Skip to main navigation
Skip to search
Skip to main content
ÉTS Research Discovery Portal Home
Help & FAQ
Français
English
Search content at ÉTS Research Discovery Portal
Home
Profiles
Research units
Research output
Datasets
WFSL: Warmup-Based Federated Sequential Learning
Mohamad Dabberni
, Ahmad Hammoud
, Mohsen Guizani
, Azzam Mourad
, Hadi Otrok
, Hakima Ould-Slimane
,
Zbigniew Dziong
, Chang Dong Wang
, Di Wu
École de technologie supérieure
Electrical Engineering Department
SYNCHROMÉDIA - Telepresence Multimedia Communications Laboratory
École de technologie supérieure
Mohamed Bin Zayed University of Artificial Intelligence
Lebanese American University
Khalifa University of Science and Technology
Université du Québec à Trois-Rivières
Sun Yat-Sen University
Research output
:
Contribution to journal
›
Journal Article
›
peer-review
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'WFSL: Warmup-Based Federated Sequential Learning'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Federated Learning
100%
Sequential Learning
100%
Identically Distributed
80%
Internet of Things
40%
Catastrophic Forgetting
40%
Distributed Problems
40%
Selection Strategy
20%
Machine Learning Models
20%
Genetic Algorithm
20%
MNIST
20%
Execution Time
20%
Clustering Algorithm
20%
Learning Process
20%
Computation Time
20%
Internet of Things Devices
20%
Privacy-preserving
20%
Internet of Things Applications
20%
Optimal Performance
20%
Current Solution
20%
Internet of Things Networks
20%
Optimization Scheme
20%
Learning Convergence
20%
Initialization Method
20%
CIFAR-10
20%
Internet of Things Environment
20%
Federated Approach
20%
Execution Cost
20%
Client Selection
20%
Model Degradation
20%
Data-driven Control
20%
Model Integrity
20%
Learning Accuracy
20%
Selection Time
20%
Distributed Settings
20%
Learning Structure
20%
Computer Science
Internet-Of-Things
100%
Sequential Learning
100%
Federated machine learning
100%
Genetic Algorithm
20%
Execution Time
20%
Selection Process
20%
Learning Process
20%
Computation Time
20%
Internet of Things Device
20%
Privacy Preserving
20%
Conventional Method
20%
Optimal Performance
20%
Degradation Model
20%
External Server
20%
Machine Learning Model
20%