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    • 3. 发明申请
    • STREAM DATA MULTIPLEXING DEVICE AND MULTIPLEXING METHOD
    • 流数据多路复用器件和多路复用方法
    • US20100274918A1
    • 2010-10-28
    • US12810105
    • 2008-11-19
    • Yoshiaki MimataKenji IwahashiTomokazu Uchida
    • Yoshiaki MimataKenji IwahashiTomokazu Uchida
    • G06F15/16
    • H04N21/4341H04J3/047H04N21/2368
    • A comparative time of a first data stream accumulated in a buffer memory is compared with a comparative time of a second data stream (S113). If the comparative time of the first data stream is earlier, the first data stream is multiplexed (S114). On the other hand, if the comparative time of the first data stream is later, the first data stream is not immediately multiplexed. When a data stream is accumulated in a buffer memory, the comparative time of the data stream is a multiplexing reference time indicating the timing of reproduction of the data stream, which is obtained based on time information contained in the data stream or the like (S116). On the other hand, when a data stream is not accumulated in a buffer memory, a multiplexing predicted time which is predicted as the multiplexing reference time of a data stream which is to be next accumulated is used as the comparative time of the data stream (S117). As a result, data streams which should be simultaneously reproduced can be easily sorted and multiplexed even when smaller-size buffers are employed.
    • 将缓冲存储器中累积的第一数据流的比较时间与第二数据流的比较时间进行比较(S113)。 如果第一数据流的比较时间较早,则第一数据流被复用(S114)。 另一方面,如果第一数据流的比较时间稍晚,则不会立即复用第一数据流。 当数据流被累积在缓冲存储器中时,数据流的比较时间是指示基于数据流等中包含的时间信息获得的数据流的再现定时的多路复用基准时间(S116 )。 另一方面,当数据流未被累积在缓冲存储器中时,将被预测为要下一次被累加的数据流的多路复用基准时间预测的复用预测时间用作数据流的比较时间 S117)。 结果,即使采用较小尺寸的缓冲器,也可以容易地分类和多路复用同时再现的数据流。
    • 5. 发明申请
    • MOVING IMAGE TRANSMISSION/RECEPTION SYSTEM
    • 移动图像传输/接收系统
    • US20100290536A1
    • 2010-11-18
    • US12808554
    • 2008-12-01
    • Kenji IwahashiYoshiaki MimataTomokazu Uchida
    • Kenji IwahashiYoshiaki MimataTomokazu Uchida
    • H04N7/24G06K9/36H04N7/26
    • H04N21/23611H04N21/234327H04N21/8451
    • An image transmission device (101) includes: an encoding section (102) configured to retrieve and encode image data and output encoded data in one frame in predetermined units; a padding section (107) configured to add padding so that the size of data output from the encoding section (102) matches a predetermined size; a packet processing section (103) configured to perform packetization upon completion of padding addition by the padding section (107); and a memory (105) configured to hold encoded data and packet data. An image reception device (201) includes: a depacketizing section (202, 203) configured to receive a packet from the image transmission device (101) and depacketize the packet; and a decoding section (204) configured to decode compressed data in predetermined units and output a stream.
    • 图像传输装置(101)包括:编码部分(102),被配置为以预定单位检索和编码图像数据并输出一帧中的编码数据; 填充部(107),被配置为添加填充,使得从编码部(102)输出的数据的大小与预定大小相匹配; 分组处理部(103),被配置为在由所述填充部分(107)添加填补完成时执行分组化; 以及被配置为保存编码数据和分组数据的存储器(105)。 图像接收装置(201)包括:解封装部(202,203),被配置为从所述图像发送装置(101)接收分组,并且对所述分组进行解包; 以及解码部(204),被配置为以预定单位对压缩数据进行解码并输出流。