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Heteroskedasticity as a leading indicator of desertification in spatially explicit data

机译:空间不确定性数据中异方差是沙漠化的主要指标

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摘要

Regime shifts are abrupt transitions between alternate ecosystem states including desertification in arid regions due to drought or overgrazing. Regime shifts may be preceded by statistical anomalies such as increased autocorrelation, indicating declining resilience and warning of an impending shift. Tests for conditional heteroskedasticity, a type of clustered variance, have proven powerful leading indicators for regime shifts in time series data, but an analogous indicator for spatial data has not been evaluated. A spatial analog for conditional heteroskedasticity might be especially useful in arid environments where spatial interactions are critical in structuring ecosystem pattern and process. We tested the efficacy of a test for spatial heteroskedasticity as a leading indicator of regime shifts with simulated data from spatially extended vegetation models with regular and scale-free patterning. These models simulate shifts from extensive vegetative cover to bare, desert-like conditions. The magnitude of spatial heteroskedasticity increased consistently as the modeled systems approached a regime shift from vegetated to desert state. Relative spatial autocorrelation, spatial heteroskedasticity increased earlier and more consistently. We conclude that tests for spatial heteroskedasticity can contribute to the growing toolbox of early warning indicators for regime shifts analyzed with spatially explicit data.
机译:政权转移是由于干旱或过度放牧而导致的其他生态系统状态(包括干旱地区的荒漠化)之间的突然过渡。政权转移可能发生在统计异常之前,例如自相关增加,表明弹性下降,并警告即将发生的转移。对条件异方差性(一种聚类方差)的测试已证明是时序数据中制度转移的有力先导指标,但尚未评估类似的空间数据指标。有条件的异方差性的空间类似物在干旱环境中特别有用,在干旱环境中,空间相互作用对于构建生态系统的模式和过程至关重要。我们使用来自空间扩展植被模型的模拟数据(具有规则且无标度的图案)测试了空间异方差性测试作为政权转移的主要指标的功效。这些模型模拟了从大量植物覆盖到裸露,类似沙漠的状况的转变。随着模型系统趋于从植被状态转变为沙漠状态,空间异方差的大小持续增加。相对空间自相关,空间异方差增加得更早,更一致。我们得出结论,对空间异方差性的测试可以为使用空间显式数据分析的政权转移预警指标工具箱的增长做出贡献。

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