Estimating the Index of Increase via Balancing Deterministic and Random Data


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Abstract

We introduce and explore an empirical index of increase that works in both deterministic and random environments, thus allowing to assess monotonicity of functions that are prone to random measurement errors. We prove consistency of the index and show how its rate of convergence is influenced by deterministic and random parts of the data. In particular, the obtained results suggest a frequency at which observations should be taken in order to reach any pre-specified level of estimation precision.We illustrate the index using data arising from purely deterministic and error-contaminated functions, which may or may not be monotonic.

About the authors

L. Chen

School of Math. and Statist. Sci.

Author for correspondence.
Email: lchen522@uwo.ca
Canada, London

Y. Davydov

Chebyshev Lab.

Email: lchen522@uwo.ca
Russian Federation, St. Petersburg, 199178

N. Gribkova

Faculty Math. and Mech.

Email: lchen522@uwo.ca
Russian Federation, St. Petersburg

R. Zitikis

School of Math. and Statist. Sci.

Email: lchen522@uwo.ca
Canada, London

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