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    • 4. 发明授权
    • Realization method, apparatus and system for remote monitoring
    • 用于远程监控的实现方法,设备和系统
    • US09572054B2
    • 2017-02-14
    • US14114026
    • 2011-04-27
    • Jianliang LiuSamuel Han Siong ChiaZhenghua LuoYingzhe ZhangYan Xu
    • Jianliang LiuSamuel Han Siong ChiaZhenghua LuoYingzhe ZhangYan Xu
    • G01R31/08H04W24/06H04L29/08H04W4/10H04W4/22
    • H04W24/06H04L67/125H04L67/325H04W4/10H04W4/90
    • A realization method, apparatus and system for remote monitoring, the remote monitoring technique is used between interphones, which includes the following contents: a monitored party receives a remote monitoring request from a monitoring party, the remote monitoring request includes a target control information; the monitored party answers confirming information to the monitoring party after receiving the remote monitoring request successfully, and analyzes the target control information, and then selects transmission mode; the monitored party enters monitored state, starts transmission automatically, and implements the transmission according to the selected transmission mode. Applying the embodiments of the present invention, the remote monitoring function of a interphone will be improved, and the monitoring party can initiatively control the transmission time of the monitored party; or transmission interval and times of the monitored party, so as to realize the repeat monitoring is realized. Furthermore, the target control information of the present invention is not set completely by Customer Program Software (CPS), it also can be set according to the human-computer interface operation, the transmission time of the monitored party is controlled agilely.
    • 一种用于远程监控的实现方法,装置和系统,在对讲机之间使用远程监控技术,其中包括以下内容:被监控方从监控方接收远程监控请求,远程监控请求包括目标控制信息; 被监控方成功接收到远程监控请求后,向监控方回复确认信息,分析目标控制信息,然后选择传输模式; 被监控方进入监控状态,自动启动传输,并根据所选传输模式实现传输。 应用本发明的实施例,提高了对讲机的远程监控功能,监控方可以主动控制被监控方的传输时间; 或被监控方的传输间隔和时间,从而实现重复监控。 此外,本发明的目标控制信息未被客户程序软件(CPS)完全设定,也可以根据人机界面操作进行设定,灵敏地控制被监控方的传输时间。
    • 5. 发明授权
    • Method and device for delivering 3D content
    • 提供3D内容的方法和设备
    • US09307002B2
    • 2016-04-05
    • US14128549
    • 2011-06-24
    • Yan XuLin DuJianping Song
    • Yan XuLin DuJianping Song
    • H04L29/06H04N13/00H04N21/81
    • H04L65/608H04N13/178H04N13/194H04N21/816
    • It is provided a method for delivering a 3D content comprising a 2D part and a metadata part which are divided into equal number of segments and are transmitted in two multicast streams, the method comprising the steps of receiving a request for the 3D content with a starting time point corresponding to a starting segment of the 2D part and a starting segment of the metadata part; and scheduling the transmission of at least one segment of the 2D part including the starting segment of the 2D part in a first multicast stream and the transmission of at least one segment of the metadata part including the starting segment of the metadata part in a second multicast stream, wherein, the transmission of the starting segment of the 2D part and the transmission of the starting segment of the metadata part are synchronized.
    • 提供了一种用于传送包括2D部分和元数据部分的3D内容的方法,所述2D部分和元数据部分被划分成相等数量的片段并且在两个多播流中传输,所述方法包括以下步骤:以起始 时间点对应于2D部分的起始段和元数据部分的起始段; 以及调度在第一组播流中包括2D部分的起始段的2D部分的至少一个段的传输,以及包括第二组播中的元数据部分的起始段的元数据部分的至少一个段的传输 流,其中,2D部分的起始段的传输和元数据部分的起始段的传输被同步。
    • 8. 发明授权
    • Ring light source system for interferometer with adjustable ring radius and ring radial width
    • 用于干涉仪的环形光源系统,具有可调环形半径和环形径向宽度
    • US08764241B2
    • 2014-07-01
    • US13558572
    • 2012-07-26
    • Yan XuYongjian WanYongqian Wu
    • Yan XuYongjian WanYongqian Wu
    • F21S8/00
    • G01B9/02001G02B27/0944
    • A ring light source system for an interferometer with adjustable ring radius and ring radial width may comprise a laser light source, an expander and collimator optical system, an adjustable aperture, a binary phase grating, a variable-focus optical system, and a spatial filter. The expander and collimator optical system is configured to convert a light beam from the light source into a parallel light beam. The adjustable aperture is configured to adjust a diameter of the parallel light beam. The light beam with the diameter adjusted by the adjustable aperture is incident perpendicularly onto the binary phase grating, followed by the variable-focus optical system. The filter is positioned on a back focal plane of the variable-focus optical system, and is configured to receive a ring light source. The ring radius and radial width of the light source are adjustable by adjusting a focus length f1 of the variable-focus optical system.
    • 用于具有可调节环半径和环径向宽度的干涉仪的环形光源系统可以包括激光源,扩展器和准直器光学系统,可调节孔径,二进制相位光栅,可变焦距光学系统和空间滤波器 。 扩展器和准直器光学系统被配置为将来自光源的光束转换成平行光束。 可调整孔径被配置为调节平行光束的直径。 具有由可调孔径调节的直径的光束垂直入射到二进制相位光栅上,随后是可变焦光学系统。 滤光器位于可变焦光学系统的后焦平面上,并且被配置为接收环形光源。 通过调整可变焦光学系统的焦距f1可以调节光源的环半径和径向宽度。
    • 10. 发明申请
    • METHOD AND DEVICE FOR DELIVERING 3D CONTENT
    • 用于传送3D内容的方法和装置
    • US20140136728A1
    • 2014-05-15
    • US14128549
    • 2011-06-24
    • Yan XuLin DuJianping Song
    • Yan XuLin DuJianping Song
    • H04L29/06
    • H04L65/608H04N13/178H04N13/194H04N21/816
    • It is provided a method for delivering a 3D content comprising a 2D part and a metadata part which are divided into equal number of segments and are transmitted in two multicast streams, the method comprising the steps of receiving a request for the 3D content with a starting time point corresponding to a starting segment of the 2D part and a starting segment of the metadata part; and scheduling the transmission of at least one segment of the 2D part including the starting segment of the 2D part in a first multicast stream and the transmission of at least one segment of the metadata part including the starting segment of the metadata part in a second multicast stream, wherein, the transmission of the starting segment of the 2D part and the transmission of the starting segment of the metadata part are synchronized.
    • 提供了一种用于传送包括2D部分和元数据部分的3D内容的方法,所述2D部分和元数据部分被划分成相等数量的片段并且在两个多播流中传输,所述方法包括以下步骤:以起始 时间点对应于2D部分的起始段和元数据部分的起始段; 以及调度在第一组播流中包括2D部分的起始段的2D部分的至少一个段的传输,以及包括第二组播中的元数据部分的起始段的元数据部分的至少一个段的传输 流,其中,2D部分的起始段的传输和元数据部分的起始段的传输被同步。