论文标题

一个独立且自称的DNA存储系统

A self-contained and self-explanatory DNA storage system

论文作者

Li, Min, Wu, Jiashu, Dai, Junbiao, Jiang, Qingshan, Qu, Qiang, Huang, Xiaoluo, Wang, Yang

论文摘要

当前对DNA存储的研究通常集中在通过开发有效的编码和解码方案来提高存储密度的改善,同时缺乏对超长期数据存储和保留的不确定性的考虑。因此,当前的DNA存储系统通常没有独立,这意味着它们必须诉诸于恢复存储的DNA数据的外部工具。这可能会导致数据丢失的高风险,因为由于未来的高度不确定性,可能无法使用所需的工具。为了解决这个问题,我们在本文中提出了一个独立的DNA存储系统,该系统可以为其存储的数据带来自称,而无需依赖任何外部工具。为此,我们设计了一种特定的DNA文件格式,从而开发了单独的存储方案来减少数据冗余,同时设计有效的索引,用于将其随机读取操作到存储的数据文件。我们通过实验数据验证了提议的自包含和自我解释的方法不仅可以摆脱对数据恢复的外部工具的依赖,而且还可以最大程度地减少何时存储的数据量所带来的数据冗余,从而达到一定的规模。

Current research on DNA storage usually focuses on the improvement of storage density by developing effective encoding and decoding schemes while lacking the consideration on the uncertainty in ultra-long-term data storage and retention. Consequently, the current DNA storage systems are often not self-contained, implying that they have to resort to external tools for the restoration of the stored DNA data. This may result in high risks in data loss since the required tools might not be available due to the high uncertainty in far future. To address this issue, we propose in this paper a self-contained DNA storage system that can bring self-explanatory to its stored data without relying on any external tool. To this end, we design a specific DNA file format whereby a separate storage scheme is developed to reduce the data redundancy while an effective indexing is designed for random read operations to the stored data file. We verified through experimental data that the proposed self-contained and self-explanatory method can not only get rid of the reliance on external tools for data restoration but also minimise the data redundancy brought about when the amount of data to be stored reaches a certain scale.

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