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    • 81. 发明授权
    • Encoding and decoding methods and devices using a secondary codeword indicator
    • 使用次代码字指示符的编码和解码方法和设备
    • US08063801B2
    • 2011-11-22
    • US12713542
    • 2010-02-26
    • Gergely Ferenc KorodiDake He
    • Gergely Ferenc KorodiDake He
    • H03M7/00
    • H03M7/40
    • A method for encoding an input sequence of symbols as a plurality of codewords including primary codewords and secondary codewords, and a method of decoding the plurality of codewords. The codewords are output as a bitstream including an associated codeword type indicator, which specifies whether its associated plurality of consecutive codewords includes at least one secondary codeword and, if so, the location of the first of the at least one secondary codewords. The decoder selects between a primary codeword decoding tree and a secondary codeword decoding tree, and decodes one of the plurality of codewords using the selected decoding tree.
    • 一种用于将输入符号序列编码为包括主码字和次码字的多个码字的方法,以及对多个码字进行解码的方法。 码字被输出为包括相关联的码字类型指示符的比特流,其指定其相关联的多个连续码字是否包括至少一个次码字,如果是,则包括该至少一个次码字中的第一码字的位置。 解码器在主码字解码树和次码字解码树之间进行选择,并且使用所选择的解码树来解码多个码字中的一个。
    • 82. 发明申请
    • Methods and Apparatus for Secure Distribution and Storage of Data Using N Channels
    • 使用N个通道进行数据安全分配和存储的方法和装置
    • US20110206145A1
    • 2011-08-25
    • US12712740
    • 2010-02-25
    • Ligang LuAshish JagmohanDake He
    • Ligang LuAshish JagmohanDake He
    • H04L27/28
    • H03M7/30
    • Methods and apparatus are provided for secure distribution and storage of data using N channels. An input data sequence, X, is distributed using a plurality, N, of channels. In one embodiment, the input data sequence, X, is split into N subsequences; and the N subsequences are encoded into N bit streams using a set of Slepian-Wolf codes with N separate encoders and a joint decoder. The Slepian-Wolf codes can be selected to ensure a computational complexity to obtain a portion of the input data sequence grows exponentially with respect to a length of the input data sequence unless all of the N bit streams are compromised. In another embodiment, the input data sequence, X, is compressed using a lossless data compressing techniques; and the compressed input data sequence is split into N subsequences that are distributed.
    • 提供了使用N个信道来安全地分发和存储数据的方法和装置。 使用多个N个信道来分配输入数据序列X。 在一个实施例中,输入数据序列X被分成N个子序列; 并且使用具有N个分离编码器和联合解码器的Slepian-Wolf码集合将N个子序列编码为N个比特流。 可以选择Slepian-Wolf码,以确保获得输入数据序列的一部分相对于输入数据序列的长度指数地增长的计算复杂度,除非所有N个比特流都受到损害。 在另一个实施例中,使用无损数据压缩技术来压缩输入数据序列X; 并且压缩的输入数据序列被分割成分布的N个子序列。
    • 85. 发明申请
    • METHOD AND APPARATUS FOR RATELESS SOURCE CODING WITH/WITHOUT DECODER SIDE INFORMATION
    • 用于具有/不具有解码器侧信息的无源源编码的方法和装置
    • US20080320363A1
    • 2008-12-25
    • US11764876
    • 2007-06-19
    • Dake HeAshish JagmohanJing Jiang
    • Dake HeAshish JagmohanJing Jiang
    • G06F11/10
    • H03M13/1102H03M7/30H03M13/6312H03M13/6362
    • A method of and system for rateless source coding are disclosed. The method comprises the steps of providing a set of low-density parity check (LDPC) codes, each of which accepts a range of data input lengths and a range of target compression rates; identifying a data input having a data input length; and identifying a desired compression rate. The method comprises the further steps of selecting one of said LDPC codes based on said data input length and desired compression rate; encoding the data input, using the selected LDPC code, to generate a sequence of data values; and puncturing some of said encoded data values to achieve the desired compression rate. Preferably, the encoding step includes the steps of generating a syndrome and a parity sequence from the data input, puncturing the generated parity sequence, and mixing a remaining portion of the data input with the punctuated parity sequence.
    • 公开了一种用于无源源编码的方法和系统。 该方法包括以下步骤:提供一组低密度奇偶校验(LDPC)码,每一个码接受数据输入长度的范围和目标压缩率的范围; 识别具有数据输入长度的数据输入; 并识别期望的压缩率。 该方法包括以下步骤:基于所述数据输入长度和期望的压缩率来选择所述LDPC码之一; 使用所选择的LDPC码对数据输入进行编码,以生成数据值序列; 以及对某些所述编码的数据值进行穿孔以实现所需的压缩率。 优选地,编码步骤包括以下步骤:从数据输入产生校正子和奇偶校验序列,对所生成的奇偶校验序列进行穿孔,以及将输入的数据的剩余部分与标点奇偶校验序列进行混合。