Automation Lead - AI (C++ & Python)
Caterpillar
- Location
- Bangalore, Karnataka
- Work model
- On-Site
- Level
- Senior
- H-1B history
- 106 approvals (FY2023)
- Posted
- 11h ago
Skills
About this role
Career Area: Engineering Job Description: Your Work Shapes the World at Caterpillar Inc. When you join Caterpillar, you're joining a global team who cares not just about the work we do – but also about each other. We are the makers, problem solvers, and future world builders who are creating stronger, more sustainable communities. We don't just talk about progress and innovation here – we make it happen, with our customers, where we work and live. Together, we are building a better world, so we can all enjoy living in it.
Role
Definition Leads the design, development, and validation of the safety critical software automation framework. Drives automation strategy across software-in-the-loop (SIL) validation and collaborates with development, validation, and systems engineering teams to ensure internal quality standards and customer reliability targets are achieved. Shape Responsibilities Lead the design and continuous improvement of the safety Automation Framework, including SIL test infrastructure, CANoe-based signal simulation, radar object injection, and camera PCAP simulation. Define and own the automation test strategy, including test selection, coverage mapping to requirements, and integration with CI/CD pipelines (Jenkins, CMake, SonarQube). Author and review architecture specifications, design documents, verification plans, test cases, operating procedures, and safety documentation. Mentor engineers on automation best practices, structured test design, and validation workflows. Report test results, defect trends, and automation coverage metrics to engineering leadership and program stakeholders. Shape Degree Requirement Degree required Shape Skill Descriptors Industry Knowledge Knowledge of the automotive, mining, or heavy equipment domain; ability to apply domain expertise to safety-critical embedded software validation. Level — Working Knowledge: Understands safety requirements, regulatory standards, and validation practices for collision avoidance systems. Applies knowledge of field conditions (mining environments, machine dynamics) to design realistic test scenarios. Participates in cross-functional reviews and industry discussions related to autonomous systems. Demonstrates working knowledge of CMS architecture, including radar, camera, and telematics interfaces. Shape Problem Solving Knowledge of structured approaches for identifying and resolving technical and process issues in automation and validation. Level — Working Knowledge: Identifies and documents root causes for defect leakage, automation failures, and coverage gaps. Analyzes failures from development, validation, systems, and safety perspectives. Develops alternative diagnostics when standard tools (VBench, CANoe, SonarQube) are insufficient. Leads RCA activities for L6/L8 defects and drives corrective actions into the automation framework. Uses log analysis and CAN trace evaluation to diagnose and resolve issues. Shape Software Development Life Cycle Knowledge of SDLC practices and their application to CMS automation delivery. Level — Working Knowledge: Aligns automation activities with lifecycle phases: unit, integration, SIL, and release. Identifies failure modes and implements quality gates at each stage. Works within structured pipelines using Jenkins, CMake, and static analysis tools (Clang, SonarQube). Communicates automation deliverables and dependencies to stakeholders. Translates product requirements into structured automation tasks. Shape Software Product Testing Strong understanding of testing strategies for safety-critical embedded systems. Level — Working Knowledge: Designs and executes functional, regression, and boundary-condition tests across components. Supports SIL test readiness, stress testing, and simulation-based integration testing. Validates software against functional requirements and design specifications. Establishes