OVERVIEW
Complex technical and organisational problems require systematic and structured problem-solving methodologies. Traditional trial-and-error approaches often consume excessive time, cost, and resources without guaranteeing sustainable solutions.
Theory of Inventive Problem Solving (TRIZ) – Level 2 Practitioner is an advanced workshop designed to deepen participants’ mastery of TRIZ tools and methodologies. The programme focuses on advanced contradiction analysis, Substance-Field (Su-Field) modelling, S-Curve analysis, system evolution trends, and strategic innovation forecasting.
Participants will move beyond foundational TRIZ concepts and engage in structured modelling techniques that enable breakthrough thinking and predictive innovation. Through guided exercises and hands-on application, participants will learn how to transform complex challenges into structured problem statements and generate high-value inventive solutions.
This programme strengthens analytical precision, accelerates innovation capability, and enhances strategic decision-making in engineering, R&D, and technical leadership environments.
By the end of this programme, participants will be able to:
- Apply advanced TRIZ tools to solve complex technical problems
- Analyse physical and technical contradictions systematically
- Use Substance-Field (Su-Field) modelling for structured solution generation
- Apply S-Curve analysis to predict system evolution trends
- Generate inventive and cost-effective solutions
- Reduce time and cost required to resolve engineering challenges
- Make structured, data-driven innovation decisions
2 Days (9.00am – 5.00pm)
- Engineers & Technical Specialists
- R&D Professionals
- Product Development Teams
- Process Improvement Engineers
- Innovation Managers
- Technical Leaders & Project Managers
PROPOSED OUTLINE/ AGENDA
Day 1: Advanced TRIZ Application
- Registration
- Welcome & Introduction
- Programme Objectives
- Recap of TRIZ Level 1 Concepts
- Understanding advanced contradiction analysis
- Identifying conflicting system parameters
- Resolving contradictions without compromise
Exercise:
Participants analyse real-world technical contradictions.
- Introduction to Su-Field modelling
- Standard solution models
- Transforming system deficiencies into structured models
Workshop:
Hands-on application of Su-Field modelling to case scenarios.
- Application of TRIZ standard solutions
- Mapping solutions to modelled problems
- Structured solution selection process
Exercise:
Teams generate and evaluate inventive solutions.
- Reflection and consolidation of learning
Day 2: Strategic Innovation & Predictive Analysis
- Key insights and Q&A
- Function analysis in complex systems
- Identifying root causes and secondary challenges
- Refining problem statements
- Understanding technological evolution patterns
- Identifying maturity stages of systems
- Predicting future system improvements
Workshop:
Participants conduct S-Curve analysis on selected technologies.
- Integrating TRIZ tools for strategic problem-solving
- Applying TRIZ to organisational innovation challenges
- Certification assessment (if applicable)
- Summary of learning
- Practical application planning
- Certification (if applicable)
PARTICIPANT DELIVERABLES
Each participant will receive:
- Advanced TRIZ Toolkit Reference Guide
- Substance-Field Modelling Templates
- Contradiction Analysis Framework
- S-Curve & System Evolution Worksheet
- Standard Inventive Solutions Matrix
- Innovation Application Action Plan
PROGRAM METHODOLOGY
- Advanced Technical Workshops
- Case-Based Engineering Analysis
- Hands-On Modelling Exercises
- Structured Problem-Solving Labs
- Innovation Simulation Activities
- Certification Assessment (if applicable)
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