitoring event of the corresponding sensor of the management service object and turn off the camera.
- the preset value is set by the user, or is automatically generated by the smart terminal, and can also be acquired by the cloud.
- the setting or obtaining of the preset value may be performed before the smart terminal starts the virtual reality mode, or after the smart terminal starts the virtual reality mode.
- the setting or acquisition of the preset value may be performed before the environmental sensing value is calculated or after the environmental sensing value is calculated.
- the smart terminal exits the virtual reality mode, the monitoring event of the corresponding sensor of the management service object is cancelled, and the camera can be closed at the same time, or the virtual reality mode can be exited first, then the monitoring event is cancelled and the camera is turned off, or the reflective image is acquired.
- the smart terminal exits the virtual reality mode, and the monitoring event of the corresponding sensor of the management service object and the sequence of closing the camera are not specifically limited.
- the smart terminal may only exit the virtual reality mode without canceling the listening event, and the camera is not turned off.
- the specific operation process may be adjusted according to actual conditions, and is not specifically limited herein.
- the integrated light intensity value is compared with the preset value obtained from the cloud, and the comparison result is light intensity. If the integrated value is greater than the preset value, the smart terminal determines that the light is too strong, and the environment is not suitable for using the virtual reality mode, prompting the user to exit the virtual reality mode.
- the invention activates the virtual reality mode by the smart terminal to obtain the environment sensing data, and the smart terminal uses the environment sensing data to calculate the environmental sensing value, and determines whether the environmental sensing value is not less than a preset value, and if the environmental sensing value is not less than the preset value, Exit the virtual reality mode of the smart terminal.
- the environment sensing data obtained by the intelligent terminal is calculated and the environmental sensing value is calculated, and the environmental sensing value is compared with the preset value, and the intelligent terminal determines whether the usage mode should be exited, thereby protecting the intelligent terminal and the user who uses the smart terminal.
- step S2 includes:
- the smart terminal obtains the humidity data, and calculates the humidity value by using the obtained humidity data, or the smart terminal acquires at least one of the light data, the screen brightness value, the color distribution value, and the reflection value, and comprehensively analyzes and calculates the light intensity data.
- the integrated value of the light intensity is obtained, or the smart terminal acquires the humidity data and the light intensity data, and the smart terminal needs to calculate the comprehensive value of the humidity value and the light intensity at this time.
- the smart terminal acquires the light data sent by the light sensor, and also obtains the reflected value obtained by the camera, and combines the light data and the reflective value data by using a multi-data fusion algorithm to calculate the integrated light intensity value.
- the smart terminal acquires the humidity value sent by the humidity sensor, acquires the screen brightness value and the color distribution value, calculates the humidity value by using the humidity data through the pattern matching algorithm, and fuses by using the multi-data fusion algorithm.
- the integrated value of the light intensity is calculated from the screen brightness value and the color distribution value.
- step S3 includes:
- S31 Determine whether the humidity value is greater than or equal to the preset humidity value, and/or determine whether the integrated light intensity value is greater than or equal to the preset light intensity integrated value.
- the intelligent terminal may select whether the humidity value is greater than or equal to the preset humidity value and determine whether the integrated light intensity value is greater than or equal to one of the preset light intensity comprehensive values, and if the selected humidity value is greater than or equal to the preset humidity value.
- the intelligent terminal determines that the environmental sensing value is not less than the preset value; the intelligent terminal may also select whether the integrated light intensity value is greater than or equal to the preset light intensity integrated value, then the light is in the light.
- the strong integrated value is greater than or equal to the preset light intensity integrated value, the intelligent terminal determines that the environmental sensing value is not less than the preset value.
- the smart terminal determines whether the humidity value is greater than or equal to the preset humidity value and determines whether the integrated light intensity value is greater than or equal to the preset light intensity integrated value, and when the humidity value is greater than or equal to the preset humidity value and the light intensity integrated value is greater than or When it is equal to the preset light intensity integrated value, the intelligent terminal determines that the environmental sensing value is not less than the preset value.
- the preset humidity value and/or the preset light intensity comprehensive value are set by the user, or automatically generated by the smart terminal, and can also be acquired by the cloud, and the preset humidity value is set by the user, and the preset light intensity comprehensive value is determined by the cloud.
- the acquisition may also be that the preset humidity value and the preset light intensity comprehensive value are automatically generated by the intelligent terminal, and are not specifically limited herein.
- the user has set a preset integrated light intensity value before the smart terminal has turned on the virtual reality mode, and after the smart terminal acquires the light intensity integrated value, the smart terminal sets the preset light set by the user.
