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用于预测高维动力学的简约描述。

Parsimonious description for predicting high-dimensional dynamics.

作者信息

Hirata Yoshito, Takeuchi Tomoya, Horai Shunsuke, Suzuki Hideyuki, Aihara Kazuyuki

机构信息

Institute of Industrial Science, The University of Tokyo, 4-6-1 Komaba, Meguro-ku, Tokyo 153-8505, Japan.

Graduate School of Information Science and Technology, The University of Tokyo, Bunkyo-ku, Tokyo 113-8656, Japan.

出版信息

Sci Rep. 2015 Oct 29;5:15736. doi: 10.1038/srep15736.

Abstract

When we observe a system, we often cannot observe all its variables and may have some of its limited measurements. Under such a circumstance, delay coordinates, vectors made of successive measurements, are useful to reconstruct the states of the whole system. Although the method of delay coordinates is theoretically supported for high-dimensional dynamical systems, practically there is a limitation because the calculation for higher-dimensional delay coordinates becomes more expensive. Here, we propose a parsimonious description of virtually infinite-dimensional delay coordinates by evaluating their distances with exponentially decaying weights. This description enables us to predict the future values of the measurements faster because we can reuse the calculated distances, and more accurately because the description naturally reduces the bias of the classical delay coordinates toward the stable directions. We demonstrate the proposed method with toy models of the atmosphere and real datasets related to renewable energy.

摘要

当我们观察一个系统时,我们常常无法观察到它的所有变量,可能只能获得其有限的一些测量值。在这种情况下,由连续测量值构成的延迟坐标向量对于重构整个系统的状态很有用。尽管延迟坐标方法在理论上对高维动力系统是有支撑的,但实际上存在一个限制,因为高维延迟坐标的计算成本更高。在此,我们通过用指数衰减权重评估其距离,提出了一种对几乎无限维延迟坐标的简约描述。这种描述使我们能够更快地预测测量值的未来值,因为我们可以重复使用已计算的距离,并且更准确,因为这种描述自然地减少了经典延迟坐标向稳定方向的偏差。我们用大气的玩具模型和与可再生能源相关的真实数据集演示了所提出的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8998/4625180/d4f9b33cda32/srep15736-f1.jpg

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