Empowering Tomorrow's Automotive Software

ETAS

The automotive industry is undergoing its most radical transformation in a century. As the software-defined vehicle (SDV) leads the future of mobility, modern cars are rapidly evolving into sophisticated digital platforms on wheels. Empowering Tomorrow’s Automotive Software explores how electrification, automation, vehicle architecture, and connectivity are reshaping automotive engineering. Hosted by ETAS experts, each episode dives into the critical solutions driving modern vehicle development, including AUTOSAR, embedded cybersecurity, ECU development, virtual validation, Software-in-the-Loop (SIL), measurement and calibration, cloud-connected systems, and more. Brought to you by the experts at ETAS, leaders in high-performance automotive software solutions and embedded device security. To learn more, visit etas.com Produced by ETAS Inc.; Madelyn Downs, madelyn.downs@bosch.com Imprint and contact information:  ETAS Inc. 15800 N. Haggerty Road Plymouth, Michigan 48170 USAcontact.us@etas.com  Privacy Policy

  1. 1d ago

    Open-Source Strategy in Software-Defined Commercial Vehicles

    While passenger cars rapidly shift toward high-performance compute platforms, commercial vehicles operate under unique economic constraints where fleet profitability, total cost of ownership and razor-thin operating margins drive every software decision. In this episode, host Bernd Graef sits down with Carlton Bale, Director of Software Defined Vehicle Strategy at Cummins, and Daniel Krippner, Open Source Technologist at ETAS, to explore open-source collaboration in software-defined commercial vehicles. Carlton and Daniel explain how open-source frameworks, specifically through the Eclipse SDV working group, allow heavy-duty manufacturers to solve shared architectural challenges without reinventing non-differentiating infrastructure software. Together, they break down the shift from closed NDA-based models to open collaboration, how to maintain safety certification under ISO 26262 using Trustable Software Frameworks (TSF), and how Cummins and ETAS are co-developing practical, production-intent SDV stack blueprints. Whether you are an automotive software engineer, systems architect, or fleet technology leader, this episode offers a practical look at how commercial vehicle OEMs and suppliers are collaborating to accelerate time-to-market. In this episode: 00:00 - Introduction: Commercial Vehicles & The Software-Defined Shift 02:44 - Commercial Vehicle Economics: Fleet ROI, Total Cost of Ownership, and Incremental Architectures 04:58 - The Power of Open Source: Why Non-Differentiating Infrastructure Belongs in Open Collaboration 11:36 - Standardizing Powertrain Interfaces: Hands-On Work with uService and OpenSOVD 18:20 - Safety Certification & Open Source: Navigating ISO 26262, Non-Safety Domains, and TSF 27:20 - Bridging Commercial and Passenger SDVs: Shared Infrastructure vs. Domain Specifics 33:04 - Getting Involved: Eclipse SDV Commercial Blueprints, Code Contribution, and Culture Shift Useful links from the discussion: Commercial SDV Stack Blueprint: https://github.com/eclipse-sdv-blueprints/commercial-sdv-stackEclipse SDV Blueprints: https://sdv-blueprints.eclipse.dev/;Joining Eclipse SDV Community: https://eclipsesdv.org/get-involved/   Thanks for listening! Email us at: contact.us@etas.comLearn more about ETAS on our website Follow us on LinkedIn: @ETAS

