An Efficient and Effective Implementation of the Trust System for Power Grid Compartmentalization
The goal of this research is to show in a simulated environment that security of the network can be strengthen by first fielding the trust system and second, by dividing a network into smaller clusters, called "domains", in order to isolate anomalies or intrusions detected. In order to show this, a mathematical model of the problem will be built and translated into a software tool that at the end will receive real-life-network data as input. This program uses real world power grid representative data, outputs a network configuration that has used the concepts described above of network compartmentalization and strategic placing of trust nodes. As a result, this new network configuration ensures safe day-to-day operations by minimizing the effects in case of an attack or equipment malfunction of the system by subdividing the network into domains. Each domain protected by a trust node(s) without violating timing constraints.
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An Efficient and Effective Implementation of the Trust System for Power Grid Compartmentalization
The goal of this research is to show in a simulated environment that security of the network can be strengthen by first fielding the trust system and second, by dividing a network into smaller clusters, called "domains", in order to isolate anomalies or intrusions detected. In order to show this, a mathematical model of the problem will be built and translated into a software tool that at the end will receive real-life-network data as input. This program uses real world power grid representative data, outputs a network configuration that has used the concepts described above of network compartmentalization and strategic placing of trust nodes. As a result, this new network configuration ensures safe day-to-day operations by minimizing the effects in case of an attack or equipment malfunction of the system by subdividing the network into domains. Each domain protected by a trust node(s) without violating timing constraints.
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An Efficient and Effective Implementation of the Trust System for Power Grid Compartmentalization

An Efficient and Effective Implementation of the Trust System for Power Grid Compartmentalization

by Juan M Carlos Gonzalez
An Efficient and Effective Implementation of the Trust System for Power Grid Compartmentalization

An Efficient and Effective Implementation of the Trust System for Power Grid Compartmentalization

by Juan M Carlos Gonzalez

Hardcover

$30.95 
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Overview

The goal of this research is to show in a simulated environment that security of the network can be strengthen by first fielding the trust system and second, by dividing a network into smaller clusters, called "domains", in order to isolate anomalies or intrusions detected. In order to show this, a mathematical model of the problem will be built and translated into a software tool that at the end will receive real-life-network data as input. This program uses real world power grid representative data, outputs a network configuration that has used the concepts described above of network compartmentalization and strategic placing of trust nodes. As a result, this new network configuration ensures safe day-to-day operations by minimizing the effects in case of an attack or equipment malfunction of the system by subdividing the network into domains. Each domain protected by a trust node(s) without violating timing constraints.

Product Details

ISBN-13: 9781025119427
Publisher: Hutson Street Press
Publication date: 05/22/2025
Pages: 140
Product dimensions: 6.14(w) x 9.21(h) x 0.38(d)
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