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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.

169,291 papers · 148 categories

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69139208277 · Jun 202019922001200920182026
48 results for dynamic interruptibility

This paper introduces dynamic safe interruptibility for multi-agent reinforcement learning.

problem Preventing dangerous situations in decentralized multi-agent reinforcement learning.
method Introduces dynamic safe interruptibility, studies it in two learning frameworks, and gives sufficient conditions for its implementation.
result Dynamic safe interruptibility can be enabled for joint action learners but not for independent learners.

SilentPhone identifies opportune times to silence phones to reduce interruptions.

problem Inappropriate phone notifications cause interruptions for users and others.
method Data-driven approach using past phone log data to infer unavailability.
result Identifies opportune moments for call interruptions and generates silent mode rules.

New approach to reinforcement learning that balances safety and performance against adversaries.

problem Balancing safety and performance in reinforcement learning against potential adversaries.
method Developed a new reinforcement learning framework that integrates interruptibility, resilience, and safe exploration.
result Achieved both interruptibility and resilience to adversaries without sacrificing optimal policy probability.

A new bandit problem where experiments can be interrupted if results are not promising.

problem Interruptible multi-armed bandit problem with a threshold for cumulative reward.
method Formalized survival regret, identified key components (regret and probability of ruin), derived lower bounds and optimal policies.
result No policy can achieve sublinear survival regret, but optimal policies minimize survival regret in a Pareto sense.

Using public data (Forbes Global 2000) we show that the asset sizes for the largest global firms follow a Pareto distribution in an intermediate range, that is ``interrupted'' by a sharp cut-off in its upper tail, where it is totally dominated by financial firms. This flattening of the distribution contrasts with a lar…

2013-09-09abs ↗pdf ↗

Optimizes deep reinforcement learning for energy-efficient video streaming.

problem Minimizing energy consumption in video streaming over mobile networks.
method Integrates DDPG algorithm with partially known model to reduce signaling overhead and improve convergence speed.
result Proposed policy converges to optimal policy with improved convergence speed.

This article is a follow-up of a short essay that appeared in Nature 455, 1181 (2008) [arXiv:0810.5306]. It has become increasingly clear that the erratic dynamics of markets is mostly endogenous and not due to the rational processing of exogenous news. I elaborate on the idea that spin-glass type of problems, where th…

2009-04-06abs ↗pdf ↗

In online social media systems users are not only posting, consuming, and resharing content, but also creating new and destroying existing connections in the underlying social network. While each of these two types of dynamics has individually been studied in the past, much less is known about the connection between th…

2014-03-11abs ↗pdf ↗

We study how resetting affects geometric Brownian motion, showing it becomes stationary but remains non-ergodic.

problem Effects of stochastic resetting on geometric Brownian motion.
method Analysis of geometric Brownian motion under stochastic resetting.
result Resetting makes geometric Brownian motion stationary but non-ergodic.

DynMat learns continuously without offline training, avoiding catastrophic interference.

problem Artificial neural networks suffer from catastrophic interference when learning new information.
method Proposes a dual learning system architecture inspired by the brain's complementary learning system theory.
result DynMat can learn a new class without catastrophic interference and does not require offline training.

Regularization timing affects deep network performance, not just its presence.

problem The timing of regularization in deep networks impacts their performance.
method Analysis of different datasets, architectures, regularization methods, and learning rate schedules.
result The critical period for regularization in deep networks is decisive of final performance.

Paper presents a novel online HAR method using Hierarchical Hidden Markov Models.

problem Challenges in robust online activity recognition in smart environments.
method Two-phase approach: 1) Segmentation and activity reporting using Hierarchical Hidden Markov Models, 2) Correction of labels based on statistical features.
result Proposes a method that can detect and correct interrupted activities, outperforming state-of-the-art methods.

