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Capacity limits of spectrum-sharing systems over hyper-fading channels
Sabit Ekin
*
,
Ferkan Yilmaz
, Hasari Celebi
, Khalid A. Qaraqe
, Mohamed Slim Alouini
, Erchin Serpedin
*
Corresponding author for this work
Texas A&m University
King Abdullah University of Science and Technology
Texas A&M University at Qatar
Research output
:
Contribution to journal
›
Article
›
peer-review
12
Citations (Scopus)
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Keyphrases
Fading Channels
100%
HyPer
100%
Capacity Constraints
100%
Spectrum Sharing System
100%
Secondary User
75%
Fading Model
50%
Capacity Gain
50%
Achievable Capacity
50%
Low Power
25%
Signal-to-noise Ratio
25%
Base Station
25%
High Power
25%
Probability Density Function
25%
System Performance
25%
Dynamic Nature
25%
Closed-form Expression
25%
Peak Power
25%
Transmitter
25%
Dynamically Changing Environments
25%
Cognitive Radio
25%
Spectrum Sharing
25%
Performance Gain
25%
Cumulative Density Function
25%
Underutilization
25%
Power Region
25%
Power Interference
25%
Interference Temperature
25%
Cognitive Radio Channel
25%
Shared Features
25%
Temperature Peak
25%
Secondary Primary
25%
Fading Environment
25%
Computer Science
Fading Channel
100%
spectrum sharing
100%
Sharing System
100%
Capacity Limit
100%
Secondary User
60%
Cognitive Radio
40%
Noise-to-Signal Ratio
20%
Fading Environment
20%
Interference Power
20%
closed-form expression
20%
Density Function
20%
Performance Gain
20%
Sharing Feature
20%
Systems Performance
20%
Dynamic Nature
20%
Secondary Transmitter
20%
Peak Temperature
20%
Probability Density Function
20%
Engineering
Secondary User
100%
Fading Channel
100%
Cognitive Radio
66%
Simulation Result
33%
Signal-to-Noise Ratio
33%
Systems Performance
33%
Dynamic Nature
33%
Analytical Result
33%
Closed Form Expression
33%
Peak Power
33%
Interference Temperature
33%
Radio Channel
33%
Secondary Transmitter
33%
Primary Base Station
33%
Probability Density Function
33%