Smart Grids Secured By Dynamic Watermarking: How Secure?

Fuente: arXiv
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Main Authors: Davis, Kate, Kish, Laszlo B., Singh, Chanan
Format: Preprint
Published: 2024
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author Davis, Kate
Kish, Laszlo B.
Singh, Chanan
author_facet Davis, Kate
Kish, Laszlo B.
Singh, Chanan
contents Unconditional security for smart grids is defined. Cryptanalyses of the watermarked security of smart grids indicate that watermarking cannot guarantee unconditional security unless the communication within the grid system is unconditionally secure. The successful attack against the dynamically watermarked smart grid remains valid even with the presence of internal noise from the grid. An open question arises: if unconditionally authenticated secure communications within the grid, together with tamper resistance of the critical elements, are satisfactory conditions to provide unconditional security for the grid operation.
format Preprint
id arxiv_https___arxiv_org_abs_2404_16849
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Smart Grids Secured By Dynamic Watermarking: How Secure?
Davis, Kate
Kish, Laszlo B.
Singh, Chanan
Cryptography and Security
Systems and Control
Unconditional security for smart grids is defined. Cryptanalyses of the watermarked security of smart grids indicate that watermarking cannot guarantee unconditional security unless the communication within the grid system is unconditionally secure. The successful attack against the dynamically watermarked smart grid remains valid even with the presence of internal noise from the grid. An open question arises: if unconditionally authenticated secure communications within the grid, together with tamper resistance of the critical elements, are satisfactory conditions to provide unconditional security for the grid operation.
title Smart Grids Secured By Dynamic Watermarking: How Secure?
topic Cryptography and Security
Systems and Control
url https://arxiv.org/abs/2404.16849