Forward and Backward Private Dynamic Searchable Encryption with Better Space Efficiency

Yexuan Liu, Yohei Watanabe, Junji Shikata
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Abstract

Dynamic searchable symmetric encryption (SSE) provides efficient update and search operations over encrypted data, while it leaks some inconsequential information to increase search efficiency. Since the more dynamic SSE allows leakage, the easier it is to break its security, it is important to realize efficient schemes with less leakages. For that reason, most recent works on dynamic SSE focus on forward and backward privacy, which are important security notions for dynamic SSE. In particular, Sun et al. (NDSS 2021) recently proposed Aura, an efficient dynamic SSE scheme with forward and backward privacy. Although Aura provides good update and search efficiency, it requires large encrypted database. Taking into account the practical use of dynamic SSE, i.e., search systems that many users involve, the sizes of encrypted databases should be small enough. In this paper, based on Aura, we propose a new dynamic SSE scheme with forward and backward privacy, called Aura +; it provides not only efficient update and search operations but also smaller encrypted database than Aura, though Aura+ requires a few more interactions than Aura.
具有更好空间效率的前向和后向私有动态可搜索加密
动态可搜索对称加密(SSE)为加密后的数据提供了高效的更新和搜索操作,同时也会泄露一些无关紧要的信息以提高搜索效率。由于动态SSE越允许泄漏,就越容易破坏其安全性,因此实现泄漏少的高效方案非常重要。因此,最近关于动态SSE的工作主要集中在前向和后向隐私上,这是动态SSE的重要安全概念。特别是Sun等人(NDSS 2021)最近提出了一种具有前向和后向隐私的高效动态SSE方案Aura。虽然Aura提供了良好的更新和搜索效率,但它需要大型加密数据库。考虑到动态SSE的实际使用,即许多用户涉及的搜索系统,加密数据库的大小应该足够小。本文基于Aura,提出了一种新的具有前向和后向隐私的动态SSE方案,称为Aura +;它不仅提供高效的更新和搜索操作,而且提供比Aura更小的加密数据库,尽管Aura+需要比Aura更多的交互。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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