- the strong integrated value is compared with the integrated value of the light intensity in the virtual reality head-mounted display device worn by the user, and the integrated value of the light intensity in the virtual reality head-mounted display device is determined to be greater than the integrated light intensity integrated value set by the user.
- the smart terminal determines that the environmental sensing value in the virtual reality head mounted display device is not less than a preset value.
- the smart terminal acquires the integrated value of the humidity value and the light intensity in the virtual reality head mounted display device worn by the user, and the smart terminal is from the cloud at this time.
- the value is compared, the intelligent terminal determines that the humidity value is greater than the preset humidity value, but the integrated light intensity value is less than the preset light intensity integrated value.
- the smart terminal determines that the environmental sensing value in the virtual reality head mounted display device is not less than the preset value. value.
- the smart terminal can also obtain other environmental sensing data such as temperature to calculate the environmental sensing value, which is determined according to actual needs, and is not specifically limited herein.
- the fourth embodiment of the intelligent terminal control method of the present invention is based on the first embodiment, and after step S4, the method includes:
- S40 Send a prompt message to prompt the user to exit the virtual reality mode of the smart terminal.
- the smart terminal may issue a prompt message to prompt the user that the environment is not suitable for using the virtual reality mode, and should exit the virtual reality mode.
- the prompt mode may prompt the user for the pop-up window, or prompt the user by voice, and may automatically exit the virtual reality mode after the smart terminal waits for the preset time when the prompt is invalid, and the specific manner is not limited herein, and the prompt mode and the preset time are determined by User settings or smart terminal automatic settings.
- the user wears a virtual reality head-mounted display device to watch a moving movie and shed tears, and the humidity in the virtual reality head-mounted display device increases, and the smart terminal determines that the environmental humidity may damage the virtual reality head at this time.
- the wearable display device and the smart terminal so the pop-up window prompts the user to exit the virtual reality mode, and after the smart terminal waits for 10 seconds, the user still does not exit the virtual reality mode, and the smart terminal automatically exits the virtual reality mode.
- This embodiment can also be combined with the second or third embodiment of the intelligent terminal control method of the present invention or a combination thereof.
- the fifth embodiment of the intelligent terminal control method of the present invention is based on the first embodiment.
- the method includes:
- S10 The smart terminal turns on the camera to obtain the reflection value.
- the smart terminal can turn on the camera before the smart terminal can open the virtual reality mode, or after the smart terminal turns on the virtual reality mode, the camera can be a front camera or a rear camera, as long as the reflection value can be obtained, the position of the camera is
- the type is not specifically limited.
- the user wears a virtual reality head-mounted display device, and the smart terminal turns on the virtual reality mode and then turns on the front camera.
- the front camera continuously records the user's eye image, and the smart terminal analyzes the eye image. Obtain the intensity of the light reflected in the image of the eye, that is, the reflected value.
- This embodiment can also be combined with any of the second to fourth embodiments of the intelligent terminal control method of the present invention or a combination thereof that does not conflict.
- the sixth embodiment of the intelligent terminal control method of the present invention is based on the first embodiment to the fourth embodiment.
- the method further includes:
- the registration management service object corresponds to the monitoring event of the sensor, and monitors the status of the sensor to determine whether the sensor has sent the environmental sensing data.
- the sensor manager is used to manage the sensor.
- the management service object of the sensor manager includes a sensor that can acquire environmental sensing data in the smart terminal, and/or a sensor that can acquire environmental sensing data in the virtual reality device, and which sensor data is required for the smart terminal to register.
- the state of the sensor is monitored, and it is determined whether the sensor sends the environmental sensing data to the intelligent terminal.
- the smart terminal can register only one sensor listening event at a time, or can register multiple sensor listening events at a time, and can also register or repeat the registration multiple times, which is not specifically limited herein.
- the sensor manager when the sensor manager manages the sensor, it may be a sensor manager that manages only one sensor, or a sensor manager that manages multiple sensors, which may be different types of sensors or the same type of sensor.
- the type and quantity of the sensor are not specifically limited herein, and a plurality of sensor managers may manage one sensor, and the plurality of sensor managers may be different types of sensor managers or the same sensor manager.
- the type and number of sensor managers are not specifically limited herein.
- a sensor manager manages a humidity sensor and a light sensor, and the smart terminal only needs to acquire humidity data, and the management service object of the sensor manager is only a humidity sensor, and the smart terminal registers the humidity sensor. Monitor the event and monitor whether the humidity sensor has sent humidity data to the smart terminal.
- This embodiment can also be combined with any of the second to fifth embodiments of the intelligent terminal control method of the present invention or a combination thereof.
