High-Resolution Mapping of Seasonal Crop Pattern Using Sentinel Imagery in Mountainous Region of Nepal: A Semi-Automatic Approach

Author:

Mishra Bhogendra123ORCID,Bhandari Rupesh14,Bhandari Krishna Prasad1,Bhandari Dinesh Mani1ORCID,Luintel Nirajan3,Dahal Ashok5,Poudel Shobha23ORCID

Affiliation:

1. Center for Space Science and Geomatics Studies, Institute of Engineering, Pashchimanchal Campus, Tribhuvan University, Pokhara, Nepal

2. Policy Research Institute, Narayanhiti Kathmandu, Nepal

3. Science Hub, Kathmandu, Nepal

4. Department of Geography, University of Alabama, Tuscaloosa, AL 35487, USA

5. ITC, the University of Twente, 7522 Enschede, The Netherlands

Abstract

Sustainable agricultural management requires knowledge of where and when crops are grown, what they are, and for how long. However, such information is not yet available in Nepal. Remote sensing coupled with farmers’ knowledge offers a solution to fill this gap. In this study, we created a high-resolution (10 m) seasonal crop map and cropping pattern in a mountainous area of Nepal through a semi-automatic workflow using Sentinel-2 A/B time-series images coupled with farmer knowledge. We identified agricultural areas through iterative self-organizing data clustering of Sentinel imagery and topographic information using a digital elevation model automatically. This agricultural area was analyzed to develop crop calendars and to track seasonal crop dynamics using rule-based methods. Finally, we computed a pixel-level crop-intensity map. In the end our results were compared to ground-truth data collected in the field and published crop calendars, with an overall accuracy of 88% and kappa coefficient of 0.83. We found variations in crop intensity and seasonal crop extension across the study area, with higher intensity in plain areas with irrigation facilities and longer fallow cycles in dry and hilly regions. The semi-automatic workflow was successfully implemented in the heterogeneous topography and is applicable to the diverse topography of the entire country, providing crucial information for mapping and monitoring crops that is very useful for the formulation of strategic agricultural plans and food security in Nepal.

Funder

Ministry of Land Management, Agriculture and Cooperative, Gandaki Province Pokhara, Nepal

Publisher

MDPI AG

Subject

Industrial and Manufacturing Engineering,Materials Science (miscellaneous),Business and International Management

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1. Future Prospects: High-Altitude Crop Improvement via Genomics;Genetics and Genomics of High-Altitude Crops;2024

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