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Master Certificate Level 6-7 Leadership ISO Transport Smart Systems Vehicles

ISO 21434SMV — Cybersecurity Engineering for Vehicles ISO SAE

ISO Certification Programme

6 Subjects
15 Chapters
72 Lessons
500 Marks

LAPT — London Academy of Professional Training

ISO 21434SMV — Cybersecurity Engineering for Vehicles ISO SAE
Master Certificate Level 6-7
  • TR-SMV-21434SMV
  • Leadership Stage
  • 500 total marks
  • Pass: 325 marks (65%)
  • Validity: Lifetime
Enrol Now View Brochure
AwardMaster Certificate
Global LevelLevel 6-7
Total Marks500
Pass Mark325 (65%)
Subjects6
Chapters15
Classes72

About This Certification

Who Is This For?

This certification is designed for professionals currently in leadership positions within the automotive and transport sectors, including those with experience in cybersecurity, system engineering, or compliance management. It is ideal for individuals seeking to enhance their ability to lead teams in addressing cybersecurity challenges in vehicles.

Course Curriculum

6 subjects • 15 chapters • 72 classes
01
Leadership in Cybersecurity Management
0 chapters • 75 marks • 10h

Chapters coming soon.

02
Advanced Cybersecurity Technologies
0 chapters • 100 marks • 20h

Chapters coming soon.

03
Designing Secure Vehicle Architectures
0 chapters • 75 marks • 30h

Chapters coming soon.