- step S30 includes:
- the intelligent terminal monitors the state of the sensor corresponding to the environment sensing data, and determines whether the sensor is in the data sending state. If the sensor is in the data sending state, the smart terminal determines that the environment sensing data has been sent, and the data sending state may be that the sensor is always in the state.
- the status of sending environmental sensing data can also be the status at which the sensor sends environmental sensing data.
- the light sensor continuously sends light data to the smart terminal, and the light sensor is in a data transmission state.
- the smart terminal may also determine that the light sensor is in the data transmission state.
- an embodiment of the smart terminal of the present invention includes:
- Interconnected communication circuit 10 and processor 20 are Interconnected communication circuit 10 and processor 20;
- the communication circuit 10 is configured to acquire environmental sensing data.
- the processor 20 is configured to sense the data and process the environment sensing data through the communication circuit 10 and execute the instructions to implement the method provided by any one of the first to seventh embodiments of the intelligent terminal control method of the present invention and any non-conflicting combination.
- the processor 20 controls the operation of the smart terminal, and the processor 20 may also be referred to as a CPU (Central Processing Unit).
- Processor 20 may be an integrated circuit chip with signal processing capabilities.
- Processor 20 can also be a general purpose processor, digital signal processor (DSP), application specific integrated circuit (ASIC), off-the-shelf programmable gate array (FPGA) or other programmable logic device, discrete gate or transistor logic device, discrete hardware component .
- the general purpose processor may be a microprocessor or the processor or any conventional processor or the like.
- the intelligent terminal can further include a memory (not shown) for storing instructions and data necessary for the processor 20 to operate.
- the smart terminal may further include other components such as a display screen and a keyboard according to specific requirements, which are not specifically limited herein.
