WO2015169154A1 - 一种机顶盒上应用的操控方法及操控系统 - Google Patents

一种机顶盒上应用的操控方法及操控系统 Download PDF

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Publication number
WO2015169154A1
WO2015169154A1 PCT/CN2015/077313 CN2015077313W WO2015169154A1 WO 2015169154 A1 WO2015169154 A1 WO 2015169154A1 CN 2015077313 W CN2015077313 W CN 2015077313W WO 2015169154 A1 WO2015169154 A1 WO 2015169154A1
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application
type
data
gravity sensor
top box
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PCT/CN2015/077313
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English (en)
French (fr)
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邓鹏�
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深圳市九洲电器有限公司
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Publication of WO2015169154A1 publication Critical patent/WO2015169154A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N21/00Selective content distribution, e.g. interactive television or video on demand [VOD]
    • H04N21/40Client devices specifically adapted for the reception of or interaction with content, e.g. set-top-box [STB]; Operations thereof
    • H04N21/41Structure of client; Structure of client peripherals
    • H04N21/422Input-only peripherals, i.e. input devices connected to specially adapted client devices, e.g. global positioning system [GPS]

Definitions

  • the present invention relates to the field of communications, and in particular, to a control method and a control system for application on a set top box.
  • set-top boxes especially smart set-top boxes of android systems
  • Many applications are installed on smart set-top boxes.
  • set-top boxes push images to mobile phones or PADs.
  • mobile phones, PADs and other devices as control devices, there are more and more ways to control applications on set-top boxes and set-top boxes.
  • a method for controlling an application on a set top box includes the following steps:
  • the application is a landscape application
  • the control device is a first type of device
  • the gravity sensing of the first type of device The device data is directly transmitted to the application
  • the control device is the second type device
  • the X-axis data and the Y-axis data in the gravity sensor data of the second type device are exchanged and transmitted to the application
  • the first device is a mobile phone or
  • the gravity sensor coordinate system is the same device as the mobile phone
  • the second type device is a device in which the gravity sensor coordinate system is opposite to the X-axis and the Y-axis of the mobile phone gravity sensor coordinate system
  • the application is a vertical screen application
  • the control device is a second type device
  • the second type device gravity sensor data is directly transmitted to the application
  • the control device is the first type device
  • the first type device gravity sensor data is X.
  • the axis data is exchanged with the Y-axis data and transmitted to the application.
  • step of transferring the X-axis data and the Y-axis data in the gravity sensor data of the second type of device to the application is specifically as follows:
  • the X-axis data and the Y-axis data in the gravity sensor data are exchanged and transmitted to the application by the second type of equipment, or the X-axis data and the Y-axis data in the gravity sensor data are exchanged by the set-top box and transmitted to the application;
  • the step of transferring the X-axis data and the Y-axis data in the gravity sensor data of the first type of device to the application is specifically as follows:
  • the X-axis data and the Y-axis data in the gravity sensor data are transferred to the application by the first type of equipment, or the X-axis data and the Y-axis data in the gravity sensor data are exchanged by the set top box and transmitted to the application.
  • step of transferring the X-axis data and the Y-axis data in the gravity sensor data of the second type of device to the application is specifically as follows:
  • the set top box receives the gravity sensor data transmitted by the second type of device, and exchanges the X-axis data and the Y-axis data in the gravity sensor data, and then transmits the data to the application layer through the JNI interface;
  • the step of transferring the X-axis data and the Y-axis data in the gravity sensor data of the first type of device to the application is specifically as follows:
  • the set top box receives the gravity sensor data transmitted by the first type of device, and exchanges the X-axis data and the Y-axis data in the gravity sensor data and transmits the data to the application layer through the JNI interface.
  • the method further includes:
  • the set-top box obtains the resolution of the vertical screen application, and scales according to the resolution of the vertical screen application when pushing, and pushes the vertical screen application.
  • the method further includes:
  • the vertical screen application When the set-top box pushes the vertical screen application, the vertical screen application is centered as a whole, and is scaled down by the maximum ratio. put.
  • a control system applied to a set top box comprising:
  • a monitoring unit that monitors an application installed on the set top box and a control device connected to the set top box
  • the horizontal screen application control unit if the application is a horizontal screen application, if the manipulation device is the first type device, the gravity sensor data of the first type device is directly transmitted to the application; if the control device is the second type device, the second device is The X-axis data and the Y-axis data are transferred to the application in the gravity sensor data of the class device, wherein the first type of device is a mobile phone or a gravity sensor coordinate system and the same device as the mobile phone, and the second type of device is a gravity sensor.
  • the coordinate system is opposite to the X-axis and Y-axis of the mobile gravity sensor coordinate system;
  • the vertical screen application control unit if the application is a vertical screen application, if the control device is a second type of device, the second type of device gravity sensor data is directly transmitted to the application; if the control device is the first type of device, the first type is The X-axis data and the Y-axis data are exchanged in the device gravity sensor data and transmitted to the application.
  • the horizontal screen application control unit is installed on the second type device or the set top box; the vertical screen application control unit is installed on the second type device or the set top box.
  • the horizontal screen application control unit is installed on the set top box, receives the data of the gravity sensor transmitted by the second type of equipment, and exchanges the X-axis data and the Y-axis data in the gravity sensor data and transmits the data to the application layer through the JNI interface.
