14 papers · ranked by Valyu relevance
Yaping Xu, Lulu Ding, Shigang Wu, Jue Ruan
Composite DNA letters, by merging all four DNA nucleotides in specified ratios, offer a pathway to substantially increase the logical density of DNA digital storage (DDS) systems. However, these letters are susceptible to nucleotide errors and sampling bias, leading to a high letter error rate, which complicates…
Lulu Ding, Shigang Wu, Zhihao Hou, Alun Li + 4 more
'Weihua Pan' 'Jue Ruan'] Title: ABSTRACT Error-correcting codes (ECCs) employed in the state-of-the-art DNA digital storage (DDS) systems suffer from a trade-off between error-correcting capability and the proportion of redundancy. To address this issue, in this study, we introduce soft-decision decoding approach into…
Seong-Joon Park, Sunghwan Kim, Jaeho Jeong, Albert No + 3 more
The last preprocessing step is LLR calculation for soft decision decoding. For LLR calculation, DNA sequences in each cluster should be converted to binary sequences and soft LLR values are computed for all clusters based on the equation in the work (). In , authors count the numbers of 0’s and 1’s for a bit position…
Xiao Yan, Yan Zhang, Xiaoxue Rao, Qian Wang + 4 more
'Yiyan Wu' 'Alvaro Araujo Pinto' 'Hacene Fouchal'] Cooperative automatic modulation classification (CAMC) using a swarm of sensors is intriguing nowadays as it would be much more robust than the conventional single-sensing-node automatic modulation classification (AMC) method. We propose a novel robust CAMC approach…
Kevin D Volkel, Paul W Hook, Albert Keung, Winston Timp + 2 more
HEDGES was originally described with hard decoding, so we extend it to support soft decoding. Since it is a convolutional code, we construct a full trellis to represent its decoding steps. A trellis for HEDGES must have a width of at least $2H$ states for H history bits. Traditionally, each state has two outgoing edges…
Johannes Bausch, Andrew W. Senior, Francisco J. H. Heras, Thomas Edlich + 14 more
'Thomas Edlich' 'Alex Davies' 'Michael Newman' 'Cody Jones' 'Kevin Satzinger' 'Murphy Yuezhen Niu' 'Sam Blackwell' 'George Holland' 'Dvir Kafri' 'Juan Atalaya' 'Craig Gidney' 'Demis Hassabis' 'Sergio Boixo' 'Hartmut Neven' 'Pushmeet Kohli'] Building a large-scale quantum computer requires effective strategies to…
Guoming Song, Dongming Pi, Shancheng Zhao, Chi Wan Sung
Product codes (PCs) are widely used in high-speed communication systems due to their attractive trade-off between error-correction performance and complexity. To further meet the rapidly growing demand for higher data rates, soft-aided hard-decision decoders (SA-HDDs) have been developed. In this paper, we present a…
Lin Sun, Haisen Li, Jingjing Wang, Chi-Wai Chow
This paper proposes using direct adaptation (DA)-based turbo equalization in multiple-input-multiple-output (MIMO) filtered multitone (FMT) time reversal (TR) acoustic communications to jointly suppress noise, residual co-channel interference (CCI) and intersymbol interference (ISI) after the TR process. Soft…
Predrag Ivaniš, Srdjan Brkić, Bane Vasić, Syed A. Jafar
We propose a novel variant of the gradient descent bit-flipping (GDBF) algorithm for decoding low-density parity-check (LDPC) codes over the binary symmetric channel. The new bit-flipping rule is based on the reliability information passed from neighboring nodes in the corresponding Tanner graph. The name…
Yingge Li, Haihua Hu, Jun Chen
As high-speed big-data communications impose new requirements on storage latency, low-density parity-check (LDPC) codes have become a widely used technology in flash-memory channels. However, the iterative LDPC decoding algorithm faces a high decoding latency problem due to its mechanism based on iterative message…
Pengxi Fu, Zhen Wang, Jianxin Guo, Yushuai Zhang + 4 more
Modern communication systems increasingly leverage multiple information streams-including channel observations, statistical models, and contextual knowledge-to enhance decoding reliability. However, the varying and often unpredictable quality of these sources poses a critical challenge: rigid combination rules fail…
Wenbo Shi, Wenlong Xie, Jiashen Hu, Lishan Liu + 1 more
Future wireless networks require channel coding schemes that can provide high reliability, low latency, and strong adaptability under finite-blocklength and structurally heterogeneous transmission scenarios. Globally coupled low-density parity-check (GC-LDPC) codes are promising for such systems because their coupled…
Timo Hillmann, Lucas Berent, Armanda O. Quintavalle, Jens Eisert + 2 more
'Robert Wille' 'Joschka Roffe'] Quantum low-density parity-check codes are a promising candidate for fault-tolerant quantum computing with considerably reduced overhead compared to the surface code. However, the lack of a practical decoding algorithm remains a barrier to their implementation. In this work, we introduce…
Alireza Tasdighi, Mansoor Yousefi, Jun Chen
Weighted belief propagation (WBP) for the decoding of linear block codes is considered. In WBP, the Tanner graph of the code is unrolled with respect to the iterations of the belief propagation decoder. Then, weights are assigned to the edges of the resulting recurrent network and optimized offline using a training…