PROJECT TITLE :

A New Fuzzy Process Capability Estimation Method Based on Kernel Function and FAHP

ABSTRACT:

As a result of of more and more complexity of an operation surroundings in these days's industrial production method, it is tough to monitor the method operation quality and to estimate the performance efficiency primarily based on the existing mathematical model and knowledge. This paper proposes a new technique to estimate the method capability, and a brand new criterion for capability and performance assessment. This method relies on kernel operate and fuzzy analysis hierarchy process (FAHP), that will improve the adaptation of process capability analysis. The device method capability will be estimated by FAHP with main variables, that are determined by interpretive structure modeling. The estimators of these indices overcome uncertainties caused by information fluctuation in the ancient process capability, and might strongly improve the robustness and adaptableness of the process capability estimation and diagnosis. The proposed strategies are employed in a simulation of the Tennessee Eastman method. The results demonstrate the potency and validity of the presented approach. The proposed methodology will give a lot of performance decision data of industrial method to help decision manufacturers evaluate and diagnose the state of the assembly devices, and improve the process operations.


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