  • the vertical screen application control unit is installed on the set top box, receives the data of the gravity sensor transmitted by the first type of equipment, and exchanges the X-axis data and the Y-axis data in the gravity sensor data and transmits the data to the application layer through the JNI interface.
  • system further includes:
  • the vertical screen application push unit obtains the resolution of the vertical screen application, and scales according to the resolution of the vertical screen application when pushing, and pushes the vertical screen application.
  • the vertical screen application pushing unit pushes the vertical screen application
  • the vertical screen application is centered as a whole, and is scaled by the maximum ratio.
  • the method and system of the present invention monitors the types of applications and control devices, and adjusts the gravity sensor data of the first type of equipment and the second type of equipment for different horizontal screen applications and vertical screen applications, so that various control devices can be simple Convenient control of landscape and vertical screen applications, enabling control devices to It is good enough to control various applications on the set-top box, so that various applications can be installed and installed on the set-top box, which greatly facilitates the user's control and greatly improves the versatility of the set-top box.
  • FIG. 1 is a flow chart of a method of controlling an application on a set top box in an embodiment
  • FIG. 2 is a flow chart of an application control system on a set top box in one embodiment.
  • FIG. 1 is a flow chart of a method of operation applied to a set top box in an embodiment. As shown in FIG. 1, the manipulation method includes the following steps:
  • S10 Monitor the application installed on the set top box and the control device connected to the set top box.
  • the horizontal screen display application is defined as a horizontal screen application
  • the vertical screen display application is defined as a vertical screen application
  • the application is installed in the application.
  • the type of horizontal and vertical screens of the application needs to be monitored on the set top box.
  • the gravity sensor of the control device is different according to the manner, and the coordinate (or coordinate system) of the gravity sensor of the control device is different, so after the control device is connected with the set top box, It is necessary to monitor which type of control device it belongs to.
  • the type of application and control device is acquired in real time through monitoring of the application and the control device.
  • the application is a horizontal screen application
  • the control device is the first type device
  • the gravity sensor data of the first type device is directly transmitted to the application
  • the control device is the second type device
  • the second type device gravity sensor is used.
  • the X-axis data and the Y-axis data are exchanged in the data and transmitted to the application.
  • the first type of equipment is the same device of the mobile phone or the gravity sensor coordinate system and the mobile phone.
  • the second type of equipment is a device in which the gravity sensor coordinate system is opposite to the X-axis and the Y-axis of the mobile gravity sensor coordinate system. For example, PAD.
  • the device can easily control a variety of applications, enabling a variety of applications to be fitted to the set-top box.
  • the set top box is also pushed to the control terminal by the horizontal screen when the image is pushed onto the manipulation terminal, and the display is not displayed on the control device.
  • the first type of device preferably a mobile phone
  • the horizontal screen controls the application, and the gravity sensor data of the first type of device does not need to be processed, and can be directly transmitted. Give the app an action on the app on the set-top box.
  • the second type of equipment preferably PAD
  • the second type of equipment since the X-axis and the Y-axis of the gravity sensor coordinate system of the second type of equipment are opposite to those of the first type of equipment, although the application is also a horizontal screen display on the second type of equipment, the second The class device must control the application in the vertical screen. Only the X-axis and Y-axis data in the gravity sensor data of the second device are exchanged and sent to the application, so that the second device can also be manipulated by the horizontal screen.
  • the operating device is the second type of device
  • the X-axis data and the Y-axis data in the gravity sensor data of the second type of device are exchanged and then transmitted to the application, thereby facilitating the second type of device to manipulate the application and making the application Better adapt to the set-top box.
  • the step of translating the X-axis data and the Y-axis data in the gravity sensor data of the second type of device to the application is specifically: the X-axis data and the Y-axis of the gravity sensor data by the second type of device
  • the data is transferred to the application after being exchanged; or the X-axis data and the Y-axis data in the gravity sensor data are exchanged by the set-top box and transmitted to the application. That is, the exchange of the gravity sensor data of the second type of equipment can be completed by the second type of equipment, or can be completed by the set top box.
  • it is preferable that the X-axis data and the Y-axis data in the gravity sensor data are exchanged by the set top box.
  • the set top box receives the gravity sensor data transmitted by the second type of device, and exchanges the X-axis data and the Y-axis data in the gravity sensor data, and then transmits the data to the application layer through a JNI interface (Java Native Interface), thereby transmitting Give the app and manipulate the app.
  • JNI interface Java Native Interface
  • the application is a vertical screen display for vertical screen display by monitoring the application and the control device
  • the set top box is still pushed to the control terminal by the horizontal screen when the image is pushed to the control terminal, which is installed with the vertical screen application.
  • the display on the handling device makes a big difference, then for the first type of device (preferably the hand) Machine), when the application is controlled on the set-top box, the set-top box is pushed to the first type of device, but the first type of device must be manipulated in the vertical screen, only the X-axis of the gravity sensor data of the first type of device After the Y-axis data is exchanged and sent to the application, the first type of device can also be manipulated by the horizontal screen.
  • the first type of device preferably the hand
  • the operating device is the first type of device
  • the X-axis data and the Y-axis data in the gravity sensor data of the first type of device are exchanged and then transmitted to the application, thereby facilitating the first-type device to control the application and making the application Better adapt to the set-top box.
