Concatenating the state-of-the-art codes at moderate rates with repetition codes has emerged as a practical solution deployed in various standards for ultra-low-power devices such as in Internet-of-Things (IoT) networks. In this paper, we propose a novel concatenation mechanism for such applications which need to operate at very low signal-to-noise ratio (SNR) regime. In the proposed scheme, the outer code is a hybrid polar code constructed in two stages, one with a binary kernel and another also with a binary kernel but applied over a binary extension field. The inner code is a non-binary multiplicative repetition code. This particular structure inherits low-complexity decoding structures of polar codes while enabling concatenation with an inner non-binary multiplicative repetition scheme. The decoding for the proposed scheme is done using cyclic redundancy check (CRC) aided successive cancellation list (SCL) decoder over AWGN channel. Simulation results demonstrate that the proposed hybrid non-binary repeated polar code provides performance gain compared to a polar-repetition scheme with comparable decoding complexity.
翻译:在本文件中,我们建议为需要在非常低的信号-噪音比(SNR)制度下运行的此类应用建立一个新型的融合机制。在拟议办法中,外源代码是一个混合极代代码,分为两个阶段,一个是二进制内核,另一个是二进制内核内核,但适用于二进制扩展字段。内源代码是非双相重复重复的代码。这一特定结构继承了极地代码的低复合解码结构,同时能够与内非双进制多复制重复计划相匹配。拟议办法的解码工作是使用自行车冗余检查(CRC)帮助的连续取消列表(SCL)在AWGN频道上解码。模拟结果显示,拟议的混合非双重重复极代码提供了与极地重复计划相比较的性能收益。