WP.29, ISO21434, and VDA CSMS - Automotive Cybersecurity Management Systems
Home > Training > ISM > WP.29, ISO 21434, and VDA CSMS - Automotive Cybersecurity Management Systems
Seminar Content
Worldwide, the automotive industry is in the process of implementing cybersecurity in their vehicles. This is a challenging effort as there are several relevant standards, guidelines, and regulations that need to be implemented including management aspects. ISO 21434 is a management based cybersecurity standard and WP.29 has a requirement for a cybersecurity management system (CSMS) to be implemented by OEMs. In addition, the UNECE requires an audit of the CSMS of OEMs and an assessment with regard to cybersecurity as part of their approval.
This two day course provides guidance developed by VDA which can be applied to the CSMS audit of both the OEM and the contractual partner. The course will also cover ISO 27001, WP.29 requirements, and an overview of ISO 21434.
Who Should Attend
Those involved in the design, development, and production of electrical and electronic based vehicle products, including the systems, software and hardware engineers, and managers. Basically, all those responsible for the development and implementation of hardware and software systems in motor vehicles.
Participants should be, or plan to be, actively managing, or involved in, or aware of the development of electrical and/or electronic items, systems, or elements that are incorporated in motor vehicles. Participants should also have the abilities, education, and experience required for the above roles.
Recommended Training and/or Experience
Participants should be involved in or aware of Cybersecurity development as it relates to the vehicle industry.
Seminar Materials
Each participant will receive a seminar manual including case studies.
Seminar Goals
- Become aware of the importance of implementing cybersecurity
- List the features and clauses of ISO 21434
- Understand the WP.29 requirements for a CSMS
- Understand the VDA guidelines for a CSMS audit
Seminar Outline
Day 1
- Overview of ISO 21434, ISO 27001, WP.29, and VDA ACMS.
- Breakout 1:
- Management aspects of ISO 21434
- Overall cybersecurity management
- Project dependent cybersecurity management
- Other Clauses of ISO 21434:
- Concept Phase
- Product Development
- Post Development Phases
- Continuous Cybersecurity Activities
- Breakout 2:
- Introduction to WP.29
- 29 Requirements
Day 2
- 29 CSMS Requirement
- VDA guidelines for CSMS audit
- Breakout 3:
- Auditing Process and Auditor Qualification
- Rating of the Automotive CSMS Audit
- Audit questionnaire
- Breakout 4:
- Guidelines for auditors
- Summary
Related Courses
|
Advanced Statistical Process Control (SPC)
|
Manufacturing Process Development using PFMEA (Process Flow, PFMEA, Control Plan, Part & Process Approval)
|
Basic Statistical Process Control (SPC)
|
Understanding Core Tools - (APQP, PPAP, DFMEA, DVP&R, PFMEA, Control Plan, SPC and MSA)
|
FMEA 4th Edition Update
|
Implementing MMOG with IATF 16949:2016
|
Measurement Systems Analysis (MSA) and Advanced Analysis (ANOVA)
|
Production Part Approval Process (PPAP) Workshop with IATF 16949:2016
|
Total Productive Maintenance (TPM)
|
Understanding Core Tools - APQP & PPAP
|
Understanding Core Tools - DFMEA & DVP&R
|
Understanding Core Tools - PFMEA & Control Plan
|
Understanding Core Tools - Statistical Process Control (SPC)
|
Understanding Core Tools - Measurement Systems Analysis (MSA)
|
Production Part Approval Process (PPAP 4th Edition)
|
APQP, FMEA and Control Plans (New Revision)
|
APQP 2nd Edition
|
Effective Problem Solving