  • the step of translating the X-axis data and the Y-axis data in the gravity sensor data of the first type of device into the application is specifically: the X-axis data and the Y-axis of the gravity sensor data by the first type of device
  • the data is transferred to the application after being exchanged; or the X-axis data and the Y-axis data in the gravity sensor data are exchanged by the set-top box and transmitted to the application. That is, the exchange of the gravity sensor data of the first type of equipment can be completed by the second type of equipment, or can be completed by the set top box.
  • the X-axis data and the Y-axis data in the gravity sensor data of the first type of equipment are exchanged by the set top box.
  • the set top box receives the gravity sensor data transmitted by the first type of equipment, and exchanges the X-axis data and the Y-axis data in the gravity sensor data, and then transmits the data to the application layer through the JNI interface (Java Native Interface), thereby transmitting Give the app and manipulate the app.
  • JNI interface Java Native Interface
  • the method further includes: The set-top box obtains the resolution of the vertical screen application, and scales according to the resolution of the vertical screen application when pushing, and pushes the vertical screen application. Further, when the set top box pushes the vertical screen application, the vertical screen application is centered as a whole, and is scaled by the maximum ratio. This allows the vertical screen application to maximize display and unaffected resolution for user control.
  • the control method applied on the set-top box, the type of the monitoring application and the control device, and the gravity sensor data of the first type device and the second type device are adjusted for the horizontal screen application and the vertical screen application, so that various control devices are It is easy and convenient to control horizontal screen applications and vertical screen applications, so that the control device can well control various applications on the set-top box, so that various applications can be adapted to Installed on the set-top box, it greatly facilitates the user's control, greatly improving the versatility of the set-top box.
  • the present invention also provides a control system applied to a set top box.
  • the control system applied to the set top box includes:
  • the monitoring unit 100 monitors an application installed on the set top box and a control device connected to the set top box.
  • the horizontal screen display application is defined as a horizontal screen application
  • the vertical screen display application is defined as a vertical screen application
  • the application is installed in the application.
  • the monitoring unit 100 needs to monitor the horizontal and vertical screen type of the application when the set top box is on.
  • the gravity sensor of the control device is different according to the manner, and the coordinate (or coordinate system) of the gravity sensor of the control device is different, so after the control device is connected with the set top box,
  • the monitoring unit 100 needs to monitor which type the handling device belongs to.
  • the monitoring unit 100 acquires the type of the application and the operating device in real time through monitoring of the application and the operating device.
  • the horizontal screen application control unit 200 if the application is a horizontal screen application, if the manipulation device is the first type of device, the gravity sensor data of the first type of device is directly transmitted to the application; if the control device is the second type of device, the first In the gravity sensor data of the second type of equipment, the X-axis data and the Y-axis data are exchanged and then transmitted to the application.
  • the first type of equipment is the same device of the mobile phone or the gravity sensor coordinate system and the mobile phone.
  • the second type of equipment is a device in which the gravity sensor coordinate system is opposite to the X-axis and Y-axis of the mobile gravity sensor coordinates. For example, PAD.
  • the set top box is also pushed to the control terminal by the horizontal screen when the image is pushed onto the manipulation terminal, and the display is not displayed on the control device.
  • the first type of device preferably a mobile phone
  • the horizontal screen controls the application
  • the horizontal screen application control unit 200 does not measure the gravity sensor data of the first type of device. Need to be processed, can be directly transmitted to the application to control the application on the set-top box.
  • the second type of equipment preferably PAD
  • the second type of equipment since the X-axis and the Y-axis of the gravity sensor coordinate system of the second type of equipment are opposite to those of the first type of equipment, although the application is also a horizontal screen display on the second type of equipment, the second Class The device must be manipulated in the vertical screen. Only the X-axis and Y-axis data in the gravity sensor data of the second type of device are exchanged and sent to the application, so that the second type of device can also be manipulated by the horizontal screen.
  • the horizontal screen application control unit 200 exchanges the X-axis data and the Y-axis data in the gravity sensor data of the second type of device, and then transmits the data to the application, thereby facilitating the second class.
  • the device's horizontal screen control application allows the application to better adapt to the set-top box.
  • the horizontal screen application control unit 200 is mounted on the second type of device, and the X-axis data and the Y-axis data in the gravity sensor data are exchanged and transmitted to the application; or the horizontal screen application control unit 200 is installed on the set-top box.
  • the X-axis data and the Y-axis data in the gravity sensor data are exchanged and transmitted to the application. That is, the exchange of the gravity sensor data of the second type of equipment can be completed by the second type of equipment, or can be completed by the set top box.
  • the horizontal screen application control unit 200 is mounted on the set top box to exchange X-axis data and Y-axis data in the gravity sensor data.
  • the horizontal screen application control unit 200 is installed on the set top box, receives the data of the gravity sensor transmitted by the second type of equipment, and exchanges the X-axis data and the Y-axis data in the gravity sensor data through the JNI interface (Java Native Interface, The JAVA local interface is passed to the application layer for delivery to the application and manipulation of the application.
  • JNI interface Java Native Interface
  • the vertical screen application control unit 300 if the application is a vertical screen application, if the control device is a second type device, the second type device gravity sensor data is directly transmitted to the application, and if the control device is the first type device, the first device The X-axis data and the Y-axis data in the gravity sensor data of the class device are exchanged and transmitted to the application.
