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Algoritem za omejevanje moči električnega vozila Formula Student
ID Toič, Bruno (Author), ID Tuma, Tadej (Mentor) More about this mentor... This link opens in a new window

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Abstract
Formula Student je tekmovanje nadobudnih bodočih inženirjev s celega sveta. Številne ekipe se pomerijo med sabo na dirkah, polnih strasti do načrtovanja in izdelave najhitrejšega dirkalnika. Pogosto stotinke sekunde odločijo, na katerem končnem mestu se znajde naša ekipa. Pravilnik definira celotno tekmovanje in omejitve za dirkalnike tako, da na koncu zmaga najboljši. Eno izmed pomembnih pravil je omejitev maksimalne moči dirkalnika na 80 kW, njena prekoračitev pa pomeni diskvalifikacijo. Zaradi močne konkurence in visokih standardov dirkalnikov je potrebno za dosego dobrih rezultatov dirkalnik načrtovati in ga voziti na sami meji dovoljenega, kjer prostora za napake ni. V tej magistrski nalogi je predstavljen razvoj novega algoritma za omejevanje moči. Algoritem temelji na diskretnem PID regulatorju, ki prilagaja zahtevek za navor tako, da je vozniku na voljo največ moči, brez da bi presegli zgoraj omenjeno omejitev. Algoritem načrtujemo v programskem paketu Simulink, kjer ga nato s simulacijo, v kateri uporabimo poenostavljen model dirkalnika, tudi verificiramo. Za uporabo algoritma na dirkalniku na vgrajenem krmilnem vezju VCU prevedemo Simulink model algoritma v C kodo. Dirkalnik z novim algoritmom zmanjša napako pri nadzoru moči s čimer se čas na poligonu izboljša.

Language:Slovenian
Keywords:formula student, električno vozilo, simulink, simulacija, vgrajeni sistemi
Work type:Master's thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2024
PID:20.500.12556/RUL-164375 This link opens in a new window
Publication date in RUL:23.10.2024
Views:73
Downloads:27
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Secondary language

Language:English
Title:Power limiting algorithm for Formula Student electric vehicle
Abstract:
Formula Student is a competition full of aspiring future engineers from around the world. Numerous teams compete against each other in races driven by a passion for designing and building the fastest formula car. Often, hundredths of a second decide the final position of our team. The rulebook defines the entire competition and the limitations for the formula cars, ensuring that the best team wins in the end. One of the key rules is the limitation of the maximum power of the car to 80 kW, exceeding which results in disqualification. Due to the intense competition and advanced design and performance of the formula cars, achieving good results requires designing and operating the car at the very limit of what is allowed, leaving no room for error. This master's thesis presents the development of a new power limiting algorithm. The algorithm is based on a discrete PID controller, which adjusts the torque request so that the driver has access to the maximum power without exceeding the limit. The algorithm is designed in the Simulink software package, where it is then verified through simulation using a simplified model of the race car. For use of the algorithm in the car on the embedded control circuit (VCU), the Simulink model of the algorithm is translated into C code. The race car with the new algorithm reduces power control error, and the time on the track improves.

Keywords:formula student, electric vehicle, simulink, simulation, embedded systems

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