This work proposes a decoder implementation for high-rate generalized concatenated (GC) codes. The proposed codes are well suited for error correction in flash memories for high reliability data storage. The GC codes are constructed from inner extended binary Bose-Chaudhuri-Hocquenghem (BCH) codes and outer Reed-Solomon (RS) codes. The extended BCH codes enable high-rate GC codes. Moreover, the decoder can take advantage of soft information. For the first three levels of inner codes we propose an optional Chase soft decoder. In this work, the code construction is explained and a decoder architecture is presented. Furthermore, area and throughput results are discussed
Two classes of generalized concatenated (GC) codes with convolutional outer codes are studied. The f...
Error correction coding for optical communication and storage requires high rate codes that enable ...
Abstract — Compared with traditonal hard Bose-Chaudhuri-Hochquenghem (BCH) decoders, soft BCH decode...
Generalised concatenated (GC) codes are well suited for error correction in flash memories for high-...
Error correction coding based on soft-input decoding can significantly improve the reliability of no...
This paper proposes a soft input decoding algorithm and a decoder architecture for generalized conca...
Generalized concatenated (GC) codes with soft-input decoding were recently proposed for error correc...
Flash memories are non-volatile memory devices. The rapid development of flash technologies leads to...
Flash memories are non-volatile memory devices. The rapid development of flash technologies leads to...
This work investigates soft input decoding for generalized concatenated (GC) codes. The GC codes are...
Field error correction coding is particularly suitable for applications in non-volatile flash memori...
This paper proposes a pipelined decoder architecture for generalised concatenated (GC) codes. These ...
A soft input decoding method and a decoder for generalized concatenated (GC) codes. The GC codes are...
This work proposes an efficient hardware Implementation of sequential stack decoding of binary block...
Low latency communication requires soft-input decoding of binary block codes with small to medium bl...
Two classes of generalized concatenated (GC) codes with convolutional outer codes are studied. The f...
Error correction coding for optical communication and storage requires high rate codes that enable ...
Abstract — Compared with traditonal hard Bose-Chaudhuri-Hochquenghem (BCH) decoders, soft BCH decode...
Generalised concatenated (GC) codes are well suited for error correction in flash memories for high-...
Error correction coding based on soft-input decoding can significantly improve the reliability of no...
This paper proposes a soft input decoding algorithm and a decoder architecture for generalized conca...
Generalized concatenated (GC) codes with soft-input decoding were recently proposed for error correc...
Flash memories are non-volatile memory devices. The rapid development of flash technologies leads to...
Flash memories are non-volatile memory devices. The rapid development of flash technologies leads to...
This work investigates soft input decoding for generalized concatenated (GC) codes. The GC codes are...
Field error correction coding is particularly suitable for applications in non-volatile flash memori...
This paper proposes a pipelined decoder architecture for generalised concatenated (GC) codes. These ...
A soft input decoding method and a decoder for generalized concatenated (GC) codes. The GC codes are...
This work proposes an efficient hardware Implementation of sequential stack decoding of binary block...
Low latency communication requires soft-input decoding of binary block codes with small to medium bl...
Two classes of generalized concatenated (GC) codes with convolutional outer codes are studied. The f...
Error correction coding for optical communication and storage requires high rate codes that enable ...
Abstract — Compared with traditonal hard Bose-Chaudhuri-Hochquenghem (BCH) decoders, soft BCH decode...