Utilization of Sentinel-1 Imagery for Land Cover Identification and Implications for Sustainability in the Maninjau Lake Area, West Sumatera
DOI:
https://doi.org/10.30631/sdgs.52.3313Keywords:
Land Cover, Sentinel-1 Imagery, Synthetic Aperture Radar (SAR), Lake ManinjauAbstract
The objective for this study is to address existing knowledge gaps by developing a reliable land cover identification approach using Sentinel-1 imagery to support sustainable environmental management in the Lake Maninjau area. This area is significant due to its ecological, economic, and social functions for the community. The research method employed entails the interpretation of objects on the earth's surface in satellite images. This process necessitates the identification of these objects through visual recognition, based on the characteristics or attributes inherent to each object. The visual interpretation of Sentinel 1 SAR (synthetic aperture radar) data utilized Google Earth as a geographical reference platform. The results of this study demonstrate the capability of Sentinel-1 data in distinguishing major land-cover classes, including water bodies, settlements, rice fields, aquaculture ponds, and vegetation. Sentinel-1 is an effective and efficient data source for land cover monitoring, especially in areas frequently covered by clouds.
References
Antomi, Y. (2020). Analisis Perubahan Penggunaan Lahan Dan Tingkat Kerentanan Sosial Ekonomi Di Kawasan Danau Maninjau. Jurnal Buana, 4 (2).
Ariyantoni, J., & Rokhmana, C. A. (2020). Evaluasi polarisasi citra SAR (SYHTHETIC APERTURE RADAR) untuk klasifikasi obyek tutupan lahan. Elipsoida: Jurnal Geodesi dan Geomatika, 3(01), 22-29.
Aryatama, M. G., Sukmono, A., & Hadi, F. (2023). Analisis Perubahan Tutupan Lahan Menggunakan Citra Sentinel-1 Multitemporal. Jurnal Geodesi Undip, 12(3), 201-210.
Campbell BA. Radar remote sensing of planetary surfaces. Cambridge University Press; 2002 Mar 14.
Campbell, J. B., & Wynne, R. H. (2011). Introduction to remote sensing (5th ed.). Guilford Press.
Delgado Blasco JM, Fitrzyk M, Patruno J, Ruiz-Armenteros AM, Marconcini M. Effects on the double bounce detection in urban areas based on SAR polarimetric characteristics. Remote Sensing. 2020 Apr 7;12(7):1187.
Fadlin, F., Thaha, M. A., Maricar, F., & Hatta, M. P. (2021). Monitoring Perubahan Penggunaan Lahan Menggunakan Citra Satelit Sentinel 1 di DAS Wanggu Kota Kendari. Jurnal Teknik Sumber Daya Air, 77-88.
Fathoni, M. N., Chulafak, G. A., & Kushardono, D. (2017). Kajian Awal Pemanfaatan Data Radar Sentinel-1 untuk Pemetaan Lahan Baku Sawah di Kabupaten Indramayu Jawa Barat Preliminary Study of Sentinel-1 Radar Data Application for Paddy Field Mapping in Indramayu-West Java. In Semin. Nas. Penginderaan jauh ke-4 (pp. 179-186).
Fieuzal R, Baup F. Estimation of leaf area index and crop height of sunflowers using multi-temporal optical and SAR satellite data. International Journal of Remote Sensing. 2016 Jun 17;37(12):2780-809.
Garcia, A. D. B., Celeste, J. J., Cheng, I., Prudente, V. H. R., & Sanches, I. D. A. (2024). Evaluation of multiple SAR speckling filter techniques performance in irrigated rice areas. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 48, 169-176.
Jacob, A. W., Vicente-Guijalba, F., Lopez-Martinez, C., Lopez-Sanchez, J. M., Litzinger, M., Kristen, H., ... & Engdahl, M. E. (2020). Sentinel-1 InSAR coherence for land cover mapping: A comparison of multiple feature-based classifiers. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 13, 535-552.
Gargiulo, M., Dell’Aglio, D. A. G., Iodice, A., Riccio, D., & Ruello, G. (2020). Integration of Sentinel-1 and Sentinel-2 Data for Land Cover Mapping Using W-Net. Sensors, 2010, 2969. https://doi.org/10.3390/s20102969
Hoshikawa, K., Watanabe, K., Nagano, T., Kotera, A., & Fujihara, Y. (2018). Determination of patterns of rainfall history creating situations for accurate classification of rain-fed paddy fields with SAR backscatter coefficients. Remote Sensing Applications: Society and Environment, 9, 42-51.
Holtgrave AK, Röder N, Ackermann A, Erasmi S, Kleinschmit B. Comparing Sentinel-1 and-2 data and indices for agricultural land use monitoring. Remote Sensing. 2020 Sep 9;12(18):2919.
