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    • 7. 发明申请
    • Systems and methods for playing digital video in reverse and fast forward modes
    • 以反向和快进模式播放数字视频的系统和方法
    • US20060029372A1
    • 2006-02-09
    • US11247011
    • 2005-10-10
    • Peter BarrettDustin Green
    • Peter BarrettDustin Green
    • H04N5/76
    • H04N5/783H04N5/781H04N9/8045
    • Replaying a compressed digital video stream in fast-forward and reverse modes at varied playback rates. An index of interceded frames, those frames not dependant on other frames for generation, is stored. The index includes the size of intercoded frames and their storage location. When a specified playback rate is requested, the intercoded frames are retrieved using the index. The interceded frames then have one or more intracoded frames, frames that reference other frames for generation, placed between them to generate a frame sequence. The intracoded frames are “blank,” meaning they contain only information from their associated interceded frame. By inserting “blank” frames specified playback rates and bit rates are generated. The index of interceded frames may also be accessed to generate playback in reverse mode, which conserves memory resources of associated systems by generating the reverse playback stream in an iterative manner.
    • 以不同的播放速度以快进和反向模式重放压缩数字视频流。 存储中间帧的索引,那些不依赖于生成其他帧的帧。 索引包括跨编码帧的大小及其存储位置。 当请求指定的播放速率时,使用索引检索编码间帧。 所插入的帧然后具有一个或多个内部编码帧,参考其他帧生成的帧,放置在它们之间以生成帧序列。 内部编码的帧是“空白的”,这意味着它们仅包含来自其相关联的帧的信息。 通过插入“空白”帧,生成指定的播放速率和比特率。 也可以访问中间帧的索引以在反向模式下生成回放,其通过以迭代方式生成反向重放流来节省相关系统的存储器资源。
    • 8. 发明申请
    • Systems and methods for playing digital video in reverse and fast forward modes
    • 以反向和快进模式播放数字视频的系统和方法
    • US20050265694A1
    • 2005-12-01
    • US11198500
    • 2005-08-05
    • Dustin GreenPeter Barrett
    • Dustin GreenPeter Barrett
    • H04N5/781H04N5/783H04N9/804H04N5/91
    • H04N5/783H04N5/781H04N9/8045
    • Replaying a compressed digital video stream in fast-forward and reverse modes at varied playback rates. An index of intercoded frames, those frames not dependant on other frames for generation, is stored. The index includes the size of interceded frames and their storage location. When a specified playback rate is requested, the interceded frames are retrieved using the index. The intercoded frames then have one or more intracoded frames, frames that reference other frames for generation, placed between them to generate a frame sequence. The intracoded frames are “blank,” meaning they contain only information from their associated intercoded frame. By inserting “blank” frames specified playback rates and bit rates are generated. The index of interceded frames may also be accessed to generate playback in reverse mode, which conserves memory resources of associated systems by generating the reverse playback stream in an iterative manner.
    • 以不同的播放速度以快进和反向模式重放压缩数字视频流。 存储帧间编码帧的索引,那些不依赖于生成其他帧的帧。 索引包括中间帧的大小及其存储位置。 当请求指定的播放速率时,使用索引检索插入的帧。 帧间编码的帧然后具有一个或多个内部编码帧,引用其它帧以生成帧的帧,以生成帧序列。 内部编码的帧是“空白的”,这意味着它们仅包含来自其相关联的帧间帧的信息。 通过插入“空白”帧,生成指定的播放速率和比特率。 也可以访问中间帧的索引以在反向模式下生成回放,其通过以迭代方式生成反向重放流来节省相关系统的存储器资源。
    • 10. 发明申请
    • Architecture for distributed sending of media data
    • 用于分发发送媒体数据的体系结构
    • US20050097213A1
    • 2005-05-05
    • US10800251
    • 2004-03-12
    • Peter BarrettJames BaldwinDustin Green
    • Peter BarrettJames BaldwinDustin Green
    • H04N7/173G06F15/16
    • H04N21/2312H04N7/17336H04N21/23103H04N21/2318H04N21/26208H04N21/26216H04N21/47202H04N21/632H04N21/6405H04N21/6581H04N21/8352H04N21/8456
    • Media data is distributed across multiple devices, and decentralized media data dissemination architecture is formed. Multiple respective senders are associated with multiple respective distributed portions of the media data. Multiple schedulers are associated with clients and are capable of scheduling the sending of media data thereto. Schedulers formulate send requests that stipulate particular media data portions and designate destination clients. These send requests are transmitted to the multiple senders in accordance with the associated respective distributed portions in conjunction with the stipulated particular media data portion of each send request. The senders are capable of sending the stipulated particular media data portions of the send requests to the designated destination clients without routing through the schedulers. In a described implementation, a sender and a scheduler are present on each device of the multiple devices.
    • 媒体数据分布在多个设备上,形成分散的媒体数据传播架构。 多个相应的发送者与媒体数据的多个相应分布的部分相关联。 多个调度器与客户端相关联,并且能够调度向其发送媒体数据。 调度器制定了规定特定媒体数据部分并指定目标客户端的发送请求。 这些发送请求结合每个发送请求的规定的特定媒体数据部分,根据关联的各个分配部分被发送到多个发送者。 发送者能够将发送请求的规定的特定媒体数据部分发送到指定的目的地客户端而不通过调度器路由。 在所描述的实现中,在多个设备的每个设备上存在发送者和调度器。