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Analyses of interventions and structural breaks in marine and fisheries time series: Detection of shifts using iterative methods

机译:分析海洋和渔业时间序列中的干预措施和结构性断裂:使用迭代方法检测变化

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摘要

Regime shifts in ecosystems whose patterns and properties may be very complex and thus manifold have profound implications for sustainability. Detecting structural breaks in natural processes, however, turns out to be an ambitious task because the lack of well defined target values and reference periods renders application of standard statistical (process or quality) control methods all but impossible. We develop an iterative procedure combining econometric, time series and quantile methods that produce a graphic display referred to as a "shiftogram," which indicates potential shifts within univariate components of an ecosystem of interest by characterizing their specific and often fairly complex properties. The shiftogram approach can be routinely applied as a scanning device to any (univariate) time series. We provide a search algorithm that iteratively looks for the best value of some quality-of-fit criterion for a time series where the break point is not known beforehand. The approach is demonstrated by the application to univariate examples of fish recruitment, a climate change phenomenon and a canonical variable bundling the effect of different biodiversity indices. Analysis of ecosystem level shifts (i.e. regime shifts) can then be conducted by applying the shiftogram method to multiple component variables and examining correspondence among their resulting shift point and shift types. Alternatively we illustrate how regime shifts can be examined directly by applying the shiftogram approach to multivariate time series data after reduction to a univariate case through canonical data reduction techniques.
机译:生态系统的政权转移,其模式和性质可能非常复杂,因此多种多样,对可持续性具有深远的影响。然而,检测自然过程中的结构破坏被认为是一项艰巨的任务,因为缺乏明确定义的目标值和参考周期使得几乎不可能应用标准的统计(过程或质量)控制方法。我们开发了一种将经济计量学,时间序列和分位数方法相结合的迭代程序,可产生称为“移位图”的图形显示,通过表征特定生态系统(通常是相当复杂的特性)来表明其所关注的生态系统的单变量内的潜在变化。移位图方法可以常规地用作任何(单变量)时间序列的扫描设备。我们提供了一种搜索算法,该算法针对断点事先未知的时间序列迭代地寻找某种拟合质量准则的最佳值。该方法通过将鱼类招募,气候变化现象和典范变量的单变量示例应用到一起来证明不同生物多样性指数的影响。然后可以通过将移位图方法应用于多个组成变量并检查其最终移位点和移位类型之间的对应关系来进行生态系统水平移位(即状态移位)的分析。或者,我们说明了如何通过将规范图归约技术应用到对单变量情况进行归约后,将移位图方法应用于多元时间序列数据,可以直接检查制度转变。

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