  • the application is a vertical screen display for vertical screen display by monitoring the application and the control device
  • the set top box is still pushed to the control terminal by the horizontal screen when the image is pushed to the control terminal, which is installed with the vertical screen application.
  • the display on the control device produces a big difference.
  • the first type of device preferably a mobile phone
  • the set top box is pushed to the first type of device, but the first type of device must be The vertical screen controls the application. Only the X-axis and Y-axis data in the gravity sensor data of the first type of device are exchanged and sent to the application, so that the first type of device is also the horizontal screen to control the application.
  • the vertical screen application control unit 300 exchanges the X-axis data and the Y-axis data in the gravity sensor data of the first type of device and then transmits the data to the application, thereby facilitating the first class.
  • the device controls the application, allowing the application to better adapt to the set-top box.
  • the vertical screen application control unit 300 is mounted on the first device, and the X-axis data and the Y-axis data in the gravity sensor data are exchanged and transmitted to the application; or the vertical screen application control unit 300A Installed on the set-top box, the X-axis data and the Y-axis data in the gravity sensor data are exchanged and transmitted to the application. That is, the exchange of the gravity sensor data of the first type of equipment may be completed by the first type of equipment or by the set top box.
  • the vertical screen application control unit 300 is mounted on the set top box to exchange X-axis data and Y-axis data in the gravity sensor data.
  • the vertical screen application control unit 300 is installed on the set top box, receives the data of the gravity sensor transmitted by the first type of equipment, and exchanges the X-axis data and the Y-axis data in the gravity sensor data through the JNI interface (Java Native Interface, The JAVA local interface is passed to the application layer for delivery to the application and manipulation of the application.
  • JNI interface Java Native Interface
  • the vertical screen application control unit 300 does not need to gravity on the second type of equipment.
  • the sensor data is adjusted and sent directly to the application.
  • the system further includes:
  • the vertical screen application pushing unit 400 obtains the resolution of the vertical screen application, and performs scaling according to the resolution of the vertical screen application when pushing, and pushes the vertical screen application. Further, when the vertical screen application pushing unit 400 pushes the vertical screen application, the vertical screen application is centered as a whole, and is scaled by the maximum ratio. This allows the vertical screen application to maximize display and unaffected resolution for user control.