- an embodiment of the apparatus 30 having a storage function of the present invention includes:
- the program data 301 is stored, and the program data 301 can be executed to implement the method provided by any one of the first to seventh embodiments of the intelligent terminal control method of the present invention and any non-conflicting combination.
- the blank storage unit is selected in the device 30 having the storage function according to the size of the program data 301 to be stored, the storage unit refers to a storage space in which a certain number of bytes can theoretically be stored, and the blank storage unit refers to a blank storage in which no data is stored. unit.
- the blank storage unit is selected in accordance with the size of the program data 301 to be stored, so that the size of the storage space of the blank storage unit can store the program data 301 to be stored.
- the device 30 having a storage function may be a portable storage medium such as a USB flash drive or an optical disk, or may be a terminal, a server, or a separate component that can be integrated into a terminal or a server, such as a chip or the like.
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Abstract
本发明涉及智能终端技术领域,公开了一种智能终端控制方法、智能终端及具有存储功能的装置。该发明包括智能终端开启虚拟现实模式,获取环境感应数据,该智能终端利用该环境感应数据计算环境感应值,判断环境感应值是否不小于预设值,若环境感应值不小于预设值,则退出智能终端的虚拟现实模式。通过上述方式,在使用环境发生变化时能控制智能终端,使得智能终端及使用智能终端的用户不受使用环境的影响。
Description
本发明涉及智能终端领域,特别是涉及一种智能终端控制方法、智能终端及具有存储功能的装置。
用户在使用智能终端时常常投入某个场景太久导致过度使用智能终端,给智能终端带来不必要的损耗,以及对用户自身造成伤害,例如,用户在使用虚拟现实头戴式显示设备时,由于近距离观看屏幕,且用户投入观看时间过长时,眼睛容易干涩,继续观看容易对用户视力造成损伤,再如,用户在看感人电影时,容易落泪,泪水使得虚拟现实头戴式显示设备内的湿度会上升,容易损害智能终端或者虚拟现实头戴式显示设备。
发明内容
本发明主要解决的技术问题是提供一种智能终端控制方法、智能终端及具有存储功能的装置,能够解决现有智能终端不能跟随环境的变化而退出使用模式的问题。
为解决上述技术问题,本发明采用的一个技术方案是:提供一种智能终端控制方法,其包括:智能终端开启虚拟现实模式,获取环境感应数据,该智能终端利用该环境感应数据计算环境感应值,判断环境感应值是否不小于预设值,若环境感应值不小于预设值,则退出智能终端的虚拟现实模式,并发出提示信息,以提示用户退出所述智能终端的虚拟现实模式;其中,所述环境感应数据包括湿度数据和光强数据中的至少一个,所述光强数据包括光线数据、屏幕亮度值、颜色分布值和反光值中的至少一个。
为解决上述技术问题,本发明采用的另一个技术方案是:提供一种智能终端,其包括:相互连接的通信电路和处理器,用于实现如上述的方法。
为解决上述技术问题,本发明采用的又一个技术方案是:提供一种具有存储功能的装置,其包括:存储有程序数据,程序数据能够被执行以实现如上述 的方法。
本发明的有益效果为:区别于现有技术的情况,本发明通过智能终端开启虚拟现实模式,获取环境感应数据,该智能终端利用该环境感应数据计算环境感应值,判断环境感应值是否不小于预设值,若环境感应值不小于预设值,则退出智能终端的虚拟现实模式。通过获取的环境感应数据智能终端可以自动判断是否应该退出使用模式,从而能够保护智能终端及使用智能终端的用户。
图1是本发明智能终端控制方法第一实施例的流程示意图;
图2是本发明智能终端控制方法第二实施例的流程示意图;
图3是本发明智能终端控制方法第三实施例的流程示意图;
