This paper applies probabilistic amplitude shaping (PAS) to a cyclic redundancy check (CRC) aided trellis coded modulation (TCM) to achieve the short-blocklength random coding union (RCU) bound. In the transmitter, the equally likely message bits are first encoded by distribution matcher to generate amplitude symbols with the desired distribution. The binary representations of the distribution matcher outputs are then encoded by a CRC. Finally, the CRC-encoded bits are encoded and modulated by Ungerboeck's TCM scheme, which consists of a $\frac{k_0}{k_0+1}$ systematic tail-biting convolutional code and a mapping function that maps coded bits to channel signals with capacity-achieving distribution. This paper proves that, for the proposed transmitter, the CRC bits have uniform distribution and that the channel signals have symmetric distribution. In the receiver, the serial list Viterbi decoding (S-LVD) is used to estimate the information bits. Simulation results show that, for the proposed CRC-TCM-PAS system with 87 input bits and 65-67 8-AM coded output symbols, the decoding performance under additive white Gaussian noise channel achieves the RCU bound with properly designed CRC and convolutional codes.
翻译:本文将概率振动成像( PAS) 应用到循环冗余检查( CRC) 辅助的 trellis 编码调制( TCM), 以达到短块长度随机编码联盟( RCU) 。 在发报机中, 同等可能的信息位元首先由配送匹配器编码, 以生成想要分布的振幅符号。 配送匹配器输出的二进制显示随后由 CRC 编码。 最后, CRC 编码的位元由 Ungerboeck 的 TCM 方案编码和调制, 由 $\ frac{ k_ 0 ⁇ k_ 0+1} 构成, 以 $ sypta- tapple compal code communcil communical commission commission commission 和 CRC- table- table- tablemental Disional commations 使用序列列表( S- Viter- LVLDDDDD) 来估算信息比位 。 IM 显示拟议的 RBIAS 和代号