• Spacecraft Recovery & Remote Sensing
  • Vol. 45, Issue 5, 123 (2024)
Yaping WANG1, Xifei XU1,2, Jiaguo LI2,*, Xingfeng CHEN2..., Ning ZHANG3, Huajie CHEN4, Limin ZHAO2 and Jun LIU2|Show fewer author(s)
Author Affiliations
  • 1School of Surveying and Land Information Engineering, Henan Polytechnic University, Jiaozuo 454003, China
  • 2Aerospace Information Research Institute, Chinese Academy of Science, Beijing 100094, China
  • 3China Academy of Urban Planning and Design, Beijing 100044, China
  • 4Satellite Application Center for Ecology and Environment, Beijing 100094, China
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    DOI: 10.3969/j.issn.1009-8518.2024.05.012 Cite this Article
    Yaping WANG, Xifei XU, Jiaguo LI, Xingfeng CHEN, Ning ZHANG, Huajie CHEN, Limin ZHAO, Jun LIU. Research on Area Correction for Monitoring Cyanobacterial Bloom with Medium and Low Resolution Satellites: Taking GOCI-2 as an Example[J]. Spacecraft Recovery & Remote Sensing, 2024, 45(5): 123 Copy Citation Text show less
    References

    [1] B W BROOKS, J M LAZORCHAK, M D HOWARD et al. Are Harmful Algal Blooms Becoming the Greatest Inland Water Quality Threat to Public Health and Aquatic Ecosystems?. Environmental Toxicology and Chemistry, 35, 6-13(2016).

    [3] S B A ROLIM, B K VEETTIL, A P VIEIRO et al. Remote Sensing for Mapping Algal Blooms in Freshwater Lakes: A Review. Environmental Science and Pollution Research, 30, 19602-19616(2023).

    [4] S Q WANG, X ZHANG, N C CHEN et al. Classifying Diurnal Changes of Cyanobacterial Blooms in Lake Taihu to Identify Hot Patterns, Seasons and Hotspots Based on Hourly Goci Observations. Journal of Environmental Management, 310, 114782(2022).

    [6] D D XU, Y H PU, M Y ZHU et al. Automatic Detection of Algal Blooms Using Sentinel-2 Msi and Landsat Oli Images. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 14, 8497-8511(2021).

    [11] T BAJJOUK, J POPULUS, B GUILLAUMONT. Quantification of Subpixel Cover Fractions Using Principal Component Analysis and a Linear Programming Method: Application to the Coastal Zone of Roscoff (France). Remote Sensing of Environment, 64, 153-165(1998).

    [12] K XUE, R H MA, Z G CAO et al. Monitoring Fractional Floating Algae Cover over Eutrophic Lakes Using Multisensor Satellite Images: Modis, Viirs, Goci and Olci. IEEE Transactions on Geoscience and Remote Sensing, 60, 4211715(2022).

    [13] B PAN, Z W SHI, Z Y AN et al. A Novel Spectral-Unmixing-Based Green Algae Area Estimation Method for Goci Data. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 10, 437-449(2016).

    [14] A AMAN, H P RANDRIAMANANTENA, A PODAIRE et al. Upscale Integration of Normalized Difference Vegetation Index: The Problem of Spatial Heterogeneity. IEEE Transactions on Geoscience and Remote Sensing, 30, 326-338(1992).

    [15] P MAYAUX, E F LAMBIN. Estimation of Tropical Forest Area from Coarse Spatial Resolution Data: A Two-Step Correction Function for Proportional Errors Due to Spatial Aggregation. Remote Sensing of Environment, 53, 1-15(1995).

    [16] H Y CAO, L HAN, L Z LI. A Deep Learning Method for Cyanobacterial Harmful Algae Blooms Prediction in Taihu Lake, China. Harmful Algae, 113, 102189(2022).

    [17] P W LI, R WANG, M J KAINZ et al. Algal Density Controls the Spatial Variations in Hg Bioconcentration and Bioaccumulation at the Base of the Pelagic Food Web of Lake Taihu, China. Environmental Science & Technology, 56, 14528-14538(2022).

    [19] L W YUE, H M LUO, Z ZHOU et al. Detection of the Status of Diatom Blooms in the Tributaries of the Yangtze River Based on Sentinel-2 Images. IEEE Transactions on Geoscience and Remote Sensing, 61, 5407715(2023).

    [20] J RIEDI, B MARCHANT, S PLATNICK et al. Cloud Thermodynamic Phase Inferred from Merged Polder and Modis Data. Atmospheric Chemistry and Physics, 10, 11851-11865(2010).

    [21] Y C ZHANG, S LOISELLE, K SHI et al. Wind Effects for Floating Algae Dynamics in Eutrophic Lakes. Remote Sensing, 13, 800(2021).

    [22] X HANG, X Y LI, Y C LI et al. High-Frequency Observations of Cyanobacterial Blooms in Lake Taihu (China) from Fy-4b/Agri. Water, 15, 2165(2023).

    [24] L M KIAGE, N D WALKER. Using Ndvi from Modis to Monitor Duckweed Bloom in Lake Maracaibo, Venezuela. Water Resources Management, 23, 1125-1135(2009).

    [26] P P ZHANG, J Q MAO, H B CAI et al. Environmentally Driven Risk Assessment for Algal Bloom Occurrence in Shallow Lakes. Environmental Research Letters, 17, 114040(2022).

    [29] C M HU. A Novel Ocean Color Index to Detect Floating Algae in the Global Oceans. Remote Sensing of Environment, 113, 2118-2129(2009).

    [30] A PRAVEEN, C JEGANATHAN, S MONDAL. Mapping Annual Cropping Pattern from Time-Series Modis Evi Using Parameter-Tuned Random Forest Classifier. Journal of the Indian Society of Remote Sensing, 51, 983-1000(2023).

    [31] L QI, C M HU, P M VISSER et al. Diurnal Changes of Cyanobacteria Blooms in Taihu Lake as Derived from Goci Observations. Limnology and Oceanography, 63, 1711-1726(2018).

    Yaping WANG, Xifei XU, Jiaguo LI, Xingfeng CHEN, Ning ZHANG, Huajie CHEN, Limin ZHAO, Jun LIU. Research on Area Correction for Monitoring Cyanobacterial Bloom with Medium and Low Resolution Satellites: Taking GOCI-2 as an Example[J]. Spacecraft Recovery & Remote Sensing, 2024, 45(5): 123
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