ISO 34501 — Automated Vehicles Test Objectives — Certification Brochure

Open PDF ⬇ Download PDF ← Back to Profile
London Academy of Professional Training
Certificate
ISO 34501 — Automated Vehicles Test Objectives
ISO Certification Programme
REF: TR-SMV-34501  •  ISO Transport  •  Smart Systems Vehicles
6Subjects 10Chapters 54Classes 430Total Marks 60%Pass Mark LifetimeValidity
At a Glance
ReferenceTR-SMV-34501
AwardCertificate
Assessment430 marks — 258 to pass (60%)
PrerequisitesNone
ValidityLifetime
Awarding BodyLAPT — London Academy of Professional Training
Curriculum
1 Evaluation of Testing Outcomes 0 chapters  65 marks
2 ISO 34501 Standards Overview 5 chapters · 30 classes  85 marks
1 Understanding ISO 34501: Goals and Purpose — 6 classes
1.1 Define ISO 34501 and Its Importance in Automated Vehicle Testing
1.2 Identify Key Objectives of ISO 34501 Standards
1.3 Explore the Scope and Applicability of ISO 34501
1.4 Examine the Benefits of Compliance with ISO 34501
1.5 Analyze the Relationship Between ISO 34501 and Regulatory Frameworks
1.6 Discuss Future Implications of ISO 34501 on Automated Vehicle Development
2 Key Definitions and Concepts in ISO 34501 — 6 classes
2.1 Define Key Terms in ISO 34501
2.2 Explain the Importance of Automated Vehicles Standards
2.3 Identify Key Stakeholders in Automated Vehicle Testing
2.4 Describe the Scope of ISO 34501 Standards
2.5 Analyze the Core Objectives of ISO 34501
2.6 Apply ISO 34501 Definitions to Real-World Scenarios
3 Structure and Components of ISO 34501 — 6 classes
3.1 Identify Key Components of ISO 34501 Structure
3.2 Explain the Purpose of ISO 34501 Standards
3.3 Analyze the Role of Automated Vehicles in ISO 34501
3.4 Discuss Compliance Requirements for ISO 34501 Certification
3.5 Evaluate the Impact of ISO 34501 on Vehicle Safety Standards
3.6 Apply ISO 34501 Standards to a Case Study in Automated Vehicles
4 Assessment and Compliance with ISO 34501 — 6 classes
4.1 Identify Key Components of ISO 34501 Standards
4.2 Understand the Importance of Compliance in Automated Vehicles
4.3 Examine Assessment Criteria for ISO 34501 Certification
4.4 Analyze Common Challenges in ISO 34501 Compliance
4.5 Develop Strategies for Effective Compliance Assessments
4.6 Evaluate Case Studies on ISO 34501 Implementation
5 Future Trends and Developments in ISO 34501 Applications — 6 classes
5.1 Explore Emerging Trends in Automated Vehicle Technologies
5.2 Analyze Global Standards Influencing ISO 34501
5.3 Assess the Impact of Regulatory Changes on Automated Vehicle Testing
5.4 Investigate the Role of Stakeholders in ISO 34501 Development
5.5 Evaluate Case Studies of ISO 34501 Implementations
5.6 Develop Strategic Recommendations for Future Applications of ISO 34501
3 Leadership in Testing Teams 0 chapters  45 marks
4 Strategic Initiatives in Vehicle Technology 0 chapters  65 marks
5 Testing Methodologies 5 chapters · 24 classes  105 marks
1 Fundamentals of Automated Vehicle Testing — 6 classes
1.1 Define Key Terminology in Automated Vehicle Testing
1.2 Identify Essential Testing Methodologies for Automated Vehicles
1.3 Explore Regulatory Standards Impacting Automated Vehicle Testing
1.4 Analyze Case Studies in Automated Vehicle Test Scenarios
1.5 Evaluate Safety Metrics for Automated Vehicle Performance
1.6 Develop a Test Plan for Automated Vehicle Validation
2 Framework for Developing Test Objectives — 6 classes
2.1 Analyze the Importance of Clear Test Objectives in Automated Vehicle Testing
2.2 Identify Key Components of a Comprehensive Testing Framework
2.3 Develop Measurable Criteria for Test Objectives in Automated Vehicles
2.4 Construct Scenarios to Evaluate Automated Vehicle Functions
2.5 Implement Best Practices for Writing Effective Test Objectives
2.6 Review and Refine Test Objectives Based on Testing Outcomes
3 Designing Test Scenarios for Automated Vehicles — 6 classes
3.1 Identify Key Parameters for Test Scenario Design
3.2 Analyze Environmental Factors Impacting Automated Vehicle Performance
3.3 Develop Realistic User Interaction Scenarios
3.4 Create Safety-Critical Test Cases for Automated Systems
3.5 Integrate Regulatory Standards into Test Design
3.6 Evaluate Test Scenario Effectiveness Through Simulation
4 Data Collection and Analysis in Testing — 6 classes
4.1 Identify Key Data Types for Automated Vehicle Testing
4.2 Explore Methods of Data Collection in Automated Vehicle Testing
4.3 Analyze Data Quality and Reliability in Test Results
4.4 Apply Statistical Techniques to Interpret Testing Data
4.5 Evaluate Data Analysis Tools for Automated Vehicle Testing
4.6 Develop a Comprehensive Data Reporting Strategy
5 Validation and Verification of Testing Outcomes
6 Test Plan Design 0 chapters  65 marks
LAPT — 85 Great Portland Street, W1W 7LT, London, United Kingdom
info@lapt.org  •  +44 7513 283044  •  lapt.org
UKPRN 10067351  •  Company 4984798
Curriculum current at the date of issue.