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arXiv research

A locally-built, LLM-digested index of recent arXiv papers in quant finance, geometry/topology, and statistical ML — keyword search served straight from SQLite on this machine.

169,341 papers · 148 categories

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48 results for financial stylised facts

Hybrid model simulates market dynamics using neural stochastic background traders.

problem Lack of realistic LOB simulations that combine historical data and dynamic interactions.
method Neural stochastic background trader trained on historical LOB data, embedded in multi-agent simulation.
result Hybrid model recreates stylised market facts and financial herding behaviors.

The three-state agent-based 2D model of financial markets as proposed by Giulia Iori has been extended by introducing increasing trust in the correctly predicting agents, a more realistic consultation procedure as well as a formal validation mechanism. This paper shows that such a model correctly reproduces the three f…

2013-10-02abs ↗pdf ↗

XGB-Chiarella model generates realistic intra-day financial price data using agent-based models.

problem Generating accurate intra-day financial price data for research and risk management.
method Agent-based financial market simulation with XGBoost machine learning calibration.
result XGB-Chiarella model accurately reflects real market behaviours and generates realistic price time series.

New financial price model using earning yield derived from CIR process.

problem Excess volatility and equity premium puzzles in financial markets.
method Proposes a new financial price process based on earning yield and Cox-Ingersoll-Ross (CIR) process.
result Derives analytically stylized facts of financial prices and returns, including power law distribution of returns and fat-tailed distribution of prices.

Extends QHawkes to MQHawkes for analyzing financial co-jumps.

problem Capturing endogenous co-jumps in financial markets.
method Develops MQHawkes process with quadratic kernels, investigates stationarity, and derives Yule-Walker equations.
result Volatility distribution exhibits power-law behavior with computable exponents.

Study compares ABM calibration methods, finds Bayesian estimation superior.

problem Criticism of ABM rigour, particularly in calibration practices.
method Comparison of Bayesian and frequentist ABM calibration methods through computational experiments.
result Bayesian estimation outperforms frequentist methods in producing reasonable parameter estimates.

Simulates financial market orders using anomalous diffusion models.

problem Anomalous diffusion in financial market order dynamics.
method Discrete Time Random Walk with Sibuya waiting times, non-uniform sampling, and cubic spline interpolation.
result Demonstrates price impact for different forcing functions and model parameters.

Many learning agents impact a financial market model, showing complex dynamics.

problem Understanding the dynamics of financial markets with multiple learning agents.
method Agent-based model of financial market with multiple reinforcement learning agents interacting.
result Inclusion of learning agents changes market dynamics to match empirical data.

Agent-based model simulates financial market crashes and identifies key factors.

problem Analyzing and understanding flash crashes in financial markets.
method Agent-based modelling approach with calibrated high-frequency financial simulator.
result Model accurately reproduces historical flash crash events and identifies key factors.

New models explain multidimensional rough volatility from microscopic price dynamics.

problem Designing new rough stochastic volatility models for multi-asset scenarios.
method Using Hawkes processes to model microstructural interactions and investigate scaling limits.
result Multivariate rough volatility models arise naturally from microscopic price dynamics.

This work explains crises in markets without external news using bounded rational agents.

problem Inability to model out-of-equilibrium dynamics in economic markets.
method Modeling bounded rational strategic reasoning in multi-agent market games.
result Bounded rational strategic reasoning can lead to endogenously emerging crises.

Bayesian neural network approach improves estimation of complex economic models.

problem Difficulty in estimating complex economic simulation models due to intractable likelihood functions.
method Bayesian estimation using deep neural networks to approximate likelihood functions.
result Proposed methodology yields more accurate estimates across various economic models.

Hybrid model combines deep learning and agent-based methods for synthetic LOB generation.

problem Generating realistic financial time series data for model training.
method Combining TABL model with Chiarella model for intraday trading activity simulation.
result Hybrid model generates realistic price dynamics but fails to accurately recreate market microstructure.

A simple learning agent learns to trade in an agent-based market model.

problem Optimal execution of trades in an agent-based financial market model.
method Asynchronous trading through a matching engine, varying initial order sizes and state spaces, calibration of empirical stylized facts and price impact curves.
result Smaller state space agents converge faster in learning and can trade intuitively using spread and volume states.

