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Efficient Algorithm for Secure Outsourcing of Modular Exponentiation with Single Server

机译:用单级服务器安全外包的高效算法

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摘要

Outsourcing computation allows an outsourcer with limited resource to delegate the computation load to a powerful server without the exposure of true inputs and outputs. It is well known that modular exponentiation is one of the most expensive operations in public key cryptosystems. Currently, most of outsourcing algorithms for modular exponentiation are based on two untrusted servers or have small checkability with single server. In this paper, we first propose an efficient outsourcing algorithm of modular exponentiation based on two untrusted servers, where the outsourcer can detect the error based on Euler theorem with a probability of 1 if one of the servers misbehaves. We then present an outsourcing algorithm of modular exponentiation with single server, and the outsourcer can also check the failure with a probability of 1. Therefore, the proposed algorithm with single server improves efficiency and checkability simultaneously compare with the previous ones. Finally, we provide the experimental evaluations to demonstrate that the proposed two algorithms are the most efficient ones in all of the outsourcing algorithms for an outsourcer.
机译:外包计算允许一个带有有限资源的外包员将计算负载委派给强大的服务器,而不会曝光真正的输入和输出。众所周知,模块化指数是公钥密码系统中最昂贵的操作之一。目前,模块化指数的大多数外包算法都基于两个不受信任的服务器,或者使用单个服务器具有较小的可验证性。在本文中,我们首先提出了一种基于两个不受信任的服务器的模块化指数的高效外包算法,外包商可以基于欧拉定理来检测误差,如果其中一个服务器行为不端,则概率为1。然后,我们介绍了一个带有单个服务器的模块化指数的外包算法,外包商还可以检查概率为1.因此,具有单服务器的所提出的算法可以同时与之前的算法相比同时比较。最后,我们提供了实验评估,以证明所提出的两种算法是外包网上所有外包算法中最有效的算法。

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