Desenvolvimento de Gateway de rede automotivo e sistema de monitoramento para protótipo do tipo Formula SAE
Abstract
Student competitions such as Formula SAE allow the students to immerse in an experimental learning process, where they have to complete all the steps of a project developent, such as design, manufacture and validation of a Formula-style racing car prototype. The Formula UFSM Team detected the need for a system that brings real time critical informations vehicle status to the driver. This purpose requires monitoring systems and a network gateway development, in order to interconnect different automotive protocols such as CAN, I²C and UART, besides alert driver about critical situations of the prototype.
References
IPC (2003). 2221A Generic Standard on Printed Board Design. IPC, a edition.
ITU (2020). Radio Regulations, 2020 edition.
Michael Wagner (2019). Arduino library for the esp32 can bus. Acesso em 15 ago. 2023. Disponível em <https://github.com/miwagner/ESP32-Arduino-CAN>.
NXP (2003). TJA1050, 1 edition. Acesso em 10 ago. 2023. Disponível em <https://www.nxp.com/docs/en/data-sheet/TJA1050.pdf>.
Sandeep Mistry (2019). Arduino lora. Acesso em 15 ago. 2023. Disponível em <https://github.com/sandeepmistry/arduino-LoRa>.
Segers, J. (2014). Analysis Techniques for Racecar Data Acquisition. SAE international.
SEMTECH (2020). SX1276/77/78/7, 7 edition. Acesso em 22 ago. 2023. Disponível em <https://www.semtech.com/products/wireless-rf/lora-connect/sx1276>.
Texas (2013). LM3914 Dot/Bar Display Driver, 4 edition. Acesso em 22 ago. 2023. Disponível em <https://www.ti.com/lit/ds/symlink/lm3914.pdf>.
Tier, E. G. (2019). Desenvolvimento de sistemas de monitoramento empregando tecnologia lora em um prototipo tipo formula sae.
Tilley, A. R. et al. (2001). The measure of man and woman: human factors in design. John Wiley & Sons.