Advanced error control techniques for data storage systems
著者
書誌事項
Advanced error control techniques for data storage systems
CRC/Taylor & Francis, 2006
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注記
Includes bibliographical references and index
"previously published in 'Coding and signal processing for magnetic recording systems' CRC Press LLC 2005" -- T.p. verso
内容説明・目次
内容説明
With the massive amount of data produced and stored each year, reliable storage and retrieval of information is more crucial than ever. Robust coding and decoding techniques are critical for correcting errors and maintaining data integrity. Comprising chapters thoughtfully selected from the highly popular Coding and Signal Processing for Magnetic Recording Systems, Advanced Error Control Techniques for Data Storage Systems is a finely focused reference to the state-of-the-art error control and modulation techniques used in storage devices.
The book begins with an introduction to error control codes, explaining the theory and basic concepts underlying the codes. Building on these concepts, the discussion turns to modulation codes, paying special attention to run-length limited sequences, followed by maximum transition run (MTR) and spectrum shaping codes. It examines the relationship between constrained codes and error control and correction systems from both code-design and architectural perspectives as well as techniques based on convolution codes. With a focus on increasing data density, the book also explores multi-track systems, soft decision decoding, and iteratively decodable codes such as Low-Density Parity-Check (LDPC) Codes, Turbo codes, and Turbo Product Codes.
Advanced Error Control Techniques for Data Storage Systems offers a comprehensive collection of theory and techniques that is ideal for specialists working in the field of data storage systems.
目次
An Introduction to Error-Correcting Codes. Modulation Codes for Storage Systems. Runlength Limited Sequences. Maximum Transition Run Coding. Spectrum Shaping Codes. Introduction to Constrained Binary Codes with Error Correction Capability. Constrained Coding and Error-Control Coding. Convolutional Codes for Partial-Response Channels. Capacity-Approaching Codes for Partial Response Channels. Coding and Detection for Multitrack Systems. Turbo Codes. An Introduction to LDPC Codes. Concatenated Single-Parity Check Codes for High-Density Digital Recording Systems. Structured Low-Density Parity-Check Codes. Turbo Coding for Multitrack Recording Channels. Index.
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