|
7QC
|
APQP/PPAP
|
Machine Failure Mode Effect Analysis (MFMEA)
|
Understanding AIAG Sub-tier Supplier Management (CQI-19)
|
Advanced Product Quality Planning (APQP) Overview
|
Understanding the Five Phases of APQP
|
APQP Manufacturing Process Development using PFMEA and PPAP
|
Product Development using SFMEA, DFMEA and Associated Tools
|
Measurement Systems Analysis(MSA) and Statistical Process Control (SPC)
|
Conducting Internal and Supplier (Second Party) Audits to Automotive SPICE
|
AIAG-VDA Product FMEA Overview
|
SAE J3061 and ISO 21434:2020 Automotive Cybersecurity Certification
|
AIAG-VDA DFMEA (SFMEA and DFMEA) for Practitioners and Facilitators
|
AIAG-VDA FMEA for Managers and Implementers – Implementation Training
|
AIAG-VDA FMEA Understanding, Implications, and Strategy Executive Overview
|
AIAG-VDA Process FMEA and Control Plans for Practitioners and Facilitators
|
Understanding AIAG-VDA DFMEA (SFMEA and DFMEA) for Design and Project Team Members
|
Understanding AIAG-VDA Process FMEA and Control Plans for Process and Project Team Members
|
Product Integrity for the Product Safety & Conformance Representative (PSCR)
|
SAE J3061, ISO 21434:2020, and Related Standards: Automotive Cybersecurity Executive Overview
|
SAE J3061,ISO/SAE 21434:2020, and Related Standards: Overview for Functional Safety Engineers
|
SAE J3061 and ISO 21434:2020 Cybersecurity Engineering Defense & Protection Against Attacks
|
SAE J3061 and ISO 21434:2020 Automotive Cybersecurity Auditing and Assessment Certification
|
SAE J3061 and ISO 21434:2020 Conducting a Cybersecurity FMEA and Vulnerability Analysis Testing for Systems, Hardware and Software
|
SAE J3061 and ISO 21434:2020 Cybersecurity Threat Analysis and Risk Assessment (TARA)
|
Introduction to Autonomous and Electric Vehicles: A Functional Safety, SOTIF, and Cybersecurity Perspective
|
Reverse Failure Mode and Effect Analysis – RFMEA
|
Introduction to Systems Engineering: A Safety and Cybersecurity Perspective
|
Writing Effective Requirements, Test Cases, and H/S Interfaces for Cybersecurity
|
Preparing a Cybersecurity Case
|
Transitioning to BS VI Understanding and Strategising
|
Root Cause Analysis (RCA) - AIAG Approved
|
Minitab Tools- AIAG Approved
|
Multipoint DFMEA for Mechatronic and Electronic Systems using AIAG FMEA 4th Edition
|
Writing Effective Requirements and Test Cases for Automotive Software Performance Improvement and Capability Determination (ASPICE) and HWE PRM/PAM
|
Writing Effective Requirements and Test Cases
|
Multipoint DFMEA for Mechatronic and Electronic Systems using the AIAG-VDA FMEA Handbook Methodology
|
Understanding Core Tools (APQP/PPAP, DFMEA, DVP&R, SPC and MSA) Following the AIAG FMEA 4th Edition Methodology
|
Understanding Core Tools (APQP/PPAP, PFMEA, Control Plans, SPC and MSA) Following the AIAG FMEA 4th Edition Methodology
|
Understanding Core Tools (APQP/PPAP, DFMEA, DVP&R, SPC and MSA) Following the AIAG-VDA FMEA 1st Edition Methodology
|
Understanding Core Tools (APQP/PPAP, PFMEA, Control Plans, SPC and MSA) Following the AIAG-VDA FMEA 1st Edition Methodology
|
Mechanical Engineering Plug-In for ASPICE
|
Related Courses
|
Advanced Statistical Process Control (SPC)
|
Manufacturing Process Development using PFMEA (Process Flow, PFMEA, Control Plan, Part & Process Approval)
|
Basic Statistical Process Control (SPC)
|
Understanding Core Tools - (APQP, PPAP, DFMEA, DVP&R, PFMEA, Control Plan, SPC and MSA)
|
FMEA 4th Edition Update
|
Implementing MMOG with IATF 16949:2016
|
Measurement Systems Analysis (MSA) and Advanced Analysis (ANOVA)
|
Production Part Approval Process (PPAP) Workshop with IATF 16949:2016
