We propose a new four-dimensional orthant-symmetric 128-ary modulation format (4D-OS128) with a spectral efficiency of 7bit/4D-sym. The proposed format fills the gap between polarization-multiplexed 8- and 16-ary quadrature-amplitude modulation (PM-8QAM and PM-16QAM).Numerical simulations show that 4D-OS128 outperforms two well-studied 4D geometrically-shaped modulation formats: 128SP-16QAM and 7b4D-2A8PSK by up to 0.65dB for bit-interleaved coded modulation at the same spectral efficiency. These gains are experimentally demonstrated in a 11$\times$233Gbit/s wavelength division multiplexing (WDM) transmission system operating at 5.95 bit/4D-sym over 6000km and 9000km for both EDFA-only and hybrid amplification scenarios, respectively. A reach increase of 15% is achieved with respect to 128-ary set-partitioning 16QAM. Furthermore, the proposed 4D-OS128 is also compared to $\boldsymbol{D}_4$ lattice-based constellation and probabilistically-shaped 16QAM with finite blocklength via simulation.
翻译:我们建议采用新的四维或对称128-128调制格式(4D-OS128),光谱效率为7B/4D-Sym。拟议格式填补了两极化-多元8-和16四振动-振动调制(PM-8QAM和PM-16QAM)之间的差距。 Numeric模拟显示,4D-OS128的四维或对称制4D的调制格式(分别为128SP-16QAM和7b4D-2A8PSK),以0.65dB的光谱效率填补了同一光谱效率的点间断节调制调制。这些增益以11美元=time,233Gbit/波长多倍化(WDM)传输系统在5.95比特/4D-sym超过6000km和9000km,分别用于EDFA(仅使用)和混合调制的模化设想。与128-OS-S-Setrial-al-al-al-al-al-almabal-al-al-al-al-al-al-almamamam 16QAM+4QAM之间,还拟议增加15%,拟议增加了15%。与128-128-al-al-al-al-al-al-al-d-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-al-Q-Q-Q-al-al-al-Q-Q-Q-Q-Q-Q-Q-Q-Q-Q-Q-Q-Q-Q-Q-Q-al-QAM-QAM-al-al-al-al-al-al-Q-Q-Q-Q-Q-Q-al-al-al-Q-Q-Q-Q-MA-al-al-al-al-al-al-al-al-al-Q-Q-Q-al-al-MA