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SI: Recent Developments in the Remote Sensing of Night-time Light

Quantifying night-time light change drivers in China’s Yangtze River economic zone

, , , , , , , & show all
Received 26 Jan 2023, Accepted 08 May 2023, Published online: 25 May 2023
 

ABSTRACT

Nighttime light (NTL) is a valuable data source for understanding urban sprawl and human activities. Radiometric quantification of NTL data can be used to explain the reasons for changes in NTL. We used average annual NTL data from 2013 to 2020 to investigate the magnitude and distribution of NTL change in the Yangtze River Economic Belt (YREB) in China. We found that NTL increased annually, with 93.06% of the area experiencing brightening. The annual NTL in 2020 was 2.42 times higher than that in 2013, and the NTL in the densely populated eastern provinces was 16.17 times higher than that in the west. Therefore, the east-west development of the research area is extremely uneven. Urbanization is often accompanied by dramatic NTL brightening, and the area of cropland being brightened is the largest of all landuse types. Urban development inevitably encroaches on cropland space. To address this issue, future policies should focus on sustainable regional development, for example encouraging urban densification development patterns. This will help to avoid the negative impact of urban expansion on the entire ecosystem.

Acknowledgements

The Scientific and Technological Research Program of Chongqing Municipal Education Commission (KJQN202100624), the Major Program of the National Natural Science Foundation of China (41790445), and the National Natural Science Foundation of China (41790444) supported this research.

Disclosure statement

No potential conflict of interest was reported by the authors.

Data and code availability

Original data can be downloaded from the corresponding website (https://eogdata.mines.edu/products/vnl/), and analytical data supporting the results of this study are available from the corresponding author (tayuxiang_cqupt.163.com), upon reasonable request.

Additional information

Funding

The work was supported by the the Major Program of the National Natural Science Foundation of China [41790445]; the National Natural Science Foundation of China [41790444]; The Scientific and Technological Research Program of Chongqing Municipal Education Commission [KJQN202100624].

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