Writing Effective Requirements and Test Cases for Automotive Software Performance Improvement and Capability Determination (ASPICE) and HWE PRM/PAM
Seminar Content
This three-day course is designed to give the attendee a detailed understanding of writing Effective Requirements and Test Cases through process workshops focused on the system, software and hardware process groups.
The course combines best practices from Automotive SPICE 3.1 PRM/PAM and HWE PRM/PAM.
Who Should Attend
The seminar has been developed for:
- Developers, test engineers, project managers, software quality engineers and managers& other participants involved with development of embedded systems in the automotive industry.
- Hardware designers, test engineers, project managers, hardware quality engineers and managers & other participants involved with development of embedded systems in the automotive industry.
- Software and Hardware managers, ASPICE Implementers, internal auditors and others who need to understand ASPICE and how to integrate it into their Quality Management or Functional Safety system will find the training helpful.
Recommended Training and/or Experience
Background in “development projects”, “software development”, “quality management systems”, or “functional safety” will be helpful.
A basic understanding of project management, quality management and system and software engineering processes is helpful, but not required.
Seminar Materials
Each participant will receive a seminar manual including case studies.
Seminar Goals
- Detailed understanding of what Automotive SPICE is and the motivation behind the model
- Detailed understanding of process capability level 1 (VDA-Scope)
- Detailed understanding of traceability requirements
- Detailed understanding of creating requirements for software and its elements at various levels
- Understanding of how to evaluate process risks and drive process improvements
Seminar Agenda
Day One
- Chapter 1: Introduction and Overview
- Definition
- History
- Structure
- Key Concepts
- Chapter 2: Understanding System/Software Requirements
- Defining Requirements
- Types of Requirements
- Notation for Requirements
- Requirements Elicitation
- Breakout Exercise 1: Introduction of Case Study System Requirements (SYS.2)
- Breakout Exercise 2: SWE Requirements (SWE.1)
- Chapter 3: Architectural Design
- Notation for System Architecture
- Notation for Software Architecture
- Breakout Exercise 3: Develop the Software Architecture using Block Diagram, Timing Chart, and Allocation Matrix for Architectural (SWE.2)
Day Two
- Chapter 4: Developing Software Detailed Design, Unit Construction, and Software Unit Verification
- Develop Software Detailed Design
- Coding Style
- Coding Rules
- Breakout Exercise 4: Deriving Software Detailed Design and Unit Construction (SWE.3)
- Breakout Exercise 5: Software Unit Verification (SWE.4)
- Unit Testing
- Chapter 5: Conducting Software Integration and Integration Testing, and Software Qualification Test
- Test Case Development
- Test Methods
- Breakout Exercise 6: Integration Testing (SWE.5)
- Breakout Exercise 7: Conducting Software Qualification Testing (SWE.6)
Day Three
- Chapter 7: Developing Hardware Requirements
- Defining HW Requirements
- HW Design
- Breakout Exercise 8 - Hardware Requirements Analysis
- Test Methods
- Chapter 8: Creating the V-Model using DFMEA and DVP&R
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Manufacturing Process Development using PFMEA (Process Flow, PFMEA, Control Plan, Part & Process Approval)
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Basic Statistical Process Control (SPC)
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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
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Machine Failure Mode Effect Analysis (MFMEA)
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APQP Manufacturing Process Development using PFMEA and PPAP
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Product Development using SFMEA, DFMEA and Associated Tools
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|
AIAG-VDA Product FMEA Overview
|
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Reverse Failure Mode and Effect Analysis – RFMEA
|
Introduction to Systems Engineering: A Safety and Cybersecurity Perspective
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Writing Effective Requirements, Test Cases, and H/S Interfaces for Cybersecurity
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Preparing a Cybersecurity Case
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Transitioning to BS VI Understanding and Strategising
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Root Cause Analysis (RCA) - AIAG Approved
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Minitab Tools- AIAG Approved
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Multipoint DFMEA for Mechatronic and Electronic Systems using AIAG FMEA 4th Edition
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Writing Effective Requirements and Test Cases
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Multipoint DFMEA for Mechatronic and Electronic Systems using the AIAG-VDA FMEA Handbook Methodology
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Understanding Core Tools (APQP/PPAP, DFMEA, DVP&R, SPC and MSA) Following the AIAG FMEA 4th Edition Methodology
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WP.29, ISO21434, and VDA CSMS - Automotive Cybersecurity Management Systems
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