Giuseppina Albano

Orcid: 0000-0002-2317-0331

According to our database1, Giuseppina Albano authored at least 15 papers between 2007 and 2023.

Collaborative distances:
  • Dijkstra number2 of five.
  • Erdős number3 of five.

Timeline

Legend:

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PhD thesis 
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Links

On csauthors.net:

Bibliography

2023
First Passage and First Exit Times for diffusion processes related to a general growth curve.
Commun. Nonlinear Sci. Numer. Simul., November, 2023

2022
Study of a general growth model.
Commun. Nonlinear Sci. Numer. Simul., 2022

2021
Bootstrap joint prediction regions for sequences of missing values in spatio-temporal datasets.
Comput. Stat., 2021

2020
Inferring time non-homogeneous Ornstein Uhlenbeck type stochastic process.
Comput. Stat. Data Anal., 2020

2019
Volatility Modelling for Air Pollution Time Series.
Proceedings of the Computer Aided Systems Theory - EUROCAST 2019, 2019

HAR-type Models for Volatility Forecasting: An Empirical Investigation.
Proceedings of the Computer Aided Systems Theory - EUROCAST 2019, 2019

2017
On the Imputation of Missing Values in Univariate PM_10 P M 10 Time Series.
Proceedings of the Computer Aided Systems Theory - EUROCAST 2017, 2017

On a Non-homogeneous Gompertz-Type Diffusion Process: Inference and First Passage Time.
Proceedings of the Computer Aided Systems Theory - EUROCAST 2017, 2017

2016
Non Linear Time Series Analysis of Air Pollutants with Missing Data.
Proceedings of the Advances in Neural Networks - Computational Intelligence for ICT, 2016

2015
A Sequential Test for Evaluating Air Quality.
Proceedings of the Computer Aided Systems Theory - EUROCAST 2015, 2015

2012
Inference on a stochastic two-compartment model in tumor growth.
Comput. Stat. Data Anal., 2012

Testing the Weak Form Market Efficiency: Empirical Evidence from the Italian Stock Exchange.
Proceedings of the Neural Nets and Surroundings - 22nd Italian Workshop on Neural Nets, 2012

2009
On the First Exit Time Problem for a Gompertz-Type Tumor Growth.
Proceedings of the Computer Aided Systems Theory, 2009

2007
A Wiener-type neuronal model in the presence of exponential refractoriness.
Biosyst., 2007

A Prey-Predator Model for Immune Response and Drug Resistance in Tumor Growth.
Proceedings of the Computer Aided Systems Theory, 2007


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