Abstract—Polar codes are shown to be instances of both gener-alized concatenated codes and multilevel codes. It is shown that the performance of a polar code can be improved by representing it as a multilevel code and applying the multistage decoding algorithm with maximum likelihood decoding of outer codes. Additional performance improvement is obtained by replacing polar outer codes with other ones with better error correction performance. In some cases this also results in complexity reduction. It is shown that Gaussian approximation for density evolution enables one to accurately predict the performance of polar codes and concatenated codes based on them. I
Polar code is a type of error correction code that has been theoretically proven to reach the Shanno...
In this paper, we provide an analysis of the performance of concatenation of polar codes with outer ...
The discovery of channel polarization and polar codes is universally recognized as an historic break...
Abstract—Polar codes are demonstrated to be instances of both generalized concatenated codes and mul...
Abstract—New decoding methods for polar codes are derived from a multi-dimensional realization of po...
The discovery of polar codes has been widely acknowledged as one of the most original and profound b...
In this paper, highly efficient practical concatenated coding schemes with multiple short length pol...
Abstract—A scheme for concatenating the recently invented po-lar codes with non-binary MDS codes, as...
In this article, we propose the construction of polar codes based on piecewise Gaussian approximatio...
The two central topics of information theory are the compression and the transmission of data. Shann...
Polar code constructions based on mutual information or Bhattacharyya parameters of bit-channels are...
The performance of the original successive cancellation decoder of short-length polar codes is infer...
This paper describes an adaptation of a polar code decoding technique in favor of the extended Golay...
The discovery of channel polarization and polar codes is universally recognized as an historic break...
In this paper, we provide an analysis of the performance of concatenation of polar codes with outer ...
Polar code is a type of error correction code that has been theoretically proven to reach the Shanno...
In this paper, we provide an analysis of the performance of concatenation of polar codes with outer ...
The discovery of channel polarization and polar codes is universally recognized as an historic break...
Abstract—Polar codes are demonstrated to be instances of both generalized concatenated codes and mul...
Abstract—New decoding methods for polar codes are derived from a multi-dimensional realization of po...
The discovery of polar codes has been widely acknowledged as one of the most original and profound b...
In this paper, highly efficient practical concatenated coding schemes with multiple short length pol...
Abstract—A scheme for concatenating the recently invented po-lar codes with non-binary MDS codes, as...
In this article, we propose the construction of polar codes based on piecewise Gaussian approximatio...
The two central topics of information theory are the compression and the transmission of data. Shann...
Polar code constructions based on mutual information or Bhattacharyya parameters of bit-channels are...
The performance of the original successive cancellation decoder of short-length polar codes is infer...
This paper describes an adaptation of a polar code decoding technique in favor of the extended Golay...
The discovery of channel polarization and polar codes is universally recognized as an historic break...
In this paper, we provide an analysis of the performance of concatenation of polar codes with outer ...
Polar code is a type of error correction code that has been theoretically proven to reach the Shanno...
In this paper, we provide an analysis of the performance of concatenation of polar codes with outer ...
The discovery of channel polarization and polar codes is universally recognized as an historic break...