  • the gravity sensor data of the second type of equipment is adjusted, so that various manipulation devices can easily and conveniently control the horizontal screen application and the vertical screen application, so that the manipulation device can well control various applications on the set top box, so that Various applications can be installed on the set-top box, which greatly facilitates user control and greatly improves the versatility of the set-top box.
  • the method and system of the present invention monitors the types of applications and control devices, and adjusts the gravity sensor data of the first type of equipment and the second type of equipment for different horizontal screen applications and vertical screen applications, so that various control devices can be simple Convenient control of horizontal screen applications and vertical screen applications, so that the control device can well control various applications on the set-top box, so that various applications can be adapted to be installed on the set-top box, which greatly facilitates the user. Control, greatly improving the versatility of the set-top box.

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Abstract

本发明涉及一种机顶盒上应用的操控方法及操控系统,该操控方法若应用为横屏应用,如果操控设备为第一类设备,则将第一类设备的重力传感器数据直接传送给应用;如果操控设备为第二类设备,则将第二类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用;若应用为竖屏应用,如果操控设备为第二类设备,则直接传送给应用;如果操控设备为第一类设备,则将X轴数据与Y轴数据调换后传送给应用。本发明使得各种操控设备都能够简单便捷的对横屏应用和竖屏应用进行操控,从而使得操控设备能够很好的对机顶盒上的各种应用进行操控,使各种应用都能够适配安装在机顶盒上,极大的方便了用户操控,大大提高了机顶盒的通用性。

Description

一种机顶盒上应用的操控方法及操控系统 技术领域
本发明涉及通信领域,尤其涉及一种机顶盒上应用的操控方法及操控系统。
背景技术
随着技术的发展,智能机顶盒,尤其是android系统的智能机顶盒越来越普遍,很多应用安装在智能机顶盒上,通过DLNA、镜屏等技术手段,机顶盒将镜像推送到手机或者PAD等设备上,用手机、PAD等其他设备作为操控设备,对机顶盒和机顶盒上应用进行操控的方式也越来越多。
但是,由于部分应用原是在手机设备上运行(或者重力传感器坐标与手机相同的其他设备上),都是基于手机的重力传感器来实现操控的,比如赛车游戏,跑酷游戏。应用的类型有横屏和竖屏之分(根据显示来区分),而机顶盒对应的电视显示只有横屏。若直接安装竖屏的应用到机顶盒,机顶盒推送到手机设备上的镜像仍然只能是横屏显示,而手机却要竖屏来对应用进行操控,对于用户来说很不方便。同时,对于重力传感器坐标与手机相反的设备(例如PAD),当应用为横屏应用时,反而要竖屏来操控,这就给用户带来极大的不便,使得与重力传感器相关的很多应用无法直接在机顶盒上面适配使用,降低了智能机顶盒应用的通用性。
技术问题
有鉴于此,有必要针对上述机顶盒上应用无法适配的问题,提供一种机顶盒上应用的操控方法。
此外,还提供一种机顶盒上应用的操控系统。
问题的解决方案
技术解决方案
一种机顶盒上应用的操控方法,包括如下步骤:
监控安装在机顶盒上的应用及与机顶盒连接的操控设备;
若应用为横屏应用,如果操控设备为第一类设备,则将第一类设备的重力传感 器数据直接传送给应用;如果操控设备为第二类设备,则将第二类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用;其中,所述第一类设备为手机或者重力传感器坐标系和手机相同的其他设备,所述第二类设备为重力传感器坐标系与手机重力传感器坐标系X轴和Y轴相反的设备;
若应用为竖屏应用,如果操控设备为第二类设备,则将第二类设备重力传感器数据直接传送给应用;如果操控设备为第一类设备,则将第一类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用。
进一步的,所述将第二类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用的步骤具体为:
由第二类设备对重力传感器数据中X轴数据与Y轴数据调换后传送给应用,或者由机顶盒对重力传感器数据中X轴数据与Y轴数据调换后传送给应用;
所述将第一类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用的步骤具体为:
由第一类设备对重力传感器数据中X轴数据与Y轴数据调换后传送给应用,或者由机顶盒对重力传感器数据中X轴数据与Y轴数据调换后传送给应用。
进一步的,所述将第二类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用的步骤具体为:
