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paperarXivTrust 82 · PrimaryPublished 18h agoLive · 12m ago

An Introduction to Sparse Identification of Nonlinear Dynamics for Engineering Applications

Many engineering problems involve phenomena whose governing equations are poorly characterized or only partially known. Surrogate modeling techniques such as neural networks can capture the behavior of these systems, but they typically demand large training datasets that are difficult to obtain in engineering contexts and yield models with limited physical interpretability. The Sparse Identification of Nonlinear Dynamics (SINDy) method addresses both limitations by performing sparse regression over libraries of candidate nonlinear terms, recovering interpretable governing equations from compar

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  • FuzzySimilar title/name (fuzzy) · 87%patchy631/ai-engineering-hub

    Fuzzy title match (0.94): “An Introduction to Sparse Identification of Nonlinear Dynami” ≈ “patchy631/ai-engineering-hub”

  • FuzzySimilar title/name (fuzzy) · 84%stas00/ml-engineering

    Fuzzy title match (0.92): “An Introduction to Sparse Identification of Nonlinear Dynami” ≈ “stas00/ml-engineering”

  • FuzzySimilar title/name (fuzzy) · 59%cobusgreyling/loop-engineering

    Fuzzy title match (0.73): “An Introduction to Sparse Identification of Nonlinear Dynami” ≈ “cobusgreyling/loop-engineering”

  • FuzzySimilar title/name (fuzzy) · 59%NirDiamant/Prompt_Engineering

    Fuzzy title match (0.73): “An Introduction to Sparse Identification of Nonlinear Dynami” ≈ “NirDiamant/Prompt_Engineering”

  • LinkedLinked via arxiv author · 85%Yao Cheng Li

    An Introduction to Sparse Identification of Nonlinear Dynamics for Engineering Applications

  • LinkedLinked via arxiv author · 85%Ana Larrañaga

    An Introduction to Sparse Identification of Nonlinear Dynamics for Engineering Applications

  • LinkedLinked via arxiv author · 85%Steven L. Brunton

    An Introduction to Sparse Identification of Nonlinear Dynamics for Engineering Applications

  • LinkedLinked via arxiv author · 85%Urban Fasel

    An Introduction to Sparse Identification of Nonlinear Dynamics for Engineering Applications

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