💻 computer science

Human-Centered Learning Mechanics for Reliable Smart Textiles: An Explainable and Frugal AI Framework for Separating Physiological Anomalies from Sensor Drift and Degradation

This paper presents HCLM-SmartTex, an explainable and frugal AI framework that distinguishes genuine physiological anomalies from smart-textile sensor degradation and artifacts by optimizing for human-centered decision costs rather than raw accuracy, utilizing a synthetic simulator for training and achieving high reliability with minimal computational footprint.

Kim Duc TRAN, Guillaume Tartare, Ludovic Koehl, Xianyi Zeng, Anthony Fleury, Kim Phuc Tran2026-07-15
💻 computer science

Language Identification (LID) in Micro-Texts: An Ultra-Lightweight Geometric Approach.

This paper introduces an ultra-lightweight geometric method for language identification in micro-texts that encodes character frequencies into compact Euclidean spaces, demonstrating superior robustness against data sparsity and historical variations compared to traditional baselines while offering significant computational efficiency for edge computing.

Oscar Rendón-Aldaraca, Héctor Fraire-Huacuja, Ana María Mendoza-Martínez, José Ángel Mendoza-Sierra2026-07-15
💻 computer science

Detection First, Grading Second: A Secondary Analysis of Stage-Specific Errors in Two-Stage Colon CAD

This position-style secondary analysis argues that colon CAD systems should adopt a detection-first, grading-second workflow and be evaluated using stage-specific metrics, demonstrating through reanalysis of existing data that such an approach better aligns with clinical pathology workflows and reveals that the majority of grading errors are clinically less severe adjacent-grade swaps while highlighting the critical impact of disease prevalence on positive predictive value.

Sulav Dahal, Bipul Bhattarai2026-07-15
💻 computer science

Are You Measuring the Failure Subspace, or Its Ceiling?

This paper demonstrates that the widely cited low-dimensional nature of failure subspaces in test-time adaptation is an algebraic artifact of specific gradient definitions constrained by the classifier's row space, rather than an intrinsic property, as alternative unconstrained demands reveal high-dimensional, width-sensitive structures where most energy remains confined to the classifier's row space.

Sungmin Ryu2026-07-15
💻 computer science

85.30 GFLOPS Single-Core FP32 Matrix Multiplication on AMD Zen 3: A Systematic Study of Cache Blocking, Register Blocking, FMA Chaining, and On-the-Fly Packing

This paper presents a systematic optimization study on the AMD Zen 3 microarchitecture that achieves 85.30 GFLOPS in single-core FP32 matrix multiplication by evaluating 28 distinct configurations of cache/register blocking, FMA chaining, and on-the-fly packing, ultimately identifying a champion design that reaches 63.5% of the theoretical peak performance while introducing a predictive model for future optimizations.

Lucas Lima Freitag2026-07-15