[1] HEDLEY J D,ROELFSEMA C M,PHINN S R,et al. Environmental and sensor limitations in optical remote sensing of coral reefs:implications for monitoring and sensor design[J].Remote Sensing,2012,4(1):271-302. [2] VISSER F,WALLIS C,SINNOTT A M. Optical remote sensing of submerged aquatic vegetation: opportunities for shallow clearwater streams[J]. Limnologica,2013,43(5): 388-398. [3] QI L,HU C. To what extent can Ulva and Sargassum be detected and separated in satellite imagery?[J]. Harmful Algae,2021,103: 102001. [4] PENUELAS J,GAMON J A,GRIFFIN K L,et al. Assessing community type,plant biomass,pigment composition,and photosynthetic efficiency of aquatic vegetation from spectral reflectance[J]. Remote Sensing of Environment,1993,46(2): 110-118. [5] 黄超华. 中国黄、东海马尾藻属(Sargassum)的分类学修订[D].青岛:中国科学院大学(中国科学院海洋研究所),2017. [6] HUANG X,WANG D,BAO M,et al. Spectral characteristics of Sargassum horneri in seawater[C]//Proceedings of 2018 International symposium on optoelectronic technology and application. [S.l.]:SPIE,2018. [7] LASQUITES J J,BLANCO A C,TAMONDONG A.Mapping of sargassum distribution in the eastern coast of southern leyte using Sentinel-2 satellite imagery[J].The International Archives of the Photogrammetry,Remote Sensing and Spatial Information Sciences,2019,42:289-295. [8] CUEVAS E,URIBE-MARTÍNEZ A,LICEAGA-CORREA M D L Á.A satellite remote-sensing multi-index approach to discriminate pelagic Sargassum in the waters of the Yucatan Peninsula,Mexico[J]. International Journal of Remote Sensing,2018,39(11):3608-3627. [9] HU C. A novel ocean color index to detect floating algae in the global oceans[J]. Remote Sensing of Environment,2009,113(10):2118-2129. [10] 张正龙. 我国黄、东海浒苔和马尾藻的遥感鉴别及绿潮发生过程研究[D].上海:华东师范大学,2014. [11] 金松,韩震,刘瑜. 一种区分浒苔和马尾藻的遥感方法[J]. 遥感信息,2016,31(2): 44-48. [12] SETYAWIDATI N,KAIMUDDIN A H,WATI I P,et al. Percentage cover,biomass,distribution,and potential habitat mapping of natural macroalgae,based on high-resolution satellite data and in situ monitoring,at Libukang Island,Malasoro Bay,Indonesia[J]. Journal of Applied Phycology,2018,30(1):159-171. [13] HOANG T C,COLE A J,FOTEDAR R K,et al. Seasonal changes in water quality and Sargassum biomass in southwest Australia[J]. Marine Ecology Progress Series,2016,551:63-79. [14] BALADO J,OLABARRIA C,MARTÍNEZ-SÁNCHEZ J,et al. Semantic segmentation of major macroalgae in coastal environments using high-resolution ground imagery and deep learning[J]. International Journal of Remote Sensing,2021,42(5):1785-1800. [15] VENTURA D,BONIFAZI A,GRAVINA M F,et al. Mapping and classification of ecologically sensitive marine habitats using unmanned aerial vehicle (UAV) imagery and object-based image analysis (OBIA)[J]. Remote Sensing,2018,10(9):1331. [16] ZHENG Y,WU J,WANG A,et al.Object-and pixel-based classifications of macroalgae farming area with high spatial resolution imagery[J].Geocarto International,2018,33(10):1048-1063. [17] STUMPF R P,DAVIS T W,WYNNE T T,et al. Challenges for mapping cyanotoxin patterns from remote sensing of cyanobacteria[J]. Harmful Algae,2016,54(1): 160-173. [18] 蒋福康,李庆欣,林坚士. 大亚湾的马尾藻资源研究[J]. 热带海洋,1996,15(1): 85-90. [19] 于杰,黄洪辉,舒黎明,等. 马尾藻遥感信息提取[J]. 遥感信息,2013,28(2): 93-100. [20] 李俊,张文志,邓孺孺,等. 高分一号WFV影像的深圳市水库CODMn浓度时空分布特征[J]. 遥感学报,2022,26(8): 1562-1574. [21] MCKINNA L I W,FEARN P R C,WEEK S J,et al. A semianalytical ocean color inversion algorithm with explicit water column depth and substrate reflectance parameterization[J]. Journal of Geophysical Research: Oceans,2015,120(3):1741-1770. [22] 邓孺孺,何颖清,秦雁,等. 分离悬浮质影响的光学波段(400-900nm)水吸收系数测量[J]. 遥感学报,2012,16(1): 174-191. [23] DOGLIOTTI A I,RUDDICK K,GUERRERO R. Seasonal and inter-annual turbidity variability in the Río de la Plata from 15 years of MODIS: El Niño dilution effect[J]. Estuarine,Coastal and Shelf Science,2016,182(Part A): 27-39. [24] XU S,XU S,ZHOU Y,et al. Single beam sonar reveals the distribution of the eelgrass Zostera marina L and threats from the green tide algae Chaetomorpha linum K in Swan-Lake lagoon (China)[J]. Marine Pollution Bulletin,2019,145: 611-623. |