图4是本发明智能终端控制方法第四实施例的流程示意图;
图5是本发明智能终端控制方法第五实施例的流程示意图;
图6是本发明智能终端控制方法第六实施例的流程示意图;
图7是本发明智能终端控制方法第七实施例的流程示意图;
图8是本发明智能终端一实施例的结构示意图;
图9是本发明具有存储功能的装置一实施例的结构示意图。
如图1所示,本发明智能终端控制方法第一实施例包括:
S1:智能终端开启虚拟现实模式,获取环境感应数据。
环境感应数据包括湿度数据和光强数据中的至少一个,光强数据包括光线数据、屏幕亮度值、颜色分布值和反光值中的至少一个。
其中,环境感应数据可以是用户所处的环境的环境感应数据,也可以是智能终端所处的环境的环境感应数据,还可以为其他类型的环境感应数据,此处不作具体限定。
其中,湿度数据和光线数据由传感器获取,屏幕亮度值和颜色分布值由智能终端获取,反光值由摄像头获取。屏幕亮度值为智能终端显示屏的亮度值,颜色分布值包括智能终端显示屏的色阶指数、色温、对比度和饱和度等与颜色分布有关的图像指数,反光值为反射的光线强度值。
其中,传感器获取环境感应数据可以在智能终端开启虚拟现实模式之前,也可以在智能终端开启虚拟现实模式之后,传感器获取环境感应数据之前可以先注册管理服务对象对应传感器的监听事件,实时监听传感器状态,以便获取环境感应数据。
其中,传感器获取湿度数据和光线数据可以同时进行,也可以以先后顺序进行,获取湿度数据的传感器和获取光线数据的传感器可以只开启一个,也可以都开启,若只有获取湿度数据的传感器开启,则智能终端只获取湿度数据,同样地,若只有获取光线数据的传感器开启,则智能终端只获取光线数据,两者都开启时,智能终端既获取湿度数据又获取光线数据。当然,还可以开启其他传感器获取湿度数据和光线数据,此处不做具体限定。
具体地,在一个应用例中,用户穿戴虚拟现实头戴式显示设备,智能终端卡入穿戴虚拟现实头戴式显示设备中,智能终端开启虚拟现实模式,湿度传感器获取到虚拟现实头戴式显示设备的湿度数据,发送该湿度数据给智能终端,同样的,光线传感器获取到虚拟现实头戴式显示设备的光线强度,发送该光线数据给智能终端。
S2:智能终端利用环境感应数据计算环境感应值。
环境感应值包括湿度值和光强综合值中的至少一个,智能终端通过环境感应数据计算得到环境感应值,即,智能终端通过湿度数据计算得到湿度值,通过光强数据计算得到光强综合值,计算方法包括但不限于多数据融合算法、图像识别技术、模式匹配算法和图像矩阵算法,湿度值和光强综合值的计算过程可以同时进行,也可以有先后顺序,此处不做具体限定。
具体地,在一个应用例中,智能终端获取到湿度传感器发送的湿度值,同时获取到屏幕亮度值和颜色分布值,先通过模式匹配算法利用湿度数据计算得到湿度值,得到湿度值后再利用图像识别技术识别屏幕亮度值和颜色分布值计算出光强综合值。
S3:判断环境感应值是否不小于预设值。
S4:若环境感应值不小于预设值,则退出智能终端的虚拟现实模式。
预设值包括预设湿度值和预设光强综合值中的至少一个,智能终端将环境感应值与预设值作比较,若环境感应值大于或者等于预设值,则智能终端判定环境湿度过大和/或光线过强,智能终端退出虚拟现实模式,还可以注销管理服 务对象对应传感器的监听事件和关闭摄像头。
其中,预设值由用户设置,或者由智能终端自动生成,还可以由云端获取,该预设值的设置或获取可以在智能终端开启虚拟现实模式之前,也可以在智能终端开启虚拟现实模式之后,同样地,该预设值的设置或获取可以在计算出环境感应值之前或者计算出环境感应值之后。
其中,智能终端退出虚拟现实模式、注销管理服务对象对应传感器的监听事件和关闭摄像头可以同时进行,也可以是先退出虚拟现实模式,再注销该监听事件和关闭摄像头,还可以是在获取了反光值后就关闭摄像头,智能终端退出虚拟现实模式、注销管理服务对象对应传感器的监听事件和关闭摄像头的先后顺序不做具体限定。当然,在其他实施例中,智能终端也可以只是退出虚拟现实模式,而不注销该监听事件,也不关闭摄像头,具体操作过程可以视实际情况调整,此处不做具体限定。
具体地,在一个应用例中,智能终端计算得到虚拟现实头戴式显示设备内的光强综合值后,将光强综合值与从云端获取的预设值作比较,比较的结果为光强综合值大于预设值,则智能终端判定光线过强,此时环境不适合使用虚拟现实模式,提示用户退出虚拟现实模式。
本发明通过智能终端开启虚拟现实模式,获取环境感应数据,该智能终端利用该环境感应数据计算环境感应值,判断环境感应值是否不小于预设值,若环境感应值不小于预设值,则退出智能终端的虚拟现实模式。通过智能终端获取的环境感应数据并计算出环境感应值,将该环境感应值与预设值对比,智能终端判断是否应该退出使用模式,从而可以保护智能终端及使用智能终端的用户。
如图2所示,本发明智能终端控制方法第二实施例是在第一实施例的基础上,进一步限定步骤S2包括:
S21:利用湿度数据计算得到湿度值和/或利用光强数据计算得到光强综合值。
智能终端获取到湿度数据,利用获取到的湿度数据计算得到湿度值,或者,智能终端获取到光线数据、屏幕亮度值、颜色分布值和反光值中的至少一个,通过该光强数据综合分析计算得到光强综合值,又或者,智能终端获取到湿度数据和光强数据,此时智能终端需计算湿度值和光强综合值。
具体地,在一个应用例中,智能终端获取到光线传感器发送的光线数据,还获取到摄像头获取的反光值,利用多数据融合算法将光线数据和反光值数据融合,计算出光强综合值。
