Team Details

BME Formula Racing Team (FSE)

University Budapest University of Technology and Economics
HU Budapest TU short 139
LocationBudapest, Hungary
Homepagehttp://frt.bme.hu/
Social Media LinkedIn Instagram YouTube TikTok facebook X
CV Team BME Motorsport
DV Team BME FRT Driverless
Short Linktid.fsg.one/395
Event Details car 14 - active

Event Profile

Past Events

Car 14 – 2025
2025
Car #14
Info
The team was founded in 2007 at TU Budapest with the purpose of participating in the international Formula Student series. We are proud to be the pioneers of Hungary’s FS teams. Since 2011 we have been the first team in Hungary to race in the electric category and the only one building driverless cars. We are making a comeback to FSG after 2023 with a completely redesigned vehicle aiming for the podium once again. Our motto for the season: Keep gambling.
Engineering Design Priorities:
Understanding Reliability Knowledge transfer Performance Engineering attitude #keepgambling
Car Specifications
General
Frame Construction Monocoque with sandwich structure
Material Sandwich str. carbon-kevlar reinforced plastic + Al honeycomb,front hoop:Al 6060
Overall Length (mm) 2883
Overall Width (mm) 1535
Overall Height (mm) 1175
Wheelbase (mm) 1540
Track Front (mm) 1220
Track Rear (mm) 1210
Weight Front (kg) 125
Weight Rear (kg) 119
Suspension Double unequal A-arms, push rod-actuated spring-damper system via rocker, abjustable ARB
Tyres 16x7.5-10 Hoosier LC0
Wheels 7.25x10, et +54mm, 1 pc cfrp, 850g
Drive Type Coupled planetary gear system
Differential Programmable electronic torque vectoring
Cooling Water cooling, 1 circuit for motors, 1 for inverters
Brake System 4-disk system, adjustable brake balance and integrated brake actuator
Electronics Radio telemetry broadcast on local network, parameter adj. from steering wheel
Powertrain
Number of Motors 4
Motor Location Hub motors in each wheel
Max Motor Power 4x35kW
Motor Type AMK DD5-14-10-POW-18600-B5
Max Motor RPM 21500
Motor Controller self-designed
Max System Voltage (V) 600V
Electrode Materials LiCoO2
Accumulator Capacity 6.92kWh
Transmission Ratio Primary 1:14
Transmission Ratio Secondary n/a
Driverless System
Processing Units Intel Core Ultra 7 165H, Nvidia RTX A500
Processing Units FLOPS 285
Processing Units Power (W) 200
Cameras 1 of Basler acA2040-120uc (color) with a 3.5mm f/2 lens
LiDAR Sensors 1, 50 m, 180°, Ouster OS1, channels: 32, spacing: gradient
Other Sensors GNSS sensor with 2 antennas
DV System Highlights Our DV system features camera-LiDAR fusion for robust cone detection, enhanced state estimation through GNSS-LiDAR odometry fusion, and improved motion planning using a GGV diagram and motor characteristics. We eliminated acceleration oscillations and implemented a nonlinear MPC for precise path tracking.
Car 14 – 2023
2023
Car #14
Info
The team was founded in 2007 at TU Budapest with the purpose of participating in the international Formula Student series. We are proud to be the pioneers of Hungary’s FS teams. Since 2011 we have been the first and only team in Hungary to race in the more environmentally friendly electric category, being the leaders in constructing driverless FS cars as well. Last year we had one of our strongest season, finishing on the podium in FSG, with significant improvements to our driverless system.
Engineering Design Priorities:
EVDV System Reliability Safety Simple, but fast Cost-Efficient Weight Reduction
Car Specifications
General
Frame Construction Carbon composite sandwich strucure with steel main hoop and aluminium front hoop
Material CFRP and aluminium honeycomb
Overall Length (mm) 2856
Overall Width (mm) 1440
Overall Height (mm) 1189
Wheelbase (mm) 1540
Track Front (mm) 1220
Track Rear (mm) 1200
Weight Front (kg) 118
Weight Rear (kg) 138
Suspension Double unequal A-arm. Pushrod actuated spring and 4-way adjustable damper.
Tyres Hoosier 16x7.5-10 R20, Hoosier 16x7.5-10 R20
Wheels 7.25x10, +59 mm offset, 2 pc Al rim / 7.25x10, +59 mm offset, 2 pc Al rim
Drive Type Coupled planetary gear system
Differential Real-time software torque vectoring based on sensor data and vehicle model
Cooling 2 circuits for motors, 2 for inverters with self designed radiators and electric fans
Brake System 4-disk system, adjustable brake balance and integrated brake actuator
Electronics Radio-based telemetry, parameter adj. from steering wheel, LVS supplied by DCDC converter.
Powertrain
Number of Motors 4
Motor Location Hub motors in each wheel
Max Motor Power 4x35kW
Motor Type AMK DD5-14-10-POW-18600-B5
Max Motor RPM 21500
Motor Controller AMK KW26-S5-FSE-4Q
Max System Voltage (V) 600V
Electrode Materials LiCoO2
Accumulator Capacity 7.03kWh
Transmission Ratio Primary 1:13.7
Transmission Ratio Secondary n/a
Driverless System
Processing Units Nvidia Jetson AGX Xavier
Processing Units FLOPS 705
Processing Units Power (W) 60
Cameras 1x Basler ac2440-75uc, 100° horizontal FOV, used at 20Hz through USB
Radar Sensors n/a
