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Channel and Source Coding for Non-Volatile Flash Memories: Schriftenreihe der Institute für Systemdynamik (ISD) und optische Systeme (IOS)

Autor Mohammed Rajab
en Limba Engleză Paperback – 3 ian 2020
Mohammed Rajab proposes different technologies like the error correction coding (ECC), sources coding and offset calibration that aim to improve the reliability of the NAND flash memory with low implementation costs for industrial application. The author examines different ECC schemes based on concatenated codes like generalized concatenated codes (GCC) which are applicable for NAND flash memories by using the hard and soft input decoding. Furthermore, different data compression schemes are examined in order to reduce the write amplification effect and also to improve the error correct capability of the ECC by combining both schemes.
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Specificații

ISBN-13: 9783658289812
ISBN-10: 3658289813
Pagini: 143
Ilustrații: XVI, 143 p. 48 illus.
Dimensiuni: 148 x 210 mm
Greutate: 0.2 kg
Ediția:1st ed. 2020
Editura: Springer Fachmedien Wiesbaden
Colecția Springer Vieweg
Seria Schriftenreihe der Institute für Systemdynamik (ISD) und optische Systeme (IOS)

Locul publicării:Wiesbaden, Germany

Cuprins

Reduction of the Write Amplification Effect by using Data Compression Scheme.- Error Correcting Code and Offset Calibration for NAND Flash Memory.- Soft Input Decoding for Generalized Concatenated Codes (GCC).

Notă biografică

Mohammed Rajab has a B.S. in Information Technology and a M.Sc. in Computer Science in 2011 and 2014, respectively. Since 2014 he is scientific assistant at the Institute of System Dynamics (ISD) at the University of Applied Sciences in Konstanz, Germany. He received his PhD in computer science and engineering in July 2019 from Ulm University. His main areas of research interest are signal processing for communication systems, data compression and channel coding in non-volatile memories.

Textul de pe ultima copertă

Mohammed Rajab proposes different technologies like the error correction coding (ECC), sources coding and offset calibration that aim to improve the reliability of the NAND flash memory with low implementation costs for industrial application. The author examines different ECC schemes based on concatenated codes like generalized concatenated codes (GCC) which are applicable for NAND flash memories by using the hard and soft input decoding. Furthermore, different data compression schemes are examined in order to reduce the write amplification effect and also to improve the error correct capability of the ECC by combining both schemes.

Contents
  • Reduction of the Write Amplification Effect by using Data Compression Scheme
  • Error Correcting Code and Offset Calibration for NAND Flash Memory 
  • Soft Input Decoding for Generalized Concatenated Codes (GCC)
Target Groups
Lecturers, students and practitioners in the field of Channel Coding, Source Coding and NAND Flash Memory 

The Author
Mohammed Rajab has a B.S. in Information Technology and a M.Sc. in Computer Science in 2011 and 2014, respectively. Since 2014 he is scientific assistant at the Institute of System Dynamics (ISD) at the University of Applied Sciences in Konstanz, Germany. He received his PhD in computer science and engineering in July 2019 from Ulm University. His main areas of research interest are signal processing for communication systems, data compression and channel coding in non-volatile memories.


Caracteristici

Study in Data Compression and Error Correction for Flash Memories