Economic systems, traditionally analyzed as almost independent national systems, are increasingly connected on a global scale. Only recently becoming available, the World Input-Output Database (WIOD) is one of the first efforts to construct the multi-regional input-output (MRIO) tables at the global level. By viewing t…

2014-07-01abs ↗pdf ↗

We propose a minimal theory of non-linear price impact based on a linear (latent) order book approximation, inspired by diffusion-reaction models and general arguments. Our framework allows one to compute the average price trajectory in the presence of a meta-order, that consistently generalizes previously proposed pro…

2014-11-29abs ↗pdf ↗

Study analyzes how COVID-19 impacts crypto and stock market volatility.

problem Impact of COVID-19 on cryptocurrency and stock market volatility.
method Two-stage multivariate EGARCH model with DCC approach, VaR and CFVaR.
result Significant spillover effects and conditional volatility surges after shocks.

UK's rapid vaccine rollout linked to reduced COVID-19 mortality.

problem Assessing the impact of accelerated vaccine rollout on public health outcomes.
method Flexible probabilistic models combining interrupted time series analysis and synthetic control methods with multi-output Gaussian processes.
result Substantial reduction in COVID-19 mortality with little effect on transmission rates.

The minute fluctuations of of S&P 500 and NASDAQ 100 indices display Boltzmann statistics over a wide range of positive as well as negative returns, thus allowing us to define a {\em market temperature} for either sign. With increasing time the sharp Boltzmann peak broadens into a Gaussian whose volatility σ σ measure…

2006-09-23abs ↗pdf ↗

ABIDES-MARL uses MARL to study market behavior in a realistic financial simulation.

problem Understanding equilibrium behavior in complex financial market games.
method Combines MARL with a realistic LOB simulation to study market behavior.
result Validated approach by solving an extended Kyle model and showing how execution strategies shape market dynamics.

We present a plausible micro-founded model for the previously postulated power law finite time singular form of the crash hazard rate in the Johansen-Ledoit-Sornette model of rational expectation bubbles. The model is based on a percolation picture of the network of traders and the concept that clusters of connected tr…

2016-01-28abs ↗pdf ↗

UC-SSP algorithm tackles exploration in stochastic shortest path problems without loop-free assumption.

problem Exploration in goal-oriented reinforcement learning problems under stochastic shortest path formulation.
method UC-SSP algorithm with a novel stopping rule to interrupt and switch policies.
result Regret bound of O~(DSADK)\displaystyle \widetilde{\mathcal{O}}( D S \sqrt{ A D K}) after KK episodes.

AIF improves physical AI agents' performance in dynamic environments.

problem Physical AI agents are less capable than biological agents in open-ended real-world environments.
method Developed from probability theory, Bayesian machine learning, variational inference, and Active Inference (AIF), grounded in the Free Energy Principle.
result AIF minimizes variational free energy and is well-suited to physical constraints.

Modeling trading excursions and avalanches in a simplified market model.

problem Understanding the dynamics of order executions and their interruptions in a simplified market model.
method Developed a model using a center price process and orders placed at fixed displacements, derived Laplace transforms of trading event times, and analyzed order avalanches.
result Derived the distribution of order avalanches, generalizing previous results on Parisian options.

New framework compresses and recovers scientific data efficiently.

problem Efficiently managing and recovering from large scientific datasets.
method Grounded in learning exponential families, preserves uncertainty and supports trade-offs.
result Preserves physical features and quantities of interest in compressed representations.

Adaptive ML learns complex time-varying systems without new data.

problem Applying ML to time-varying systems with shifting distributions.
method Mapping high-dimensional inputs to low-dimensional latent space, actively tuning latent space based on feedback.
result Learning correlations and tracking system evolution in real-time without new data.

Learning-based link scheduling improves network performance in millimeter-wave multi-connectivity.

problem Efficient link scheduling is crucial for maximizing network performance in millimeter-wave multi-connectivity.
method A learning-based approach to predict optimal link scheduling.
result The learning-based solution outperforms base line methods and approaches the optimal solution.

Study automates detection of visitation disruptions in ICU patients.

problem Difficulty in detecting frequent visitation disruptions in ICU patients.
method Used DensePose R-CNN model to count people in video frames, analyzed disruptions and patient outcomes.
result Automated method detects visitation disruptions, impacts on pain and length of stay examined.