    Open-Source Strategy in Software-Defined Commercial Vehicles
  2. Aug 26

    Smart Agriculture and Cybersecurity: Inside the Cyber Resilience Act

    Agriculture is undergoing a rapid digital transformation, with automation, connectivity, and AI reshaping how the world grows food — and raising the stakes for cybersecurity along the way. In this episode, ETAS host Elder Avila sits down with Thiago Pereira, Head of Software Engineering for Smart Agriculture at Bosch in Brazil, to explore how connected machines and software-defined systems are transforming farming, and why cybersecurity has become a business-critical concern rather than a niche IT issue. Thiago shares why Brazil, as one of the world's leading agricultural producers, has become a proving ground for smart agriculture innovation, walking through the automation, connectivity, computer vision, and AI technologies driving productivity gains across the farm. The conversation then turns to the EU's Cyber Resilience Act (CRA), where Thiago breaks down its three pillars, security by design, lifecycle vulnerability management, and incident reporting, and explains why compliance matters even for companies operating outside Europe. Whether you are an agricultural technology leader, embedded software engineer, or cybersecurity professional, this episode offers a clear-eyed look at how the industry is balancing rapid innovation with the security demands of an increasingly connected food supply chain. In this episode: 00:00 - Introduction, Welcome 00:32 - Meet the Host and Guest: Smart Agriculture at Bosch Brazil 02:32 - Why Agriculture Is Strategically Vital & Brazil's Global Leadership 07:18 - Defining Smart Agriculture: Automation, Connectivity, AI, and Computer Vision 12:16 - Why Cybersecurity Is Now Business-Critical for Connected Machines 14:06 - Inside the Cyber Resilience Act: Security by Design, Vulnerability Management, and Incident Reporting 20:23 - Balancing Innovation and Security: What's Ahead for the Next 5-10 Years 23:50 - Closing Thoughts and Key Takeaways To learn more about ETAS's cybersecurity and diagnostics solutions for off-highway and commercial vehicles, visit: https://www.etas.com/ww/en/topics/cybersecurity-diagnostics-off-highway/?std1=Partner&std2=other&std3=701Tq00000q8xeZ&std4 Thanks for listening! Email us at: contact.us@etas.comLearn more about ETAS on our website Follow us on LinkedIn: @ETAS

    Smart Agriculture and Cybersecurity: Inside the Cyber Resilience Act
  3. Jul 23

    Industry Trends Toward Software Virtualization and Simulation

    The automotive industry is shifting from a physical-first testing mindset to a virtual-first engineering approach, driven by the massive rise in software-defined vehicle complexity. In this episode,, host Suresh Sivavarman sits down with Cedric Armand, Director of Virtualization at Ford Motor Company, to break down the industry's rapid evolution toward software virtualization and simulation. Cedric shares how virtual-first environments enable automotive engineers to run millions of automated regression tests overnight—shifting defect discovery left to prevent costly field failures. Together, they discuss the foundational building blocks of scaling simulation (from virtual ECUs and plant models to cloud-based co-simulation platforms), overcoming the limits of physical HIL benches, managing organizational change for virtual tool adoption, and leveraging AI to accelerate testing efficiency. Whether you are an automotive software engineer, systems architect, or validation manager, this episode offers a firsthand look at how major OEMs are scaling virtual development to accelerate time-to-market. In this episode:  00:00 - Introduction: The Shift from Physical Testing to Virtual-First Engineering 03:00 - Defining Virtualization vs. Simulation in Automotive Systems  08:15 - The Massive ROI of "Shifting Left" & Running Automated Regression Tests 16:45 - Beyond HIL Benches: Scaling Virtual ECUs and Cloud-Based Co-Simulation 24:30 - Cultural Change & Organizational Buy-In for Virtual Tool Adoption 32:10 - The Future Role of AI in Diagnosing Test Failures and Streamlining Validation Thanks for listening! Email us at: contact.us@etas.comLearn more about ETAS on our website Follow us on LinkedIn: @ETAS

    Industry Trends Toward Software Virtualization and Simulation
  4. Jun 23

    Introduction to Enterprise Purple Teaming

    In the final episode of our Enterprise series, host Vasili Kutscherjavenko sits down with ETAS experts Wolfgang Neufeld and Rene Reuter to demystify the collaborative world of Purple Teaming. Following up on previous discussions regarding independent red and blue team dynamics, the group explores how bringing attackers and defenders together in active workshops eliminates the traditional "blaming approach" and accelerates an organization's actual threat detection capabilities. The trio also take a deep dive into the modern cyber threat landscape, discussing how rapidly evolving generative AI models are altering the game, enabling even less-skilled attackers to rapidly execute zero-day vulnerabilities and accelerating the speed of enterprise breaches. Whether you are an enterprise security leader, a plant operations manager, or a cybersecurity professional looking to optimize your incident response times, this episode offers a highly practical blueprint for building mature, resilient defense systems. In this episode: 00:00 - Introduction to Enterprise Purple Teaming  03:15 - Red Team vs. Blue Team: Defining the Roles  08:40 - What is Purple Teaming and Why It Matters  14:20 - Bridging the Gap Between Offensive and Defensive Security  21:05 - Integrating Purple Teaming into Automotive & Enterprise Workflows  28:30 - Key Challenges, Metrics, and Measuring Success  34:50 - Final Takeaways and the Future of Collaborative Security  Check out our other Enterprise episodes: Introduction to Enterprise Red Teaming Introduction to Enterprise Blue Teaming Thanks for listening! Email us at: contact.us@etas.comLearn more about ETAS on our website Follow us on LinkedIn: @ETAS

