Encrypted LQG using labeled homomorphic encryption

A. Alexandru, George J. Pappas
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引用次数: 21

Abstract

We consider the problem of implementing a Linear Quadratic Gaussian (LQG) controller on a distributed system, while maintaining the privacy of the measurements, state estimates, control inputs and system model. The component sub-systems and actuator outsource the LQG computation to a cloud controller and encrypt their signals and matrices. The encryption scheme used is Labeled Homomorphic Encryption, which supports the evaluation of degree-2 polynomials on encrypted data, by attaching a unique label to each piece of data and using the fact that the outsourced computation is known by the actuator. We write the state estimate update and control computation as multivariate polynomials in the encrypted data and propose an extension to the Labeled Homomorphic Encryption scheme that achieves the evaluation of low-degree polynomials on encrypted data, with degree larger than two. We showcase the numerical results of the proposed protocol for a temperature control application that indicates competitive online times.
使用标记同态加密加密LQG
我们考虑在分布式系统上实现线性二次高斯(LQG)控制器的问题,同时保持测量、状态估计、控制输入和系统模型的私密性。组件子系统和执行器将LQG计算外包给云控制器,并对其信号和矩阵进行加密。使用的加密方案是标记同态加密,它支持对加密数据的2次多项式的评估,通过为每个数据附加一个唯一的标签,并利用执行器知道外包计算的事实。我们将状态估计、更新和控制计算写成加密数据中的多元多项式,并提出了对标记同态加密方案的一种扩展,实现了加密数据上阶大于2的低阶多项式的求值。我们展示了所提出的协议的数值结果,用于温度控制应用,表明竞争在线时间。
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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