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RESCUE: Resilient Secret Sharing Cloud-Based Architecture

机译:救援:基于云的弹性秘密共享架构

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This paper presents an architecture (RESCUE) of a system that is capable of implementing: a keyless encryption method, self-destruction of data within a time frame without user's intervention, and break-glass data recovery, with in-built failover protection. It aims to overcome many of the current problems within Cloud-based infastructures, such as in the loss of private keys, and inherent failover protection. The architecture uses a secret share method with: an Application Platform, Proxy Servers with Routers, and a Metadata Server. These interact within a multi-cloud environment to provide a robust, secure and dependable system, and which showcases a new direction in an improved cloud computing environment. It aims to ensure user privacy, and reduces the potential for data loss, as well as reducing denial-of-service outages within the cloud, and with failover protection for stored data. In order to assessement the best secret sharing method that could be used for the architecture, the paper outlines a range of experiments on the performance footprint of the most relevant secret sharing schemes.
机译:本文提出了一种系统的体系结构(RESCUE),该体系结构能够实现:无密钥加密方法,在没有用户干预的情况下在一定时间范围内自毁数据以及具有内置故障转移保护功能的碎玻璃数据恢复。它旨在克服基于云的基础架构中的许多当前问题,例如私钥丢失和固有的故障转移保护。该体系结构使用秘密共享方法,该方法具有:应用程序平台,带路由器的代理服务器和元数据服务器。它们在多云环境中进行交互以提供一个健壮,安全和可靠的系统,并且在改进的云计算环境中展现了新的方向。它旨在确保用户隐私,并减少数据丢失的可能性,并减少云中的服务拒绝中断,并为存储的数据提供故障转移保护。为了评估可用于该体系结构的最佳秘密共享方法,本文概述了有关最相关秘密共享方案的性能足迹的一系列实验。

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