In this paper, we investigate a coupled polar code architecture that supports both local and global decoding. This local-global construction is motivated by practical applications in data storage and transmission where reduced-latency recovery of sub-blocks of the coded information is required. Local decoding allows random access to sub-blocks of the full code block. When local decoding performance is insufficient, global decoding provides improved data reliability. The coupling scheme incorporates a systematic outer polar code and a partitioned mapping of the outer codeword to semipolarized bit-channels of the inner polar codes. Error rate simulation results are presented for 2 and 4 sub-blocks. Design issues affecting the trade-off between local and global decoding performance are also discussed.
翻译:在本文中, 我们调查一个支持本地和全球解码的极地代码结构。 这种本地- 全球的构造是由数据存储和传输中的实际应用驱动的, 需要减少对编码信息小块的延迟恢复。 本地解码允许随机访问整个代码块的小块。 当本地解码功能不足时, 全球解码可以提高数据可靠性。 混合计划包含一个系统的外极代码, 并将外源代码与内部极地代码的半极化小道进行分割绘图。 提出了2个和4个小块的错误率模拟结果 。 也讨论了影响本地和全球解码功能之间取舍的设计问题 。