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    • 1. 发明申请
    • METHODS AND APPARATUS FOR CONTROLLING LIGHT FIELD CAPTURE
    • 控制光场捕获的方法和装置
    • WO2016070680A1
    • 2016-05-12
    • PCT/CN2015/089314
    • 2015-09-10
    • BEIJING ZHIGU TECH CO., LTD.
    • DU, LinZHOU, Liang
    • H04N5/232
    • H04N5/3696H04N5/2253H04N5/23229
    • Embodiments of the present application disclose various methods and various apparatus for controlling light field capture. The method for controlling light field capture comprises: acquiring a depth range of a first zone, the first zone being at least a part of a scene to be shot; determining, according to the acquired depth range, an object distance adjustment range from a pixel point of at least one imaging zone to a reference point of a sub-lens, the at least one imaging zone being an imaging zone that affects light field capture of the first zone in an image sensor of a light field camera, the sub-lens being a sub-lens that corresponds to the at least one imaging zone in a sub-lens array of the light field camera; adjusting, according to the object distance adjustment range, a bending degree of the at least one imaging zone; and performing, based on the image sensor after being adjusted, light field capture on the scene to be shot. The solution can achieve that a refocusing point range of a light field sub-image that corresponds to the first zone in a light field image is adjustable.
    • 本申请的实施例公开了用于控制光场捕获的各种方法和各种装置。 用于控制光场捕获的方法包括:获取第一区域的深度范围,所述第一区域是要被拍摄的场景的至少一部分; 根据获取的深度范围,确定从至少一个成像区域的像素点到子透镜的参考点的物体距离调节范围,所述至少一个成像区域是影响光场捕获的成像区域 所述子透镜是与所述光场照相机的子透镜阵列中的所述至少一个成像区域相对应的子透镜;所述第一区域是光场照相机的图像传感器中的第一区域, 根据所述物体距离调节范围调整所述至少一个成像区域的弯曲度; 并且在调整之后基于图像传感器执行要拍摄的场景上的光场捕获。 该解决方案可以实现对应于光场图像中的第一区域的光场子图像的重新聚焦点范围是可调节的。
    • 2. 发明申请
    • METHODS AND APPARATUS FOR CONTROLLING LIGHT FIELD CAPTURE
    • 控制光场捕获的方法和装置
    • WO2016065991A1
    • 2016-05-06
    • PCT/CN2015/089298
    • 2015-09-10
    • BEIJING ZHIGU TECH CO., LTD.
    • DU, LinZHOU, Liang
    • H04N5/225H04N5/232
    • H04N13/296G02B3/0006H04N5/2254H04N5/23212H04N5/238H04N13/207H04N13/232
    • Embodiments of the present application disclose various methods and an apparatus for controlling light field capture. One method for controlling light field capture comprises: determining, at least according to at least one sub-lens that affects imaging of a first region in a sub-lens array of a light field camera, at least one first sub-lens to be adjusted, the first region being a part of a scene to be shot; determining an object refocusing accuracy of a light field image section captured by the first sub-lens in a light field image of the scene to be shot; adjusting, according to the object refocusing accuracy, a light field capture parameter of the first sub-lens; and performing, based on the light field camera after being adjusted, light field capture on the scene to be shot. The solution can achieve differentiated distribution of refocusing accuracies of various light field image sections that correspond to different regions of the scene to be shot, thereby better satisfying a user's actual application demands.
    • 本申请的实施例公开了用于控制光场捕获的各种方法和装置。 用于控制光场捕获的一种方法包括:至少根据影响光场照相机的子透镜阵列中的第一区域的成像的至少一个子透镜来确定要调节的至少一个第一子透镜 ,第一个地区是被拍摄场景的一部分; 确定由所述第一子透镜在要拍摄的场景的光场图像中捕获的光场图像部分的对象重聚焦精度; 根据所述对象重新聚焦精度调整所述第一子透镜的光场捕获参数; 并且在调整后基于光场相机执行要拍摄的场景上的光场捕获。 该解决方案可以实现对应于要拍摄的场景的不同区域的各种光场图像部分的重新聚焦精度的不同分布,从而更好地满足用户的实际应用需求。
    • 4. 发明申请
    • IMAGING CONTROL METHODS AND APPARATUSES FOR DIGITAL IMAGE COLLECTION
    • 成像控制方法和数字图像采集的设备
    • WO2016034060A1
    • 2016-03-10
    • PCT/CN2015/088096
    • 2015-08-26
    • BEIJING ZHIGU TECH CO., LTD.
