Abstract In digital recording systems, the total amount of data-dependent media noise increases considerably as recording densities increase. A proper noise characterization is crucial for the design of receivers for high-density storage systems. This characterization involves the selection of a proper noise model and subsequently the accurate estimation of the parameters of the selected model. The estimation algorithm proposed in this paper jointly estimates the parameters of both media and additive noise with a high accuracy. The proposed algorithm makes use of the data dependency of the media noise to distinguish between the different noise sources. The algorithm is simple and as a result can be implemented in recording systems, with onl...
Bit-patterned media (BPM) recording is one method proposed to overcome the density limitations impos...
Two-dimensional magnetic recording (2-D TDMR) is an emerging technology that aims to achieve areal d...
International Telemetering Conference Proceedings / October 28-31, 1985 / Riviera Hotel, Las Vegas, ...
Abstract In digital recording systems, the total amount of data-dependent media noise increases cons...
In digital recording systems, the total amount of data-dependent media noise increases considerably ...
Media noise is the dominant noise that severely degrades the channel detector's performance for high...
In this paper, a recently proposed oversampled detector for digital storage channels affected by tra...
High density data storage systems suffer from the presence of data dependent noise during the read-b...
In this paper, we use the forward recursion BCJR algorithm to estimate the symmetric information rat...
This paper presents a simulation-based method for the computation of the information rates of recent...
In high-density data storage systems, noise becomes highly correlated and data dependent as a result...
This thesis is concerned primarily with the improvement of data packing densities on magnetic tape. ...
Abstract—Recently, a regressive noise model has been proposed for the data-dependent correlated nois...
Novel Turbo Equalization Methods for the Magnetic Recording Channel Elizabeth Chesnutt 95 Page...
ABSTRACT: Digital communication performances are affected by noise. Amplitude Probability Distributi...
Bit-patterned media (BPM) recording is one method proposed to overcome the density limitations impos...
Two-dimensional magnetic recording (2-D TDMR) is an emerging technology that aims to achieve areal d...
International Telemetering Conference Proceedings / October 28-31, 1985 / Riviera Hotel, Las Vegas, ...
Abstract In digital recording systems, the total amount of data-dependent media noise increases cons...
In digital recording systems, the total amount of data-dependent media noise increases considerably ...
Media noise is the dominant noise that severely degrades the channel detector's performance for high...
In this paper, a recently proposed oversampled detector for digital storage channels affected by tra...
High density data storage systems suffer from the presence of data dependent noise during the read-b...
In this paper, we use the forward recursion BCJR algorithm to estimate the symmetric information rat...
This paper presents a simulation-based method for the computation of the information rates of recent...
In high-density data storage systems, noise becomes highly correlated and data dependent as a result...
This thesis is concerned primarily with the improvement of data packing densities on magnetic tape. ...
Abstract—Recently, a regressive noise model has been proposed for the data-dependent correlated nois...
Novel Turbo Equalization Methods for the Magnetic Recording Channel Elizabeth Chesnutt 95 Page...
ABSTRACT: Digital communication performances are affected by noise. Amplitude Probability Distributi...
Bit-patterned media (BPM) recording is one method proposed to overcome the density limitations impos...
Two-dimensional magnetic recording (2-D TDMR) is an emerging technology that aims to achieve areal d...
International Telemetering Conference Proceedings / October 28-31, 1985 / Riviera Hotel, Las Vegas, ...