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On-device research index

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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3671107142 · Jun 202019922001200920182026
48 results for global mobility

Federated Learning improves mobile data privacy by training classifiers without sharing raw data.

problem Privacy concerns in packet classification due to sensitive data sharing.
method Apply Federated Learning to mobile packet classification tasks, training models without raw data sharing.
result Demonstrated effectiveness of the approach in terms of performance, cost, and privacy.

New models predict mobility flows as well as complex machine learning but are simpler and interpretable.

problem Incomplete understanding and modeling of human mobility flows.
method Developed simple machine-learned, closed-form models of mobility.
result These models predict mobility flows more accurately than gravity or complex machine/deep learning models.

A modified VDCNN model reduces size and latency for mobile platforms.

problem Memory and processing constraints on mobile platforms.
method Temporal Depthwise Separable Convolutions and Global Average Pooling.
result The squeezed model (SVDCNN) is 10x-20x smaller with minimal accuracy loss.

Develops a graph-based convolutional network for multi-view networks to improve poverty research.

problem Binary treatment of social network relations in graph learning models.
method Multi-GCN: Graph Convolutional Networks for Multi-View Networks.
result Multi-GCN outperforms state-of-the-art algorithms on poverty prediction tasks and broader multi-view network tasks.

HealthSyn generates synthetic user behavior data for health interventions.

problem Lack of representative data for testing AI health interventions.
method Uses Markov processes to simulate diverse user actions, generating logs for ML algorithms.
result Synthetic data can be used to develop, test, and evaluate ML algorithms and RL-based interventions.

MDLdroid improves mobile deep learning for personal sensing with faster training.

problem Continuous local changes and resource constraints in personal mobile sensing affect global model performance.
method ChainSGD-reduce approach to reduce overhead and balance resources.
result 2x to 3.5x faster training on off-the-shelf mobile devices compared to single-device training.

Client-based machine learning uses mobile devices for computation, improving privacy and reducing data upload.

problem Exploiting mobile devices for machine learning tasks to protect privacy and reduce data upload.
method Leveraging local hardware and data on mobile devices for computation-intensive tasks, only uploading results.
result Client-based machine learning can relieve server burdens and protect user privacy.

Deep actor-critic learning optimizes power control in mobile networks.

problem Optimizing power control in large-scale wireless mobile networks.
method Multi-agent deep reinforcement learning with deep deterministic policy gradient.
result The algorithm maximizes a global utility function in a distributed manner.

DRL optimizes complex mobile networks with imperfect info.

problem Optimizing mobile networks with scarce data and complex dynamics.
method Sim-to-Real framework using graph CNN, domain randomization, multi-task learning, and self-play.
result First successful transfer of DRL from simulation to real-world mobile networks.

FLeet improves online FL for mobile apps with better performance and privacy.

problem Federated Learning's offline nature limits its applicability for online updates.
method Combines staleness awareness and performance prediction with adaptive learning.
result 2.3x quality boost with minimal battery consumption.

A robot learns environmental fields using physics-based models and Bayesian methods.

problem Accurately learning complex environmental fields from limited robot measurements.
method Bayesian framework with Gaussian processes to select and update physics-based models in real-time.
result The robot's learned flow field approximates real flow better than prior solutions and data-driven methods.

OTT services are replacing traditional telecom services, affecting revenue streams.

problem OTT services are reducing traditional telecom revenue streams.
method Quantitative analysis of mobile user trends and revenue changes.
result OTT services are becoming more prevalent and impacting telecom revenue.

Federated Learning can benefit from Model Agnostic Meta Learning for personalized models.

problem Personalizing models for diverse devices in Federated Learning.
method Interpreted Federated Averaging as a meta learning algorithm and applied MAML principles.
result Personalized models trained with Federated Averaging are easier to fine-tune and achieve higher accuracy.

Safe-M3^3-UCRL learns safe policies for multi-agent systems with global constraints.

problem Global constraints in mean-field reinforcement learning for multi-agent systems.
method Safe-M3^3-UCRL uses epistemic uncertainty and log-barrier approach to ensure constraints satisfaction.
result Safe-M3^3-UCRL learns safe policies for multi-agent systems with global constraints.

