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Dynamic User-Scheduling and Power Allocation for SWIPT Aided Federated Learning: A Deep Learning Approach
Journal article
Li Yang, Wu Yuan, Song Yuxiao, Qian Liping, Jia Weijia. Dynamic User-Scheduling and Power Allocation for SWIPT Aided Federated Learning: A Deep Learning Approach[J]. IEEE Transactions on Mobile Computing, 2023, 22(12), 6956-6969.
Authors:
Li Yang
;
Wu Yuan
;
Song Yuxiao
;
Qian Liping
;
Jia Weijia
Favorite
|
TC[WOS]:
12
TC[Scopus]:
13
IF:
7.7
/
6.5
|
Submit date:2023/01/30
Federated Learning
Swipt
Dynamic User-scheduling
Stochastic Shortest Path
Deep Reinforcement Learning
Proximal Policy Optimization
Transfer-Path-Based Hardware-Reuse Strong PUF Achieving Modeling Attack Resilience With >200 Million Training CRPs
Journal article
Xu, Chongyao, Zhang, Jieyun, Law, Man-Kay, Zhao, Xiaojin, Mak, Pui-In, Martins, Rui P.. Transfer-Path-Based Hardware-Reuse Strong PUF Achieving Modeling Attack Resilience With >200 Million Training CRPs[J]. IEEE Transactions on Information Forensics and Security, 2023, 18, 2188 - 2203.
Authors:
Xu, Chongyao
;
Zhang, Jieyun
;
Law, Man-Kay
;
Zhao, Xiaojin
;
Mak, Pui-In
; et al.
Favorite
|
TC[WOS]:
4
TC[Scopus]:
6
IF:
6.3
/
7.3
|
Submit date:2023/03/29
Field-programmable Gate Array (Fpga)
Hardware Reuse
Machine Learning (Ml) Attack
Multiplier
Physical Unclonable Function (Puf)
Response Stream (Rs)
Transfer Path (Tp)
I determine my learning path, or no? A study of learner control in online video based learning
Journal article
Lu Li, Xinghua Wang, Matthew P. Wallace. I determine my learning path, or no? A study of learner control in online video based learning[J]. Frontiers in Psychology, 2022, 13, 973758.
Authors:
Lu Li
;
Xinghua Wang
;
Matthew P. Wallace
Favorite
|
TC[WOS]:
3
TC[Scopus]:
3
IF:
2.6
/
3.3
|
Submit date:2022/09/09
Learner Control
Learning Path
Video-based Learning
Tranactional Distance
Online
Federated Imitation Learning: A Novel Framework for Cloud Robotic Systems with Heterogeneous Sensor Data
Journal article
Liu,Boyi, Wang,Lujia, Liu,Ming, Xu,Cheng Zhong. Federated Imitation Learning: A Novel Framework for Cloud Robotic Systems with Heterogeneous Sensor Data[J]. IEEE Robotics and Automation Letters, 2020, 5(2), 3509-3516.
Authors:
Liu,Boyi
;
Wang,Lujia
;
Liu,Ming
;
Xu,Cheng Zhong
Favorite
|
TC[WOS]:
32
TC[Scopus]:
48
IF:
4.6
/
5.5
|
Submit date:2021/03/09
Big Data In Robotics And Automation
Deep LearnIng In Robotics And Automation
Motion And Path Planning