Input-Output History Feedback Controller for Encrypted Control with Leveled Fully Homomorphic Encryption

Fuente: arXiv
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Main Authors: Teranishi, Kaoru, Sadamoto, Tomonori, Kogiso, Kiminao
Format: Preprint
Published: 2021
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author Teranishi, Kaoru
Sadamoto, Tomonori
Kogiso, Kiminao
author_facet Teranishi, Kaoru
Sadamoto, Tomonori
Kogiso, Kiminao
contents Protecting the parameters, states, and input/output signals of a dynamic controller is essential for securely outsourcing its computation to an untrusted third party. Although a fully homomorphic encryption scheme allows the evaluation of controller operations with encrypted data, an encrypted dynamic controller with the encryption scheme destabilizes a closed-loop system or degrades the control performance due to overflow. This paper presents a novel controller representation based on input-output history data to implement an encrypted dynamic controller that operates without destabilization and performance degradation. Implementation of this encrypted dynamic controller representation can be optimized via batching techniques to reduce the time and space complexities. Furthermore, this study analyzes the stability and performance degradation of a closed-loop system caused by the effects of controller encryption. A numerical simulation demonstrates the feasibility of the proposed encrypted control scheme, which inherits the control performance of the original controller at a sufficient level.
format Preprint
id arxiv_https___arxiv_org_abs_2109_10718
institution arXiv
publishDate 2021
record_format arxiv
spellingShingle Input-Output History Feedback Controller for Encrypted Control with Leveled Fully Homomorphic Encryption
Teranishi, Kaoru
Sadamoto, Tomonori
Kogiso, Kiminao
Systems and Control
Cryptography and Security
Protecting the parameters, states, and input/output signals of a dynamic controller is essential for securely outsourcing its computation to an untrusted third party. Although a fully homomorphic encryption scheme allows the evaluation of controller operations with encrypted data, an encrypted dynamic controller with the encryption scheme destabilizes a closed-loop system or degrades the control performance due to overflow. This paper presents a novel controller representation based on input-output history data to implement an encrypted dynamic controller that operates without destabilization and performance degradation. Implementation of this encrypted dynamic controller representation can be optimized via batching techniques to reduce the time and space complexities. Furthermore, this study analyzes the stability and performance degradation of a closed-loop system caused by the effects of controller encryption. A numerical simulation demonstrates the feasibility of the proposed encrypted control scheme, which inherits the control performance of the original controller at a sufficient level.
title Input-Output History Feedback Controller for Encrypted Control with Leveled Fully Homomorphic Encryption
topic Systems and Control
Cryptography and Security
url https://arxiv.org/abs/2109.10718