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首页> 外文期刊>Nonlinear processes in geophysics >Estimation of the local response to a forcing in a high dimensional system using the fluctuation-dissipation theorem
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Estimation of the local response to a forcing in a high dimensional system using the fluctuation-dissipation theorem

机译:使用涨落耗散定理估计高维系统中对强迫的局部响应

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The fluctuation-dissipation theorem (FDT) has been proposed as a method of calculating the response of the earth's atmosphere to a forcing. For this problem the high dimensionality of the relevant data sets makes truncation necessary. Here we propose a method of truncation based upon the assumption that the response to a localised forcing is spatially localised, as an alternative to the standard method of choosing a number of the leading empirical orthogonal functions. For systems where this assumption holds, the response to any sufficiently small non-localised forcing may be estimated using a set of truncations that are chosen algorithmically. We test our algorithm using 36 and 72 variable versions of a stochastic Lorenz 95 system of ordinary differential equations. We find that, for long integrations, the bias in the response estimated by the FDT is reduced from ~75% of the true response to ~30%.
机译:已经提出了波动耗散定理(FDT)作为计算地球大气对强迫的响应的方法。对于此问题,相关数据集的高维数使截断成为必要。在这里,我们提出了一种基于以下假设的截断方法:对局部强制的响应在空间上是局部的,作为选择多个前导经验正交函数的标准方法的替代方法。对于保持该假设的系统,可以使用通过算法选择的一组截断来估计对任何足够小的非局部强制的响应。我们使用36个和72个随机版本的常微分方程的Lorenz 95系统测试我们的算法。我们发现,对于长积分,FDT估计的响应偏差从真实响应的〜75%降低到〜30%。

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