Low-Latency Polar Decoder Using Overlapped SCL Processing

D. Kam, B. Y. Kong, Youngjoo Lee
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引用次数: 2

Abstract

In this paper, we present a novel scheduling method that reduces the latency of polar decoders significantly. Unlike the prior pruning-based successive cancellation list (SCL) decoding that suffers from a number of idle cycles, the proposed overlapped SCL scheme immediately begins node operations without waiting for the list to be sorted, being exempt from such unfavorable cycles. All possible candidates for the next node operations are precomputed in parallel with the pruning operations, and are readily selected to minimize the latency. For the 5G New Radio systems, the proposed method shortens the decoding latency of the state-of-the-art approaches by up to 22% without degrading the error-correcting performance.
使用重叠SCL处理的低延迟极性解码器
在本文中,我们提出了一种新的调度方法,可以显着降低极性解码器的延迟。与先前基于剪接的连续取消列表(SCL)解码有许多空闲周期不同,所提出的重叠SCL方案不需要等待列表排序就可以立即开始节点操作,从而免除了这些不利的周期。下一个节点操作的所有可能的候选操作都与修剪操作并行预先计算,并且很容易选择以最小化延迟。对于5G新无线电系统,所提出的方法在不降低纠错性能的情况下,将最先进方法的解码延迟缩短了22%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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