Open Access
Issue
BIO Web Conf.
Volume 55, 2022
5th International Conference on Frontiers of Biological Sciences and Engineering (FBSE 2022)
Article Number 01015
Number of page(s) 4
DOI https://doi.org/10.1051/bioconf/20225501015
Published online 21 November 2022
  • Vaz L, Frankenbach S, Serodio J. New insights about the primary production dependence on abiotic factors: Ria de Aveiro case study[J]. Ecological indicators, 2019, 106(10):1-15. [Google Scholar]
  • Chowdhury R I, Wahid K A, Nugent K. Design and Development of Low-Cost, Portable, and Smart Chlorophyll-A Sensor[J]. IEEE Sensors Journal, 2020, 2020(99):1-1. [CrossRef] [Google Scholar]
  • Moutzouris-Sidiris I, Topouzelis K. Assessment of Chlorophyll-a concentration from Sentinel-3 satellite images at the Mediterranean Sea using CMEMS open source in situ data[J]. Open Geosciences, 2021, 13(1):85-97. [CrossRef] [Google Scholar]
  • Yuan Jing, Dai Yuan, Shen Wei, et al. In-situ measurement of chlorophyll a concentration in lake water based on discrete three-dimensional in vivo fluorescence spectrometry [J]. Lake Science, 2018, 30(3):8. [Google Scholar]
  • Liu Yao, Li Junsheng, Xiao Chenchao, et al. Inversion of chlorophyll a concentration in inland waters from 02D hyperspectral image of Ziyuan-1 [J]. Journal of Remote Sensing, 2022, 26(1):11. [Google Scholar]
  • Wei Anna, Tian Liqiao, Chen Xiaoling, et al. Research on hyperspectral inversion model and application of chlorophyll a concentration in Poyang Lake based on exhaustive method-taking AHSI data of GF-5 satellite as an example [J]. Journal of Huazhong Normal University: Natural Science Edition, 2020, 54(3):7. [Google Scholar]
  • Huang Qihui, He Zhonghua, Liang Hong, et al. Estimation of chlorophyll a concentration in Baihua Lake based on hyperspectral data [J]. Environmental Science and Technology, 2019(1):8. [Google Scholar]
  • Liu Yu, Li Xulong. Inversion of chlorophyll a concentration in Jingbo Lake based on water body index [J]. Journal of Hunan Agricultural University: Natural Science Edition, 2019, 45(2):7. [Google Scholar]
  • Ma Shaodui, Li Xiuhua, Ai Jiaoyan, et al. Inversion of chlorophyll a content in water body by UV-visible light turbidity removal [J]. Science, Technology and Engineering, 2018, 018(031):99-104. [Google Scholar]
  • Zhao Rui, Bu Hongmei, Song Xianfang, et al. Spectral characteristics of Phragmites australis in reclaimed water recharge channel and its response to nitrogen and phosphorus content in water [J]. Acta Botanica Sinica, 2020(6):11. [Google Scholar]
  • Zhang Liwei, Luo Da, Li Boying, et al. Changes of red edge position of maize leaf reflection spectrum under copper stress and its relationship with chlorophyll [J]. Spectroscopy and Spectral Analysis, 2018,14(12):038-002. [Google Scholar]

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