Title :
A contraction mapping based two-dimensional equalizer and its application to holographic data storage systems
Author :
Sunho Kim ; Woosik Moon ; Sewhang Park ; Sungbin Im
Author_Institution :
Sch. of Electron. Eng., Soongsil Univ., Seoul, South Korea
Abstract :
As the limits of the magnetic storage systems appear, the holographic data storage (HDS) devices with high data transfer rate and high recording density are emerging as attractive candidates for next-generation optical storage devices. In this paper, to effectively improve the detection performance that is degraded by the two-dimensional inter-symbol interference under the HDS channel environment and the pixel misalignment, an iterative two-dimensional equalization scheme is proposed based on the contraction mapping. In order to evaluate the performance of the proposed scheme, for various holographic channel environments we measure the BER performance using computer simulation and compare the proposed one with the conventional threshold detection scheme, which verifies the superiority of the proposed scheme.
Keywords :
equalisers; error statistics; holographic storage; holography; iterative methods; performance evaluation; BER performance; HDS channel environment; HDS devices; computer simulation; contraction mapping based two-dimensional equalizer; data transfer rate; holographic channel environments; holographic data storage devices; holographic data storage systems; iterative two-dimensional equalization scheme; magnetic storage systems; next-generation optical storage devices; performance evaluation; pixel misalignment; threshold detection scheme; two-dimensional intersymbol interference; Adaptive optics; Bit error rate; Computer simulation; Equalizers; Graphics; Holographic optical components; Holography; 2D equalizer; 2D-ISI; HDSS; blur; holographic channel; misalignment;
Conference_Titel :
Digital Signal Processing and Signal Processing Education Meeting (DSP/SPE), 2013 IEEE
Conference_Location :
Napa, CA
Print_ISBN :
978-1-4799-1614-6
DOI :
10.1109/DSP-SPE.2013.6642570