Performance Evaluation of Iterative Channel Codes for Digital Data Storage on Microfilm

Florian Pflug, C. Voges, T. Fingscheidt
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引用次数: 1

Abstract

In the past few years microfilm has gained new research interest as a medium for long-term storage of digital data. This became particularly possible by recent advances in laser film recording technology. In contrast to other optical or magnetic storage media, the microfilm digital channel (MDC) still has been subject to characterization in only a few publications. In this paper we investigate iterative channel codes for the MDC, in particular low-density parity-check and turbo convolutional codes. Simulation results show that practically error-free storage can be achieved with code rates even above 0.85 on a monochrome MDC with binary amplitude-shift keying modulation.
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微胶片上数字数据存储的迭代信道码性能评价
在过去的几年中,缩微胶片作为一种长期存储数字数据的介质获得了新的研究兴趣。由于激光胶片记录技术的最新进展,这一点尤其成为可能。与其他光学或磁性存储介质相比,缩微胶片数字通道(MDC)仍然仅在少数出版物中进行了表征。在本文中,我们研究了MDC的迭代信道码,特别是低密度奇偶校验码和turbo卷积码。仿真结果表明,在二进制移幅键控调制的单色MDC上,即使码率高于0.85,也可以实现几乎无差错的存储。
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