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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]:
0
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
P3 ViT: A CIM-Based High-Utilization Architecture With Dynamic Pruning and Two-Way Ping-Pong Macro for Vision Transformer
Journal article
Fu, Xiangqu, Ren, Qirui, Wu, Hao, Xiang, Feibin, Luo, Qing, Yue, Jinshan, Chen, Yong, Zhang, Feng. P3 ViT: A CIM-Based High-Utilization Architecture With Dynamic Pruning and Two-Way Ping-Pong Macro for Vision Transformer[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2023, 70(12), 4938-4948.
Authors:
Fu, Xiangqu
;
Ren, Qirui
;
Wu, Hao
;
Xiang, Feibin
;
Luo, Qing
; et al.
Favorite
|
TC[WOS]:
3
TC[Scopus]:
3
IF:
5.2
/
4.5
|
Submit date:2024/02/22
Accelerator
Cmos
Computing-in-memory (Cim)
Dynamic Prune
Prediction Network
Vision Transformer (Vit)
Trending IC design directions in 2022
Journal article
Chan, Chi Hang, Cheng, Lin, Deng, Wei, Feng, Peng, Geng, Li, Huang, Mo, Jia, Haikun, Jie, Lu, Lei, Ka Meng, Liu, Xihao, Liu, Xun, Liu, Yongpan, Lu, Yan, Nie, Kaiming, Pan, Dongfang, Qi, Nan, Sin, Sai Weng, Sun, Nan, Sun, Wenyu, Xu, Jiangtao, Yue, Jinshan, Zhang, Milin, Zhang, Zhao. Trending IC design directions in 2022[J]. Journal of Semiconductors, 2022, 43(7), 071401.
Authors:
Chan, Chi Hang
;
Cheng, Lin
;
Deng, Wei
;
Feng, Peng
;
Geng, Li
; et al.
Favorite
|
TC[WOS]:
18
TC[Scopus]:
22
IF:
4.8
/
3.3
|
Submit date:2022/08/24
Artificial Intelligence (Ai)
Biomedical
Cryogenic
Data Converters
Imager
Integrated Circuit Design
Power Management
Radio Frequency (Rf) Circuits
Sensor
Platinum-crosslinking polymeric nanoparticle for synergetic chemoradiotherapy of nasopharyngeal carcinoma
Journal article
Ding, Yuxun, Xiao, Xiaohui, Zeng, Lingli, Shang, Qiuping, Jiang, Wei, Xiong, Sha, Duan, Xiaohui, Shen, Jun, Wang, Ruibing, Guo, Jinshan, Pan, Yue. Platinum-crosslinking polymeric nanoparticle for synergetic chemoradiotherapy of nasopharyngeal carcinoma[J]. Bioactive Materials, 2021, 6(12), 4707-4716.
Authors:
Ding, Yuxun
;
Xiao, Xiaohui
;
Zeng, Lingli
;
Shang, Qiuping
;
Jiang, Wei
; et al.
Favorite
|
TC[WOS]:
26
TC[Scopus]:
24
IF:
18.0
/
18.2
|
Submit date:2021/12/09
Chemoradiotherapy
Nasopharyngeal Carcinoma (Npc)
Polymeric Nanoparticles
Precise Treatment