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Scalability Analysis of Quantum Models for Stress and Emotion Detection

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Stress and emotion detection from high-dimensional physiological signals is a challenging task, particularly when aiming for accurate classification across diverse behavioral states. Quantum machine learning (QML) is promising for modeling such high-dimensional data, but scalability is limited by qubit resources and the exponential cost of classical statevector simulation. This work studies the scalability of quantum support vector machines (QSVMs) for binary stress detection and three-class emotion recognition (Negative/Neutral/Positive) under varying qubit counts and angle-encoding strategies. We also present a comparison study with one-feature-per-qubit (1:1) and two-features-per-qubit (2:1) mappings. Experiments are executed on HPC infrastructure using NVIDIA CUDA-Q to evaluate performance, variance, and class-dependent separability at higher-qubit setups. Results show that larger Hilbert spaces can improve peak accuracy but may increase instability. At the same time, dense 2:1 encoding yields more consistent stress detection performance. For emotion recognition, scaling improves discrimination for classes like Negative and Positive more than Neutral. We find that effective QML scaling is task-dependent and benefits more from encoding design than simply increasing qubit count.

Original languageEnglish
Title of host publicationGLSVLSI 2026 - Proceedings of the Great Lakes Symposium on VLSI 2026
EditorsFan Chen, Peipei Zhou, Jie Gu, Amit R. Trivedi, Xiaoxuan Yang
PublisherAssociation for Computing Machinery, Inc
Pages589-593
Number of pages5
ISBN (Electronic)9798400724312
DOIs
StatePublished - Jun 22 2026
Event36th Great Lakes Symposium on VLSI, GLSVLSI 2026 - Canandaigua, United States
Duration: Jun 22 2026Jun 24 2026

Publication series

NameGLSVLSI 2026 - Proceedings of the Great Lakes Symposium on VLSI 2026

Conference

Conference36th Great Lakes Symposium on VLSI, GLSVLSI 2026
Country/TerritoryUnited States
CityCanandaigua
Period06/22/2606/24/26

Keywords

  • Emotion Recognition
  • High Performance Computing
  • Quantum Machine Learning (QML)
  • Stress Detection
  • Support Vector Machine

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