The left-invariant sub-Riemannian problem on the Engel group is considered. The problem gives the nilpotent approximation to generic nonholonomic systems in four-dimensional space with two-dimensional control, for instance to a system which describes motion of mobile robot with a trailer. The global optimality of extre…

2014-08-28abs ↗pdf ↗

This work explores gradient flows and Riemannian structure in Gromov-Wasserstein geometry for data with global structure.

problem Suitable geometry for tasks requiring preservation of global data structure.
method Study of gradient flows and Riemannian structure in Gromov-Wasserstein geometry for distributions on \(\mathbb{R}^d\).
result Established a Benamou-Brenier-like formula for IGW and derived the IGW gradient.

Graph neural networks predict future COVID-19 cases based on human mobility.

problem Predicting future COVID-19 cases using human mobility data.
method Created a graph with regions as nodes and human mobility as edge weights. Used graph neural networks to capture diffusion patterns and transfer learning for limited data.
result Graph neural networks outperform traditional methods in predicting future cases.

Federated learning algorithm reduces global model size by combining local and global representations.

problem Scalability issues in training large models on private data distributed over multiple devices.
method Proposes a federated learning algorithm that jointly learns compact local representations and a global model.
result The global model can be smaller since it only operates on local representations, reducing the number of communicated parameters.

The paper tackles carousel personalization in music streaming apps using contextual bandits.

problem Selecting relevant items to display in carousels for personalized content recommendation.
method Modeling carousel personalization as a contextual multi-armed bandit problem with multiple plays, cascade-based updates and delayed batch feedback.
result Empirically shows the effectiveness of the framework in capturing characteristics of real-world carousels.

Algorithm predicts human mobility using a large ensemble of expert models.

problem Short-term prediction of human mobility patterns.
method Exponential Weights algorithm with a large ensemble of expert models trained on mobile phone data.
result Average prediction accuracy is significantly higher than individual models.

The paper presents a probabilistic method to discover daily human mobility patterns from mobile data.

problem Discovering daily human mobility patterns from mobile data.
method A non-parameter Bayesian modeling method, Infinite Gaussian Mixture Model, combined with Kullback-Leibler divergence for automatic clustering.
result The IGMM-based algorithm outperforms the GMM-based algorithm in discovering mobility patterns.

FLAME auto-labels mobile data efficiently on diverse processors.

problem Accurately and efficiently labeling mobile data with unknown labels on heterogeneous processors.
method Self-adaptive auto-labeling system Flame that schedules and executes workloads on mobile processors.
result Flame achieves high labeling accuracy and performance on heterogeneous mobile processors.

Graphs model human mobility patterns, reducing errors in data matching.

problem Lack of high-quality data and computational resources for graph-based mobility analysis.
method Embedding graphs into a continuous space to address matching, modeling, and visualization challenges.
result Approx 40% decrease in error on average in matched graphs vs unmatched ones.

Deep learning predicts availability of mobile crowdsourced services spatially and temporally.

problem Predicting the availability of mobile crowdsourced services in space and time.
method Two-stage prediction model: clustering services into regions, then forecasting availability duration using time series.
result Effectiveness validated through multiple experiments.

In this paper, we investigate the economic mobility in some money transfer models which have been applied into the research on wealth distribution. We demonstrate the mobility by recording the time series of agents' ranks and observing their volatility. We also compare the mobility quantitatively by employing an index,…

2005-07-21abs ↗pdf ↗

MobILE learns from expert demonstrations without access to actions, achieving strong performance guarantees.

problem Imitation Learning from Observations alone (ILFO) where actions are not observed.
method MobILE integrates optimism in the face of uncertainty into distribution matching IL framework, trading off exploration and imitation.
result MobILE provides strong performance guarantees for certain MDP dynamics and demonstrates efficacy on OpenAI Gym tasks.

TraLFM models human mobility patterns from traffic trajectories.

problem Understanding human mobility patterns from traffic data.
method Latent factor modeling of sequential, personal, and temporal factors.
result TraLFM significantly outperforms state-of-the-art methods in latent factor analysis and next location prediction.