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Vodenje odjema majhnih odjemalcev z daljinsko vodenimi napravami
ID STRELEC, ŽIGA (Author), ID Blažič, Boštjan (Mentor) More about this mentor... This link opens in a new window

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PID: 20.500.12556/rul/2506d24c-894d-4cb4-95ac-dd02cf6f51b5

Abstract
Razvoj družbe in gospodarstva vpliva na vedno večjo porabo električne energije. Večja poraba električne energije pomeni večjo proizvodnjo in obremenjenost sistema. Zraven tega se je v današnjih časih zelo povečalo število obnovljivih virov električne energije. S tem mislimo predvsem na sončne in vetrne elektrarne, katere se težje prilagajajo odjemu. Zaradi tega pridemo do ključnega problema ravnovesja med porabo in proizvodnjo električne energije. Klasično se je proizvodnja električne energije prilagajala odjemu. Danes je zaradi visokega deleža obnovljivih virov (sončne, vetrne elektrarne) prilagajanje proizvodnje odjemu postalo težje prilagodljivo. Problem je, da trenutno še ni mogoče shraniti velikih količin proizvedene električne energije. Zato je v tem trenutku edini možni način ta, da se v ohranjanje ravnovesja vključi tudi poraba. Dandanes so ekonomske možnosti za fleksibilnost odjema veliko boljše kot pred nekaj leti, zato se vedno bolj izpostavljajo različni sistemi za vodenje odjema (angl. demand response DR). Stroški telekomunikacij, elektronskih naprav, procesiranja in hranjenja podatkov so se znatno znižali, kar je zelo povečalo zanimanje za uvedbo DR sistemov. S temi sistemi električne odjemalce aktivno vključimo v elektroenergetsko omrežje in niso več samo klasični porabniki električne energije. Povečamo tudi uporabnost, izkoriščenost in integracijo obnovljivih virov (sončne, vetrne elektrarne) v elektroenergetski sistem. To diplomsko delo opisuje vodenje odjema pri gospodinsjkih odjemalcih in malem odjemu (pod 43 kW priključne moči) z daljinsko vodenimi napravami. Predstavljen namen je zmanjšanje koničnih obremenitev omrežja. Na tak način bi brez postavljanja nove infrastrukture zmanjšali obremenitev omrežja in ga bolje izkoristili. Zmanjšali bi tudi dodatno drago proizvodnjo električne energije za pokrivanje koničnih obremenitev. V diplomskem delu so predstavljene konkretne rešitve in naprave za uporabo v praksi. Naprave bodo dejansko uporabljene na pilotnem projektu in so še v fazi razvoja. Rešitve so predstavljene z različnimi moduli, a imajo vse enake cilje.

Language:Slovenian
Keywords:daljinsko vodenje odjema, konične obremenitve, ravnovesje proizvodnje in odjema
Work type:Bachelor thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2017
PID:20.500.12556/RUL-94816 This link opens in a new window
Publication date in RUL:07.09.2017
Views:1269
Downloads:338
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Secondary language

Language:English
Title:Demand response for household consumers applying remote controlled devices
Abstract:
Development of society and economy affects the increasing consumption of electricity, which leads to greater production and higher system load. In addition, the number of renewable sources of electricity has also increased remarkably. Primarily this implies to solar and wind power plants, which cannot traditionally be adapted to the consumption. This leads to a key problem of balance between consumption and production of electricity. Traditionally, electricity production was adapted to the consumption. Today, due increased sources of renewable resources (solar, wind power), adjustment of production to the consumers has become more and more difficult. The main problem still remains that we are unable to save large quantities of produced electricity. At this moment, the only possible way is to include consumption in system and maintain the balance between the two. Nowadays, economic possibilities and flexibility offer much better conditions than few years ago. Also the costs of telecommunications, electronic devices, data processing and data storage have dropped significantly. This has increased the interest for demand response systems. With these systems, electrical consumers are more actively included in the electricity network and are no longer only traditional electricity consumers. We also increase usability, utilization and integration of renewable resources (solar, wind power) into the electrical system. This bachelor thesis describes management of household appliances (below 43 kW of power) with remotely controlled devices. Presented intention is reducing peak load of electrical system network, without installation of any new infrastructure. Network's load would be reduced and better utilized. Presented devices will be used on the pilot project and are still in the development phase. Solutions are presented with different modules although all have the same goals.

Keywords:demand response, remote controlled devices, peak load

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