arXiv · 2212.00001
Model-Free Forecasting of Partially Observable Spatiotemporally Chaotic Systems
Abstract
Reservoir computing is a powerful tool for forecasting turbulence because its simple architecture has the computational efficiency to handle large systems. Its implementation, however, often requires full state-vector measurements and knowledge of the system nonlinearities. We use nonlinear projector functions to expand the system measurements to a high dimensional space and then feed them to a reservoir to obtain forecasts. We demonstrate the application of such reservoir computing networks on spatiotemporally chaotic systems, which model several features of turbulence. We show that using radial basis functions as nonlinear projectors enables complex system nonlinearities to be captured robustly even with only partial observations and without knowing the governing equations. Finally, we show that when measurements are sparse or incomplete and noisy, such that even the governing equations become inaccurate, our networks can still produce reasonably accurate forecasts, thus paving the way towards model-free forecasting of practical turbulent systems.
Explore related subjects
Keep this discovery
Vikrant Gupta, Larry K. B. Li, Shiyi Chen, Minping Wan. 2022-10-13. Model-Free Forecasting of Partially Observable Spatiotemporally Chaotic Systems. https://arxiv.org/abs/2212.00001
Cite the original work for its findings. Save a collection to share your selection of sources.