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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.

169,051 papers · 148 categories

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48 results for informative inputs

Proposes a new method to selectively access privileged information in reinforcement learning.

problem Selective compression of privileged information in reinforcement learning.
method Formulates a variational bandwidth bottleneck to decide stochastically whether to access privileged information.
result Improves generalization and reduces access to costly information in reinforcement learning experiments.

Enhances construction input modeling with Bayesian deep neural networks.

problem Deriving reliable simulation input models from construction data.
method Bayesian deep neural networks integrated with multi-source construction data.
result Derives detailed input models for construction operations.

Softmax cross-entropy optimizes mutual information in neural networks.

problem Understanding the relationship between mutual information and classification neural networks.
method Demonstrated that optimizing softmax cross-entropy maximizes mutual information between inputs and labels.
result Softmax cross-entropy can approximate mutual information and highlight relevant image regions.

The paper tackles adversarial robustness by maximizing worst-case mutual information.

problem Training robust machine learning models against adversarial inputs is challenging.
method Develops a notion of representation vulnerability and an unsupervised learning method to maximize worst-case mutual information.
result Proves a lower bound on minimum adversarial risk and supports robustness of representations.

ScieNet improves deep learning resilience to input perturbations.

problem Deep learning's poor resilience to input perturbations in real-world scenarios.
method Hybrid architecture combining SNN for contextual info extraction and DNN for classification.
result Significant improvement in accuracy on noisy and rainy images without prior training.

Centroid Transformers reduce memory and computation by summarizing inputs into centroids.

problem Efficiently summarize inputs with reduced memory and computation.
method Generalizes self-attention to map N inputs to M centroids (M ≤ N), reducing complexity.
result Centroid Transformers reduce memory and computation while preserving key information.

The paper proposes a method to detect and filter noisy or mislabeled data using pointwise mutual information.

problem Detecting and filtering noisy or mislabeled data in deep learning models.
method A mutual information-based framework quantifying statistical dependencies between inputs and labels.
result The method effectively filters low-quality samples, improving classification accuracy by up to 15%.

In-N-Out improves model robustness to out-of-distribution data.

problem Learning robust models with few in-distribution labeled examples.
method Pre-training with auxiliary information and self-training with pseudolabels.
result In-N-Out outperforms auxiliary inputs or outputs alone on both in-distribution and OOD error.

Extends IPC to time-variant systems, revealing information processing in diverse dynamics.

problem Limited applicability of IPC to time-invariant systems and specific input distributions.
method Established connection between IPC and PC expansion, extended orthogonal bases to time and input history.
result IPC equivalent to squared norm of PC expansion coefficients, applicable to arbitrary input distributions.

JES optimizes expensive functions by considering joint entropy over input and output spaces.

problem Optimizing expensive functions with limited evaluations.
method Joint Entropy Search (JES) considers joint entropy over input and output spaces.
result JES outperforms other information-theoretic methods in Bayesian optimization.

The paper introduces metrics to quantify information discarding in DNNs.

problem Understanding how input information is discarded during neural network processing.
method Developed two entropy-based metrics to measure pixel-wise and reconstruction uncertainty.
result The metrics provide new insights into DNN performance and information processing efficiency.

We outline a detection method for adversarial inputs to deep neural networks. By viewing neural network computations as graphs upon which information flows from input space to out- put distribution, we compare the differences in graphs induced by different inputs. Specifically, by applying persistent homology to these …

2017-11-28abs ↗pdf ↗

RNNs are suboptimal at compressing past sensory inputs for future prediction.

problem RNNs do not optimally compress past sensory inputs for future prediction.
method Investigated RNNs trained with maximum likelihood and found they extract unnecessary information. Injected noise into hidden states to improve performance.
result Injecting noise into RNN hidden states improves predictive information, sample quality, likelihood, and classification performance.

Unsupervised pre-training preserves multiple views from input distribution.

problem Learning from multiple views of supervision in unsupervised settings.
method Investigates unsupervised pre-training under information theory, focusing on disentanglement and multiple views.
result Unsupervised pre-training helps conserve multiple views from input distribution, improving model performance.

Proposes a method to extract robust features that improve classifier robustness.

problem Improving classifier robustness to small perturbations in input space.
method Introduces an additional penalty term in the information bottleneck framework to minimize Fisher information, optimizing a variational bound using stochastic gradient descent.
result Optimally robust features are jointly Gaussian, and the method produces classifiers with increased robustness to perturbations.

