Remote Sensing Technology and Application, Volume. 39, Issue 3, 642(2024)

Visualization Analysis of the Development and Hot Spots of Urban Ecological Remote Sensing Research

Huimin YIN, Xiujuan HU, Lijuan YANG, Chunqiang LI, and Hanqiu XU
Author Affiliations
  • College of Environment and Safety Engineering,Institute of Remote Sensing Information Engineering,Fuzhou University,Fuzhou350116, China
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    Figures & Tables(13)
    Annual number of papers published on urban ecological remote sensing research from 1991 to 2021
    Main urban ecological remote sensing related-research institutions in WoS from 1991 to 2021
    Main urban ecological remote sensing related-research institutions in CNKI from 1991 to 2021
    Visual representation of the influential authors of urban ecological remote sensing of WoS
    Visualization analysis of the core authors of urban ecological remote sensing in CNKI
    Time-series map of the keyword co-occurrence in the papers related to urban ecological remote sensing in WoS from 1991 to 2021
    Time-series map of the keyword co-occurrence in the papers related to urban ecological remote sensing in CNKI from 1991 to 2021
    • Table 1. Global centroid migration table of urban ecological remote sensing papers published from 1994 to 2021

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      Table 1. Global centroid migration table of urban ecological remote sensing papers published from 1994 to 2021

      年份经度纬度大洲
      199496.71° W61.99° N亚洲
      1997113.03° E45.72° N北美洲
      2000113.03° E45.72° N北美洲
      200612.20° W35.27° N欧洲
      20090.03° W35.09° N非洲
      201228.37° W33.73° N欧洲
      201520.19° W37.97° N欧洲
      201853.15° W31.53° N亚洲
      202174.29° W34.15° N亚洲
    • Table 2. Distribution of main research sub-field of urban ecological remote sensing (Top 15)

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      Table 2. Distribution of main research sub-field of urban ecological remote sensing (Top 15)

      WoSCNKI
      所属领域发文数量占比/%所属领域发文数量占比/%
      Environmental Sciences60325.73环境科学与资源利用47030.36
      Remote Sensing25510.88自然地理学和测绘学23114.92
      Geosciences Multidisciplinary2179.26建筑科学与工程1529.82
      Image Science Photographic Technology2088.87自动化技术1137.30
      Geography Physical2008.53工业通用技术及设备1026.59
      Environmental Studies1777.55农业经济956.14
      Ecology1657.04林业805.17
      Green Sustainable Science Technology1033.88生物学684.39
      Biodiversity Conservation913.88气象学664.26
      Urban Studies682.90宏观经济管理与可持续发展503.23
      Water Resources662.82计算机软件及计算机应用402.58
      Regional Urban Planning522.22农业基础科学312.00
      Engineering Electrical Electronic502.13资源科学241.55
      Multidisciplinary Sciences472.01农艺学150.97
      Meteorology Atmospheric Sciences421.79地质学110.71
    • Table 3. Key journals in the field of urban ecological remote sensing

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      Table 3. Key journals in the field of urban ecological remote sensing

      WoSCNKI
      出版物发文数量

      占总发表

      量之比

      篇均引用频次影响因子特征因子出版物发文数量

      占总发表

      量之比

      篇均引用频次综合影响因子复合影响因子
      Remote Sensing1078.7814.545.350.10生态学报403.8440.663.855.95
      Sustainability675.509.153.890.13水土保持研究201.929.002.393.80
      Ecological Indicators564.5935.456.260.04国土资源遥感181.738.892.033.16
      International Journal of Remote Sensing342.7955.763.530.01遥感技术与应用161.5419.941.562.51
      Science of the Total Environment322.6336.1810.750.30生态科学151.443.801.392.28
      Landscape and Urban Planning322.6380.758.120.02中国园林151.4421.671.813.32
      Environmental Monitoring and Assessment231.8913.683.310.02生态学杂志141.3413.142.383.73
      Remote Sensing of Environment221.80125.3613.850.06地球信息科学学报131.257.312.554.00
      International Journal of Environmental Research and Public Health191.5614.264.610.16应用生态学报121.1521.333.114.94
      Applied Geography181.4859.614.730.01生态环境学报121.1514.002.283.57
    • Table 4. Keyword frequency statistics of the papers on urban ecological remote sensing from 1991 to 2021 (Top 10)

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      Table 4. Keyword frequency statistics of the papers on urban ecological remote sensing from 1991 to 2021 (Top 10)

      数据库排名1991~2001年频次2002~2011年频次2012~2021年频次
      CNKI1环境监测7地理信息系统81生态环境134
      2城市化4景观格局54土地利用86
      3地理信息系统3城市绿地43景观格局79
      4应用2生态环境41地理信息系统58
      5土地利用41植被覆盖41
      6植被指数31主成分分析39
      7城市化27动态监测33
      8动态监测22城市化21
      9环境质量13空间格局21
      10热岛效应11城市绿地17
    • Table 5. The emergent intensity and life cycle of emergent terms in urban ecological remote sensing (Top 10)

