Physics-Guided Inverse Regression for Crop Quality Assessment
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arXiv
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| Hauptverfasser: | , , , , , , , , |
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| Format: | Preprint |
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2024
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| author | Shulman, David Israeli, Assaf Botnaro, Yael Margalit, Ori Tamir, Oved Naschitz, Shaul Gamrasni, Dan Shir, Ofer M. Dattner, Itai |
| author_facet | Shulman, David Israeli, Assaf Botnaro, Yael Margalit, Ori Tamir, Oved Naschitz, Shaul Gamrasni, Dan Shir, Ofer M. Dattner, Itai |
| contents | We present an innovative approach leveraging Physics-Guided Neural Networks (PGNNs) for enhancing agricultural quality assessments. Central to our methodology is the application of physics-guided inverse regression, a technique that significantly improves the model's ability to precisely predict quality metrics of crops. This approach directly addresses the challenges of scalability, speed, and practicality that traditional assessment methods face. By integrating physical principles, notably Fick`s second law of diffusion, into neural network architectures, our developed PGNN model achieves a notable advancement in enhancing both the interpretability and accuracy of assessments. Empirical validation conducted on cucumbers and mushrooms demonstrates the superior capability of our model in outperforming conventional computer vision techniques in postharvest quality evaluation. This underscores our contribution as a scalable and efficient solution to the pressing demands of global food supply challenges. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2403_08653 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Physics-Guided Inverse Regression for Crop Quality Assessment Shulman, David Israeli, Assaf Botnaro, Yael Margalit, Ori Tamir, Oved Naschitz, Shaul Gamrasni, Dan Shir, Ofer M. Dattner, Itai Methodology We present an innovative approach leveraging Physics-Guided Neural Networks (PGNNs) for enhancing agricultural quality assessments. Central to our methodology is the application of physics-guided inverse regression, a technique that significantly improves the model's ability to precisely predict quality metrics of crops. This approach directly addresses the challenges of scalability, speed, and practicality that traditional assessment methods face. By integrating physical principles, notably Fick`s second law of diffusion, into neural network architectures, our developed PGNN model achieves a notable advancement in enhancing both the interpretability and accuracy of assessments. Empirical validation conducted on cucumbers and mushrooms demonstrates the superior capability of our model in outperforming conventional computer vision techniques in postharvest quality evaluation. This underscores our contribution as a scalable and efficient solution to the pressing demands of global food supply challenges. |
| title | Physics-Guided Inverse Regression for Crop Quality Assessment |
| topic | Methodology |
| url | https://arxiv.org/abs/2403.08653 |