Config files for my GitHub profile.
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Updated
Apr 6, 2024
Config files for my GitHub profile.
Estimated Bayesian Small Open Economics DSGE model with Stochastic Volatility in Structural Shock Processes
An implementation of the Heston model, a stochastic volatility model for options pricing. We compute prices of European call and put options via Monte Carlo simulation, for a variety of strike prices and maturities. We also show that the Heston model captures volatility smiles/smirks/skews.
Code files containing research done around monte carlo stimulations, bayesian interference and stochastic volatility
R codes to implement two examples for the mode and importance sampling estimation methods.
The workings for a very interesting exercise from the Econometrics of Financial Markets module of the MSc Quantitative Finance 2023/24 course at Bayes Business School (formerly Cass).
Code of numerical experiments in Master's thesis [TBD]
R implementation of the Heston option pricing function
Introducing the data-driven concept through neural networks to price an option whose volatility is measured as a stochastic process.
Investigating Wiener Processes
R package pmhtutorial available from CRAN.
Comparison of different implementations of the same stochastic volatility model (stochvol, JAGS, Stan)
This is a collection of Stochastic indicators. It's developed in PineScript for the technical analysis platform of TradingView.
Demonstrates how to price derivatives in a Heston framework, using successive approximations of the invariant distribution of a Markov ergodic diffusion with decreasing time discretization steps. The framework is that of G. Pagès & F. Panloup.
Bayer, Friz, Gassiat, Martin, Stemper (2017). A regularity structure for finance.
Stochastic volatility models and their application to Deribit crypro-options exchange
R Code to accompany "A Note on Efficient Fitting of Stochastic Volatility Models"
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