2004Unpublished venueRequires access

Rate-compatible low-density parity-check codes for digital subscriber lines

Ajay Dholakia, S. Ölçer

Open publisher page 16 citations

Abstract

Rate-compatible low-density parity-check (LDPC) codes obtained from the class of array LDPC codes are presented. The design methodology described herein retains practical advantages of array LDPC codes such as excellent performance and efficient encodability across all the codes in a rate-compatible family. Different codes in the rate-compatible family can be specified by a small number of parameters and constructed algebraically with a small amount of preprocessing. The rate-compatible codes can be decoded using a generic decoder architecture, leading to efficient implementations. These properties make the codes attractive for use in DSL systems that need to support a large number of code parameters to cope with channel variability.

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What this paper is about

Rate-compatible low-density parity-check (LDPC) codes obtained from the class of array LDPC codes are presented. The design methodology described herein retains practical advantages of array LDPC codes such as excellent performance and efficient encodability across all the codes in a rate-compatible family. Different codes in the rate-compatible family can be specified by a small number of parameters and constructed algebraically with a small amount of preprocessing. The rate-compatible codes can be decoded using a generic decoder architecture, leading to efficient implementations. These properties make the codes attractive for use in DSL systems that need to support a large number of code parameters to cope with channel variability.

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Available abstract

Rate-compatible low-density parity-check (LDPC) codes obtained from the class of array LDPC codes are presented. The design methodology described herein retains practical advantages of array LDPC codes such as excellent performance and efficient encodability across all the codes in a rate-compatible family. Different codes in the rate-compatible family can be specified by a small number of parameters and constructed algebraically with a small amount of preprocessing. The rate-compatible codes can be decoded using a generic decoder architecture, leading to efficient implementations. These properties make the codes attractive for use in DSL systems that need to support a large number of code parameters to cope with channel variability.

Key concepts: Low-density parity-check code, Digital subscriber line, Raptor code, Computer science, Block code, Turbo code, Serial concatenated convolutional codes, Concatenated error correction code

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