
We are in the phase to restructure this course, I request you all to re-rate and comment after watching our videos. Thank you
Explore how to learn automotive CAN protocol and other protocols, and how to approach HiL testing concepts. Validate ECU software using CAN tools, CAPL scripting, and realistic test environments.
This Video is like a synopsis contains what are the contents we are going to cover in this course has been given in this video which gives viewers to get clarity on what they are going to learn
Discover hardware in the loop components, including programmable power supply, pc/interface, ecu hardware, plant, measurement devices, and communication protocols, and the roles of plant, device under test, and controller feedback.
Learn hardware-in-the-loop testing by wiring ECUs, harness cables, and CAN/FlexRay buses in a car, and validating emulated ECUs and embedded software in a HIL setup.
Apply a simple hardware-in-the-loop workflow by ensuring correct connections, powering the system, and feeding a plant-model input to drive actuation and record outputs via the communication protocol.
Explore how hardware in the loop tests engine control units (ECU), covering ECU roles, inter-ECU communication, flashing workflows, and HiL emulator versus attached setups.
Learn how hardware in the loop uses a virtual model as the testing environment, enabling two-way input-output flow and controller feedback to safely test real hardware like ECUs.
Explore how hardware-in-the-loop testing uses a plant simulator and a plant model to validate controllers in a safe, real-time environment, reducing risk and cost.
Learn to analyze automotive requirements for HiL testing, starting from static testing and requirement validation. Explore CAN/OBD communication, dashboard indicators, and door module behavior to validate end-to-end functionality.
Explore how to set up a basic control desk configuration for HiL testing, including adding devices and databases (SDF/DBC), creating a layout, and configuring measurements.
HiL testing uses hill simulation to uncover real-time software challenges before mass production, avoiding recalls and reflashing by validating real features in a simulated environment.
Explore hardware-in-the-loop (HIL) testing, a closed-loop setup with ECU, sensors, and harnesses to validate control systems. Understand open versus closed loop with practical examples.
Explore how signal conditioning circuits enhance HiL testing by smoothing signals before analog-to-digital conversion and reducing harmonics and noise with filters such as low pass, high pass, and band pass.
Explore how the load box emulates real-time signals and actuation in HiL testing, converting analog inputs via a signal box into simulated brake and airbag responses.
Configure hardware-in-the-loop testing with precompiled containers for Simulink and Matlab models and functional mockups (FMUs), then validate inputs and outputs using control desk and automation desk.
In this course learners can learn completely about HIL Testing (Hardware In the Loop) & capable of handling HIL Environment independently by knowing risks and measures while working.
Each part described gives a clarity to learners from the scratch. The complete playlist has created sequentially to make techies to understand each and every concepts with clear explanation. At the end of this course learners can gain more confident on handling HIL Environment while testing.
HIL Testing or HIL Simulation is not like other topics, you should have live hands on experience to attain knowledge and gain exposure but only working is not sufficient to excel in you career. In this course we brought you to understand A-Z concepts in HIL. One who learns this can easily adapt him/her for HIL Environment and utilize their knowledge in workplace from this course.