ParaMonte::Python streamlines Bayesian data analysis with fast Monte Carlo and MCMC routines.

problem Efficiently sampling posterior distributions in Bayesian modeling and data science.
method Serial and MPI-parallelized Markov Chain Monte Carlo (MCMC) routines.
result Automated model calibration and uncertainty quantification in Bayesian analysis.

Detects outliers in continuous-time event sequences, including unexpected absences and occurrences.

problem Identifying unexpected events in event sequences that may indicate abnormal situations.
method Developed methods based on Bayesian decision theory and hypothesis testing for context-aware outlier detection.
result Effective methods for detecting outliers in both synthetic and real-world data.

SALeRA controls SGD learning rate to learn as fast as possible but not faster.

problem Catastrophic learning episodes in SGD training of deep neural networks.
method SALeRA uses two statistical tests: one for speeding up and one for detecting and halting catastrophic episodes.
result SALeRA learns as fast as possible but not faster, as demonstrated by experiments on standard benchmarks.

Anomaly detection aids in labeling fast-running processes for machine learning.

problem Manual labeling of fast-running processes for machine learning models.
method Anomaly detection to assist in labeling data, specific metrics for model validation.
result Possibility to manually classify data for training machine learning models.

The paper introduces walks with jumps for modeling neuron activity in hyperbolic space.

problem Encoding neuron activity sequences in hyperbolic space.
method Introducing walks with jumps in hyperbolic geometry to model neuron activity.
result Endpoints of walks with jumps do not fully encode the sequence of jump times.

The paper proposes a survival model to optimize mobile notification delivery times.

problem Inappropriate notification timing and interruptions lead to user complaints.
method Developed a state transition framework and a survival model with log-linear and Weibull structures.
result The survival model outperforms logistic regression in prediction accuracy.

A framework for navigating environments with spatially correlated obstacles and uncertain blockage status.

problem Navigation in environments with spatially correlated obstacles of uncertain blockage status.
method Modeling spatial correlation with Gaussian Random Field, developing Bayesian belief updates, proposing a two-stage learning framework with offline and online phases.
result Consistent performance gains over baselines in environments with adversarial interruptions or clustered natural hazards.

New algorithms boost SAT solver performance by optimizing restart strategies.

problem Optimizing decision-making under time constraints with restarts.
method Developed online learning algorithms for a bandit problem with controlled restarts.
result Achieved O(log(τ))O(\log(τ)) and O(τlog(τ))O(\sqrt{τ\log(τ)}) regret bounds.

This research optimizes handover between fog nodes in vehicular IoT using machine learning.

problem Smooth transition of device connections and offloaded tasks between fog nodes in vehicular IoT.
method Proposes a three-layer feed-forward neural network and a dual stacked RNN with LSTM cells to predict fog nodes and minimize service interruption.
result Achieved 99.2% accuracy in predicting fog nodes with a test set.

Study uses machine learning to analyze state drug policies and reduce overdose deaths.

problem Epidemic opioid overdose rates and ineffective state-level policies.
method Hierarchical clustering of 138 binomial variables to generate policy bundles, then regression analysis.
result Balancing certain policies leads to reduced overdose deaths, but only after second year.

Gaussian Processes offer a flexible method for modeling and predicting outcomes with uncertainty estimates.

problem Capturing uncertainty in predictions at new data points, especially with poor overlap and extrapolation.
method Gaussian Processes model a posterior distribution over outcomes, reflecting the range of plausible models.
result GPs provide a principled approach to handling extrapolation and uncertainty in predictions.

Predicts user session length in streaming services with hierarchical modeling and shrinkage.

problem Predicting user session length in streaming services is challenging due to external factors and lack of covariates.
method Inspired by hierarchical Bayesian modeling, the approach incorporates flexible parametric/nonparametric models and uses hierarchical shrinkage.
result The method outperforms state-of-the-art estimators in efficiency and predictive performance.