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Transceiver Design and Power Control for Full-Duplex Ultra-Reliable Low-Latency Communication Systems
Keshav Singh
, Sudip Biswas
,
Meng Lin Ku
, Mark F. Flanagan
通訊工程學系
研究成果
:
雜誌貢獻
›
期刊論文
›
同行評審
33
引文 斯高帕斯(Scopus)
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Keyphrases
Communication Systems
100%
Uplink
100%
Full-duplex
100%
Design Control
100%
Ultra-reliable Low-latency Communication (URLLC)
100%
Transceiver Design
100%
Power Control
100%
Base Station
60%
Transceiver
40%
Decoding Error Probability
40%
Simulation Example
20%
System Performance
20%
Optimization Problem
20%
Near-optimal
20%
Reliability Constraint
20%
Design Errors
20%
Signal-to-interference Ratio
20%
Block Size
20%
Total Transmission
20%
Transmission Power
20%
Transmitter-receiver
20%
Probability Threshold
20%
Mission-critical Applications
20%
Closed-form Expression
20%
Iterative Algorithm
20%
Half-duplex
20%
Duplex Mode
20%
Fifth Generation (5G) Network
20%
Channel Dispersion
20%
Finite Blocklength
20%
Distortion Error
20%
Receiver Distortion
20%
Power Constraint
20%
Optimal Power Allocation
20%
High Signal
20%
Downlink Rate
20%
Full-duplex Mode
20%
Engineering
Communication System
100%
Transceiver
100%
Power Control
100%
Full-Duplex
100%
Ultra-Reliable Low Latency Communication
100%
Basestation
75%
Decoding Error
50%
Blocklength
50%
Simulation Example
25%
Systems Performance
25%
Optimisation Problem
25%
Iterative Algorithm
25%
Power Transmission
25%
Power Constraint
25%
Signal-to-Interference-Plus-Noise Ratio
25%
Cellular Network
25%
Closed Form Expression
25%
Optimal Power Allocation
25%
Critical Application
25%
Channel Dispersion
25%
Computer Science
Structure Problem
25%
Probability Threshold
25%