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MRI India Journals Vol. 14 No. 2s (2025): Special Issue: ICAESRTA-2K25

CycloCast – Predicting Cloud Formations in Cyclonic Conditions Using Indian Satellite Imagery

Authors

  • Arnav Shah Computing Technologies, SRM Institute of Science and Technology, Chennai, India.
  • B. Prakash Computing Technologies, SRM Institute of Science and Technology, Chennai, India.
  • Arnav Thakur Computing Technologies, SRM Institute of Science and Technology, Chennai, India.
  • A. Anbaras Computing Technologies, SRM Institute of Science and Technology, Chennai, India.
  • Jeyasekar A. Computing Technologies, SRM Institute of Science and Technology, Chennai, India.
  • Shivani Shah Space Applications Centre, Indian Space Research Organisation, Ahmedabad, India.

DOI:

https://doi.org/10.65521/intjournalrecadvengtech.v14i2s.1442

Keywords:

CycloCast ConvLSTM ConvLST spatio‑temporal forecasting satellite image preprocessing adaptive thresholding cyclone‑centered croppin cyclonic cloud pattern prediction INSAT‑3D

Abstract

CycloCast is a deep learning-based forecasting model which predicts the future development of cyclonic weather cloud patterns from the satellite imagery taken from ISRO INSAT Series of satellites. Using a ConvLSTM network, it predicts future developments of cloud patterns at every 30 minutes based on a single input image sequence. The potential of predicting cloud coverage patterns makes CycloCast a valuable tool for meteorologists and disaster management authorities. In this paper we detail the data collection methods, data processing approaches such as adaptive thresholding and cyclone-based cropping, and the training approaches to achieve stable forecasting performance. CycloCast achieves a very high level of performance in forecasting cloud coverage patterns with a Cloud Coverage % of 85.6 and a Structural Similarity Index (SSIM) of 0.7765.

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Published

2025-12-11

How to Cite

Shah, A., Prakash, B., Thakur, A., Anbaras, A., A., J., & Shah, S. (2025). CycloCast – Predicting Cloud Formations in Cyclonic Conditions Using Indian Satellite Imagery. International Journal of Recent Advances in Engineering and Technology, 14(2s), 88–93. https://doi.org/10.65521/intjournalrecadvengtech.v14i2s.1442

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