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Adaptive designs for optimal observed Fisher information
by
Lane, Adam
in
Adaptive design
/ Adaptive designs
/ Approximation
/ Conditional inference
/ Curvature
/ Design of experiments
/ experimental design
/ Experiments
/ Fisher information
/ Information
/ Mathematical analysis
/ Maximum likelihood estimators
/ Optimal design
/ Original Articles
/ Regression analysis
/ statistical analysis
/ Statistical methods
/ Statistics
/ variance
2020
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Adaptive designs for optimal observed Fisher information
by
Lane, Adam
in
Adaptive design
/ Adaptive designs
/ Approximation
/ Conditional inference
/ Curvature
/ Design of experiments
/ experimental design
/ Experiments
/ Fisher information
/ Information
/ Mathematical analysis
/ Maximum likelihood estimators
/ Optimal design
/ Original Articles
/ Regression analysis
/ statistical analysis
/ Statistical methods
/ Statistics
/ variance
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Adaptive designs for optimal observed Fisher information
by
Lane, Adam
in
Adaptive design
/ Adaptive designs
/ Approximation
/ Conditional inference
/ Curvature
/ Design of experiments
/ experimental design
/ Experiments
/ Fisher information
/ Information
/ Mathematical analysis
/ Maximum likelihood estimators
/ Optimal design
/ Original Articles
/ Regression analysis
/ statistical analysis
/ Statistical methods
/ Statistics
/ variance
2020
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Journal Article
Adaptive designs for optimal observed Fisher information
2020
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Overview
Expected Fisher information can be found a priori and as a result its inverse is the primary variance approximation used in the design of experiments. This is in contrast with the common claim that the inverse of the observed Fisher information is a better approximation of the variance of the maximum likelihood estimator. Observed Fisher information cannot be known a priori; however, if an experiment is conducted sequentially, in a series of runs, the observed Fisher information from previous runs is known. In the current work, two adaptive designs are proposed that use the observed Fisher information from previous runs to inform the design of future runs.
Publisher
Wiley,Oxford University Press
Subject
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