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A DNA-Based Archival Storage System

机译:基于DNA的档案存储系统

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Demand for data storage is growing exponentially, but the capacity of existing storage media is not keeping up. Using DNA to archive data is an attractive possibility because it is extremely dense, with a raw limit of 1 exabyte/mm~3 (10~9 GB/mm~3), and long-lasting, with observed half-life of over 500 years. This paper presents an architecture for a DNA-based archival storage system. It is structured as a key-value store, and leverages common biochemical techniques to provide random access. We also propose a new encoding scheme that offers controllable redundancy, trading off reliability for density. We demonstrate feasibility, random access, and robustness of the proposed encoding with wet lab experiments involving 151 kB of synthesized DNA and a 42 kB random-access subset, and simulation experiments of larger sets calibrated to the wet lab experiments. Finally, we highlight trends in biotechnology that indicate the impending practicality of DNA storage for much larger datasets.
机译:对数据存储的需求呈指数增长,但是现有存储介质的容量没有跟上。使用DNA存档数据是一种有吸引力的方法,因为它非常密集,原始限制为1艾字节/毫米〜3(10〜9 GB /毫米〜3),并且持久,半衰期超过500年份。本文提出了一种基于DNA的档案存储系统的体系结构。它被构造为键值存储,并利用常见的生化技术提供随机访问。我们还提出了一种新的编码方案,该方案可提供可控制的冗余度,在可靠性与密度之间进行权衡。我们通过涉及151 kB合成DNA和42 kB随机访问子集的湿实验室实验以及针对湿实验室实验校准的较大集合的仿真实验,证明了拟议编码的可行性,随机访问和鲁棒性。最后,我们重点介绍了生物技术趋势,这些趋势表明DNA储存对于更大数据集的实用性。

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