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    • 82. 发明申请
    • FIXED-SPACING PARITY INSERTION FOR FEC (FORWARD ERROR CORRECTION) CODEWORDS
    • 用于FEC(前向纠错)编码的固定间隔奇偶校验插入
    • US20090193312A1
    • 2009-07-30
    • US12021911
    • 2008-01-29
    • Tak K. LeeBa-Zhong ShenHau Thien TranKelly Brian Cameron
    • Tak K. LeeBa-Zhong ShenHau Thien TranKelly Brian Cameron
    • H04L1/18
    • H04L1/0043H04L1/0057H04L1/009
    • Fixed-spacing parity insertion for FEC (Forward Error Correction) codewords. Fixed spacing is employed to intersperse parity bits among information bits when generating a codeword. According to this fixed spacing, a same number of information bits is placed between each of the parity bits within the codeword. If desired, the order of the parity bits may be changed before they are placed into the codeword. Moreover, the order of the information bits may also be modified before they are placed into the codeword. The FEC encoding employed to generate the parity bits from the information bits can be any of a variety of codes include Reed-Solomon (RS) code, LDPC (Low Density Parity Check) code, turbo code, turbo trellis coded modulation (TTCM), or some other code providing FEC capabilities.
    • 用于FEC(前向纠错)码字的固定间隔奇偶校验插入。 当产生码字时,使用固定间隔来分散信息比特之间的奇偶比特。 根据该固定间隔,在码字中的每个奇偶校验位之间放置相同数量的信息比特。 如果需要,奇偶校验位的顺序可以在它们被置入码字之前改变。 此外,信息比特的顺序也可以在它们被置入码字之前被修改。 用于从信息比特生成奇偶校验位的FEC编码可以是各种代码中的任何一种,包括里德 - 所罗门(RS)码,LDPC(低密度奇偶校验)码,turbo码,turbo格状编码调制(TTCM) 或提供FEC能力的一些其他代码。
    • 84. 发明授权
    • Symbol by symbol variable code rate capable communication device
    • 符号可变码率符号符号通讯装置
    • US07472335B1
    • 2008-12-30
    • US10338185
    • 2003-01-08
    • Kelly Brian CameronBa-Zhong ShenHau Thien Tran
    • Kelly Brian CameronBa-Zhong ShenHau Thien Tran
    • H03M13/03
    • H04L1/006H03M13/258H04L1/0009H04L1/0066H04L1/0068
    • Symbol by symbol variable code rate capable communication device. A communication device is operable to perform processing of a variable code rate signal whose code rate varies on a symbol by symbol basis. This may involve performing encoding of input to generate the variable code rate signal; alternatively, this may involve performing decoding of a variable code rate signal. In doing so, this approach may involve using a single encoder and/or decoder (depending on the application). In some instances, a single device is operable to encode a first variable code rate signal (for transmission to another device) and to decode a second variable code rate signal (that has been received from another device). In addition, a method of coding (including one or both of encoding and decoding) may also operate of a variable code rate signal whose code rate varies on a symbol by symbol basis.
    • 符号可变码率符号符号通讯装置。 通信装置可操作以执行码率根据符号依次变化的可变码率信号的处理。 这可以涉及执行输入的编码以生成可变码率信号; 或者,这可能涉及执行可变码率信号的解码。 在这样做时,该方法可能涉及使用单个编码器和/或解码器(取决于应用)。 在一些情况下,单个设备可操作地对第一可变码率信号(用于传输到另一设备)进行编码并对第二可变码率信号(已从另一设备接收到的信号)进行解码。 此外,编码(包括编码和解码中的一个或两个)的方法也可以对码率根据符号依次变化的可变码率信号进行操作。
    • 88. 发明申请
    • LDPC (low density parity check) coded modulation hybrid decoding
    • LDPC(低密度奇偶校验)编码调制混合解码
    • US20080005650A1
    • 2008-01-03
    • US11701156
    • 2007-02-01
    • Ba-Zhong ShenHau TranKelly Cameron
    • Ba-Zhong ShenHau TranKelly Cameron
    • G06F11/00
    • H04L1/005H03M13/1105H03M13/255H04L1/0058
    • LDPC (Low Density Parity Check) coded modulation hybrid decoding. A novel approach is presented wherein a combination of bit decoding and symbol level decoding (e.g., hybrid decoding) is performed for LDPC coded signals. Check node updating and symbol node updating are successively and alternatively performed on bit edge messages for a predetermined number of decoding iterations or until a sufficient degree of precision is achieved. The symbol node updating of the bit edge messages involves using symbol metrics corresponding to the symbol being decoded as well as the bit edge messages most recently updated by check node updating. The check node updating of the bit edge messages involves using the bit edge messages most recently updated by symbol node updating. The symbol node updating also involves computing possible soft symbol estimates for the symbol during each decoding iteration.
