Nasazení fotonických sítí v prostředí elektrické distribuční soustavy

Abstract

This diploma thesis analyzes the possibilities of integrating photonic networks into existing electrical distribution infrastructure in a specific area with combined high-voltage (HV) and low-voltage (LV) power lines. The main objective was to develop a methodology for creating a hybrid network that combines energy and optical elements while verifying its technical feasibility. The solution utilized geographic and technical mapping data provided by ČEZ Energy Services, s.r.o., enabling detailed design of a prototype photonic network topology under real-world conditions at selected sites. The topology design was implemented in the Optiwave OptiSystem software environment, which facilitated simulations of transmission parameters, analysis of physical and logical ranges, and assessment of compatibility with the electromagnetic environment of the distribution network. The results demonstrate that the proposed hybrid topology achieves high transmission speeds while maintaining safety requirements and identifies key technical challenges associated with integrating optical components into energy infrastructure. The proposed methodology represents a promising solution for modernizing distribution networks and advancing smart energy applications.

Description

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Subject(s)

Photonic Network,Broadband over Power Lines,Metallic Layer, Energy Infrastructure, High Voltage, Low Voltage,Distribution Point Smart Grid,Gigabit Passive Optical Network, Tree Topology

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