具体地,在另一个应用例中,智能终端获取到湿度传感器发送的湿度值,同时获取到屏幕亮度值和颜色分布值,通过模式匹配算法利用湿度数据计算得到湿度值,利用多数据融合算法融合屏幕亮度值和颜色分布值计算出光强综合值。
如图3所示,本发明智能终端控制方法第三实施例是在第二实施例的基础上,进一步限定步骤S3包括:
S31:判断湿度值是否大于或者等于预设湿度值,和/或判断光强综合值是否大于或者等于预设光强综合值。
S32:若湿度值大于或者等于预设湿度值,和/或光强综合值大于或者等于预设光强综合值,则判定环境感应值不小于预设值。
智能终端可以选取判断湿度值是否大于或者等于预设湿度值和判断光强综合值是否大于或者等于预设光强综合值中的一个进行判断,若选取判断湿度值是否大于或者等于预设湿度值,则在湿度值大于或者等于预设湿度值时,智能终端判定环境感应值不小于预设值;智能终端也可以选取判断光强综合值是否大于或者等于预设光强综合值,则在光强综合值大于或者等于预设光强综合值时,智能终端判定环境感应值不小于预设值。或者,智能终端既判断湿度值是否大于或者等于预设湿度值又判断光强综合值是否大于或者等于预设光强综合值,当湿度值大于或者等于预设湿度值且光强综合值大于或者等于预设光强综合值时,智能终端判定环境感应值不小于预设值。
其中,预设湿度值和/或预设光强综合值由用户设置,或者由智能终端自动生成,还可以由云端获取,可以是预设湿度值由用户设置,预设光强综合值由云端获取,还可以是预设湿度值和预设光强综合值都由智能终端自动生成,此处不做具体限定。
具体地,在一个应用例中,用户在智能终端还未开启虚拟现实模式之前已经设置了预设光强综合值,在智能终端获取了光强综合值后,智能终端将用户设置的预设光强综合值与用户穿戴的虚拟现实头戴式显示设备中的光强综合值作比较,判定虚拟现实头戴式显示设备内的光强综合值大于用户设置的预设光 强综合值,此时,智能终端判定虚拟现实头戴式显示设备内的环境感应值不小于预设值。
具体地,在另一个应用例中,智能终端开启虚拟现实模式一段时间后,智能终端获取了用户穿戴的虚拟现实头戴式显示设备中的湿度值和光强综合值,此时智能终端从云端获取预设湿度值和预设光强综合值,并将从云端获取的预设湿度值和预设光强综合值分别与用户穿戴的虚拟现实头戴式显示设备中的湿度值和光强综合值作比较,智能终端判定湿度值大于预设湿度值,但光强综合值小于预设光强综合值,此时,智能终端判定虚拟现实头戴式显示设备内的环境感应值不小于预设值。
当然,在其他实施例中,智能终端还可以获取温度等其他环境感应数据,以计算环境感应值,具体视实际需求而定,此处不做具体限定。
如图4所示,本发明智能终端控制方法第四实施例是在第一实施例的基础上,步骤S4之后包括:
S40:发出提示信息,以提示用户退出智能终端的虚拟现实模式。
在智能终端判定环境感应值不小于预设值后,智能终端可以发出提示信息提示用户该环境不适合使用虚拟现实模式,应退出虚拟现实模式。
其中,提示方式可以为弹出窗口提示用户,也可以语音提示用户,还可以在提示无效时智能终端等待预设时间后自动退出虚拟现实模式,此处不做具体限定,提示方式和预设时间由用户设置或者智能终端自动设置。
具体地,在一个应用例中,用户穿戴虚拟现实头戴式显示设备观看感人电影并流泪,虚拟现实头戴式显示设备内湿度增大,智能终端判定此时环境湿度有可能会损害虚拟现实头戴式显示设备和智能终端,因此弹出窗口提示用户退出虚拟现实模式,智能终端等待10秒后,用户仍未退出虚拟现实模式,则智能终端自动退出该虚拟现实模式。
本实施例还可以与本发明智能终端控制方法第二或第三实施例或者其组合相结合。
如图5所示,本发明智能终端控制方法第五实施例是在第一实施例的基础上,步骤S1之前包括:
S10:智能终端开启摄像头以获取反光值。
智能终端开启摄像头可以在智能终端开启虚拟现实模式之前,也可以在智 能终端开启虚拟现实模式之后,摄像头可以为前置摄像头,也可以为后置摄像头,只要能获取到反光值,摄像头的位置与种类不做具体限定。
具体地,在一个应用例中,用户穿戴虚拟现实头戴式显示设备,智能终端开启虚拟现实模式后再开启前置摄像头,该前置摄像头不断录制用户的眼睛影像,智能终端分析该眼睛影像,获取该眼睛影像中反射的光线强度,即反光值。
本实施例还可以与本发明智能终端控制方法第二至第四任一实施例或者其不冲突的组合相结合。
如图6所示,本发明智能终端控制方法第六实施例是在第一实施例至第四实施例的基础上,步骤S1之前还包括:
S20:获取传感器管理器的管理服务对象。
S30:注册管理服务对象对应传感器的监听事件,监听该传感器的状态以判断该传感器是否已发送环境感应数据。
传感器管理器用于管理传感器,传感器管理器的管理服务对象包括智能终端中可以获取环境感应数据的传感器,和/或虚拟现实设备中可以获取环境感应数据的传感器,智能终端需要哪个传感器的数据则注册对应传感器的监听事件,监听该传感器的状态,判断该传感器是否将环境感应数据发送至智能终端。
其中,智能终端可以一次只注册一个传感器的监听事件,也可以一次注册多个传感器的监听事件,还可以多次注册或者重复注册,此处不做具体限定。
其中,传感器管理器管理传感器时,可以是一个传感器管理器只管理一个传感器,也可以是一个传感器管理器管理多个传感器,该多个传感器可以是不同种类的传感器,也可以是同一种传感器,传感器的种类和数量此处不做具体限定,还可以是多个的传感器管理器管理一个传感器,该多个传感器管理器可以是不同种类的传感器管理器,也可以是同一种传感器管理器,同样地,传感器管理器的种类和数量此处也不做具体限定。