    • LDPC(低密度奇偶校验)编码调制混合解码。 提出了一种新颖的方法,其中对LDPC编码信号执行比特解码和符号级解码(例如混合解码)的组合。 对于预定数量的解码迭代,或直到达到足够的精确度,连续替代地对位边消息执行检查节点更新和符号节点更新。 位边消息的符号节点更新涉及使用与被解码的符号相对应的符号度量以及最近由校验节点更新更新的位边消息。 位边消息的校验节点更新涉及使用最近通过符号节点更新更新的位边消息。 符号节点更新还涉及在每次解码迭代期间计算符号的可能的软符号估计。
    • 89. 发明授权
    • 8 PSK rotationally invariant turbo trellis coded modulation without parallel transitions
    • 8个PSK旋转不变的turbo网格编码调制,没有并行转换
    • US07239667B2
    • 2007-07-03
    • US10407012
    • 2003-04-03
    • Ba-Zhong ShenKelly Brian Cameron
    • Ba-Zhong ShenKelly Brian Cameron
    • H04L5/12
    • H04L1/006H04L1/0041H04L1/0066H04L27/186
    • 8 PSK (Phase Shift Keying) rotationally invariant turbo trellis coded modulation without parallel transitions. A novel approach of coding 8 PSK symbols such that they are rotationally invariant employs precoding and encoding according to Turbo Trellis Coded Modulation (TTCM). Together, the preceding and TTCM encoding operate cooperatively to provide rotational invariance of the 8 PSK symbols. These 8 PSK symbols are mapped to constellation points within an 8 PSK constellation. A permutated mapping of the 8 PSK constellation is also employed that describes an approximate 90 degree rotation of the 8 PSK constellation mapping. In addition, the precoding employs an induced precoder mapping that corresponds to the approximate 90 degree rotation of the mapping of the 8 PSK constellation. Moreover, the branches of the trellis employed within the TTCM encoding may undergo an appropriately modified mapping to accommodate the 90 degree rotation of the 8 PSK constellation mapping as well.
    • 8 PSK(相移键控)旋转不变的turbo网格编码调制,无需并行转换。 编码8个PSK符号使得它们是旋转不变性的新颖方法使用根据Turbo网格编码调制(TTCM)的预编码和编码。 一起,前述和TTCM编码协同工作以提供8个PSK符号的旋转不变性。 这8个PSK符号映射到8 PSK星座内的星座点。 也采用了8 PSK星座的置换映射,描述了8 PSK星座映射的近似90度旋转。 另外,预编码采用对应于8 PSK星座的映射的大约90度旋转的感应预编码器映射。 此外,在TTCM编码中采用的网格的分支也可以进行适当修改的映射,以适应8 PSK星座映射的90度旋转。
    • 90. 发明授权
    • LDPC (low density parity check) coded modulation hybrid decoding
    • LDPC(低密度奇偶校验)编码调制混合解码
    • US07185270B2
    • 2007-02-27
    • US10723574
    • 2003-11-26
    • Ba-Zhong ShenHau Thien TranKelly Brian Cameron
    • Ba-Zhong ShenHau Thien TranKelly Brian Cameron
    • G06F11/00H03M13/00
    • H04L1/005H03M13/1105H03M13/255H04L1/0058
    • LDPC (Low Density Parity Check) coded modulation hybrid decoding. A novel approach is presented wherein a combination of bit decoding and symbol level decoding (e.g., hybrid decoding) is performed for LDPC coded signals. Check node updating and symbol node updating are successively and alternatively performed on bit edge messages for a predetermined number of decoding iterations or until a sufficient degree of precision is achieved. The symbol node updating of the bit edge messages involves using symbol metrics corresponding to the symbol being decoded as well as the bit edge messages most recently updated by check node updating. The check node updating of the bit edge messages involves using the bit edge messages most recently updated by symbol node updating. The symbol node updating also involves computing possible soft symbol estimates for the symbol during each decoding iteration.
    • LDPC(低密度奇偶校验)编码调制混合解码。 提出了一种新颖的方法,其中对LDPC编码信号执行比特解码和符号级解码(例如混合解码)的组合。 对于预定数量的解码迭代,或直到达到足够的精确度,连续替代地对位边消息执行检查节点更新和符号节点更新。 位边消息的符号节点更新涉及使用与被解码的符号相对应的符号度量以及最近由校验节点更新更新的位边消息。 位边消息的校验节点更新涉及使用最近通过符号节点更新更新的位边消息。 符号节点更新还涉及在每次解码迭代期间计算符号的可能的软符号估计。