机顶盒接收所述第二类设备传送的重力传感器数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口传送给应用层;
所述将第一类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用的步骤具体为:
机顶盒接收所述第一类设备传送的重力传感器数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口传送给应用层。
进一步的,所述方法还包括:
机顶盒获取竖屏应用的分辨率,在进行推送时按照竖屏应用的分辨率同比例的进行缩放,对竖屏应用进行推送。
进一步的,所述方法还包括:
机顶盒对竖屏应用进行推送时,使竖屏应用整体居中,且按最大比例同比例缩 放。
一种机顶盒上应用的操控系统,包括:
监控单元,监控安装在机顶盒上的应用及与机顶盒连接的操控设备;
横屏应用操控单元,若应用为横屏应用,如果操控设备为第一类设备,则将第一类设备的重力传感器数据直接传送给应用;如果操控设备为第二类设备,则将第二类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用;其中,所述第一类设备为手机或者重力传感器坐标系和手机相同的其他设备,所述第二类设备为重力传感器坐标系与手机重力传感器坐标系X轴和Y轴相反的设备;
竖屏应用操控单元,若应用为竖屏应用,如果操控设备为第二类设备,则将第二类设备重力传感器数据直接传送给应用;如果操控设备为第一类设备,则将第一类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用。
进一步的,所述横屏应用操控单元安装于第二类设备上或者机顶盒上;所述竖屏应用操控单元安装于第二类设备上或者机顶盒上。
进一步的,所述横屏应用操控单元安装于机顶盒上,接收第二类设备传送的重力传感器的数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口传送给应用层;所述竖屏应用操控单元安装于机顶盒上,接收第一类设备传送的重力传感器的数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口传送给应用层。
进一步的,所述系统还包括:
竖屏应用推送单元,获取竖屏应用的分辨率,在进行推送时按照竖屏应用的分辨率同比例的进行缩放,对竖屏应用进行推送。
进一步的,所述竖屏应用推送单元对竖屏应用进行推送时,使竖屏应用整体居中,且按最大比例同比例缩放。
发明的有益效果
有益效果
本发明方法及系统,监控应用和操控设备的类型,针对横屏应用和竖屏应用的不同,对第一类设备和第二类设备的重力传感器数据进行调整,使得各种操控设备都能够简单便捷的对横屏应用和竖屏应用进行操控,从而使得操控设备能 够很好的对机顶盒上的各种应用进行操控,使各种应用都能够适配安装在机顶盒上,极大的方便了用户操控,大大提高了机顶盒的通用性。
对附图的简要说明
附图说明
图1是一个实施例中的机顶盒上应用的操控方法的流程图;
图2是一个实施例中的机顶盒上应用操控系统的流程图。
发明实施例
本发明的实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本发明。
图1是一个实施例中的机顶盒上应用的操控方法的流程图。如图1所示,该操控方法包括如下步骤:
S10:监控安装在机顶盒上的应用及与机顶盒连接的操控设备。
由于安装在机顶盒上的应用根据应用的显示方式,有横屏显示和竖屏显示之分,横屏显示的应用定义为横屏应用,竖屏显示的应用定义为竖屏应用,在应用安装在机顶盒上时需要监控应用的横竖屏类型。同时,由于机顶盒在与操控设备连接,将镜像推送到操控设备上时,操控设备的重力传感器按照方式不同,导致操控设备重力传感器的坐标(或坐标系)不同,故在操控设备与机顶盒连接后,需要监控操控设备属于哪一种类型。通过对应用及操控设备的监控,实时获取应用和操控设备的类型。
S20:若应用为横屏应用,如果操控设备为第一类设备,则将第一类设备的重力传感器数据直接传送给应用;如果操控设备为第二类设备,则将第二类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用。其中,第一类设备为手机或者重力传感器坐标系和手机相同的其他设备。第二类设备为重力传感器坐标系与手机重力传感器坐标系X轴和Y轴相反的设备。例如PAD。
通过对应用及操控设备的监控,获取应用和操控设备的类型后,需要根据应用和操控设备的类型,对操控设备重力传感器数据进行相适应的调整,以使操控 设备能够方便的对各种应用进行操控,使各种应用能够适配到机顶盒上。
该实施例中,如果应用为横屏显示的横屏应用,那么机顶盒在将镜像推送到操控终端上时,也是以横屏推送到操控终端上的,这就与应用安装在操控设备上显示没有差别,则此时对于第一类设备(优选为手机),在对机顶盒上应用进行操控时,也是横屏对应用进行操控的,第一类设备的重力传感器数据不需要进行处理,直接可以传送给应用,对机顶盒上的应用进行操控。
对于第二类设备(优选为PAD),由于第二类设备重力传感器坐标系的X轴和Y轴与第一类设备的相反,虽然应用在第二类设备上也是横屏显示,但是第二类设备必须竖屏对应用进行操控才可以,只有将第二类设备的重力传感器数据中X轴和Y轴数据调换后发送给应用,才能使第二类设备也是横屏对应用进行操控。故该实施例中,如果操控设备为第二类设备,则将第二类设备重力传感器数据中X轴数据与Y轴数据调换后再传送给应用,从而方便第二类设备操控应用,使应用更好的适配机顶盒。
在进一步的实施方式中,将第二类设备重力传感器数据中X轴数据与Y轴数据调换后再传送给应用的步骤具体为:由第二类设备对重力传感器数据中X轴数据与Y轴数据调换后传送给应用;或者由机顶盒对重力传感器数据中X轴数据与Y轴数据调换后传送给应用。即对第二类设备重力传感器数据的调换可以由第二类设备完成,也可以由机顶盒完成。考虑到便捷性,优选的,由机顶盒对重力传感器数据中X轴数据与Y轴数据进行调换。具体的,机顶盒接收第二类设备传送的重力传感器数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口(Java Native Interface,JAVA本地接口)传送给应用层,从而传送给应用,对应用进行操控。
S30:若应用为竖屏应用,如果操控设备为第二类设备,则将第二类设备重力传感器数据直接传送给应用;如果操控设备为第一类设备,则将第一类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用。
