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A design criterion for symmetric model discrimination based on flexible nominal sets.


ABSTRACT: Experimental design applications for discriminating between models have been hampered by the assumption to know beforehand which model is the true one, which is counter to the very aim of the experiment. Previous approaches to alleviate this requirement were either symmetrizations of asymmetric techniques, or Bayesian, minimax, and sequential approaches. Here we present a genuinely symmetric criterion based on a linearized distance between mean-value surfaces and the newly introduced tool of flexible nominal sets. We demonstrate the computational efficiency of the approach using the proposed criterion and provide a Monte-Carlo evaluation of its discrimination performance on the basis of the likelihood ratio. An application for a pair of competing models in enzyme kinetics is given.

SUBMITTER: Harman R 

PROVIDER: S-EPMC9328432 | biostudies-literature | 2020 Jul

REPOSITORIES: biostudies-literature

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A design criterion for symmetric model discrimination based on flexible nominal sets.

Harman Radoslav R   Müller Werner G WG  

Biometrical journal. Biometrische Zeitschrift 20200120 4


Experimental design applications for discriminating between models have been hampered by the assumption to know beforehand which model is the true one, which is counter to the very aim of the experiment. Previous approaches to alleviate this requirement were either symmetrizations of asymmetric techniques, or Bayesian, minimax, and sequential approaches. Here we present a genuinely symmetric criterion based on a linearized distance between mean-value surfaces and the newly introduced tool of fle  ...[more]

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