Kenranto, R. A., Hidayat, H., & Bioresita, F. (2024). Analisis Genangan Banjir Terhadap Penutup Lahan di Wilayah Tangerang Menggunakan Data Citra Sentinel-1 dan Sentinel-2. JGISE: Journal of Geospatial Information Science and Engineering, 7(1), 14-22.
Li J, Wang S. Using SAR-derived vegetation descriptors in a water cloud model to improve soil moisture retrieval. Remote Sensing. 2018 Aug 29;10(9):1370.
Lillesand, T. M., Kiefer, R. W., & Chipman, J. W. (2015). Remote sensing and image interpretation (7th ed.). Wiley.
Mashala MJ, Dube T, Mudereri BT, Ayisi KK, Ramudzuli MR. A systematic review on advancements in remote sensing for assessing and monitoring land use and land cover changes impacts on surface water resources in semi-arid tropical environments. Remote Sensing. 2023 Aug 8;15(16):3926.
Mastrorosa, S., Crespi, M., Congedo, L., & Munafò, M. (2023). Land consumption classification using sentinel 1 data: A systematic review. Land, 12(4), 932.
Ozdogan, M., Yang, Y., Allez, G., & Cervantes, C. (2010). Remote sensing of irrigated agriculture: Opportunities and challenges. Remote sensing, 2(9), 2274-2304.
Pham-Duc B, Prigent C, Aires F. Surface water monitoring within Cambodia and the Vietnamese Mekong Delta over a year, with Sentinel-1 SAR observations. Water. 2017 May 23;9(6):366.
Perdana, A. R. W. Klasifikasi Tutupan Lahan Menggunakan Citra Radar Sentinel-1 dengan Algoritma Random Forest: Studi Kasus di Wilayah Gresik dan Kota Surabaya.
Putri, D. R., Sukmono, A., & Sudarsono, B. (2018). Analisis kombinasi citra sentinel-1a dan citra sentinel-2a untuk klasifikasi tutupan lahan (studi kasus: kabupaten demak, jawa tengah). Jurnal geodesi undip, 7(2), 85-96.
Putri, M. M. (2024). Analisis Perubahan Tutupan Lahan Dengan Citra Sentinel- 1A di Hutan Adat Bukit Bujang Kabupaten Bungo (Doctoral dissertation, Universitas Jambi)
Putri, R. A., & Jaelani, L. M. (2017). Analisis Perubahan Tutupan Lahan Daerah Aliran Sungai Rawapening dengan Sentinel-1A Tahun 2015-2016. Surabaya: Institut Teknologi Sepuluh November.
Petrushevsky, N., Manzoni, M., & Monti-Guarnieri, A. (2021). Fast urban land cover mapping exploiting Sentinel-1 and Sentinel-2 data. Remote Sensing, 14(1), 36.
Rezki, A. (2017). Penerapan Metode Penginderaan Jauh Dan Sistem Informasi Geografis Untuk Analisa Perubahan Penggunaan Lahan (Studi Kasus: Kawasan Danau Maninjau). Jurnal Spasial: Penelitian, Terapan Ilmu Geografi, dan Pendidikan Geografi, 1(1).
Ruzza, G., Hostache, R., & Matgen, P. (2019). Sentinel-1 for flood mapping: A review. Remote Sensing, 11(1), 1–22.
Saputro, A. H., & Kushardono, D. (2021, April). Speckle noise reduction of Sentinel-1 SAR data using fast fourier transform temporal filtering to monitor paddy field area. In IOP Conference Series: Earth and Environmental Science (Vol. 739, No. 1, p. 012086). IOP Publishing.
Sarker MM, Chakraborty D, Truong VT, Mizuno Y, Hirayama S, Tadono T, Parvin MI, Ito S, Bhuiyan MA, Hirade N, Chakma S. The First National-Scale High-Resolution Land Use Land Cover Map of Bangladesh Using Multi-Temporal Optical and SAR Imagery. Earth. 2025 Nov 6;6(4):143.
Togatorop, A. C. (2018). Analisis Tutupan Lahan Kabupaten Pakpak Bharat Menggunakan Citra SAR Sentinel-1 Pada Perangkat Lunak SNAP (Doctoral dissertation, Universitas Sumatera Utara).
Yuh YG, N’Goran KP, Kross A, Heurich M, Matthews HD, Turner SE. Monitoring forest cover and land use change in the Congo Basin under IPCC climate change scenarios. PloS one. 2024 Dec 2;19(12): e0311816.
Zhang, Y., Lin, H., & Chen, Y. (2020). Water change detection using multi-temporal Sentinel-1 images. Remote Sensing, 12(3), 545.








