<p>PatternFusion is a new ensemble framework that attempts to overcome the drawbacks of classical time-series analysis with the property of interpretability, along with high performance and multi-scale temporal detection. Predesign pattern recognition approaches in time-series usually work individually, forgetting about the collaborative potential of statistical models with deep learning structures. To address this, PatternFusion integrates seamlessly the BiLSTM networks for temporal memory, the CNN modules for spatial analysis and the LightGBM for statistical interpretability by a dynamic attention-driven fusion mechanism. Our multi-criteria optimization approach increases precision, robustness against a noisy input, interpretability, and the computational efficiency. A large set of experiments on various benchmark datasets proves the dominance on all F1-score, AUC, and EER measures that characterize robust detection of complex temporal patterns. Key innovations are adaptive attention-based fusion, multi-scale temporal feature encoding, explicit confidence quantification and temporal post-processing. These features combined together allow high-fidelity monitoring in critical applications like healthcare, finance, industrial systems and environmental sensing making PatternFusion a transformative solution for real-time, interpretable time-series pattern recognition.</p>

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PatternFusion: a hybrid model for pattern recognition in time-series data using ensemble learning

  • Wided Bouchelligua

摘要

PatternFusion is a new ensemble framework that attempts to overcome the drawbacks of classical time-series analysis with the property of interpretability, along with high performance and multi-scale temporal detection. Predesign pattern recognition approaches in time-series usually work individually, forgetting about the collaborative potential of statistical models with deep learning structures. To address this, PatternFusion integrates seamlessly the BiLSTM networks for temporal memory, the CNN modules for spatial analysis and the LightGBM for statistical interpretability by a dynamic attention-driven fusion mechanism. Our multi-criteria optimization approach increases precision, robustness against a noisy input, interpretability, and the computational efficiency. A large set of experiments on various benchmark datasets proves the dominance on all F1-score, AUC, and EER measures that characterize robust detection of complex temporal patterns. Key innovations are adaptive attention-based fusion, multi-scale temporal feature encoding, explicit confidence quantification and temporal post-processing. These features combined together allow high-fidelity monitoring in critical applications like healthcare, finance, industrial systems and environmental sensing making PatternFusion a transformative solution for real-time, interpretable time-series pattern recognition.