Published March 2010 | Version Published
Journal Article Open

On the Capacity of the Precision-Resolution System

  • 1. ROR icon Ben-Gurion University of the Negev
  • 2. ROR icon California Institute of Technology

Abstract

Arguably, the most prominent constrained system in storage applications is the (d,k)-run-length limited (RLL) system, where every binary sequence obeys the constraint that every two adjacent 1's are separated by at least d consecutive 0's and at most k consecutive 0's, namely, runs of 0's are length limited. The motivation for the RLL constraint arises mainly from the physical limitations of the read and write technologies in magnetic and optical storage systems. We revisit the rationale for the RLL system, reevaluate its relationship to the constraints of the physical media and propose a new framework that we call the Precision-Resolution (PR) system. Specifically, in the PR system there is a separation between the encoder constraints (which relate to the precision of writing information into the physical media) and the decoder constraints (which relate to its resolution, namely, the ability to distinguish between two different signals received by reading the physical media). We compute the capacity of a general PR system and compare it to the traditional RLL system.

Additional Information

© 2010 IEEE. Manuscript received January 24, 2007; revised February 19, 2009; current version published March 10, 2010. This work was supported in part by the Caltech Lee Center for Advanced Networking and by the NSF Grant ANI-0322475. The material in this paper was presented in part at ISIT, Seattle, WA, July 2006. The authors would like to thank the associate editor and the anonymous reviewers, whose insightful comments improved the presentation of the paper.

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Identifiers

Eprint ID
17880
Resolver ID
CaltechAUTHORS:20100407-095238680

Funding

Caltech Lee Center for Advanced Networking
NSF
ANI-0322475

Dates

Created
2010-04-08
Created from EPrint's datestamp field
Updated
2021-11-08
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Caltech Custom Metadata

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INSPEC Accession Number
Other Numbering System Identifier
11171725