    • DU, Lin
    • H04N5/232
    • H04N5/23296H01L27/14601H01L27/14607H04N5/232H04N5/2628H04N5/335H04N5/3454H04N5/3696
    • Embodiments of the subject application disclose various imaging control methods and apparatuses for a digital zoom image and various imaging devices. One of imaging control methods for a digital zoom image comprises : acquiring a digital zoom parameter; determining an actual imaging area of an image sensor according to the acquired digital zoom parameter; adjusting a pixel density distribution of the image sensor, to cause an average pixel density of the actual imaging area after adjustment to become greater than those of other areas of the image sensor; and acquiring, by using the actual imaging area with the adjusted average pixel density, an image of a scene to be photographed. The technical solutions provided in the embodiments of the subject application cause that as many as possible pixels of the image sensor gather at an actual imaging area corresponding to a digital zoom parameter to participate in image collection, thereby improving efficiency of image collection and the definition of a collected image.
    • 本申请的实施例公开了用于数字变焦图像和各种成像装置的各种成像控制方法和装置。 数字变焦图像的成像控制方法之一包括:获取数字变焦参数; 根据获取的数字变焦参数确定图像传感器的实际成像区域; 调整图像传感器的像素密度分布,使调整后的实际摄像区域的平均像素密度变得大于图像传感器的其他区域的平均像素密度; 并且通过使用具有调整后的平均像素密度的实际成像区域获取要被拍摄的场景的图像。 在本申请的实施例中提供的技术方案导致图像传感器中的尽可能多的像素聚集在与数字变焦参数相对应的实际成像区域以参与图像采集,从而提高图像采集的效率和定义 收集的图像。
    • 5. 发明申请
    • MOBILE DEVICE POSITION DETERMINING METHOD AND DETERMINING APPARATUS, AND MOBILE DEVICE
    • 移动设备位置确定方法和确定设备以及移动设备
    • WO2016037577A1
    • 2016-03-17
    • PCT/CN2015/089308
    • 2015-09-10
    • BEIJING ZHIGU TECH CO., LTD.
    • HUANG, Weicai
    • H04W4/02
    • H04W4/025H04W4/043
    • Embodiments of the present disclosure disclose a mobile device position determining method and determining apparatus, and a mobile device comprising the determining apparatus. The method comprises: determining that a mobile device is in a first state, wherein in the first state, the mobile device is located at a first position relative to a user; determining that a state of the mobile device is changed from the first state to a second state; acquiring position difference information between a second position of the mobile device relative to the user in the second state and the first position; and determining the second position at least according to the first position and the position difference information. The technical solutions of the embodiments of the present disclosure can conveniently and accurately determine a position of a mobile device relative to a user, so as to make previous preparations for adjusting a function state thereof according to an environment where the mobile device is located.
    • 本公开的实施例公开了移动设备位置确定方法和确定设备,以及包括确定设备的移动设备。 该方法包括:确定移动设备处于第一状态,其中在第一状态下,移动设备位于相对于用户的第一位置; 确定所述移动设备的状态从所述第一状态变为第二状态; 在所述第二状态中获取所述移动设备的相对于所述用户的第二位置与所述第一位置之间的位置差异信息; 以及至少根据所述第一位置和所述位置差异信息确定所述第二位置。 本公开的实施例的技术方案可以方便和准确地确定移动设备相对于用户的位置,以便根据移动设备所在的环境进行以前准备以调整其功能状态。
    • 8. 发明申请
    • METHODS AND APPARATUS FOR SWITCHING BETWEEN A WIRED COMMUNICATION AND A WIRELESS COMMUNICATION
    • 用于有线通信和无线通信之间的切换的方法和装置
    • WO2016029847A1
    • 2016-03-03
    • PCT/CN2015/088089
    • 2015-08-26
    • BEIJING ZHIGU TECH CO., LTD.
