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引用次数: 3

摘要

模拟了一种新的大约束长度网格码的并行译码方法,并与双向堆栈算法进行了比较。处理单元的收缩组织安排在两个相互连接的阵列中,使得解码工作不受单个可纠正的错误爆发的影响,这些错误的分支长度不大于某些/spl tau/,其中/spl tau/不大于码内存长度。在解码过程中,算法产生一组不断提高可靠性的暂定决策,直到最终决策。每一个暂定的决定都由向前和向后路径的一部分组成,通过长度为/spl / /的隧道连接。在做出每一个新的暂定决定后,会产生一组新的丢弃标准。根据这些标准,从所有堆栈中丢弃大量部分探索的路径,从而加快了解码过程。结果显示,与已知的顺序过程相比,解码工作量显著减少(通过并行扩展路径的数量来衡量)。
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A new bidirectional algorithm for decoding trellis codes
A new parallel procedure for decoding trellis codes with a large constraint length is simulated and compared to the bidirectional stack algorithm. The systolic organization of processing units arranged in two mutually connected arrays enables the decoding effort to be unaffected by single correctable bursts of errors whose branch length is not greater than some /spl tau/, where /spl tau/ is not greater than the code memory length. During the course of decoding, the algorithm produces a set of tentative decisions of increasing reliability, until it reaches the final decision. Every tentative decision is composed of a portion of a forward and backward path, connected via a tunnel of length /spl tau/. After each new tentative decision is made, a new set of discarding criteria is produced. According to these criteria, a vast number of partially explored paths is discarded from all the stacks, speeding up the decoding procedure. The results show a significant reduction in decoding effort (measured by the number of extended paths in parallel) compared to known sequential procedures.
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