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A 28-nm 19.9-to-258.5-TOPS/W 8b Digital Computing-in-Memory Processor With Two-Cycle Macro Featuring Winograd-Domain Convolution and Macro-Level Parallel Dual-Side Sparsity Journal article
Wu, Hao, Chen, Yong, Yuan, Yiyang, Yue, Jinshan, Wang, Xinghua, Li, Xiaoran, Zhang, Feng. A 28-nm 19.9-to-258.5-TOPS/W 8b Digital Computing-in-Memory Processor With Two-Cycle Macro Featuring Winograd-Domain Convolution and Macro-Level Parallel Dual-Side Sparsity[J]. IEEE Journal of Solid-State Circuits, 2024.
Authors:  Wu, Hao;  Chen, Yong;  Yuan, Yiyang;  Yue, Jinshan;  Wang, Xinghua; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:4.6/5.6 | Submit date:2024/07/04
Accuracy  Artificial Intelligence  Artificial Intelligence (Ai)  Circuits  Cmos  Computing-in-memory (Cim)  Energy Efficiency  Energy Efficiency  Look-up Table (Lut)  Multiply-accumulation (Mac)  Neural Network (Nn)  Power Demand  Radix16  Table Lookup  Throughput  Unstructured Sparsity  Winograd Convolution  
Secure client-side digital watermarking using optimal key selection Conference paper
Jiang J.-J., Pun C.-M.. Secure client-side digital watermarking using optimal key selection[C], 2011, 162-168.
Authors:  Jiang J.-J.;  Pun C.-M.
Favorite | TC[WOS]:2 TC[Scopus]:1 | Submit date:2019/02/14
Client-side Embedding  Digital Watermarking  Key Selection  Lut  
Adaptive client-side LUT-based digital watermarking Conference paper
Pun C.-M., Jiang J.-J., Chen C.L.P.. Adaptive client-side LUT-based digital watermarking[C], 2011, 795-799.
Authors:  Pun C.-M.;  Jiang J.-J.;  Chen C.L.P.
Favorite | TC[WOS]:2 TC[Scopus]:4 | Submit date:2019/02/11
Adaptive Embedding  Client-side Embedding  Digital Watermarking  Discrete Wavelet Transform  Lut