Course Code: ecutv
Duration: 21 hours
Prerequisites:
  • Basiskennis van automotive systemen
  • Kennis van embedded systemen
  • Bekendheid met communicatieprotocollen zoals CAN of LIN

Doelgroep

  • Automotive ingenieurs
  • Embedded systems developers
  • Onderzoekers en professionals die werken met voertuig elektronica
Overview:

Een Electronic Control Unit (ECU) is een kritisch embedded systeem in de automotive elektronica dat verschillende subsystems binnen een voertuig beheert.

Deze instructeursgeleide, live training (online of onsite) is bedoeld voor automobilingenieurs en ontwikkelaars van embedded systemen op intermediate niveau die de theoretische aspecten van ECU's willen begrijpen, met de nadruk op Vector-gebaseerde tools en methodologieën die worden gebruikt in automotive ontwerp en ontwikkeling.

Aan het einde van deze training zullen de deelnemers in staat zijn om:

  • De architectuur en functies van ECU's in moderne voertuigen te begrijpen.
  • Communicatieprotocollen te analyseren die worden gebruikt bij de ontwikkeling van ECU's.
  • Vector-gebaseerde tools te verkennen en hun theoretische toepassingen.
  • Modelgebaseerde ontwikkelingsprincipes toe te passen op ECU-ontwerp.

Format van de cursus

  • Inter actieve lezing en discussie.
  • Veel oefeningen en praktijk.
  • Hands-on implementatie in een live-labomgeving.

Cursusaanpassingsopties

  • Om een ​​gepersonaliseerde training voor deze cursus aan te vragen, neem dan contact met ons op om dit te regelen.
Course Outline:

Inleiding tot ECU's

  • Overzicht van ECU's en hun rol in automotive systemen
  • Historische ontwikkeling en toekomstige trends
  • Belangrijke componenten en architectuur van een ECU

Communication Protocols in ECU's

  • Introductie tot CAN, LIN, FlexRay en Ethernet
  • Het begrijpen van protocollagen en datatransmissie
  • Foutdetectie en fouttolerantie in communicatieprotocollen

Theoretische concepten van Vector-tools

  • Overzicht van Vector-oplossingen voor ECU-ontwikkeling
  • Introductie tot CANoe en CANalyzer
  • Gebruikssituaties van Vector-tools in systeemeontwerp en validatie

Modelmatige ontwikkeling

  • Introductie tot modelgebaseerde ontwerppincipes
  • Simulink integratie met ECU-ontwikkeling
  • Testen en validatie door middel van simulatie

Functionele veiligheid en normen

  • ISO 26262 begrijpen en de implicaties daarvan
  • Functionele veiligheid analyse in ECU-ontwerp
  • Best practices om compliant te worden

Case studies en industrietoepassingen

  • Echte voorbeelden van ECU-toepassingen in moderne voertuigen
  • Uitdagingen en oplossingen in ECU-ontwikkeling
  • Toekomstige vooruitzichten en vorderingen in ECU-technologie

Samenvatting en volgende stappen

Sites Published:

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