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    • 3. 发明申请
    • Method and apparatus for transcribing multimedia broadcasting program
    • 用于转录多媒体广播节目的方法和装置
    • US20120281137A1
    • 2012-11-08
    • US13519903
    • 2010-07-20
    • Yuefei GuoXi YangXuejun Bao
    • Yuefei GuoXi YangXuejun Bao
    • H04N7/01
    • H04N5/76H04N21/41407H04N21/4331H04N21/4334
    • A method for transcribing a multimedia broadcasting program is provided by the disclosure. The method comprises the following steps: during playing of the multimedia broadcasting program, when a transcribing command is received, program contents cached in a preset caching area is transferred into a storage device of a mobile terminal, wherein the program contents cached in the caching area have been played when the transcribing command is received (101); and subsequent program contents that continue to be played in the multimedia broadcasting program are transcribed into the storage device. And an apparatus for transcribing a multimedia broadcasting program is further provided by the disclosure. The problem in the prior art may be solved by applying the disclosure, and the problem is that, during a transcription process, a user does not make transcription operation until he/she has enjoyed a segment of the program, and the multimedia program contents finally generated will be incomplete.
    • 通过本公开提供了一种用于转录多媒体广播节目的方法。 该方法包括以下步骤:在播放多媒体广播节目期间,当接收到转录命令时,缓存在预设高速缓存区域的节目内容被传送到移动终端的存储设备中,其中缓存在高速缓存区域中的节目内容 在收到转录命令时已经被播放(101); 并且在多媒体广播节目中继续播放的后续节目内容被转录到存储装置中。 并且通过本公开进一步提供用于转录多媒体广播节目的装置。 可以通过应用本公开来解决现有技术中的问题,并且问题在于,在转录过程期间,用户在他/她已经享受节目的片段之前不进行转录操作,并且多媒体节目内容最终 生成将不完整。
    • 4. 发明申请
    • Method and Router for Implementing Mirroring
    • 实现镜像的方法和路由器
    • US20120082162A1
    • 2012-04-05
    • US13258002
    • 2009-08-24
    • Ning LiXi YangQing Wang
    • Ning LiXi YangQing Wang
    • H04L12/28
    • G06F11/2071
    • A method and router for implementing mirroring, said method including: configuring a remote mirroring port on a source router, establishing a corresponding layer two virtual interface, and specifying a data stream requiring mirroring and a corresponding physical egress port; establishing a layer two virtual interface corresponding to the layer two virtual interface of said source router on a destination router; forming one VPWS tunnel between the layer two virtual interfaces of said source router and said destination router; filtering out the mirroring data stream from the packet received at the remote mirroring port of said source router, and sending obtained mirroring packet from the physical egress port on said source router to said destination router; searching the layer two virtual interface on said destination router after receiving mirroring packet, and sending mirroring packet without a label from its corresponding physical port to a monitoring port, thereby implementing router remote mirroring.
    • 一种用于实现镜像的方法和路由器,所述方法包括:在源路由器上配置远程镜像端口,建立相应的第二层虚拟接口,并指定需要镜像的数据流和相应的物理出口; 在目的路由器上建立对应于所述源路由器的第二层虚拟接口的二层虚拟接口; 在所述源路由器的所述第二层虚拟接口和所述目的路由器之间形成一个VPWS隧道; 从所述源路由器的远程镜像端口接收的分组过滤出镜像数据流,并将获得的镜像分组从所述源路由器上的物理出口端口发送到所述目的路由器; 在接收到镜像报文后,在目的路由器上查找二层虚拟接口,并将不带标签的镜像报文从对应的物理端口发送到监控端口,从而实现路由器远程镜像。
    • 9. 发明授权
    • Ceramics and process for producing
    • US06417126B1
    • 2002-07-09
    • US09511771
    • 2000-02-24
    • Xi Yang
    • Xi Yang
    • C04B35117
    • C04B35/803B24C5/04C04B35/117C04B35/64C04B41/52F27D1/0006F27D1/16F27D3/16
    • The present invention provides a process for producing alumina matrix carbide and boride reinforced ceramic composites wherein for any particular composite, the relative density is about 97% or more of the theoretical density. The composites are prepared in a container wherein the interior surfaces of the container are graphite and have a protective coating consisting of a first layer comprising silicon carbide and boron carbide with a binder and a second layer comprising silicon carbide particles, wherein the protective coating prevents carbon bleed-through and the protective coating maintains a boride-containing equilibrium atmosphere during the process. The present invention further provides an alumina-based ceramic composite which comprises a metal carbide preferably selected from the group consisting of silicon carbide, titanium carbide and zirconium carbide, and mixtures thereof, and a boride preferably selected from the group consisting of boron carbide, titanium boride, or zirconium boride, and mixtures thereof. Finally, the present invention provides a protective coating for a surface comprising a first layer of a silicon carbide and a boron carbide in a binder and a second layer comprising a silicon carbide wherein the protective coating is able to withstand repeated exposure to high temperature.