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Spatially explicit mapping of phenological transition zones: A fuzzy-logic approach

机译:诸本空间显式映射鉴用区域:一种模糊逻辑方法

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Spatially explicit mapping of the Phenological Transition Zone (PTZ) is the prerequisite to PTZ dynamics monitoring and characterization, and is significant for more effective management of natural resources, biodiversity, and conservation areas in the context of climate change. However, to our knowledge there have been no studies to delineate spatially explicit PTZs and there are some potential issues associated with the mapping of other biogeographical transition zones. This paper developed a method to explicitly delineate PTZs continuously from 2003 to 2017 in the study area of the Forest-Grassland Mosaic Region (FGMR) in northeastern China, highlighting both their transitional and phenological characteristics. Annual Normalized Difference Vegetation Index (NDVI) time series were fed into the dynamic-time-warping (DTW) based fuzzy c-medoids (FCMdd) clustering to produce 12 fuzzy phenoregions. Potential PTZ pixels were identified for each pair of fuzzy phenoregions via the fuzzy intersection operator. The Delaunay tessellation field estimator was applied to convert the discrete potential PTZ pixels to continuous weighted density surface. The 7 consistently and 8 intermittently existing PTZs were exhaustively derived via thresholding. Three different types of gradient, inclusive and mosaic PTZs were identified. The PTZ dynamics were rapid and dramatic due to its phenological and transitional nature. This PTZ mapping method can be easily extended to other areas with no or minor adjustments, and it can also be adapted to map other biogeographical transition zones.
机译:诸于诸于酚类过渡区(PTZ)的空间显式映射是PTZ动力学监测和表征的先决条件,并且在气候变化背景下更有效地管理自然资源,生物多样性和保护区的管理。然而,对于我们的知识,没有研究过空间显式的PTZ,并且存在与其他生物地理过渡区的映射有关的潜在问题。本文开发了一种在中国东北林草原马赛克地区(FGMR)研究领域的2003年至2017年明确地描绘了PTZS的方法,突出了其过渡和鉴生特征。年度归一化差异植被指数(NDVI)时间序列被送入动态翘曲(DTW)的模糊C-麦细(FCMDD)聚类,以产生12个模糊的比例。通过模糊交叉算子针对每对模糊快性识别潜在的PTZ像素。应用DELAUNAIN TESSELTION估计器将离散电位PTZ像素转换为连续加权密度表面。通过阈值化,始终如一地和8个间歇地现有的PTZ。鉴定了三种不同类型的梯度,包容性和马赛克PTZ。由于其纯种和过渡性质,PTZ动力学迅速而戏剧性。该PTZ映射方法可以很容易地扩展到没有或微小调整的其他区域,并且也可以适用于映射其他生物地图过渡区域。

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