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Efficient construction of LDPC (Low Density Parity Check) codes with corresponding parity check matrix having CSI (Cyclic Shifted Identity) sub-matrices

机译:带有CSI(循环移位标识)子矩阵的相应奇偶校验矩阵的LDPC(低密度奇偶校验)码的高效构造

摘要

Efficient construction of LDPC (Low Density Parity Check) codes with corresponding parity check matrix having CSI (Cyclic Shifted Identity) sub-matrices. These constructed LDPC codes can be implemented in multiple-input-multiple-output (MIMO) communication systems. One LDPC code construction approach uses CSI sub-matrix shift values whose shift values are checked instead of non-zero element positions within the parity check matrix (or its corresponding sub-matrices). When designing an LDPC code, this approach is efficient to find and avoid cycles (or loops) in the LDPC code's corresponding bipartite graph. Another approach involves GRS (Generalized Reed-Solomon) code based LDPC code construction. These LDPC codes can be implemented in a wide variety of communication devices, including those implemented in wireless communication systems that comply with the recommendation practices and standards being developed by the IEEE 802.11n Task Group (i.e., the Task Group that is working to develop a standard for 802.11 TGn (High Throughput)).
机译:LDPC(低密度奇偶校验)码的有效构造,以及具有CSI(循环移位标识)子矩阵的相应奇偶校验矩阵。可以在多输入多输出(MIMO)通信系统中实现这些构造的LDPC码。一种LDPC码构造方法使用CSI子矩阵移位值,其移位值被检查,而不是奇偶校验矩阵(或其对应子矩阵)中的非零元素位置。在设计LDPC代码时,此方法可有效查找并避免LDPC代码对应的二部图中的循环(或循环)。另一种方法涉及基于GRS(广义里德-所罗门)代码的LDPC代码构造。可以在各种通信设备中实现这些LDPC代码,包括在无线通信系统中实现的那些设备,这些设备符合IEEE 802.11n任务组(即正在努力开发无线局域网的任务组)正在开发的推荐做法和标准。 802.11 TGn(高吞吐量)标准。

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