An image filter based on primary frequency analysis to improve the bit error rate in holographic data storage systems

The primary frequency analysis method is proposed to design an image filter for applications in holographic data storage systems that use a Nyquist aperture. We designed the filter by analyzing the frequency of the data patterns, requiring neither the point spread function of the system nor iteratio...

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Veröffentlicht in:Microsystem technologies : sensors, actuators, systems integration actuators, systems integration, 2016-06, Vol.22 (6), p.1359-1365
Hauptverfasser: Kim, Hwal, Jeon, Sungbin, Cho, Janghyun, Kim, Do-Hyung, Park, No-Cheol
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Sprache:eng
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Zusammenfassung:The primary frequency analysis method is proposed to design an image filter for applications in holographic data storage systems that use a Nyquist aperture. We designed the filter by analyzing the frequency of the data patterns, requiring neither the point spread function of the system nor iteration. The component frequencies that constitute the data pattern were calculated, and the modulation transfer function (MTF) determines that the primary frequency components was boosted. This filter boosts the primary frequency region where the modulation transfer function (MTF)
ISSN:0946-7076
1432-1858
DOI:10.1007/s00542-016-2843-1