Landsat-8 data (level 1T) received by users are still in digital number and can be used directly for mapping land use / land cover. However, the data still has low radiometric accuracy when it is used to derive information such as vegetation index, biomass, land use / land cover classification, etc. so that so that it requires radiometric / atmospheric correction. In this study, we use atmospheric correction method of the second simulation of satellite in the solar spectrum (6S) and Fast Line-of-sight Atmospheric Analysis of Spectral Hypercube (FLAASH) to eliminate atmospheric influences and compare the results with field measurements. The atmospheric parameters used were aerosol optical depth (AOD), water vapour column and ozone thickness from MODIS data with the date and time of acquisition approaching with Landsat-8 data. From the analysis conducted on the spectral response of atmospheric corrected image shows the 6S model has better accuracy for the spectral response from the rice growth phase compared to the FLAASH model. The analysis of the values of vegetation indices (NDVI, EVI, SAVI and MSAVI) shows that the 6S model has better accuracy for NDVI while for EVI, SAVI and MSAVI the FLAASH model has slightly better accuracy than 6S.
Along with the times and technology development, the number of satellite images produced is increasing and diverse, both in terms of spatial and temporal resolution. In addition, in the last few years, LAPAN has done a mosaic of Landsat data for 16 days. The availability of extensive satellite data makes users desire data ready to use without initial processing to save time and costs. Furthermore, the medium resolution image has a comprehensive enough coverage for applications in the forestry, agriculture, plantation, and marine sectors. Therefore, the need for medium resolution Analysis Ready Data (ARD) increases. The available ARD data has been through the initial processing, including ToA and BRDF corrections. The existing Landsat-8 ARD does not cover Indonesian territory. The Landsat-8 ARD for the Indonesian region was first produced and introduced in this paper. Moreover, the development of ARD data quality is carried out by adding a topographic correction process, and image cropping become tiles with a size of 1-degree x 1-degree, which can be run automatically. This processing system produces ARD Landsat-8 to meet user requirements effectively and efficiently. These advantages are obtained because the pre-processing data load for the user has been reduced, and the user can immediately use the data according to the required scope. The software for making ARD Landsat-8 has been recognized as Intellectual Property Rights. Moreover, ARD Landsat-8 for Indonesian territory has been continuously utilized by the Indonesian Ministry of Environment and Forestry and the Indonesian Ministry of Agriculture.
Operasi amfibi merupakan salah satu proyeksi kekuatan militer dengan jalan mengintegrasikan berbagai jenis kekuatan kapal, pesawat udara, dan pasukan pendarat dalam suatu serangan terhadap Pantai musuh. Dengan berkembangannya teknologi penginderaan jauh citra satelit saat ini diharapkan mampu untuk memberikan informasi- informasi terkait tentang pelaksanaan operasi pendaratan amfibi. Penelitian dilakukan di Pulau Bunguran Natuna dengan menggunakan citra satelit resolusi sangat tinggi Pleiades milik Airbus Defense and Space yang mempunyai resolusi spektral 0,5 meter. Dalam penggabungan citra satelit dan peralatan analisa spasial (yaitu indeks vegetasi, klasifikasi, dan regresi), informasi di area Pesisir seperti, batas garis Pantai , komposisi dasar laut, dan batimetri dapat di sediakan. Sebagai hasilnya, pada penelitian ini menggunakan dan menganalisa citra satelit Pleiades untuk pemilihan area terkait mendukung latihan dan operasi pendaratan amfibi dan memberikan informasi yang diperlukan dalam pelaksanaannya.
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