Secure brightness/contrast filter using fully homomorphic encryption

Thomas Shortell, A. Shokoufandeh
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引用次数: 1

Abstract

Performing signal processing via a distributed method while maintaining data privacy has great uses. We focus on this problem to a two party situation where the first one (client) has a signal needing to be processed and is computationally bounded and the second (server) has computational resources. As a client, revealing the signal unencrypted causes a violation of privacy. One solution to this problem is to process the signal while encrypted. Problems of this type have been attracting attention recently; particularly with the growing capabilities of cloud computing. This paper contributes to solving this type of problem by processing the signals in an encrypted form, using fully homomorphic encryption (FHE). Realization of this type of application was performed using a brightness/contrast filter as a simple form of signal processing. Three additional contributions of this manuscript includes (1) extending FHE to real numbers, (2) bounding the error related to the FHE process against the unencrypted variation of the process, and (3) increasing the practicality of FHE as a tool by using graphical processing units (GPU).
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使用完全同态加密的安全亮度/对比度过滤器
在保持数据隐私的同时,通过分布式方法执行信号处理具有很大的用途。我们把这个问题集中在两方的情况下,第一方(客户端)有一个需要处理的信号,并且是计算有限的,而另一方(服务器)有计算资源。作为客户端,泄露未加密的信号会侵犯隐私。这个问题的一个解决方案是在加密时处理信号。这类问题最近引起了人们的注意;尤其是随着云计算能力的增长。本文采用全同态加密(FHE)对信号进行加密处理,从而解决了这类问题。实现这种类型的应用是使用亮度/对比度滤波器作为信号处理的一种简单形式。该手稿的另外三个贡献包括:(1)将FHE扩展到实数,(2)将与FHE过程相关的错误与过程的未加密变化绑定,以及(3)通过使用图形处理单元(GPU)增加FHE作为工具的实用性。
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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