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Kiatake and Petreche (2012) make application of technical contradiction solving of TRIZ in architectural design.
The method for technical contradiction solving is a 12-step sequential algorithm in which the 39 engineering parameters, 40 inventive principles, contradiction matrix, and many cases are applied to find the solutions of a technical contradiction (Savransky 2000; Tan 2002).
A technical contradiction describes the state of a system where there is an action having a useful effect but causing simultaneously an undesirable effect.
It should be noted that decoupling a design in terms of AD is similar to removing a technical contradiction in TRIZ.
Then, we applied the principles of TRIZ to find the general solution of the technical contradiction with a contradiction matrix system.
We applied our technical contradiction to this matrix by the feature to improve, 'the difficulty of detection and measurement' and the undesired result, 'the Shape'.
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The Inventive Principles are used to activate creative thinking aimed at solving technical contradictions.
The boxes marked in Figure 2 indicate that the functional couplings or technical contradictions.
In No.5 and No.10, examples are there are three and eight technical contradictions to be solved, respectively.
The TRIZ method will be used in order to eliminate the technical contradictions which appear in the wind turbine systems.
Li (2010) also uses the matrix and inventive principles to solve technical contradictions of an automated assembly line.
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