如果通过对应用及操控设备的监控,应用为竖屏显示的竖屏应用,那么机顶盒在将镜像推送到操控终端上时,仍旧以横屏推送到操控终端上的,这就与竖屏应用安装在操控设备上显示产生很大差别,则此时对于第一类设备(优选为手 机),在对机顶盒上应用进行操控时,机顶盒横屏推送到第一类设备上,但是第一类设备必须竖屏对应用进行操控,只有将第一类设备的重力传感器数据中X轴和Y轴数据调换后发送给应用,才能使第一类设备也是横屏对应用进行操控。故该实施例中,如果操控设备为第一类设备,则将第一类设备重力传感器数据中X轴数据与Y轴数据调换后再传送给应用,从而方便第一类设备操控应用,使应用更好的适配机顶盒。
在进一步的实施方式中,将第一类设备重力传感器数据中X轴数据与Y轴数据调换后再传送给应用的步骤具体为:由第一类设备对重力传感器数据中X轴数据与Y轴数据调换后传送给应用;或者由机顶盒对重力传感器数据中X轴数据与Y轴数据调换后传送给应用。即对第一类设备重力传感器数据的调换可以由第二类设备完成,也可以由机顶盒完成。考虑到便捷性,优选的,由机顶盒对第一类设备重力传感器数据中X轴数据与Y轴数据进行调换。具体的,机顶盒接收第一类设备传送的重力传感器数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口(Java Native Interface,JAVA本地接口)传送给应用层,从而传送给应用,对应用进行操控。
对于第二类设备(优选为PAD),由于第二类设备重力传感器坐标系的X轴和Y轴与第一类设备的相反,此时不需要对第二类设备重力传感器数据进行调整,直接发送给应用即可。
同时,考虑到竖屏应用安装在机顶盒上时,如果机顶盒在推送应用到电视或者操控设备上时拉满全屏会极大影响应用的分辨率,为保持竖屏应用分辨率,该方法进一步包括:机顶盒获取竖屏应用的分辨率,在进行推送时按照竖屏应用的分辨率同比例的进行缩放,对竖屏应用进行推送。进一步的,机顶盒对竖屏应用进行推送时,使竖屏应用整体居中,且按最大比例同比例缩放。这样就使得竖屏应用最大化显示且分辨率不受影响,方便用户操控。
该机顶盒上应用的操控方法,监控应用和操控设备的类型,针对横屏应用和竖屏应用的不同,对第一类设备和第二类设备的重力传感器数据进行调整,使得各种操控设备都能够简单便捷的对横屏应用和竖屏应用进行操控,从而使得操控设备能够很好的对机顶盒上的各种应用进行操控,使各种应用都能够适配安 装在机顶盒上,极大的方便了用户操控,大大提高了机顶盒的通用性。
同时,本发明还提供一种机顶盒上应用的操控系统。如图2所示,该机顶盒上应用的操控系统包括:
监控单元100,监控安装在机顶盒上的应用及与机顶盒连接的操控设备。
由于安装在机顶盒上的应用根据应用的显示方式,有横屏显示和竖屏显示之分,横屏显示的应用定义为横屏应用,竖屏显示的应用定义为竖屏应用,在应用安装在机顶盒上时监控单元100需要监控应用的横竖屏类型。同时,由于机顶盒在与操控设备连接,将镜像推送到操控设备上时,操控设备的重力传感器按照方式不同,导致操控设备重力传感器的坐标(或坐标系)不同,故在操控设备与机顶盒连接后,监控单元100需要监控操控设备属于哪一种类型。监控单元100通过对应用及操控设备的监控,实时获取应用和操控设备的类型。
横屏应用操控单元200,若应用为横屏应用,如果操控设备为第一类设备,则将第一类设备的重力传感器数据直接传送给应用;如果操控设备为第二类设备,则将第二类设备重力传感器数据中X轴数据与Y轴数据调换后再传送给应用。其中,第一类设备为手机或者重力传感器坐标系和手机相同的其他设备。第二类设备为重力传感器坐标系与手机重力传感器坐标X轴和Y轴相反的设备。例如PAD。
通过对应用及操控设备的监控,获取应用和操控设备的类型后,需要根据应用和操控设备的类型,对操控设备重力传感器数据进行相适应的调整,以使操控设备能够方便的对各种应用进行操控,使各种应用能够适配到机顶盒上。
该实施例中,如果应用为横屏显示的横屏应用,那么机顶盒在将镜像推送到操控终端上时,也是以横屏推送到操控终端上的,这就与应用安装在操控设备上显示没有差别,则此时对于第一类设备(优选为手机),在对机顶盒上应用进行操控时,也是横屏对应用进行操控的,横屏应用操控单元200对第一类设备的重力传感器数据不需要进行处理,直接可以传送给应用,对机顶盒上的应用进行操控。
对于第二类设备(优选为PAD),由于第二类设备重力传感器坐标系的X轴和Y轴与第一类设备的相反,虽然应用在第二类设备上也是横屏显示,但是第二类 设备必须竖屏对应用进行操控才可以,只有将第二类设备的重力传感器数据中X轴和Y轴数据调换后发送给应用,才能使第二类设备也是横屏对应用进行操控。故该实施例中,如果操控设备为第二类设备,横屏应用操控单元200则将第二类设备重力传感器数据中X轴数据与Y轴数据调换后再传送给应用,从而方便第二类设备横屏操控应用,使应用更好的适配机顶盒。
在进一步的实施方式中,横屏应用操控单元200安装于第二类设备上,对重力传感器数据中X轴数据与Y轴数据调换后传送给应用;或者横屏应用操控单元200安装于机顶盒上,对重力传感器数据中X轴数据与Y轴数据调换后传送给应用。即对第二类设备重力传感器数据的调换可以由第二类设备完成,也可以由机顶盒完成。考虑到便捷性,优选的,横屏应用操控单元200安装于机顶盒上,对重力传感器数据中X轴数据与Y轴数据进行调换。具体的,横屏应用操控单元200安装于机顶盒上,接收第二类设备传送的重力传感器的数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口(Java Native Interface,JAVA本地接口)传送给应用层,从而传送给应用,对应用进行操控。
竖屏应用操控单元300,若应用为竖屏应用,如果操控设备为第二类设备,则将第二类设备重力传感器数据直接传送给应用,如果操控设备为第一类设备,则将第一类设备重力传感器数据中X轴数据与Y轴数据调换后再传送给应用。
如果通过对应用及操控设备的监控,应用为竖屏显示的竖屏应用,那么机顶盒在将镜像推送到操控终端上时,仍旧以横屏推送到操控终端上的,这就与竖屏应用安装在操控设备上显示产生很大差别,则此时对于第一类设备(优选为手机),在对机顶盒上应用进行操控时,机顶盒横屏推送到第一类设备上,但是第一类设备必须竖屏对应用进行操控,只有将第一类设备的重力传感器数据中X轴和Y轴数据调换后发送给应用,才能使第一类设备也是横屏对应用进行操控。故该实施例中,如果操控设备为第一类设备,竖屏应用操控单元300则将第一类设备重力传感器数据中X轴数据与Y轴数据调换后再传送给应用,从而方便第一类设备操控应用,使应用更好的适配机顶盒。
在进一步的实施方式中,竖屏应用操控单元300安装于第一设备上,对重力传感器数据中X轴数据与Y轴数据调换后传送给应用;或者竖屏应用操控单元300安 装于机顶盒上,对重力传感器数据中X轴数据与Y轴数据调换后传送给应用。即对第一类设备重力传感器数据的调换可以由第一类设备完成,也可以由机顶盒完成。考虑到便捷性,优选的,竖屏应用操控单元300安装于机顶盒上,对重力传感器数据中X轴数据与Y轴数据进行调换。具体的,竖屏应用操控单元300安装于机顶盒上,接收第一类设备传送的重力传感器的数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口(Java Native Interface,JAVA本地接口)传送给应用层,从而传送给应用,对应用进行操控。
