Provably Quantum-Secure Microgrids through Enhanced Quantum Distributed Control

Fuente: arXiv
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Autores principales: Babahajiani, Pouya, Zhang, Peng, Liu, Ji, Wei, Tzu-Chieh
Formato: Preprint
Publicado: 2024
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author Babahajiani, Pouya
Zhang, Peng
Liu, Ji
Wei, Tzu-Chieh
author_facet Babahajiani, Pouya
Zhang, Peng
Liu, Ji
Wei, Tzu-Chieh
contents Distributed control of multi-inverter microgrids has attracted considerable attention as it can achieve the combined goals of flexible plug-and-play architecture guaranteeing frequency and voltage regulation while preserving power sharing among nonidentical distributed energy resources (DERs). However, it turns out that cybersecurity has emerged as a serious concern in distributed control schemes. Inspired by quantum communication developments and their security advantages, this paper devises a scalable quantum distributed controller that can guarantee synchronization, and power sharing among DERs. The key innovation lies in the fact that the new quantum distributed scheme allows for exchanging secret information directly through quantum channels among the participating DERs, making microgrids inherently cybersecure. Case studies on two ac and dc microgrids verify the efficacy of the new quantum distributed control strategy.
format Preprint
id arxiv_https___arxiv_org_abs_2405_15163
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Provably Quantum-Secure Microgrids through Enhanced Quantum Distributed Control
Babahajiani, Pouya
Zhang, Peng
Liu, Ji
Wei, Tzu-Chieh
Quantum Physics
Systems and Control
Distributed control of multi-inverter microgrids has attracted considerable attention as it can achieve the combined goals of flexible plug-and-play architecture guaranteeing frequency and voltage regulation while preserving power sharing among nonidentical distributed energy resources (DERs). However, it turns out that cybersecurity has emerged as a serious concern in distributed control schemes. Inspired by quantum communication developments and their security advantages, this paper devises a scalable quantum distributed controller that can guarantee synchronization, and power sharing among DERs. The key innovation lies in the fact that the new quantum distributed scheme allows for exchanging secret information directly through quantum channels among the participating DERs, making microgrids inherently cybersecure. Case studies on two ac and dc microgrids verify the efficacy of the new quantum distributed control strategy.
title Provably Quantum-Secure Microgrids through Enhanced Quantum Distributed Control
topic Quantum Physics
Systems and Control
url https://arxiv.org/abs/2405.15163