
Understand real time automotive projects by exploring the course structure, requirement analysis from customers, test case creation, DBC prerequisites, and manual execution with scripts, defects, and regression testing.
Analyze requirements for an automotive car door module using CAN/OBD indicators; learn static testing, diagnose issues, and prepare test cases and defect logs.
Draft a raw, layman-friendly test spec and apply boundary value analysis, static analysis, equivalence partitioning, and decision table techniques to create automotive test cases.
Learn the preconditions for database creation in the keynote tool, including customer input, stakeholder roles, the node, message, signal structure, and boolean door signals with Intel byte settings.
Create a can database for door open/close using the can db plus plus editor; define door sensor and actuator nodes, front and rear door messages, and map 16 signals.
Set up and test manual signal transmission by integrating the database into the block, configuring the AG block, and transmitting front and rear door messages with logging and trace analysis.
Write an automated script to test a car door open/close system using database signals, variables, on start and on timer blocks, with logging for robust validation.
Learn to raise defects from test results, record observed deviations, and use Bugzilla to log and track life cycle states from new to closed, with attachments and notes.
Explain retesting to verify fixes and regression testing to validate changes across new automotive scenarios, and define exit and entry criteria to know when to stop and release.
The Real-time Automotive Projects course is designed to provide Freshers, students and enthusiasts with comprehensive knowledge and practical skills in developing and implementing real-time projects within the automotive industry. Through a hands-on learning approach, participants will gain a deep understanding of cutting-edge technologies, industry trends, and best practices involved in creating advanced automotive systems.
Course participants will delve into various aspects of real-time automotive projects, including embedded systems, sensor integration, data processing, communication protocols, control systems, safety, and simulation. They will learn how to leverage these technologies to enhance vehicle performance, optimize energy efficiency, improve safety features, and elevate the overall driving experience.
During the course, students will engage in interactive workshops, practical exercises, and project-based assignments that simulate real-world scenarios. They will work with industry-standard tools and technologies, such as micro-controllers, sensors, communication protocols, and simulation software, to design and implement their own real-time automotive projects.
By the end of the course, participants will have a solid understanding of real-time automotive project development and be equipped with the skills to undertake their own projects or contribute effectively within automotive research and development teams. Whether you're a student looking to enter the automotive industry or a professional seeking to up-skill in this rapidly evolving field, this course will empower you to drive innovation and make a meaningful impact in the automotive sector.