LiDAR Sensors 1x Ouster OS1-32, 100° horizontal FOV used
Other Sensors 1x Vectornav VN-300 DUAL GNSS/INS, used for velocity estimation and positioning
DV System Highlights Robust perception pipeline based on a Camera-LiDAR sensor fusion algorithm using a motion compensated and ground filtered pointcloud. A particle filter based FastSLAM algorithm with GraphSLAM optimization upon loop closure. Online trajectory planning and velocity profile fitting with a non linear control system using the Hoffmann-Stanley algorithm.
Car 14 – 2022
2022
Car #14
Info
BME Formula Racing Team is the pioneer of the hungarian FS teams. At the beginning, we made cars powered by gasoline, but in 2011 we were the first team in the country to switch to the more innovative electric category. The successful 2021 season - where we achieved our best overall score so far - built a great foundation for this year. This year we built an EV/DV car to compete fully under the FSG ruleset, to be able to race against the very bests and to collect throphies instead of cones.
Engineering Design Priorities:
reliability safety keep it simple driverless weight reduction maintainability
Car Specifications
General
Frame Construction Single piece CFRP monocoque
Material Sandwich panel: prepreg layers with Al honeycomb and CFRP inserts
Overall Length (mm) 2871
Overall Width (mm) 1440
Overall Height (mm) 1110
Wheelbase (mm) 1540
Track Front (mm) 1200
Track Rear (mm) 1160
Weight Front (kg) 123
Weight Rear (kg) 137
Suspension Double unequal A-arms, pushrod-actuated spring-damper system with adjustable ARB
Tyres 16.0x7.5-10, Hoosier R20 / 16.0x7.5-10, Hoosier R20
Wheels 10x7, ET +22 OZ Racing Magnesium / 10x7, ET +22 OZ Racing Magnesium
Drive Type Coupled planetary gear system
Differential Programmable electronic torque vectoring
Cooling 4 separate circuits for motors, motor controller and DCDC converter with self designed radiators
Brake System 4-disk system, self developed rotors with 154 mm diameter, adjustable brake balance
Electronics LV system powered via DCDC converter, self designed telemetry system, slip and yaw control
Powertrain
Number of Motors 4
Motor Location 4 outboard motors
Max Motor Power 35 kW / motor
Motor Type AMK/DD5-14 10 POW 18600
Max Motor RPM 20000
Motor Controller AMK KW26-S5-FSE-4Q
Max System Voltage (V) 600
Electrode Materials LiCoO2
Accumulator Capacity 7.03kWh
Transmission Ratio Primary 1:16
Transmission Ratio Secondary -
Driverless System
Processing Units NVIDIA Jetson AGX Xavier, TI TMS570LS1227
Processing Units FLOPS 705
Processing Units Power (W) 30
Cameras 1x Basler acA2040-120uc
Radar Sensors -
LiDAR Sensors 1x Ouster OS1-32, vertical FOV: 29°, horizontal FOV used: 180°, 100 m range
Other Sensors 1x Vectornav VN-300 DUAL GNSS/INS, used for velocity estimation and positioning
DV System Highlights Robust perception pipeline based on a Camera-LiDAR sensor fusion algorithm using a motion compensated and ground filtered pointcloud. A particle filter based FastSLAM algorithm with GraphSLAM optimization upon loop closure. Online trajectory planning and velocity profile fitting with a non linear control system using the Hoffmann-Stanley algorithm.
Car 14 – 2014
2014
Car #14
Info
The BME Formula Racing Team from TU Budapest was established in 2007 by several enthusiastic master and postgraduate students. This season though, the team operates with 95 active members. In 2014 the FRT enters the competition with its 9th car, the FREC-004, which is also the 4th electric racecar built by the team. BME FRT’s goal for this season is to be a mentionable competitor against the best teams of the world at FS Germany and aims to reach the top 10 in the World Ranking.
Engineering Design Priorities:
reliability adjustability maneuverability innovation wheight reduction aesthetics
Car Specifications
General
Frame Construction CFRP sandwich monocoque with tubular steel space frame mounted on the rear
Material CFRP & S235 JR
Overall Length (mm) 3165
Overall Width (mm) 1446
Overall Height (mm) 1260
Wheelbase (mm) 1600
Track Front (mm) 1220
Track Rear (mm) 1150
Weight Front (kg) 165
Weight Rear (kg) 165
Suspension Double unequal length A-Arm, pull-rod (front) and push-rod (rear) actuated spring and damper unit
Tyres Hoosier 20.0 x 7.5-13 R25B
Wheels 8x13
Drive Type Independent chain drive
Differential Electronic differential
Cooling Liquied cooled motor and motor controller, radiator moundted in the left sidepod
Brake System Custom heat treaded rotors, AP Racing Calipers, adjustable brake balance
Electronics CAD designed wire harness, live telemetry via WiFi from 300m distance, self-developed LV units
Powertrain
Number of Motors 2
Motor Location Rear, inside the chassis
Max Motor Power 100 [kW]
Motor Type Enstroj - EMRAX 228 High Voltage LC
Max Motor RPM 4000 [1/min]
Motor Controller Piktronik SAC-41
Max System Voltage (V) 306.
Electrode Materials LiFePO4
Accumulator Capacity 5.6 kWh
Transmission Ratio Primary 1:2,045
Transmission Ratio Secondary n/a