New neural network method hides input information in complex-valued features to protect privacy.

problem Preventing adversaries from inferring input attributes from neural network features.
method Transforming real-valued features into complex-valued ones, making input hidden in a randomized phase.
result Significantly diminishes adversary's ability to infer input while preserving high accuracy.

Paper proposes a dual-level approach for multi-step forecasting of dynamical systems.

problem Accurate multi-step forecasting of time series systems for automatic control and optimization.
method Hybrid input forecasting using LSTM-STMs and physics-informed neural networks (PINNs).
result Hybrid models achieve higher log-likelihood and lower MSE compared to conventional methods.

Average-case information complexity for learning is bounded, revealing only O(d) bits for most concepts.

problem Understanding the average-case information leakage in learning algorithms for concept classes.
method Developed a learning algorithm that reveals O(d) bits of information for most concepts in a class of VC-dimension d.
result Most concepts in the class do not require large amounts of information leakage, revealing only O(d) bits on average.

LLMs' explanations are often insufficient and vary with input distribution.

problem Evaluating the sufficiency of LLM explanations without predefined biases.
method Generalizing sufficiency to arbitrary explanations, using LLM's input beliefs, and introducing SCSuff metric.
result Explanation sufficiency can vary with input distribution and is weakly correlated with model size, accuracy, or output entropy.

New approach categorizes objective functions for embodied agents.

problem Understanding how objectives relate to each other and discovering new objectives.
method Introducing Action Perception Divergence (APD) to categorize objective functions.
result Introduces a spectrum of objectives from narrow to general, explaining various unsupervised objectives.

Supervised, semi-supervised, and unsupervised learning estimate a function given input/output samples. Generalization of the learned function to unseen data can be improved by incorporating side information into learning. Side information are data that are neither from the input space nor from the output space of the f…

2015-11-19abs ↗pdf ↗

CNNs learn about input data uncertainties, improving classification performance.

problem Errors in measurements are often neglected in ML, affecting classification performance.
method Constructed a model with known noise levels and used CNNs to learn about uncertainties.
result CNNs can incorporate information about input data uncertainties, improving classification performance.

Study Fisher information for detecting neural network adversarial attacks.

problem Detecting and understanding adversarial examples in neural networks.
method Compute Fisher information quantities efficiently and analyze their behavior on adversarial examples.
result Fisher information can highlight important input neurons and reveal unreasonable network behavior.

A new method reduces both input and output dimensions for better goal-oriented analysis.

problem Simultaneous reduction of input and output dimensions for more accurate analysis.
method Coupled input-output dimension reduction, optimizing gradient-based bounds.
result Determine most informative sensors and influential parameters efficiently.

Theory proposes neural networks can be initialized for optimal information transmission.

problem Optimizing neural networks for optimal information transmission and representation.
method Developed a corrected mean-field framework to study neural networks as information channels, proving mutual information maximization at dynamic isometry.
result Mutual information maximization is realized between inputs and propagated signals when neural networks are initialized at dynamic isometry.

This paper proposes a method to learn graph representations without supervision.

problem Learning high-quality graph representations without external supervision.
method Graphical Mutual Information (GMI) to measure graph and hidden representation correlation.
result The proposed method outperforms state-of-the-art unsupervised counterparts and sometimes supervised ones.

The paper evaluates different graph input representations for urban network analysis.

problem Challenges in analyzing urban networks due to their size and complexity.
method Design and evaluation of six graph input representations considering topological and temporal characteristics.
result Temporal information in graph input representations significantly improves model accuracy (RMSE of 1.42).

Dynamic information balancing reduces catastrophic forgetting in modular neural networks.

problem Catastrophic forgetting in neural networks when learning multiple tasks.
method Dynamic Information Balancing (DIB) using reinforcement learning to adaptively route inputs based on module information load.
result DIB combined with EWC regularization outperforms models with similar capacity and EWC regularization.

A framework visualizes embedding spaces of neural survival analysis models using anchor directions.

problem Visualizing complex embeddings in neural survival analysis models.
method Estimating anchor directions through clustering or user-supplied concepts, revealing relationships with raw inputs and survival times.
result Visualization strategies reveal how anchor directions relate to raw clinical features and survival time distributions.

VIBI interprets black-box systems by selecting key features that are both brief and comprehensive.

problem Lack of concise and comprehensive explanations for black-box decision systems.
method VIBI uses the information bottleneck principle to select key features that are maximally compressed and informative.
result VIBI provides more concise and comprehensive explanations compared to existing methods.