Whether delivered online or on-site, our instructor-led live Automotive training courses offer a practical, hands-on approach to mastering both the fundamentals and advanced aspects of Automotive technology.
Participants can choose between "online live training" (also known as "remote live training") and "onsite live training." Remote sessions are conducted interactively via remote desktop, ensuring a seamless digital learning experience. On-site options are available either at your location in Gaia or at NobleProg's dedicated corporate training centers in Gaia.
NobleProg -- Your Local Training Provider
Holiday Inn Porto - Gaia
220, Rua Diogo Macedo, 220, Vila Nova de Gaia 4400-107 , Gaia, Portugal
From Porto by Metro
If you're coming from Porto city centre:
Take the Metro Line D (yellow line) toward Vila d’Este.
Get off at João de Deus.
From João de Deus, walk about 13 minutes to: Rua Diogo Macedo 220, 4400-107 Vila Nova de Gaia.
From Vila Nova de Gaia train station
If by “local train station” you mean Vila Nova de Gaia-Devesas:
The address is approximately 12 minutes walking from Vila Nova de Gaia station according to the accommodation's location information.
You can therefore walk directly rather than taking the metro.
This instructor-led, live training in Gaia (online or onsite) is designed for professionals at the beginner level who wish to investigate the ethical dilemmas and legal frameworks surrounding autonomous vehicles.
Upon completion of this training, participants will be capable of:
Understanding the ethical implications of AI-driven decision-making in autonomous vehicles.
Analyzing global legal frameworks and policies regulating self-driving cars.
Examining liability and accountability in the event of autonomous vehicle accidents.
Evaluating the balance between innovation and public safety in autonomous driving laws.
Discussing real-world case studies involving ethical dilemmas and legal disputes.
This instructor-led, live training in Gaia (online or onsite) is aimed at beginner-level professionals and enthusiasts who wish to understand the fundamental concepts, technologies, and applications of autonomous vehicles.
By the end of this training, participants will be able to:
Understand the key components and working principles of autonomous vehicles.
Explore the role of AI, sensors, and real-time data processing in self-driving systems.
Analyze different levels of vehicle autonomy and their real-world applications.
Examine the ethical, legal, and regulatory aspects of autonomous mobility.
Gain hands-on exposure to autonomous vehicle simulations.
This instructor-led, live training in Gaia (online or onsite) is designed for intermediate-level network engineers and automotive IoT developers who wish to understand and implement V2X communication technologies for autonomous vehicles.
Upon completion of this training, participants will be equipped to:
Grasp the core principles of V2X communication.
Evaluate V2V, V2I, V2P, and V2N communication models.
Deploy V2X protocols, including DSRC and C-V2X.
Create simulations for connected vehicle ecosystems.
Navigate cybersecurity and privacy challenges within V2X networks.
This instructor-led live training in Gaia (online or onsite) is tailored for intermediate-level engineers, automotive professionals, and IoT specialists who wish to understand the role of sensors in self-driving cars, covering LiDAR, radar, cameras, and sensor fusion techniques.
Upon completion of this training, participants will be able to:
Differentiate between the various types of sensors utilized in autonomous vehicles.
Analyze sensor data to support real-time vehicle perception and decision-making processes.
Apply sensor fusion techniques to enhance vehicle accuracy and safety.
Optimize sensor positioning and calibration to improve autonomous driving performance.
This instructor-led, live training in Gaia (online or onsite) is aimed at advanced-level safety engineers and automotive safety professionals who wish to develop comprehensive safety strategies for autonomous vehicles, including hazard analysis, functional safety assessments, and compliance with international standards.
By the end of this training, participants will be able to:
Identify and assess safety risks associated with autonomous driving systems.
Conduct hazard analysis and risk assessment using industry standards.
Implement safety validation and verification methods for AV systems.
Apply functional safety standards, such as ISO 26262 and SOTIF.
Develop risk mitigation strategies for AV safety challenges.
This instructor-led live training in Gaia (online or onsite) targets advanced sensor fusion specialists and AI engineers who wish to develop multi-sensor fusion algorithms and optimize real-time navigation in autonomous systems.
By the end of this training, participants will be able to:
Understand the fundamentals and challenges of multi-sensor data fusion.
Implement sensor fusion algorithms for real-time autonomous navigation.
Integrate data from LiDAR, cameras, and RADAR for perception enhancement.
Analyze and evaluate fusion system performance under various conditions.
Develop practical solutions for sensor noise reduction and data alignment.
This live, instructor-led training in Gaia focuses on the design and development of automotive software using AUTOSAR Classic and Adaptive platforms. Learners will acquire practical proficiency in configuring components, integrating ADAS solutions, and applying safety-critical best practices through the use of industry-standard tools.
This instructor-led, live training in Gaia (online or onsite) is aimed at intermediate-level AI developers and computer vision engineers who wish to build robust vision systems for autonomous driving applications.
By the end of this training, participants will be able to:
Understand the fundamental concepts of computer vision in autonomous vehicles.
Implement algorithms for object detection, lane detection, and semantic segmentation.
Integrate vision systems with other autonomous vehicle subsystems.
Apply deep learning techniques for advanced perception tasks.
Evaluate the performance of computer vision models in real-world scenarios.
This instructor-led, live training in Gaia (online or onsite) is designed for intermediate-level automotive engineers and technicians who wish to acquire hands-on experience in testing, simulating, and diagnosing ECUs using Vector tools such as CANoe and CANape.
By the end of this training, participants will be able to:
Comprehend the role and function of ECUs in automotive systems.
Set up and configure Vector tools such as CANoe and CANape.
Simulate and test ECU communication on CAN and LIN networks.
Analyze data and perform diagnostics on ECUs.
