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Varna komunikacija s pametnimi števci električne energije
ID JAGODIC, AMBROŽ (Author), ID Murovec, Boštjan (Mentor) More about this mentor... This link opens in a new window

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Abstract
Informacijska varnost v sodobnih sistemih je ključnega pomena, saj se vitalne informacije izmenjujejo preko javnih ali privatnih komunikacijskih omrežij. Med te sisteme spadajo tudi rešitve napredne merilne infrastrukture. Ponudniki sistemov za izmenjavo podatkov z merilnimi napravami, med katere spada podjetje Enerdat-S, d.o.o., Šenčur, za katerega je bil razvit sistem, ki ga obravnava pričujoče diplomsko delo, morajo zagotoviti ustrezno stopnjo informacijske varnosti. V diplomski nalogi so opisani varnostni mehanizmi sistema AdvanceHES, produkta podjetja Enerdat-S. Pri tem se omejimo na števce električne energije, ki so skladni s specifikacijo DLMS/COSEM, katera je tudi opisana v tej diplomski nalogi. Števec, ki je predmet te diplomske naloge, uporablja za šifriranje informacij simetrične šifrirne algoritme. Enega večjih problemov pri simetričnem šifriranju predstavlja varna distribucija ključev do sprejemnika in oddajnika informacij. Nobena rešitev tega problema ni popolnoma ustrezna (npr. ni varna ali ni smiselna), zato je nastala potreba po menjavi kriptografskih ključev števca. Glavni del diplomske naloge zajema opis razvoja menjave kriptografskih ključev števca Landis+Gyr E350 od načrtovanja in analize ter do implementacije. Opisani so tudi ponovitveni mehanizmi za preprečevanje kritičnih napak v procesu.

Language:Slovenian
Keywords:menjava ključev števca, programski paket AdvanceHES, specifikacija DLMS/COSEM
Work type:Bachelor thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2019
PID:20.500.12556/RUL-108523 This link opens in a new window
Publication date in RUL:05.07.2019
Views:1412
Downloads:193
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Secondary language

Language:English
Title:Secure communication with smart electricity meters
Abstract:
Information security is a crucial part of modern systems where vital information is carried through public or private communication networks. One such system is that of advanced metering infrastructure. Companies that design head-end systems, such as the company Enerdat-S Ltd., Šenčur, whose head-end system we are developing, must ensure that there is an appropriate level of information security in their system. This thesis describes the security mechanisms implemented in AdvanceHES, a product of Enerdat-S, and is limited to electricity meters which comply with DLMS/COSEM specification. The meter which is used in this thesis uses only symmetric cryptograpthic operations. The main problem with symmetric cryptography is ensuring secure private key distribution to an information transmitter and receiver. The existing solutions to this problem are not fully adequate (e.g. not secure enough), so there was a need to implement functionality for meter key exchange. The main part of this thesis describes the design and implementation of meter key exchange functionality for a Landis+Gyr E350 electricity meter. For the prevention of critical errors, we implemented retry mechanisms, which are also described in this thesis.

Keywords:meter key exchange, software solution AdvanceHES, DLMS/COSEM specification

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