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FogETex: Fog Computing Framework for Electronic Textile Applications
Kadir Ozlem
,
Asli Tuncay Atalay
,
Ozgur Atalay
,
Gokhan Ince
*
*
Corresponding author for this work
Department of Computer Engineering
Department of Textile Engineering
Research output
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peer-review
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Keyphrases
Analysis Application
25%
As-a-service
25%
Bandwidth Utilization
25%
Broker
50%
Capacitive Sensor
25%
Cloud System
25%
Computing Resources
25%
Computing Systems
25%
Deep Learning Methods
25%
E-textiles
100%
Electrical Signal
25%
Environmental Stimuli
25%
Fog Computing
100%
Fog Devices
75%
Fog Nodes
50%
Gait Analysis
25%
Human Life
25%
Internet of Things Devices
25%
IoT Devices
25%
Low-latency Computing
25%
Mobile Software Architecture
25%
Mobile Systems
25%
Network Bandwidth
25%
Physiological Stimuli
25%
Real-world Testing
25%
Resource Network
25%
Resource Utilization
50%
Robust Computation
25%
Sensor Data
25%
System Architecture
25%
System Performance
25%
Textile Applications
100%
Textile Products
50%
Textile-based
50%
Time Characteristics
25%
User Interface
25%
Engineering
Capacitive
33%
Characteristic Time
33%
Deep Learning Method
33%
e-textiles
33%
Electrical Signal
33%
Electronic Textile
100%
Fog Computing
100%
Human Life
33%
Metrics
33%
Nodes
66%
Phase Analysis
33%
Resource Usage
66%
Sensor Data
33%
Systems Performance
33%
Textile Application
100%
Textile Product
66%
User Interfaces
33%
Computer Science
Application Analysis
50%
Capacitive Sensor
50%
Case Study
50%
cloud system
50%
Computing Resource
50%
Deep Learning Method
50%
Electrical Signal
50%
Fog Computing
100%
Mobile Application
50%
Network Bandwidth
50%
Service Model
50%
System Architecture
50%
Systems Performance
50%
User Interface
50%