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      Table 5. The emergent intensity and life cycle of emergent terms in urban ecological remote sensing (Top 10)

      WoSCNKI
      关键词强度突现年份关键词强度突现年份
      Gradient Analysis4.372006~2012地理信息系统8.471991~2009
      Ecology8.092007~2016城市绿地5.742006~2012
      Classification4.922007~2011动态变化3.232006~2012
      Landscape Metrics4.622008~2014土地利用变化3.292007~2008
      Spectral Mixture Analysis4.112008~2012城市森林3.842008~2009
      Growth4.402010~2018生态服务价值3.262012~2015
      Pattern4.152010~2012城市热岛3.582016~2018
      Land Use Change6.152012~2016主成分分析10.012018~2021
      Urban Growth5.022013~2017遥感生态指数15.242019~2021
      Science4.242019~2021卫星遥感3.382019~2021
    • Table 6. Comparison of evaluation model of urban ecological remote sensing (Part)

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      Table 6. Comparison of evaluation model of urban ecological remote sensing (Part)

      名称

      作者/机构

      (发表时间)

      使用影像及其空间分辨率研究区使用的指标

      是否

      可视化

      数值

      范围

      V-I-S(植被-不透水面-土壤)模型

      Ridd [71]

      (1995)

      Landsat影像(30 m)城市植被指数、不透水面指数、土壤指数/
      生态风险指数(ER)

      曾辉等[72]

      (1999)

      景观类型图大区域景观组分类型的数量、区域样地内景观组分的总面积、景观组分所反映的生态风险强度、景观样地总面积0~1
      动态景观模拟(DLS)

      Wang等[73]

      (2001)

      Landsat影像(30 m)城市城市生长模拟子模型和土地覆盖模拟子模型0~1
      城市热岛比例指数(URI)徐涵秋等[74] (2003)Landsat影像(30 m)/MODIS数据(250~1 000 m)城市地表温度0~1
      SLEUTH城市增长模式

      Jantz等[75]

      (2003)

      Landsat影像(30 m)城市坡度、土地利用、城市范围、交通、山体阴影0~100
      亮度—植被指数(BI-PVI)

      郑光等[76]

      (2005)

      Landsat影像(30 m)城市亮度指数、垂直植被指数不限
      生态环境状况指数(EI)国家环保总局(2006)Landsat影像(30 m)土地利用遥感监测数据、MODIS数据(250~1 000 m)大区域生物丰度、植被覆盖、水网密度、土地退化和环境质量0~100
      遥感生态指数(RSEI)

      徐涵秋[3]

      (2013)

      Landsat影像(30 m)/MODIS数据(250~1 000 m)大区域归一化植被指数、湿度、干度和地表温度0~1
      生态城市

      Kuang等[3]

      (2017)

      Landsat影像(30 m)、MODIS数据(500 m)城市不透水面指数、地表温度、潜热量、植被覆盖度/
      生态风险评估

      李耀明等[77]

      (2017)

      各气象站年均降雨数据、DEM和ETM影像(5~100 m)、人口密度统计表、土地利用分类图、土壤属性图、地层岩性图和景区分布图城市气象因素、地形因素、植被因素、地质和土壤因素、土地利用因素和人为因素

      分为1~5

      等级

      生态系统服务价值(ESV)遥感模型王万同等[78] (2019)LUCC数据(30 m)、MODIS数据(500 m)、NPP数据(30″)、NDVI数据(500 m)矢量边界数据为国家基础地理信息系统的1∶400万数据城市群研究区ESV的变化不限
      遥感城市地表生态指数(RSUSEI)Firozjae等[79] (2020)Landsat影像(30 m)城市归一化植被指数、干度、湿度、热度和不透水表面覆盖层0~1
      三维绿量模型

      易扬等[80]

      (2020)

      GF-2影像(4 m)城市归一化植被指数、比值植被指数、大气阻抗植被指数和结构不敏感色素指数不限
      生态质量评价模型王旭清等[81] (2021)Landsat影像(30 m),GF-2影像(4 m),国家基础地理信息数据,DEM数据(30 m)泥石流灾害多发区植被覆盖度因子、土壤裸露因子、地形地貌因子0~1
      新生态环境指数(NEI)孙彩霞等[82] (2021)Landsat影像(30 m),中国科学院资源环境科学与数据中心的30 m土地利用数据大区域生物丰富度指数、植被覆盖指数、干度、湿度及空气质量指数0~100
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    Huimin YIN, Xiujuan HU, Lijuan YANG, Chunqiang LI, Hanqiu XU. Visualization Analysis of the Development and Hot Spots of Urban Ecological Remote Sensing Research[J]. Remote Sensing Technology and Application, 2024, 39(3): 642

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    Paper Information

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    Received: Nov. 21, 2022

    Accepted: --

    Published Online: Dec. 9, 2024

    The Author Email:

    DOI:10.11873/j.issn.1004-0323.2024.3.0642

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