Proposes a new agent-based model for deep hedging that outperforms existing models.

problem Improving effectiveness of deep hedging strategies.
method Agent-based model with momentum, fundamental, and volatility traders following Heston volatility signal.
result Deep hedging agent trained with Chiarella-Heston model data outperforms baseline models in various transaction cost levels.

TraderTalk uses LLMs to simulate human trading interactions in financial markets.

problem Simulating realistic human trading interactions in financial markets.
method Hybrid ABM with LLM-generated behaviors for detailed conversations.
result Successfully replicates trade-to-order volume ratios in financial markets.

Fractional reaction-diffusion model explains financial market dynamics.

problem Reproduce realistic price dynamics in financial markets.
method Proposes a fractional reaction-diffusion model with heterogeneous agent frequencies.
result Impact kernel decays as t1/2t^{-1/2} in the diffusive case, inconsistent with market efficiency; ββ can be tuned to match empirical values.

Model simulates correlation emergence in two coupled limit order books.

problem Modeling correlation emergence in coupled limit order books.
method Simulated two coupled diffusive limit order books using random walks in the fluid limit, with trader interactions.
result Demonstrated the recovery of an Epps effect from the model.

We establish several new stylised facts concerning the intra-day seasonalities of stock dynamics. Beyond the well known U-shaped pattern of the volatility, we find that the average correlation between stocks increases throughout the day, leading to a smaller relative dispersion between stocks. Somewhat paradoxically, t…

2010-09-24abs ↗pdf ↗

GANs can learn stylized facts of financial time series, but performance varies by architecture.

problem Capturing stylized facts of financial time series using GANs.
method Examination of GANs' ability to learn stylized facts of financial time series, focusing on univariate and multivariate data.
result GANs can capture stylized facts of financial time series, but performance varies by architecture.

Generates financial time series with stylized facts using diffusion models.

problem Generating realistic synthetic financial time series with statistical properties like fat tails, volatility clustering, and seasonality.
method Utilizes denoising diffusion probabilistic models (DDPMs) with wavelet transformation to convert and generate financial time series.
result Demonstrates that the proposed approach satisfies stylized financial time series properties.

Bitcoin shows similar stylized facts to traditional financial assets.

problem Testing Bitcoin for stylized facts of traditional financial assets.
method Testing Bitcoin for Gaussianity, fluctuation scaling, and persistence.
result Bitcoin exhibits similar statistical properties to traditional financial assets.

CoFinDiff generates synthetic financial data capturing stylized facts and meeting specified conditions.

problem Limited data availability and difficulty in controlling synthetic financial data generation.
method Conditional diffusion model with cross-attention to incorporate conditions derived from price data.
result Synthetic data generated by CoFinDiff accurately meets specified conditions for trends and volatility.

SFAG generates realistic financial data that passes trading tests.

problem Financial generative models often produce unrealistic and unstable trading outcomes.
method Introduces SFAG, a GAN variant that aligns stylized facts and optimizes with adversarial loss.
result SFAG generates synthetic data that preserves stylized facts and supports robust trading strategies.

Study compares market microstructure between two South African exchanges.

problem Understanding price response dynamics and market microstructure differences between two South African exchanges.
method Comparative analysis of returns distributions, auto-correlations, price impact, and trading costs on different time scales.
result Similar stylized facts emerge as measurement time scale increases, but price responses vary significantly.

Generative adversarial networks with attention improve financial time series simulation.

problem Limited real financial data for training and evaluation of trading strategies.
method Two generative adversarial networks (GANs) using convolutional networks with attention and transformers.
result Attention-based GANs better reproduce stylized facts and smooth returns autocorrelation.

Significantly reduces Monte Carlo runtime for rough Bergomi model pricing.

problem Calibrating rough Bergomi model with high runtime for Monte Carlo simulations.
method Novel composition of variance reduction methods for log-normal stochastic volatility models.
result Significant runtime reductions (20 times average) across different correlation regimes.