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A 362-TOPS/W Mixed-Signal MAC Macro With Sampling-Weight-Nonlinearity Cancellation and Dynamic-Amplified Accumulation Journal article
Zhang, Ran, Cen, Xueru, Un, Ka Fai, Guo, Mingqiang, Qi, Liang, Martins, Rui P., Sin, Sai Weng. A 362-TOPS/W Mixed-Signal MAC Macro With Sampling-Weight-Nonlinearity Cancellation and Dynamic-Amplified Accumulation[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2025, 1-13.
Authors:  Zhang, Ran;  Cen, Xueru;  Un, Ka Fai;  Guo, Mingqiang;  Qi, Liang; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:5.2/4.5 | Submit date:2025/01/22
Dac Driver  Dynamic Amplifier  Machine Learning (Ml)  Mixed-signal Multiply-and-accumulate (Mac)  Multi-bit Neural Network  
A 28-nm Computing-in-Memory-Based Super-Resolution Accelerator Incorporating Macro-Level Pipeline and Texture/Algebraic Sparsity Journal article
Wu, Hao, Chen, Yong, Yuan, Yiyang, Yue, Jinshan, Fu, Xiangqu, Ren, Qirui, Luo, Qing, Mak, Pui In, Wang, Xinghua, Zhang, Feng. A 28-nm Computing-in-Memory-Based Super-Resolution Accelerator Incorporating Macro-Level Pipeline and Texture/Algebraic Sparsity[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2024, 71(2), 689-702.
Authors:  Wu, Hao;  Chen, Yong;  Yuan, Yiyang;  Yue, Jinshan;  Fu, Xiangqu; et al.
Favorite | TC[WOS]:1 TC[Scopus]:1  IF:5.2/4.5 | Submit date:2024/02/22
Algebraic Sparsity (As)  Cmos  Computing-in-memory (Cim)  Multiply-accumulation (Mac)  Structured Sparsity (Ss)  Super-resolution (Sr)  Texture Sparsity (Ts)  
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  
MAC-AC: A Novel Distributed MAC Protocol for Accessing Channel in Vehicular Ad Hoc Networks Conference paper
Baozhu Li, Fen Hou, Changyue Zhang, Shaohua Li, Shujuan Ji, Chen,Shanzhi. MAC-AC: A Novel Distributed MAC Protocol for Accessing Channel in Vehicular Ad Hoc Networks[C]:IEEE, 2020.
Authors:  Baozhu Li;  Fen Hou;  Changyue Zhang;  Shaohua Li;  Shujuan Ji; et al.
Favorite | TC[WOS]:3 TC[Scopus]:7 | Submit date:2021/03/11
Access Collision  Mac  Resource-efficiency  Tdma  Vanet  
Delay analysis of IEEE 802.15.6 use of emergency medical services on human body communication Conference paper
Wang Z.T., Lam C.T., Wang M., Wu Z.M., Wan F.. Delay analysis of IEEE 802.15.6 use of emergency medical services on human body communication[C], 2015, 723-727.
Authors:  Wang Z.T.;  Lam C.T.;  Wang M.;  Wu Z.M.;  Wan F.
Favorite | TC[WOS]:1 TC[Scopus]:1 | Submit date:2018/12/24
Emergency  Hbc  Ieee 802.15.6  Mac  
A joint solution for the hidden and exposed terminal problems in CSMA/CA wireless networks Journal article
Huang, C., Lea, C., Wong, A.. A joint solution for the hidden and exposed terminal problems in CSMA/CA wireless networks[J]. Computer Networks, 2012, 3261-3273.
Authors:  Huang, C.;  Lea, C.;  Wong, A.
Favorite | TC[WOS]:16 TC[Scopus]:20  IF:4.4/4.4 | Submit date:2022/06/27
Hidden Terminal Problem  Exposed Terminal Problem  Csma/ca  Multihop  Medium Access Control (Mac)  Ad Hoc Networks