    Introduction to Enterprise Purple Teaming
  5. Jun 8

    Exploring Virtual ECUs and the Transition to SIL (Software-in-the-Loop)

    As software deployment velocity continues to outpace physical hardware availability, relying strictly on traditional Hardware-in-the-Loop (HIL) setups is rapidly shifting from a core strategy to an operational bottleneck. In this episode, host Suresh Sivavarman sits down with Sangeeta Theru, Virtual Validation Platform Lead at Stellantis, to explore how the automotive industry is evolving from hardware-centric testing frameworks to software-first engineering environments. Sangeeta breaks down how Stellantis leverages a "shift-left" strategy by scaling Software-in-the-Loop (SIL) platforms to achieve faster time-to-market, minimize late-stage engineering risks, and drastically reduce physical vehicle prototype costs. Whether you are an embedded software engineer, a system validation manager, or an OEM technical lead, this conversation offers a practical guide to demystifying Virtual ECUs (VECUs) and scaling digital validation workflows. In this episode:  00:00 - Introduction & Software-First Engineering Shifts  04:15 - The "Shift-Left" Catalyst: System-Level Digital Validation  11:30 - Overcoming the Trust Gap: Physical vs. Virtual Target Faults  18:45 - HIL vs. SIL: Why 70-80% of Validation Can Bypass Physical Hardware  26:10 - Demystifying Virtual ECUs (VECUs): Levels 3, 3+, and 4 Abstractions  34:00 - Managing Global Complexity & Scaling SIL Across OEM Supply Chains 38:20 - Key Takeaways for Accelerating Vehicle Launch Timelines Thanks for listening! Email us at: contact.us@etas.comLearn more about ETAS on our website Follow us on LinkedIn: @ETAS

    Exploring Virtual ECUs and the Transition to SIL (Software-in-the-Loop)
  6. Mar 31

    Accelerating SDV Development through Virtualization and AI

    Developing software-defined vehicles (SDVs) requires a massive paradigm shift in how cloud infrastructure, virtualization, and artificial intelligence converge on the factory floor and in the cloud. In this episode, host Suresh Sivavarman, Customer Chief Engineer at ETAS, sits down with Raj Paul, Mobility Industry Leader at Microsoft. Together, they break down how the partnership between Microsoft and ETAS is redefining vehicle development cycles. Raj explores how cloud-native developer environments, digital twins, and generative AI are accelerating software validation, streamlining developer onboarding, and enabling continuous OTA updates across modern automotive architectures. Whether you are an automotive software architect, cloud engineer, or OEM technology strategist, this episode offers a practical look at scaling AI and cloud-driven virtualization across the SDV ecosystem. In this episode:  00:00 - Introduction: Cloud Computing & SDV Acceleration  04:10 - The Microsoft & ETAS Vision for Cloud-Native Automotive Software  10:25 - Virtualization & Digital Twins: Moving Beyond Physical Prototyping  17:40 - Generative AI in Development: Boosting Code Generation & Validation 24:15 - Overcoming Friction in Developer Workflows & Onboarding  30:50 - Continuous OTA Deployment & Cloud-to-Vehicle Integration  36:10 - Key Takeaways for the Future of Connected Mobility Thanks for listening! Email us at: contact.us@etas.comLearn more about ETAS on our website Follow us on LinkedIn: @ETAS