    • LIU, Jia
    • H04W36/00
    • H04L41/0803H04W4/80H04W8/005H04W36/00H04W76/10H04W76/14
    • Embodiments of the subject application provide a wireless communication method and a wireless communication apparatus. The method comprises: determining information associated with a wired connection between a first device and a second device; and generating a wireless communication configuration parameter according to the information associated with the wired connection and a wireless communication specification associated with a wireless communication to be performed by the first device and the second device, wherein, in response to that the disconnection of the wired connection, wherein the wireless communication parameter enables first device and the second device to perform the wireless communication according to the wireless communications configuration parameter. The method and apparatus of embodiments of the subject application generate a wireless communication configuration parameter for wireless communication according to information associated with a wired connection, thereby enabling switching between a wired communications and a wireless communication manner quickly and in a secure manner.
    • 本申请的实施例提供无线通信方法和无线通信装置。 该方法包括:确定与第一设备和第二设备之间的有线连接相关联的信息; 以及根据与所述有线连接相关联的信息以及与由所述第一设备和所述第二设备执行的无线通信相关联的无线通信规范来生成无线通信配置参数,其中响应于所述有线连接的断开 其中所述无线通信参数使所述第一设备和所述第二设备能够根据所述无线通信配置参数执行所述无线通信。 本申请的实施例的方法和装置根据与有线连接相关联的信息产生用于无线通信的无线通信配置参数,由此能够快速和安全地进行有线通信和无线通信方式之间的切换。
    • 10. 发明申请
    • LIGHT FIELD DISPLAY CONTROL METHODS AND APPARATUS, AND LIGHT FIELD DISPLAY DEVICES
    • 光场显示控制方法和装置以及光场显示装置
    • WO2016107209A1
    • 2016-07-07
    • PCT/CN2015/089316
    • 2015-09-10
    • BEIJING ZHIGU TECH CO., LTD.
    • ZHOU, LiangDU, Lin
    • H04N13/04H04N5/74
    • G09G5/391G02B3/0037G06T7/11G09G3/003G09G5/10G09G2320/0626G09G2340/0407G09G2354/00G09G2380/02H04N13/388
    • Embodiments of the present application disclose various light field display control methods and apparatus, and various light field display devices. One of the methods comprises: determining a first display region of a display of a light field display device according to target vision adjustment range information; adjusting display pixel density distribution of the display, to cause that display pixel density distribution of the first display region in the display after the adjustment is different from that of another display region of the display; performing sampling processing on a first light field image according to location information of display pixels of the display after the adjustment, the first light field image being corresponding to vision information in the target vision adjustment range and related to a source image; and displaying, by the light field display device after the adjustment, the first light field image undergone the sampling processing. The embodiments of the present application improve a vision correction precision of viewing an image by naked eyes for users having different vision information in a target vision adjustment range.
    • 本申请的实施例公开了各种光场显示控制方法和装置以及各种光场显示装置。 方法之一包括:根据目标视觉调节范围信息确定光场显示装置的显示器的第一显示区域; 调整显示器的显示像素密度分布,使调整后的显示器中的第一显示区域的显示像素浓度分布与显示器的另一显示区域的显示像素密度分布不​​同; 根据所述调整后的显示器的显示像素的位置信息对第一光场图像进行采样处理,所述第一光场图像对应于所述目标视觉调整范围内的与所述源图像相关的视觉信息; 并且在调整之后由光场显示装置显示经过采样处理的第一光场图像。 本申请的实施例提高了在目标视力调节范围内对具有不同视觉信息的用户肉眼观察图像的视力矫正精度。