Blind detection of polar codes

P. Giard, Alexios Balatsoukas-Stimming, A. Burg
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引用次数: 3

Abstract

Polar codes were recently chosen to protect the control channel information in the next-generation mobile communication standard (5G) defined by the 3GPP. As a result, receivers will have to implement blind detection of polar coded frames in order to keep complexity, latency, and power consumption tractable. As a newly proposed class of block codes, the problem of polar-code blind detection has received very little attention. In this work, we propose a low-complexity blind-detection algorithm for polar-encoded frames. We base this algorithm on a novel detection metric with update rules that leverage the a priori knowledge of the frozen-bit locations, exploiting the inherent structures that these locations impose on a polar-encoded block of data. We show that the proposed detection metric allows to clearly distinguish polar-encoded frames from other types of data by considering the cumulative distribution functions of the detection metric, and the receiver operating characteristic. The presented results are tailored to the 5G standardization effort discussions, i.e., we consider a short low-rate polar code concatenated with a CRC.
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极性码的盲检测
最近,在3GPP制定的下一代移动通信标准(5G)中,为了保护控制信道信息,选择了Polar码。因此,接收器将不得不实现极性编码帧的盲检测,以保持复杂性,延迟和功耗可处理。作为一种新提出的分组码,极码盲检测问题很少受到关注。在这项工作中,我们提出了一种低复杂度的极化编码帧盲检测算法。我们将该算法建立在一种新的检测度量的基础上,该度量具有更新规则,利用冻结位位置的先验知识,利用这些位置对极编码数据块施加的固有结构。我们表明,通过考虑检测度量的累积分布函数和接收器的工作特性,所提出的检测度量可以清楚地将极编码帧与其他类型的数据区分开来。所提出的结果是针对5G标准化工作的讨论量身定制的,即,我们考虑了与CRC连接的短低速率极性码。
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