Remote Sensing Technology and Application, Volume. 40, Issue 2, 376(2025)
Consistency Analysis of FireCCI51 and MOSEV Wildfire Data Products:
Fig. 2. Year-by-year statistical chart of burning area and the percentage difference of FireCCI51 and MOSEV products in the pan-Arctic permafrost region
Fig. 3. The distribution of consistent regions of FireCCI51 and MOSEV products in the pan-Arctic permafrost
Fig. 4. The burning regions of FireCCI51 product in the inconsistent regions of FireCCI51 and MOSEV products in the pan-Arctic permafrost from 2001 to 2019
Fig. 5. The burning regions of MOSEV product in the inconsistent regions of FireCCI51 and MOSEV products in the pan-Arctic permafrost from 2001 to 2019
Fig. 6. The distribution of consistent and inconsistent regions of FireCCI51 and MOSEV products at different elevations in the pan-Arctic permafrost region
Fig. 7. The distribution of consistent and inconsistent regions of FireCCI51 and MOSEV products at different Köppen climate types in the pan-Arctic permafrost region
Fig. 8. The distribution of consistent and inconsistent regions of FireCCI51 and MOSEV products at different vegetation types in the pan-Arctic permafrost region
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. Consistency Analysis of FireCCI51 and MOSEV Wildfire Data Products:[J]. Remote Sensing Technology and Application, 2025, 40(2): 376
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Received: Jul. 28, 2023
Accepted: --
Published Online: May. 23, 2025
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