Related Experiment Video
Updated: Aug 5, 2026

Visualizing Oceanographic Data to Depict Long-term Changes in Phytoplankton
Published on: July 28, 2023
Physics-Informed Transformer for Genus-Level Phytoplankton Forecasting at Drinking-Water Intake Points
Jinuk Lee1, Eunyoung Jung2, Jiye Lee3
1Biological Specimen Conservation Division, Diversity Conservation Research Department, Nakdonggang National Institute of Biological Resources, Sangju, Republic of Korea.
Abstract:
Accurate forecasting of phytoplankton dynamics at drinking-water intake points is essential for proactive reservoir management because sudden biomass increases can directly impair filtration and increase backwashing demand. Using daily monitoring data collected at the Hoedong Reservoir intake depth from November 2012 to December 2021, we developed and evaluated a physics-informed Transformer (PITF) framework to predict the intake-point cell density of two operationally problematic genera (Microcystis and Stephanodiscus). Missing observations were addressed using a centered rolling-median interpolation, and a noise-perturbed dataset was additionally generated to assess robustness under realistic input uncertainty. All models performed were evaluated using R2 and RMSE. Intake point monitoring indicated risk patterns, with Microcystis peaking during mid-summer to autumn (up to 43,560 cells·mL-1) and Stephanodiscus peaking in winter (up to 5,120 cells·mL-1). PITF achieved strong validation performance for Microcystis (R2=0.711) and reasonable performance for Stephanodiscus (R2=0.505). Under noise-perturbed inputs, PITF showed slight performance degradation (e.g., Microcystis R2=0.701; RMSE=0.761), indicating robust forecasting skill under input uncertainty. A SHAP-based plausibility assessment identified ecologically consistent drivers, with water temperature and dissolved oxygen as dominant predictors for both taxa. Overall, PITF provides an interpretable and robust intake-focused forecasting approach that can support early-warning decision-making for drinking-water treatment operations.
More Related Videos
Related Concept Videos
Transformers in Distribution System
Distribution substation transformers come in various ratings and typically use mineral oil for insulation and cooling. To prevent moisture and air from entering the oil, some transformers use an inert gas like nitrogen to fill the...
Vector Forms of Green’s Theorem