FS past achievements due to World Ranking Data Base

Date Event Teams Rank BP CM ED SP DV SP AC DV AC AX EN EF Pe Total
2025.08
84
83.
-
-
-
-
-
-
-
-
-
-
-20.00
0.00
2024.07
31
12.
7.
13.
16.
6.
-
8.
-
6.
-
-
-30.00
335.08
2023.08
70
17.
53.
61.
22.
4.
8.
14.
-
8.
-
-
0.00
373.27
2023.08
31
4.
24.
25.
9.
5.
-
10.
-
9.
1.
9.
0.00
710.39
2023.07
34
4.
22.
26.
17.
7.
-
10.
-
-
3.
4.
-10.00
607.40
2022.08
63
3.
31.
34.
30.
7.
5.
8.
7.
12.
6.
10.
0.00
592.89
2022.08
33
4.
28.
2.
7.
5.
-
5.
-
4.
4.
4.
0.00
594.06
2022.07
30
9.
23.
8.
15.
3.
-
6.
-
-
3.
-
-40.00
319.40
2021.08
26
3.
10.
12.
5.
3.
-
6.
-
2.
2.
8.
0.00
841.03
2021.07
27
4.
7.
20.
15.
1.
-
6.
-
5.
3.
4.
-10.00
742.20
2019.08
39
9.
36.
26.
18.
12.
-
12.
-
11.
7.
10.
0.00
521.70
2019.07
25
6.
24.
13.
4.
-
-
-
-
5.
4.
4.
-60.00
387.56
2019.07
20
18.
15.
18.
14.
-
-
-
-
-
-
-
0.00
213.63
2018.07
16
10.
11.
10.
8.
-
-
-
-
-
-
-
0.00
198.89
2017.08
14
4.
7.
4.
5.
4.
-
4.
-
6.
4.
1.
0.00
761.00
2017.07
38
9.
22.
8.
23.
10.
-
6.
-
13.
10.
9.
0.00
649.80
2016.07
28
3.
11.
9.
3.
2.
-
1.
-
3.
7.
2.
0.00
832.30
2016.07
106
8.
49.
37.
7.
22.
-
-
-
16.
14.
2.
0.00
631.50
2015.08
37
30.
23.
27.
22.
-
-
-
-
-
-
-
0.00
199.31
2014.08
38
27.
31.
13.
21.
19.
-
17.
-
17.
29.
-
0.00
382.46
2014.08
39
34.
29.
18.
26.
-
-
-
-
-
-
-
0.00
186.16
2013.08
37
9.
16.
5.
1.
12.
-
16.
-
14.
11.
1.
0.00
742.40
2012.08
39
24.
31.
17.
22.
29.
-
14.
-
20.
-
-
0.00
386.10
2012.07
97
59.
86.
19.
20.
-
-
-
-
-
-
-
-20.00
183.00
x 24