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Varnostno stikalo dvosmernega presmernika po standardu LV148
ID URŠIČ, JAN (Author), ID Zajec, Peter (Mentor) More about this mentor... This link opens in a new window

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Abstract
Pričujoče magistrsko delo podaja teoretično podlago, zasnovo, izdelavo in testiranje visoko tokovnega varnostnega stikala za avtomobilski dvosmerni stikalni presmernik. Zasnova stikala sledi smernicam 48 V napetostnega standarda in ostalim avtomobilskim aplikacijam prilagojenim zahtevam, ki se uporabljajo v vozilih z omejeno elektrifikacijo pogonskega sklopa, t. i. mehkih hibridih. Podrobneje je opisan in prikazan način sklopitve varnostnega stikala in dvosmernega pretvornika ter izbrani topologiji pripadajoče zahteve. Posamezni sklopi stikala so namenoma sestavljeni iz pretežno diskretnih komponent zaradi trenutnega stanja na trgu električnih komponent. Posebna pozornost je bila posvečena zasnovi nadtokovne zaščite, ki ščiti dvosmerni stikalni pretvornik pred kratkim stikom. Ob shemah vezij izdelanih v programu Altium Designer je predstavljeno delovanje posameznih sklopov. Sledi razlaga delovanja celotnega varnostnega stikala. Testiranje in overitev izdelanega prototipa sta pokazala, da stikalo izpolnjuje osnovne zahteve, ugotovljene pa so bile določene pomanjkljivosti. V zaključku se dotaknemo še možnih izboljšav, ki bi izpopolnile delovanje stikala.

Language:Slovenian
Keywords:varnostno stikalo, DC odklopnik, LV148
Work type:Master's thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2022
PID:20.500.12556/RUL-141445 This link opens in a new window
COBISS.SI-ID:124547075 This link opens in a new window
Publication date in RUL:29.09.2022
Views:783
Downloads:64
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Secondary language

Language:English
Title:LV148 compliant safety switch for bidirectional DC/DC converter
Abstract:
This master’s thesis provides theoretical basis, design, manufacturing, and testing of high-current safety switch for an automotive bidirectional switching converter. The design of the switch follows the guidelines of the 48 V automotive standard and other specific requirements applied to vehicles with limited powertrain electrification, i.e. mild hybrids. The coupling method of the safety switch and bidirectional converter is described in more detail along with topology specific requirements. Individual safety switch assemblies are intentionally composed of predominantly discrete components due to the current electrical component shortage. Special attention was paid to the design of the overcurrent protection, which protects the bidirectional switching converter from short circuit. Operation of individual assemblies is presented alongside circuit schematics created with Altium Designer. Operation of safety switch is presented and explained. Testing and verification of the manufactured prototype determined that the switch meets basic requirements, but certain shortcomings were identified. In conclusion, improvements are described that would enhance the operation of the switch.

Keywords:Safety switch, DC disconnector, LV148

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