首页> 外文会议>Information Theory, 2003. Proceedings. IEEE International Symposium on >A class of (/spl gamma//spl rho//sup /spl gamma/-1/,/spl rho//sup /spl gamma//,/spl rho/,/spl gamma/,{0,1}) combinatorially designed LDPC codes with application to ISI channels
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A class of (/spl gamma//spl rho//sup /spl gamma/-1/,/spl rho//sup /spl gamma//,/spl rho/,/spl gamma/,{0,1}) combinatorially designed LDPC codes with application to ISI channels

机译:一类(/ spl gamma // spl rho // sup / spl gamma / -1 /,/ spl rho // sup / spl gamma //,/ spl rho /,/ spl gamma /,{0,1})组合设计的LDPC码应用于ISI信道

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A systematic construction of regular low density parity check (LDPC) codes based on (/spl gamma//spl rho//sup /spl gamma/-1/,/spl rho//sup /spl gamma//,/spl rho/,/spl gamma/,{0,1}) combinatorial designs is investigated. From one particular view point, the proposed codes are "loosened" finite geometry codes where some lines are systematic removed. The loosened design rules offer at least two advantages: a lower decoding complexity and a richer code set. We show that the proposed codes contain a good combination of structure and pseudorandomness, where the former enables low-cost implementation in hardware and the latter ensures reasonable performance by avoiding certain recurrent error patterns (e.g. rectangular error patterns). One possible application for the proposed structured LDPC codes is the digital recording systems. Simulations show that with proper preceding, the proposed codes can perform as well as or slightly better than the random codes. Unlike random codes, the proposed structured LDPC codes can lend themselves to a low-complexity implementation for high-speed applications.
机译:基于(/ spl gamma // spl rho // sup / spl gamma / -1 /,/ spl rho // sup / spl gamma //,// spl rho / (/ spl gamma /,{0,1})组合设计进行了研究。从一个特定的角度来看,建议的代码是“松散”的有限几何代码,其中某些线被系统地删除了。宽松的设计规则至少具有两个优点:较低的解码复杂度和较丰富的代码集。我们表明,所提出的代码包含结构和伪随机性的良好组合,其中前者可以在硬件中实现低成本实现,而后者可以通过避免某些重复出现的错误模式(例如矩形错误模式)来确保合理的性能。所提出的结构化LDPC码的一种可能的应用是数字记录系统。仿真表明,在适当的先验条件下,所提出的代码性能可以与随机代码一样好或稍好于随机代码。与随机码不同,建议的结构化LDPC码可以将其自身应用于低复杂度的高速应用。

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