|
Total Productive Maintenance (TPM)
|
Understanding Core Tools - APQP & PPAP
|
Understanding Core Tools - DFMEA & DVP&R
|
Understanding Core Tools - PFMEA & Control Plan
|
Understanding Core Tools - Statistical Process Control (SPC)
|
Understanding Core Tools - Measurement Systems Analysis (MSA)
|
Production Part Approval Process (PPAP 4th Edition)
|
APQP, FMEA and Control Plans (New Revision)
|
APQP 2nd Edition
|
Effective Problem Solving
|
7QC
|
APQP/PPAP
|
Machine Failure Mode Effect Analysis (MFMEA)
|
Understanding AIAG Sub-tier Supplier Management (CQI-19)
|
Advanced Product Quality Planning (APQP) Overview
|
Understanding the Five Phases of APQP
|
APQP Manufacturing Process Development using PFMEA and PPAP
|
Product Development using SFMEA, DFMEA and Associated Tools
|
Measurement Systems Analysis(MSA) and Statistical Process Control (SPC)
|
Conducting Internal and Supplier (Second Party) Audits to Automotive SPICE
|
AIAG-VDA Product FMEA Overview
|
SAE J3061 and ISO 21434:2020 Automotive Cybersecurity Certification
|
AIAG-VDA DFMEA (SFMEA and DFMEA) for Practitioners and Facilitators
|
AIAG-VDA FMEA for Managers and Implementers – Implementation Training
|
AIAG-VDA FMEA Understanding, Implications, and Strategy Executive Overview
|
AIAG-VDA Process FMEA and Control Plans for Practitioners and Facilitators
|
Understanding AIAG-VDA DFMEA (SFMEA and DFMEA) for Design and Project Team Members
|
Understanding AIAG-VDA Process FMEA and Control Plans for Process and Project Team Members
|
Product Integrity for the Product Safety & Conformance Representative (PSCR)
|
SAE J3061, ISO 21434:2020, and Related Standards: Automotive Cybersecurity Executive Overview
|
SAE J3061,ISO/SAE 21434:2020, and Related Standards: Overview for Functional Safety Engineers
|
SAE J3061 and ISO 21434:2020 Cybersecurity Engineering Defense & Protection Against Attacks
|
SAE J3061 and ISO 21434:2020 Automotive Cybersecurity Auditing and Assessment Certification
|
SAE J3061 and ISO 21434:2020 Conducting a Cybersecurity FMEA and Vulnerability Analysis Testing for Systems, Hardware and Software
|
SAE J3061 and ISO 21434:2020 Cybersecurity Threat Analysis and Risk Assessment (TARA)
|
Introduction to Autonomous and Electric Vehicles: A Functional Safety, SOTIF, and Cybersecurity Perspective
|
Reverse Failure Mode and Effect Analysis – RFMEA
|
Introduction to Systems Engineering: A Safety and Cybersecurity Perspective
|
Writing Effective Requirements, Test Cases, and H/S Interfaces for Cybersecurity
|
Preparing a Cybersecurity Case
|
Transitioning to BS VI Understanding and Strategising
|
Root Cause Analysis (RCA) - AIAG Approved
|
Minitab Tools- AIAG Approved
|
Multipoint DFMEA for Mechatronic and Electronic Systems using AIAG FMEA 4th Edition
|
Writing Effective Requirements and Test Cases for Automotive Software Performance Improvement and Capability Determination (ASPICE) and HWE PRM/PAM
|
Writing Effective Requirements and Test Cases
|
Multipoint DFMEA for Mechatronic and Electronic Systems using the AIAG-VDA FMEA Handbook Methodology
|
Understanding Core Tools (APQP/PPAP, DFMEA, DVP&R, SPC and MSA) Following the AIAG FMEA 4th Edition Methodology
|
Understanding Core Tools (APQP/PPAP, PFMEA, Control Plans, SPC and MSA) Following the AIAG FMEA 4th Edition Methodology
|
Understanding Core Tools (APQP/PPAP, DFMEA, DVP&R, SPC and MSA) Following the AIAG-VDA FMEA 1st Edition Methodology
|
Understanding Core Tools (APQP/PPAP, PFMEA, Control Plans, SPC and MSA) Following the AIAG-VDA FMEA 1st Edition Methodology
|
Mechanical Engineering Plug-In for ASPICE
|

|
|