    Accelerating SDV Development through Virtualization and AI
  7. Jan 13

    Generative AI Security in the Automotive Domain

    As generative AI (GenAI) shifts from traditional deterministic algorithms to complex probabilistic models, securing AI implementations across automotive systems presents entirely new engineering and cybersecurity challenges. In this episode, host Zane Pelletier sits down with Ivan Granero, Cybersecurity Specialist at Bosch, to explore the security implications of deploying GenAI within the automotive domain. Ivan breaks down the fundamental shifts in risk modeling, the threat of prompt injection attacks, LLM data leakage, and how security teams must adapt threat analysis and risk assessment (TARA) frameworks to safeguard embedded automotive software and cloud-connected vehicle architectures. Whether you are an automotive cybersecurity researcher, AI engineer, or vehicle software architect, this conversation provides a practical guide to securing next-generation AI in software-defined vehicles. In this episode:  00:00 - Introduction: GenAI Security in Automotive  04:15 - Traditional Machine Learning vs. Probabilistic GenAI Models  10:30 - Emerging Threat Vectors: Prompt Injection & Data Leakage in LLMs  16:50 - Securing GenAI Across the Vehicle Lifecycle & Supply Chain  23:15 - Adapting TARA (Threat Analysis & Risk Assessment) for AI Systems  30:40 - Safeguarding Intellectual Property & Embedded Model Integrity  35:20 - Key Takeaways for Future Automotive AI Defense To view the tool Zane and Ivan mentioned in their discussion, click here.  Thanks for listening! Email us at: contact.us@etas.comLearn more about ETAS on our website Follow us on LinkedIn: @ETAS

    Generative AI Security in the Automotive Domain
  8. 12/02/2025

    Exploring Injection Attacks on UAVs and the Realities of Embedded Device Security

    Unmanned Aerial Vehicles (UAVs) and connected embedded devices face an increasingly complex physical threat landscape where software protections alone are no longer enough to stop sophisticated hardware attacks. In this episode, host Zane Pelletier from ETAS is joined by Gabriel Gonzalez-Garcia, Director of Hardware Security at IOActive, for an in-depth exploration of drone security and hardware hacking. Gabriel breaks down how fault injection attacks, including voltage glitching and clock manipulation, allow attackers to bypass secure boot mechanisms, alter instruction execution, and extract sensitive cryptographic keys from embedded chips. Whether you are an embedded systems engineer, automotive security researcher, or hardware designer, this conversation offers critical insights into securing microcontrollers and automotive ECUs against physical and fault-based exploits. Read Gabriel’s full whitepaper: https://www.ioactive.com/drone-security-fault-injection-attacks-gabriel-gonzalez/ In this episode:  00:00 - Introduction: Drone Hacking & Hardware Security Realities  05:10 - Why UAVs Present Unique Attack Vectors for Embedded Research  12:45 - Demystifying Fault Injection Attacks: Voltage & Clock Glitching  19:30 - Bypassing Secure Boot & Hardware-Based Access Controls  27:15 - Extracting Cryptographic Keys & Firmware from Target Chips  35:40 - Defensive Engineering: Hardening Microcontrollers Against Physical Exploits  40:15 - Key Takeaways for Automotive ECUs and Connected Hardware Thanks for listening! Email us at: contact.us@etas.comLearn more about ETAS on our website Follow us on LinkedIn: @ETAS

    Exploring Injection Attacks on UAVs and the Realities of Embedded Device Security

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The automotive industry is undergoing its most radical transformation in a century. As the software-defined vehicle (SDV) leads the future of mobility, modern cars are rapidly evolving into sophisticated digital platforms on wheels. Empowering Tomorrow’s Automotive Software explores how electrification, automation, vehicle architecture, and connectivity are reshaping automotive engineering. Hosted by ETAS experts, each episode dives into the critical solutions driving modern vehicle development, including AUTOSAR, embedded cybersecurity, ECU development, virtual validation, Software-in-the-Loop (SIL), measurement and calibration, cloud-connected systems, and more. Brought to you by the experts at ETAS, leaders in high-performance automotive software solutions and embedded device security. To learn more, visit etas.com Produced by ETAS Inc.; Madelyn Downs, madelyn.downs@bosch.com Imprint and contact information:  ETAS Inc. 15800 N. Haggerty Road Plymouth, Michigan 48170 USAcontact.us@etas.com  Privacy Policy