Adaptive error control systems are very efficient for digital transmission over time-varying channels. An adaptive forward error correction system based on code selection is considered. An estimation of the channel quality is utilised by the transmitter to adaptively encode the information bits to be sent over the channel. The proper code is selected to optimise the system performance in terms of the two most important evaluation measures: throughput and reliability. The optimisation technique is applied to the case of an adaptive system using BCH codes over Rayleigh fading channels. The achievement of the adaptive system over the non-adaptive system is studied in detai
Error control coding has been used extensively in digital communication systems because of its cos...
A simple and efficient system utilizing the class of Hamming codes in a cascaded manner is proposed ...
A simple and efficient system utilizing the class of Hamming codes in a cascaded manner is proposed ...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Coding and diversity are two powerful techniques to combat fading effects on communication channels....
Coding and diversity are two powerful techniques to combat fading effects on communication channels....
Coding and diversity are two powerful techniques to combat fading effects on communication channels....
Coding and diversity are two powerful techniques to combat fading effects on communication channels....
Reliability and throughput are two important aspects of data communication systems.Various error con...
Abstract — A classical strategy for optimizing digital communication systems is the minimization of ...
Error control coding has been used extensively in digital communication systems because of its cos...
A simple and efficient system utilizing the class of Hamming codes in a cascaded manner is proposed ...
A simple and efficient system utilizing the class of Hamming codes in a cascaded manner is proposed ...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Adaptive error control systems are very efficient for digital transmission over time-varying channel...
Coding and diversity are two powerful techniques to combat fading effects on communication channels....
Coding and diversity are two powerful techniques to combat fading effects on communication channels....
Coding and diversity are two powerful techniques to combat fading effects on communication channels....
Coding and diversity are two powerful techniques to combat fading effects on communication channels....
Reliability and throughput are two important aspects of data communication systems.Various error con...
Abstract — A classical strategy for optimizing digital communication systems is the minimization of ...
Error control coding has been used extensively in digital communication systems because of its cos...
A simple and efficient system utilizing the class of Hamming codes in a cascaded manner is proposed ...
A simple and efficient system utilizing the class of Hamming codes in a cascaded manner is proposed ...