论文标题

通过完全同型加密和混合统一量化量化来实现通过边缘计算的安全形成控制

Secure Formation Control via Edge Computing Enabled by Fully Homomorphic Encryption and Mixed Uniform-Logarithmic Quantization

论文作者

Marcantoni, Matteo, Jayawardhana, Bayu, Chaher, Mariano Perez, Bunte, Kerstin

论文摘要

通信技术(例如5G)的最新发展以及创新的计算范式(例如边缘计算)为实施实时网络控制系统的实施提供了进一步的可能性。但是,在传感器,代理商和第三方计算设施之间共享私人数据时,隐私和网络安全问题会出现。在本文中,对分布式形成控制的安全版本进行了介绍,分析和模拟,其中基于梯度的形成控制法在边缘实现,传感器和执行器信息通过基于错误的学习(FHE-lwe)的完全同型加密方法(FHE-lwe(FHE-lwe))与拟议的混合构造的混合物含量固定器(Mulq)相结合。新颖的量化器被证明适用于使用FHE-LWE实现安全控制系统,其中可以将关键的实时信息量化为规定的纯文本有界空间,同时满足扇区结合条件,该条件可以使得可以使较低和上限足够接近身份。提出了绝对稳定性分析,该分析显示了闭环安全控制系统的渐近稳定性。

Recent developments in communication technologies, such as 5G, together with innovative computing paradigms, such as edge computing, provide further possibilities for the implementation of real-time networked control systems. However, privacy and cyber-security concerns arise when sharing private data between sensors, agents and a third-party computing facility. In this paper, a secure version of the distributed formation control is presented, analyzed and simulated, where gradient-based formation control law is implemented in the edge, with sensor and actuator information being secured by fully homomorphic encryption method based on learning with error (FHE-LWE) combined with a proposed mixed uniform-logarithmic quantizer (MULQ). The novel quantizer is shown to be suitable for realizing secure control systems with FHE-LWE where the critical real-time information can be quantized into a prescribed bounded space of plaintext while satisfying a sector bound condition whose lower and upper-bound can be made sufficiently close to an identity. An absolute stability analysis is presented, that shows the asymptotic stability of the closed-loop secure control system.

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