04
Incident Response and Recovery Strategies
5 chapters • 12 classes • 75 marks • 30h
Understanding Cybersecurity Incidents in Smart Vehicles 6 classes
1.1 Identify Common Cybersecurity Threats in Smart Vehicles
1.2 Analyze Real-World Cybersecurity Incidents in the Automotive Sector
1.3 Evaluate the Impact of Cybersecurity Incidents on Vehicle Safety
1.4 Develop Incident Response Plans for Smart Vehicle Scenarios
1.5 Implement Recovery Strategies Following Cybersecurity Breaches in Vehicles
1.6 Conduct Post-Incident Reviews to Enhance Cybersecurity Preparedness
Incident Response Frameworks and Methodologies 6 classes
2.1 Identify Key Components of an Incident Response Framework
2.2 Analyze Different Incident Response Methodologies
2.3 Assess Risk Management Strategies in Cybersecurity
2.4 Develop a Step-by-Step Incident Response Plan
2.5 Implement Communication Protocols During an Incident
2.6 Evaluate Recovery Strategies Post-Incident Analysis
Implementing Effective Incident Detection Mechanisms
Response Strategies for Cybersecurity Incidents
Recovery Planning and Post-Incident Analysis
05
ISO 21434 Standards Compliance
5 chapters • 30 classes • 75 marks • 30h
Understanding ISO 21434: Key Principles and Definitions 6 classes
1.1 Identify the Purpose of ISO 21434 in Automotive Cybersecurity
1.2 Define Key Terminology Associated with ISO 21434 Standards
1.3 Explain the Scope and Objectives of ISO 21434 Compliance
1.4 Analyze the Structure and Components of ISO 21434 Framework
1.5 Explore the Roles and Responsibilities within ISO 21434 Implementation
1.6 Apply ISO 21434 Principles to Real-World Automotive Scenarios
Framework of Cybersecurity Risk Management in Vehicles 6 classes
2.1 Understand the Importance of Cybersecurity in Vehicle Engineering
2.2 Identify Key Components of ISO 21434 Cybersecurity Risk Management Framework
2.3 Analyze Cybersecurity Threats Specific to Vehicle Systems
2.4 Assess Risk Assessment Methodologies for Vehicle Cybersecurity
2.5 Develop a Cybersecurity Risk Management Plan for Vehicles
2.6 Implement Continuous Monitoring and Improvement Strategies in Vehicle Cybersecurity
Cybersecurity Lifecycle: Planning and Development Processes 6 classes
3.1 Identify Key Stages of the Cybersecurity Lifecycle
3.2 Define Goals and Objectives for Cybersecurity Planning
3.3 Assess Risks and Vulnerabilities in Vehicle Systems
3.4 Develop a Cybersecurity Framework for Vehicle Systems
3.5 Implement Security Controls and Mitigation Strategies
3.6 Evaluate and Monitor Cybersecurity Performance in Development
Implementation of Security Controls: Technical and Managerial Aspects 6 classes
4.1 Identify Key Technical Security Controls in ISO 21434
4.2 Assess Risks and Threats During Vehicle Cybersecurity Implementation
4.3 Develop a Management Framework for Cybersecurity in Vehicles
4.4 Evaluate Compliance Requirements for Security Controls
4.5 Integrate Security Controls into Vehicle Development Processes
4.6 Create an Action Plan for Continuous Improvement of Cybersecurity Measures
Compliance Audits and Continuous Improvement in Cybersecurity Engineering 6 classes
5.1 Understand the Importance of Compliance Audits in Cybersecurity Engineering
5.2 Identify Key Components of the ISO 21434 Compliance Audit Process
5.3 Analyze Common Non-Conformities in Cybersecurity Engineering Audits
5.4 Develop Strategies for Effective Audit Preparation and Execution
5.5 Implement Processes for Continuous Improvement Post-Audit
5.6 Evaluate the Impact of Continuous Improvement on Cybersecurity Practices
06
Cybersecurity Risk Management
5 chapters • 30 classes • 100 marks • 40h
Fundamentals of Cybersecurity in Smart Vehicles 6 classes
1.1 Define Cybersecurity and Its Importance in Smart Vehicles
1.2 Identify Common Cyber Threats and Vulnerabilities in Automotive Systems
1.3 Explain the Role of Risk Management in Cybersecurity for Vehicles
1.4 Assess Cybersecurity Risks in Smart Vehicle Environments
1.5 Implement Basic Cybersecurity Measures for Vehicle Systems
1.6 Evaluate Real-World Case Studies of Cybersecurity Breaches in Vehicles
Risk Assessment Frameworks for Automotive Systems 6 classes
2.1 Define Key Concepts in Risk Assessment for Automotive Cybersecurity
2.2 Identify Cybersecurity Threats Relevant to Automotive Systems
2.3 Analyze Risk Assessment Frameworks Applicable to the Automotive Industry
2.4 Evaluate Existing Risk Assessment Tools and Their Effectiveness
2.5 Develop a Risk Assessment Plan Tailored for Automotive Applications
2.6 Implement Risk Mitigation Strategies for Identified Vulnerabilities
Implementing Risk Management Strategies in Vehicle Design 6 classes
3.1 Identify Key Cybersecurity Risks in Vehicle Design
3.2 Assess Vulnerabilities within Vehicle Systems
3.3 Develop Risk Mitigation Strategies for Identified Risks
3.4 Implement Cybersecurity Controls in Vehicle Architecture
3.5 Monitor and Evaluate Risk Management Effectiveness
3.6 Integrate Continuous Improvement in Cybersecurity Practices
Monitoring and Maintaining Cybersecurity Postures 6 classes
4.1 Assess Current Cybersecurity Postures in Vehicles
4.2 Identify Key Metrics for Cybersecurity Monitoring
4.3 Implement Continuous Monitoring Tools and Techniques
4.4 Analyze Cybersecurity Incidents and Breaches
4.5 Develop an Incident Response Plan for Vehicle Cybersecurity
4.6 Review and Update Cybersecurity Policies and Procedures
Incident Response and Recovery in Smart Vehicle Systems 6 classes
5.1 Identify Common Cybersecurity Incidents in Smart Vehicles
5.2 Analyze Incident Response Frameworks for Automotive Systems
5.3 Develop an Incident Response Plan for Smart Vehicle Systems
5.4 Implement Communication Strategies During Cybersecurity Incidents
5.5 Evaluate Recovery Techniques Post-Incident in Vehicle Systems
5.6 Conduct a Simulation Exercise for Incident Response and Recovery

Assessment & Grading

Assessment Methods
  • Written Examination
  • Practical Assignment
  • Portfolio Assessment
Theory
50%
Practical
35%
Project
15%
ISO 21434SMV — Cybersecurity Engineering for Vehicles ISO SAE
Master Certificate Level 6-7
  • TR-SMV-21434SMV
  • Leadership Stage
  • 500 total marks
  • Pass: 325 (65%)
  • Validity: Lifetime
  • ISO Transport
Enrol Now View Brochure
Enrol Now

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