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Joint source-channel coding with one-bit ADC front end
Morteza Varasteh
, Osvaldo Simeone
, Deniz Gunduz
Electrical and Computer Engineering
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
4
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Scopus citations
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Dive into the research topics of 'Joint source-channel coding with one-bit ADC front end'. Together they form a unique fingerprint.
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Engineering
Channel Coding
100%
Joint Source
100%
Front End
100%
Analog-to-Digital Converter
100%
Signal-to-Noise Ratio
66%
Outages
66%
Mean Square Error
66%
Squared Error Distortion
66%
Transceiver
33%
Gaussians
33%
Optimality
33%
Additive White Gaussian Noise
33%
Digital Transmission
33%
Average Power Constraint
33%
Computer Science
joint source channel coding
100%
Squared Error Distortion
100%
Analog-to-Digital Converter
100%
Signal-to-Noise Ratio
100%
Power Constraint
50%
Gaussian Source
50%
Additive White Gaussian Noise
50%
Transmission Delay
50%
Coder
50%
Linear Encoders
50%
Digital Transmission
50%
Keyphrases
Joint Source-channel Coding
100%
Encoder
100%
One-bit Analog-to-digital Converter
100%
Outage
50%
Decoder
50%
Mean-squared Error Distortion
50%
Transceiver
25%
High Signal-to-noise Ratio
25%
Low Signal-to-noise Ratio
25%
Gaussian Source
25%
Digital Transmission
25%
Average Power Constraint
25%
Linear Encoder
25%
Additive White Gaussian Noise Channel
25%
Piecewise Constant
25%
Zero-delay Transmission
25%