首页> 外文会议>48th Annual Allerton Conference on Communication, Control, and Computing >On bit error rate performance of polar codes in finite regime
【24h】

On bit error rate performance of polar codes in finite regime

机译:有限域中极码的误码率性能

获取原文

摘要

Polar codes have been recently proposed as the first low complexity class of codes that can provably achieve the capacity of symmetric binary-input memoryless channels. Here, we study the bit error rate performance of finite-length polar codes under Belief Propagation (BP) decoding. We analyze the stopping sets of polar codes and the size of the minimal stopping set, called “stopping distance”. Stopping sets, as they contribute to the decoding failure, play an important role in bit error rate and error floor performance of the code. We show that the stopping distance for binary polar codes, if carefully designed, grows as O(√N) where N is the code-length. We provide bit error rate (BER) simulations for polar codes over binary erasure and gaussian channels, showing no sign of error floor down to the BERs of 10−11. Our simulations asserts that while finite-length polar codes do not perform as good as LDPC codes in terms of bit error rate, they show superior error floor performance. Motivated by good error floor performance, we introduce a modified version of BP decoding employing a guessing algorithm to improve the BER performance of polar codes. Our simulations for this guessing algorithm show two orders of magnitude improvement over simple BP decoding for the binary erasure channel (BEC), and up to 0.3 dB improvement for the gaussian channel at BERs of 10−6.
机译:极地码最近已被提出作为第一类低复杂度的码,可以证明可实现对称的二进制输入无记忆通道的容量。在这里,我们研究了置信传播(BP)解码下有限长度极性码的误码率性能。我们分析极地码的停止集和最小停止集的大小,称为“停止距离”。停止集,因为它们会导致解码失败,因此在误码率和代码的错误本底性能中起着重要的作用。我们表明,如果精心设计,二进制极坐标代码的停止距离将随着O(√N)而增长,其中N是代码长度。我们为二进制擦除和高斯信道上的极性代码提供了误码率(BER)仿真,显示直到10 −11 的BER都没有错误底限的迹象。我们的仿真断言,虽然就误码率而言,有限长度的极性码的性能不如LDPC码,但它们却显示出了卓越的错误率性能。出于良好的错误本底性能的考虑,我们引入了采用猜测算法的BP解码的改进版本,以提高极性码的BER性能。对于该猜测算法,我们的模拟结果显示,在10 -6 的误码率下,二进制擦除信道(BEC)的简单BP解码提高了两个数量级,而高斯信道的改进则高达0.3 dB。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号