Gültekin Yunus Can, Fehenberger Tobias, Alvarado Alex, Willems Frans M J
Signal Processing Systems Group, Information and Communication Theory Lab, Department of Electrical Engineering, Eindhoven University of Technology, 5600 MB Eindhoven, The Netherlands.
ADVA Optical Networking, 82152 Munich, Germany.
Entropy (Basel). 2020 May 21;22(5):581. doi: 10.3390/e22050581.
In this paper, we provide a systematic comparison of distribution matching (DM) and sphere shaping (SpSh) algorithms for short blocklength probabilistic amplitude shaping. For asymptotically large blocklengths, constant composition distribution matching (CCDM) is known to generate the target capacity-achieving distribution. However, as the blocklength decreases, the resulting rate loss diminishes the efficiency of CCDM. We claim that for such short blocklengths over the additive white Gaussian noise (AWGN) channel, the objective of shaping should be reformulated as obtaining the most energy-efficient signal space for a given rate (rather than matching distributions). In light of this interpretation, multiset-partition DM (MPDM) and SpSh are reviewed as energy-efficient shaping techniques. Numerical results show that both have smaller rate losses than CCDM. SpSh-whose sole objective is to maximize the energy efficiency-is shown to have the minimum rate loss amongst all, which is particularly apparent for ultra short blocklengths. We provide simulation results of the end-to-end decoding performance showing that up to 1 dB improvement in power efficiency over uniform signaling can be obtained with MPDM and SpSh at blocklengths around 200. Finally, we present a discussion on the complexity of these algorithms from the perspectives of latency, storage and computations.
在本文中,我们对用于短分组长度概率幅度整形的分布匹配(DM)算法和球形整形(SpSh)算法进行了系统比较。对于渐近大的分组长度,已知恒定组成分布匹配(CCDM)会生成目标容量实现分布。然而,随着分组长度减小,由此产生的速率损失会降低CCDM的效率。我们认为,对于加性高斯白噪声(AWGN)信道上的此类短分组长度,整形目标应重新表述为针对给定速率获得最节能的信号空间(而非匹配分布)。基于这种解释,多集划分DM(MPDM)和SpSh被视为节能整形技术。数值结果表明,它们两者的速率损失均小于CCDM。SpSh的唯一目标是使能量效率最大化,结果表明它在所有算法中速率损失最小,这在超短分组长度时尤为明显。我们给出了端到端解码性能的仿真结果,表明在分组长度约为200时,使用MPDM和SpSh相比于均匀信令可在功率效率上实现高达1 dB的提升。最后,我们从延迟、存储和计算的角度对这些算法的复杂度进行了讨论。