具体地,在一个应用例中,一个传感器管理器管理一个湿度传感器和一个光线传感器,智能终端只需要获取湿度数据,则传感器管理器的管理服务对象只为湿度传感器,智能终端注册该湿度传感器的监听事件,监听该湿度传感器是否已发送湿度数据至智能终端。
本实施例还可以与本发明智能终端控制方法第二至第五任一实施例或者其不冲突的组合相结合。
如图7所示,本发明智能终端控制方法第七实施例是在第六实施例的基础上,进一步限定步骤S30包括:
S301:若传感器处于数据发送状态,则判定该传感器已发送环境感应数据。
智能终端监听需要获取环境感应数据对应传感器的状态,判断该传感器是否处于数据发送状态,如果该传感器处于该数据发送状态,则智能终端判定环境感应数据已经发送,该数据发送状态可以为传感器一直在发送环境感应数据的状态,也可以为传感器发送环境感应数据完成的状态。
具体地,在一个应用例中,光线传感器一直不断地向智能终端发送光线数据,则该光线传感器处于数据发送状态。当然,在其他实施例中,若智能终端已获取光线传感器发送的光线数据,此时智能终端也可以判定该光线传感器处于数据发送状态。
如图8所示,本发明智能终端一实施例包括:
相互连接的通信电路10和处理器20;
该通信电路10用于获取环境感应数据。
处理器20用于通过通信电路10环境感应数据和处理环境感应数据并执行指令,以实现本发明智能终端控制方法第一至第七实施例中任一个以及任意不冲突的组合所提供的方法。
处理器20控制智能终端的操作,处理器20还可以称为CPU(Central Processing Unit,中央处理单元)。处理器20可能是一种集成电路芯片,具有信号的处理能力。处理器20还可以是通用处理器、数字信号处理器(DSP)、专用集成电路(ASIC)、现成可编程门阵列(FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等。
智能终端可以进一步包括存储器(图中未画出),存储器用于存储处理器20工作所必需的指令及数据。
在其他实施例中,该智能终端还可以视具体需求包括显示屏、键盘等其他部件,此处不做具体限定。
如图9所示,本发明具有存储功能的装置30一实施例包括:
存储有程序数据301,程序数据301能够被执行以实现本发明智能终端控制方法第一至第七实施例中任一个以及任意不冲突的组合所提供的方法。根据待 存储的程序数据301的大小在具有存储功能的装置30中选择空白存储单元,存储单元是指理论上能够存储一定数量字节的存储空间,空白存储单元是指未存储数据的空白的存储单元。根据待存储的程序数据301的大小选择空白存储单元,以使得空白存储单元的存储空间的大小能够存储待存储的程序数据301。
其中,具有存储功能的装置30可以是便携式存储介质如U盘、光盘,也可以是终端、服务器或可集成于终端或服务器中的独立部件,例如芯片等。
以上所述仅为本发明的实施方式,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 (20)
- 一种智能终端控制方法,其中,所述方法包括:智能终端开启虚拟现实模式,获取环境感应数据;所述智能终端利用所述环境感应数据计算环境感应值;判断所述环境感应值是否不小于预设值;若所述环境感应值不小于所述预设值,则退出所述智能终端的虚拟现实模式,并发出提示信息,以提示用户退出所述智能终端的虚拟现实模式;其中,所述环境感应数据包括湿度数据和光强数据中的至少一个,所述光强数据包括光线数据、屏幕亮度值、颜色分布值和反光值中的至少一个。
- 根据权利要求1所述的方法,其中,所述获取环境感应数据之前还包括:获取传感器管理器的管理服务对象;注册所述管理服务对象对应传感器的监听事件,监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据。
- 根据权利要求2所述的方法,其中,所述监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据包括:若所述传感器处于数据发送状态,则判定所述传感器已发送所述环境感应数据。
- 根据权利要求1所述的方法,其中,所述环境感应值包括湿度值和光强综合值中的至少一个;所述智能终端利用所述环境感应数据计算环境感应值包括:利用所述湿度数据计算得到湿度值和/或利用所述光强数据计算得到所述光强综合值。
- 根据权利要求4所述的方法,其中,所述获取环境感应数据之前还包括:获取传感器管理器的管理服务对象;注册所述管理服务对象对应传感器的监听事件,监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据。
- 根据权利要求5所述的方法,其中,所述监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据包括:若所述传感器处于数据发送状态,则判定所述传感器已发送所述环境感应数据。
- 根据权利要求4所述的方法,其中,所述预设值包括预设湿度值和预设光强综合值中的至少一个;所述判断所述环境感应值是否不小于预设值包括:判断所述湿度值是否大于或者等于预设湿度值,和/或判断所述光强综合值是否大于或者等于预设光强综合值;若所述湿度值大于或者等于预设湿度值,和/或所述光强综合值大于或者等于预设光强综合值,则判定所述环境感应值不小于预设值。
- 根据权利要求7所述的方法,其中,所述获取环境感应数据之前还包括:获取传感器管理器的管理服务对象;注册所述管理服务对象对应传感器的监听事件,监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据。
