Zou Ding, Lin Changyu, Djordjevic Ivan B
Opt Express. 2017 Feb 20;25(4):3133-3142. doi: 10.1364/OE.25.003133.
In this paper, with the aid of mutual information and generalized mutual information (GMI) capacity analyses, it is shown that the geometrically shaped APSK that mimics an optimal Gaussian distribution with equiprobable signaling together with the corresponding gray-mapping rules can approach the Shannon limit closer than conventional quadrature amplitude modulation (QAM) at certain range of FEC overhead for both 16-APSK and 64-APSK. The field programmable gate array (FPGA) based LDPC-coded APSK emulation is conducted on block interleaver-based and bit interleaver-based systems; the results verify a significant improvement in hardware efficient bit interleaver-based systems. In bit interleaver-based emulation, the LDPC-coded 64-APSK outperforms 64-QAM, in terms of symbol signal-to-noise ratio (SNR), by 0.1 dB, 0.2 dB, and 0.3 dB at spectral efficiencies of 4.8, 4.5, and 4.2 b/s/Hz, respectively. It is found by emulation that LDPC-coded 64-APSK for spectral efficiencies of 4.8, 4.5, and 4.2 b/s/Hz is 1.6 dB, 1.7 dB, and 2.2 dB away from the GMI capacity.
在本文中,借助互信息和广义互信息(GMI)容量分析表明,对于16-APSK和64-APSK,在特定的前向纠错开销范围内,模仿具有等概率信号的最优高斯分布的几何形状的APSK以及相应的灰度映射规则,比传统的正交幅度调制(QAM)能更接近香农极限。基于现场可编程门阵列(FPGA)的低密度奇偶校验(LDPC)编码的APSK仿真在基于分组交织器和基于比特交织器的系统上进行;结果验证了基于硬件高效比特交织器的系统有显著改进。在基于比特交织器的仿真中,就符号信噪比(SNR)而言,LDPC编码的64-APSK在频谱效率分别为4.8、4.5和4.2 b/s/Hz时,比64-QAM分别高出0.1 dB、0.2 dB和0.3 dB。通过仿真发现,对于频谱效率为4.8、4.5和4.2 b/s/Hz的LDPC编码的64-APSK,与GMI容量相差1.6 dB、1.7 dB和2.2 dB。