Convolutional codes are preferred types of error control codes which can achieve low BERs at signal to noise ratio (SNR) very close to Shannon limit. Here, a new method of convolutional encoding is proposed using the general Booth algorithm for multiplication. This algorithm follows a fast multiplication process and achieves a significantly less computational complexity over its conventional counterparts. It can be a useful technique for use in chip design as it provides significant improvements. In this work, the performance of conventional convolutional coding with Viterbi decoding in AWGN channel, is studied and the results show the effectiveness of the work described here
Forward Error Correction (FEC) schemes are an essential component of wireless communication systems....
Viterbi algorithm is a maximum likelihood decoding algorithm. It is used to decode convolutional cod...
The objective of a digital communication system is to provide accurate transmission of information f...
Error-correcting convolution codes provide a proven mechanism to limit the effects of noise in digit...
Convolutional encoding with Viterbi decoding is a FEC technique that is particularly suited to a cha...
This paper describes the design of convolutional encoders encoding broadband data with coding rates ...
It is well known that data transmissions over wireless channels are affected by attenuation, distort...
Forward Error Control (FEC) based on Convolution Encoders with Viterbi decoding is a good methodolog...
This In this paper, Convolutional coder software implementation using Viterbi decoding algorithm f...
This paper describes the design of convolutional encoders encoding broadband data with coding rates ...
The vision of wireless communication is to provide high-speed and high-quality exchange of informati...
Nowadays bandwidth demands are totally increase and the tolerance for errors and latency decreases, ...
In this study, the authors investigate the performance-complexity tradeoff of convolutional codes fo...
Any communication scheme's principal goal is providing error-free data transmission. By increasing t...
In thetoday"sdigital communication Systems,transmission of data with more reliability and efficiency...
Forward Error Correction (FEC) schemes are an essential component of wireless communication systems....
Viterbi algorithm is a maximum likelihood decoding algorithm. It is used to decode convolutional cod...
The objective of a digital communication system is to provide accurate transmission of information f...
Error-correcting convolution codes provide a proven mechanism to limit the effects of noise in digit...
Convolutional encoding with Viterbi decoding is a FEC technique that is particularly suited to a cha...
This paper describes the design of convolutional encoders encoding broadband data with coding rates ...
It is well known that data transmissions over wireless channels are affected by attenuation, distort...
Forward Error Control (FEC) based on Convolution Encoders with Viterbi decoding is a good methodolog...
This In this paper, Convolutional coder software implementation using Viterbi decoding algorithm f...
This paper describes the design of convolutional encoders encoding broadband data with coding rates ...
The vision of wireless communication is to provide high-speed and high-quality exchange of informati...
Nowadays bandwidth demands are totally increase and the tolerance for errors and latency decreases, ...
In this study, the authors investigate the performance-complexity tradeoff of convolutional codes fo...
Any communication scheme's principal goal is providing error-free data transmission. By increasing t...
In thetoday"sdigital communication Systems,transmission of data with more reliability and efficiency...
Forward Error Correction (FEC) schemes are an essential component of wireless communication systems....
Viterbi algorithm is a maximum likelihood decoding algorithm. It is used to decode convolutional cod...
The objective of a digital communication system is to provide accurate transmission of information f...