@article{Alraddadi2025, 
author = {R. Alraddadi},
title = {The    l  o  g  T  G-   S  V model: A threshold-based volatility framework with logarithmic shocks for exchange rate dynamics},
year = {2025},
journal = {AIMS Mathematics},
volume = {10},
number = {8},
pages = {19495-19511},
keywords = {stochastic volatility model, log GARCH model, stationarity, QMLE, threshold effect},
url = {https://www.sciopen.com/article/10.3934/math.2025870},
doi = {10.3934/math.2025870},
abstract = {This paper introduces a novel logarithmic threshold stochastic volatility    G  A  R  C  H model as an advanced extension of traditional    G  A  R  C  H frameworks. The model combines a logarithmic transformation of volatility shocks with a dynamic threshold, allowing it to better capture asymmetric behavior and sudden regime shifts commonly observed in financial markets. We provide clear theoretical conditions for strict and second-order stationarity, and for the existence of higher-order moments, which fills an important gap in the literature on stochastic volatility models. Monte Carlo simulations demonstrate the model's efficiency in estimating parameters, yielding accurate results with minimal bias for a sample size of 5,000. When applied to Algerian Dinar/Euro exchange rate data from 2000 to 2011, the model successfully captures volatility clustering and leverage effects, revealing a 30% increase in volatility in response to negative shocks relative to positive ones. It also improves predictive accuracy by 15% over standard models, underscoring its strength in capturing volatility in emerging markets with complex and nonlinear patterns.}
}