- 根据权利要求8所述的方法,其中,所述监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据包括:若所述传感器处于数据发送状态,则判定所述传感器已发送所述环境感应数据。
- 根据权利要求1所述的方法,其中,所述获取环境感应数据之前包括:所述智能终端开启摄像头以获取所述反光值;获取传感器管理器的管理服务对象;注册所述管理服务对象对应传感器的监听事件,监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据,若所述传感器处于数据发送状态,则判定所述传感器已发送所述环境感应数据。
- 一种智能终端,其中,包括:相互连接的通信电路和处理器;所述通信电路,用于获取环境感应数据;所述处理器,通过所述通信电路获取环境感应数据和处理所述环境感应数据并执行指令以实现智能终端控制方法,所述方法包括:智能终端开启虚拟现实模式,获取环境感应数据;所述智能终端利用所述环境感应数据计算环境感应值;判断所述环境感应值是否不小于预设值;若所述环境感应值不小于所述预设值,则退出所述智能终端的虚拟现实模 式,并发出提示信息,以提示用户退出所述智能终端的虚拟现实模式;其中,所述环境感应数据包括湿度数据和光强数据中的至少一个,所述光强数据包括光线数据、屏幕亮度值、颜色分布值和反光值中的至少一个。
- 根据权利要求11所述的智能终端,其中,所述获取环境感应数据之前还包括:获取传感器管理器的管理服务对象;注册所述管理服务对象对应传感器的监听事件,监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据,若所述传感器处于数据发送状态,则判定所述传感器已发送所述环境感应数据。
- 根据权利要求11所述的智能终端,其中,所述环境感应值包括湿度值和光强综合值中的至少一个;所述智能终端利用所述环境感应数据计算环境感应值包括:利用所述湿度数据计算得到湿度值和/或利用所述光强数据计算得到所述光强综合值。
- 根据权利要求13所述的智能终端,其中,所述获取环境感应数据之前还包括:获取传感器管理器的管理服务对象;注册所述管理服务对象对应传感器的监听事件,监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据,若所述传感器处于数据发送状态,则判定所述传感器已发送所述环境感应数据。
- 根据权利要求13所述的智能终端,其中,所述预设值包括预设湿度值和预设光强综合值中的至少一个;所述判断所述环境感应值是否不小于预设值包括:判断所述湿度值是否大于或者等于预设湿度值,和/或判断所述光强综合值是否大于或者等于预设光强综合值;若所述湿度值大于或者等于预设湿度值,和/或所述光强综合值大于或者等于预设光强综合值,则判定所述环境感应值不小于预设值。
- 根据权利要求11所述的智能终端,其中,所述获取环境感应数据之前包括:所述智能终端开启摄像头以获取所述反光值;获取传感器管理器的管理服务对象;注册所述管理服务对象对应传感器的监听事件,监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据,若所述传感器处于数据发送状态,则判定所述传感器已发送所述环境感应数据。
- 一种具有存储功能的装置,其中,存储有程序数据,所述程序数据能够被执行以实现智能终端控制方法,所述方法包括:智能终端开启虚拟现实模式,获取环境感应数据;所述智能终端利用所述环境感应数据计算环境感应值;判断所述环境感应值是否不小于预设值;若所述环境感应值不小于所述预设值,则退出所述智能终端的虚拟现实模式,并发出提示信息,以提示用户退出所述智能终端的虚拟现实模式;其中,所述环境感应数据包括湿度数据和光强数据中的至少一个,所述光强数据包括光线数据、屏幕亮度值、颜色分布值和反光值中的至少一个。
- 根据权利要求17所述的具有存储功能的装置,其中,所述获取环境感应数据之前还包括:获取传感器管理器的管理服务对象;注册所述管理服务对象对应传感器的监听事件,监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据,若所述传感器处于数据发送状态,则判定所述传感器已发送所述环境感应数据。
- 根据权利要求17所述的智能终端,其中,所述环境感应值包括湿度值和光强综合值中的至少一个;所述智能终端利用所述环境感应数据计算环境感应值包括:利用所述湿度数据计算得到湿度值和/或利用所述光强数据计算得到所述光强综合值;所述预设值包括预设湿度值和预设光强综合值中的至少一个;所述判断所述环境感应值是否不小于预设值包括:判断所述湿度值是否大于或者等于预设湿度值,和/或判断所述光强综合值是否大于或者等于预设光强综合值;若所述湿度值大于或者等于预设湿度值,和/或所述光强综合值大于或者等于预设光强综合值,则判定所述环境感应值不小于预设值。
- 根据权利要求17所述的智能终端,其中,所述获取环境感应数据之前包括:所述智能终端开启摄像头以获取所述反光值;获取传感器管理器的管理服务对象;注册所述管理服务对象对应传感器的监听事件,监听所述传感器的状态以判断所述传感器是否已发送所述环境感应数据,若所述传感器处于数据发送状态,则判定所述传感器已发送所述环境感应数据。
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