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| Poprzednia rewizja po obu stronachPoprzednia wersjaNowa wersja | Poprzednia wersja | ||
| rqa [2021/10/20 00:23] – clarification zubekj | rqa [2022/05/11 14:24] (aktualna) – Added demos zubekj | ||
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| Recurrence (Quantification) Analysis (RQA) is a nonlinear data analysis technique used for studying dynamical systems. It can be applied to any time series coming from a dynamical system that repeats itself (conservative system) – most of the real-world complex phenomena fall into this category. Recurrence plot is a visual representation of a dynamical process. RQA measures quantify meaningful properties of the system (kind of organization, | Recurrence (Quantification) Analysis (RQA) is a nonlinear data analysis technique used for studying dynamical systems. It can be applied to any time series coming from a dynamical system that repeats itself (conservative system) – most of the real-world complex phenomena fall into this category. Recurrence plot is a visual representation of a dynamical process. RQA measures quantify meaningful properties of the system (kind of organization, | ||
| - | Recurrence analysis is intuitively simple: if we conceptualize time as 1D line, we can make a 2D pattern representing “meetings” between points in time, a “meeting” occurs when the system is in the same state for both time points. It is also well-grounded in dynamical systems theory (starting point: Poincaré recurrence theorem). | + | Recurrence analysis is intuitively simple: if we conceptualize time as 1D line, we can make a 2D pattern representing “meetings” between points in time, a “meeting” occurs when the system is in the same state for both time points. It is also well-grounded in dynamical systems theory (starting point: |
| **I want to learn RQA, what do I do?** | **I want to learn RQA, what do I do?** | ||
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| [[https:// | [[https:// | ||
| - | Very good, clean and efficient implementation of RQA techniques is part of [[https:// | + | Very good, clean and efficient implementation of RQA techniques is a part of [[https:// |
| A comprehensive implementation of most standard recurrence analysis techniques and supplementary heuristics can be found in R in [[https:// | A comprehensive implementation of most standard recurrence analysis techniques and supplementary heuristics can be found in R in [[https:// | ||
| + | **Demos** | ||
| + | RQA plots online: [[https:// | ||
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| + | Live RQA demo on human motion (webcam required): [[https:// | ||
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| + | **Who do I ask for help?** | ||
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| + | * [[j.zubek@uw.edu.pl|Julian Zubek]] | ||