Deep Contextual Understanding: A Parameter-Efficient Large Language Model Approach To Fine-Grained Affective Computing
Abstract
Background: Traditional methods in Affective Computing often fail to capture the subtle, context-dependent shifts necessary for fine-grained emotion classification due to limited semantic understanding and high reliance on hand-crafted features. While Large Language Models (LLMs) offer superior contextual depth, their immense computational cost hinders domain-specific fine-tuning and practical deployment.
Methods: This study leverages a pre-trained Transformer-based LLM (comparable to RoBERTa-Large) and applies a Parameter-Efficient Fine-Tuning (PEFT) methodology, specifically Low-Rank Adaptation (LoRA), to a complex, multi-label dataset of 11 discrete emotional states. We systematically compare the performance of LoRA against a traditional Bi-LSTM baseline and a Full Fine-Tuning (FFT) LLM, while also conducting a detailed ablation study on LoRA's rank () and scaling factor () to determine the optimal balance between performance and efficiency.
Results: The LLM (PEFT-LoRA) model achieved a decisive performance increase, resulting in aΒ Β score, outperforming the Bi-LSTM baseline by and, critically, marginally exceeding the performance of the FFT model (). The LoRA approach reduced the number of trainable parameters by (to million) and decreased training time by. Our hyperparameter analysis identified an optimal configuration of and, demonstrating that maximum performance does not require maximum parameter allocation.
Conclusion: LLMs are demonstrably superior for nuanced affective analysis. The PEFT-LoRA approach successfully overcomes the computational barrier, making state-of-the-art affective computing accessible and scalable. This efficiency enables the rapid development of specialized, low-latency AI agents, although future work must address the critical challenge of expanding to multimodal data and mitigating inherent model biases.
Keywords
References
Similar Articles
- Dr. Nuwan Perera, Dr. Ishara Fernando, A Novel Local Feature Optimization Approach for Accurate Scene Text Recognition Using Scale-Aware Representation Learning , International Journal of Advanced Artificial Intelligence Research: Vol. 3 No. 08 (2026): Volume 03 Issue 08
- Angelo soriano, Sheila Ann Mercado, The Convergence of AI And UVM: Advanced Methodologies for the Verification of Complex Low-Power Semiconductor Architectures , International Journal of Advanced Artificial Intelligence Research: Vol. 2 No. 11 (2025): Volume 02 Issue 11
- Dr. Janis Ozols, Dr. Elina Berzina, Intelligent Local Learning Architecture for Efficient Kernel-Based Data Analytics and Predictive Modeling , International Journal of Advanced Artificial Intelligence Research: Vol. 3 No. 08 (2026): Volume 03 Issue 08
- Dr. Erion Hoxha, Dr. Elira Dervishi, Global Firefly Optimization Model for IoT Attack Detection , International Journal of Advanced Artificial Intelligence Research: Vol. 3 No. 08 (2026): Volume 03 Issue 08
- Dr. Elena M. Ruiz, Integrating Big Data Architectures and AI-Powered Analytics into Mergers & Acquisitions Due Diligence: A Theoretical Framework for Value Measurement, Risk Detection, and Strategic Decision-Making , International Journal of Advanced Artificial Intelligence Research: Vol. 2 No. 09 (2025): Volume 02 Issue 09
- Dr. Amit Jain, A Comprehensive Survey of Recent Advances Artificial Intelligence for Insurance Fraud Detection , International Journal of Advanced Artificial Intelligence Research: Vol. 3 No. 08 (2026): Volume 03 Issue 08
You may also start an advanced similarity search for this article.