对于第二类设备(优选为PAD),由于第二类设备重力传感器坐标系的X轴和Y轴与第一类设备的相反,此时竖屏应用操控单元300不需要对第二类设备重力传感器数据进行调整,直接发送给应用即可。
同时,考虑到竖屏应用安装在机顶盒上时,如果机顶盒在推送应用到电视或者操控设备上时拉满全屏会极大影响应用的分辨率,为保持竖屏应用分辨率,该系统进一步包括:
竖屏应用推送单元400,获取竖屏应用的分辨率,在进行推送时按照竖屏应用的分辨率同比例的进行缩放,对竖屏应用进行推送。进一步的,竖屏应用推送单元400对竖屏应用进行推送时,使竖屏应用整体居中,且按最大比例同比例缩放。这样就使得竖屏应用最大化显示且分辨率不受影响,方便用户操控。
该机顶盒上应用的操控系统,监控单元100监控应用和操控设备的类型,横屏应用操控单元200和竖屏应用操控单元300针对横屏应用和竖屏应用的不同,对第一类设备和第二类设备的重力传感器数据进行调整,使得各种操控设备都能够简单便捷的对横屏应用和竖屏应用进行操控,从而使得操控设备能够很好的对机顶盒上的各种应用进行操控,使各种应用都能够适配安装在机顶盒上,极大的方便了用户操控,大大提高了机顶盒的通用性。
本发明方法及系统,监控应用和操控设备的类型,针对横屏应用和竖屏应用的不同,对第一类设备和第二类设备的重力传感器数据进行调整,使得各种操控设备都能够简单便捷的对横屏应用和竖屏应用进行操控,从而使得操控设备能够很好的对机顶盒上的各种应用进行操控,使各种应用都能够适配安装在机顶盒上,极大的方便了用户操控,大大提高了机顶盒的通用性。
以上仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (10)

  1. 一种机顶盒上应用的操控方法,其特征在于,包括如下步骤:
    监控安装在机顶盒上的应用及与机顶盒连接的操控设备;
    若应用为横屏应用,如果操控设备为第一类设备,则将第一类设备的重力传感器数据直接传送给应用;如果操控设备为第二类设备,则将第二类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用;其中,所述第一类设备为手机或者重力传感器坐标系和手机相同的其他设备,所述第二类设备为重力传感器坐标系与手机重力传感器坐标系X轴和Y轴相反的设备;
    若应用为竖屏应用,如果操控设备为第二类设备,则将第二类设备重力传感器数据直接传送给应用;如果操控设备为第一类设备,则将第一类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用。
  2. 根据权利要求1所述的机顶盒上应用的操控方法,其特征在于,所述将第二类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用的步骤具体为:
    由第二类设备对重力传感器数据中X轴数据与Y轴数据调换后传送给应用,或者由机顶盒对重力传感器数据中X轴数据与Y轴数据调换后传送给应用;
    所述将第一类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用的步骤具体为:
    由第一类设备对重力传感器数据中X轴数据与Y轴数据调换后传送给应用,或者由机顶盒对重力传感器数据中X轴数据与Y轴数据调换后传送给应用。
  3. 根据权利要求2所述的机顶盒上应用的操控方法,其特征在于,所述将第二类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用的步骤具体为:
    机顶盒接收所述第二类设备传送的重力传感器数据,并对重力传 感器数据中X轴数据与Y轴数据进行调换后通过JNI接口传送给应用层;
    所述将第一类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用的步骤具体为:
    机顶盒接收所述第一类设备传送的重力传感器数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口传送给应用层。
  4. 根据权利要求1所述的机顶盒上应用的操控方法,其特征在于,所述方法还包括:
    机顶盒获取竖屏应用的分辨率,在进行推送时按照竖屏应用的分辨率同比例的进行缩放,对竖屏应用进行推送。
  5. 根据权利要求4所述的机顶盒上应用的操控方法,其特征在于,所述方法还包括:
    机顶盒对竖屏应用进行推送时,使竖屏应用整体居中,且按最大比例同比例缩放。
  6. 一种机顶盒上应用的操控系统,其特征在于,包括:
    监控单元,监控安装在机顶盒上的应用及与机顶盒连接的操控设备;
    横屏应用操控单元,若应用为横屏应用,如果操控设备为第一类设备,则将第一类设备的重力传感器数据直接传送给应用;如果操控设备为第二类设备,则将第二类设备重力传感器数据中X轴数据与Y轴数据调换后传送给应用;其中,所述第一类设备为手机或者重力传感器坐标系和手机相同的其他设备,所述第二类设备为重力传感器坐标系与手机重力传感器坐标系X轴和Y轴相反的设备;
    竖屏应用操控单元,若应用为竖屏应用,如果操控设备为第二类设备,则将第二类设备重力传感器数据直接传送给应用;如果操控设备为第一类设备,则将第一类设备重力传感器数据中X轴数据 与Y轴数据调换后传送给应用。
  7. 根据权利要求6所述的机顶盒上应用的操控系统,其特征在于,所述横屏应用操控单元安装于第二类设备上或者机顶盒上;所述竖屏应用操控单元安装于第二类设备上或者机顶盒上。
  8. 根据权利要求7所述的机顶盒上应用的操控系统,其特征在于,所述横屏应用操控单元安装于机顶盒上,接收第二类设备传送的重力传感器的数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口传送给应用层;所述竖屏应用操控单元安装于机顶盒上,接收第一类设备传送的重力传感器的数据,并对重力传感器数据中X轴数据与Y轴数据进行调换后通过JNI接口传送给应用层。
  9. 根据权利要求6所述的机顶盒上应用的操控系统,其特征在于,所述系统还包括:
    竖屏应用推送单元,获取竖屏应用的分辨率,在进行推送时按照竖屏应用的分辨率同比例的进行缩放,对竖屏应用进行推送。
  10. 根据权利要求9所述的机顶盒上应用的操控系统,其特征在于,所述竖屏应用推送单元对竖屏应用进行推送时,使竖屏应用整体居中,且按最大比例同比例缩放。
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