Create test cases and automate testing workflows.
Calibrate and optimize ECUs using practical approaches.
This live, instructor-led course in Gaia (delivered online or onsite) is designed for senior robotics engineers and AI researchers aiming to implement advanced path planning algorithms to improve autonomous vehicle performance.
Upon completion, participants will have the ability to:
Understand the core theoretical principles of advanced path planning.
Apply algorithms like RRT*, A*, and D* for real-time navigation tasks.
Optimise planning strategies for effective obstacle avoidance in dynamic settings.
Integrate sensor data with path planning for improved accuracy.
Assess algorithm performance in practical, real-world scenarios.
This instructor-led, live training in Gaia (online or onsite) targets intermediate-level automotive engineers and embedded systems developers who wish to understand the theoretical aspects of ECUs, focusing on Vector-based tools and methodologies used in automotive design and development.
By the end of this training, participants will be able to:
Understand the architecture and functions of ECUs in modern vehicles.
Analyze communication protocols used in ECU development.
Explore Vector-based tools and their theoretical applications.
Apply model-based development principles to ECU design.
This live, instructor-led training in Gaia (available online or onsite) targets advanced data scientists, AI specialists, and automotive AI developers who aim to construct, train, and optimise AI models for autonomous driving applications.
By the end of the programme, participants will be able to:
Grasp the core principles of AI and deep learning as they apply to autonomous vehicles.
Execute computer vision techniques for real-time object detection and lane following.
Utilise reinforcement learning to drive decision-making in self-driving systems.
Integrate sensor fusion methods to improve perception and navigation.
Create deep learning models for the prediction and analysis of driving scenarios.
This instructor-led live training in Gaia (online or onsite) is intended for beginner-level quality engineers wishing to learn how to utilise Core Quality Tools to ensure product quality in the manufacturing industry.
Upon completion of this training, participants will be capable of:
Gaining insight into the significance and integration of Core Quality Tools.
Mastery of APQP concepts and application to enable effective product quality planning.
Identifying potential product and process failures, comprehending their impact on quality, and executing actions to mitigate risks.
Employing statistical methods to monitor and control manufacturing processes, ensuring both product quality and process efficiency.
This instructor-led, live training in Gaia (online or onsite) is aimed at beginner-level quality control professionals who wish to learn the fundamentals of Statistical Process Control (SPC) and apply it in real-world scenarios.
By the end of this training, participants will be able to:
Grasp the fundamentals of Statistical Process Control (SPC).
Utilise essential SPC tools such as control charts, histograms, Pareto charts, and scatter diagrams to monitor process performance.
Construct and interpret various types of control charts for variable and attribute data to detect and analyse process variations.
Calculate and interpret process capability indices.
Discover how Machine Learning and Deep Learning are reshaping the automotive industry. This Gaia course explores fundamental concepts, progressing from simple automation to autonomous decision-making, and includes insights into neural networks as well as practical TensorFlow examples for real-world implementation.
The 'Automotive SPICE (A-SPICE) - Introduction' workshop focuses on reviewing the Automotive SPICE process assessment model, discussing its structure, classification, and interpretative guidelines. Participants acquire competencies to understand the assessment process from the perspective of project managers and stakeholders. The course covers the significance of ASPICE in the market, compliance, different process groups, and ASPICE levels through examples of real implementations.
This instructor-led, live training in Gaia (online or on-site) is primarily designed for engineers who wish to utilize AUTOSAR to design automotive components.
By the end of this training, participants will be able to:
This instructor-led, live training (delivered online or onsite) is designed for intermediate-level embedded software developers and automotive engineers looking to utilise the AUTOSAR Classic Platform to develop, integrate, and test standardised software components for electronic control units (ECUs).
Upon completing this training, participants will be able to:
Install and configure AUTOSAR development tools (e.g., DaVinci Developer, EB Tresos, or ETAS ISOLAR-A/B).
Gain a solid understanding of the AUTOSAR layered architecture and Basic Software modules (BSW).
Design and implement the AUTOSAR Operating System (OS) and Communication stack (COM stack).
Utilise CANoe or comparable tools for simulation, testing, and diagnostics within an AUTOSAR environment.
This instructor-led live training, available online or on-site, targets intermediate embedded software developers and automotive engineers seeking to master the configuration and understanding of AUTOSAR OS (based on OSEK/VDX) and the COM Stack. The course focuses on enabling reliable task scheduling and communication within automotive ECUs.
Upon completion of this training, participants will be capable of:
Grasping the AUTOSAR OS architecture and its scheduling policies
Implementing and managing tasks, events, alarms, and counters
Describing and configuring COM Stack layers, including PDUR and communication services
Explaining protocol stacks (CAN, LIN, FlexRay, Ethernet) and their interaction with AUTOSAR interfaces
Configuring OS and COM modules using industry-standard tools (Vector DaVinci or ETAS ISOLAR)
Simulating and validating task and communication flows in an AUTOSAR-based ECU
Read more...
Last Updated:
Testimonials (1)
Good expertise of the trainer
Christoph Perret - RENAULT TECHNOLOGIE ROUMANIE S.R.L.
Online Automotive training in Gaia, Automotive training courses in Gaia, Weekend Automotive courses in Gaia, Evening Automotive training in Gaia, Automotive instructor-led in Gaia, Automotive one on one training in Gaia, Automotive boot camp in Gaia, Automotive on-site in Gaia, Automotive private courses in Gaia, Automotive trainer in Gaia, Automotive instructor in Gaia, Online Automotive training in Gaia, Weekend Automotive training in Gaia, Automotive coaching in Gaia, Automotive instructor-led in Gaia, Automotive classes in Gaia, Evening Automotive courses in Gaia