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    • 1. 发明申请
    • TUNE IN TIME REDUCTION
    • 节省时间减少
    • US20070153914A1
    • 2007-07-05
    • US11275394
    • 2005-12-29
    • Miska HannukselaMehdi Rezaei
    • Miska HannukselaMehdi Rezaei
    • H04N7/12
    • H04N21/64315H04N21/23424H04N21/4384H04N21/44016
    • The time until a media decoder is refreshed to produce correct output samples is minimized if an IDR picture is the first picture in a decoding order in each MPE-FEC frame. A system enabling minimization of tune-in delay is described. Aspects of the system include a content encoder for receiving a source signal including first and second bit streams and for encoding the first and second bit streams, the encoded first bit stream including a decoder refresh bit stream and the encoded second bit stream including a media bit stream. A server receives the encoded first and second bit streams and encapsulates the encoded first and second bit streams into packets. An encapsulator then receives the packets and composes a time-sliced multi-protocol encapsultation (MPE) stream by replacing a spliceable picture from the encoded second bit stream.
    • 如果IDR图像是每个MPE-FEC帧中的解码顺序中的第一图像,则直到媒体解码器刷新以产生正确输出样本的时间被最小化。 描述了能够最小化调谐延迟的系统。 该系统的方面包括用于接收包括第一和第二比特流的源信号并用于对第一和第二比特流进行编码的内容编码器,编码的第一比特流包括解码器刷新比特流,并且编码的第二比特流包括媒体比特 流。 服务器接收编码的第一和第二比特流,并将编码的第一和第二比特流封装成分组。 然后,封装器通过从编码的第二比特流替换可拼接图像来接收分组并且组成时间分片的多协议封装(MPE)流。
    • 4. 发明授权
    • Tune in time reduction
    • 调整时间缩短
    • US07826536B2
    • 2010-11-02
    • US11275394
    • 2005-12-29
    • Miska HannukselaMehdi Rezaei
    • Miska HannukselaMehdi Rezaei
    • H04N5/44G06F13/00
    • H04N21/64315H04N21/23424H04N21/4384H04N21/44016
    • The time until a media decoder is refreshed to produce correct output samples is minimized if an IDR picture is the first picture in a decoding order in each MPE-FEC frame. A system enabling minimization of tune-in delay is described. Aspects of the system include a content encoder for receiving a source signal including first and second bit streams and for encoding the first and second bit streams, the encoded first bit stream including a decoder refresh bit stream and the encoded second bit stream including a media bit stream. A server receives the encoded first and second bit streams and encapsulates the encoded first and second bit streams into packets. An encapsulator then receives the packets and composes a time-sliced multi-protocol encapsultation (MPE) stream by replacing a spliceable picture from the encoded second bit stream.
    • 如果IDR图像是每个MPE-FEC帧中的解码顺序中的第一图像,则直到媒体解码器刷新以产生正确输出样本的时间被最小化。 描述了能够最小化调谐延迟的系统。 该系统的方面包括用于接收包括第一和第二比特流的源信号并用于对第一和第二比特流进行编码的内容编码器,编码的第一比特流包括解码器刷新比特流,并且编码的第二比特流包括媒体比特 流。 服务器接收编码的第一和第二比特流,并将编码的第一和第二比特流封装成分组。 然后,封装器通过从编码的第二比特流替换可拼接图像来接收分组并且组成时间分片的多协议封装(MPE)流。