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利用位相图可视化系统动态。

Visualization of system dynamics using phasegrams.

机构信息

Department of Cognitive Biology, Laboratory of Bioacoustics, University of Vienna, Althanstrasse 14, 1090 Vienna, Austria.

出版信息

J R Soc Interface. 2013 May 22;10(85):20130288. doi: 10.1098/rsif.2013.0288. Print 2013 Aug 6.

Abstract

A new tool for visualization and analysis of system dynamics is introduced: the phasegram. Its application is illustrated with both classical nonlinear systems (logistic map and Lorenz system) and with biological voice signals. Phasegrams combine the advantages of sliding-window analysis (such as the spectrogram) with well-established visualization techniques from the domain of nonlinear dynamics. In a phasegram, time is mapped onto the x-axis, and various vibratory regimes, such as periodic oscillation, subharmonics or chaos, are identified within the generated graph by the number and stability of horizontal lines. A phasegram can be interpreted as a bifurcation diagram in time. In contrast to other analysis techniques, it can be automatically constructed from time-series data alone: no additional system parameter needs to be known. Phasegrams show great potential for signal classification and can act as the quantitative basis for further analysis of oscillating systems in many scientific fields, such as physics (particularly acoustics), biology or medicine.

摘要

引入了一种用于系统动力学可视化和分析的新工具

相图。它的应用通过经典的非线性系统(逻辑映射和洛伦兹系统)和生物语音信号进行了说明。相图结合了滑动窗口分析(如频谱图)的优点以及非线性动力学领域中成熟的可视化技术。在相图中,时间映射到 x 轴上,并且通过水平线的数量和稳定性在生成的图形中识别各种振动状态,例如周期性振荡、次谐波或混沌。相图可以被解释为时间上的分岔图。与其他分析技术不同,它可以仅从时间序列数据自动构建:不需要知道其他系统参数。相图在信号分类方面具有很大的潜力,并且可以作为许多科学领域(如物理学(特别是声学)、生物学或医学)中振荡系统进一步分析的定量基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cca/4043161/d51469382c16/rsif20130288-g1.jpg

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