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首页> 外文期刊>International Journal of Control >An adaptive multiscale basis method for modelling discrete-time non-linear dynamical systems
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An adaptive multiscale basis method for modelling discrete-time non-linear dynamical systems

机译:离散时间非线性动力系统建模的自适应多尺度基础方法

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摘要

Based on locally applicable autoregressive moving average with exogenous (ARMAX) models this paper proposes two new adaptive modelling schemes for discrete-time non-linear dynamic systems based on the concept of a multiscale which originates in approximation theory. A general result on the convergence of modelling based on the multiscale basis functions with a least square estimated is derived. With the advantage of the multiresolution nature of the multiscale basis, the new modelling scheme can be used to capture both the global and local characteristics of a non-linear system over distinct scales. The algorithms also provide a trade-off between the model structure/model size and the modelling error, one of which emphasizes the modelling error with variable model structure whilst the other stresses a desired model size with better modelling error. Data-based modelling examples are used to demonstrate the effectiveness of the multiscale modelling schemes with different multiscale basis. [References: 36]
机译:基于具有外生性的局部适用自回归移动平均(ARMAX)模型,本文基于源自近似理论的多尺度概念,为离散时间非线性动力系统提出了两种新的自适应建模方案。得出了基于具有最小二乘估计的多尺度基函数的建模收敛性的一般结果。凭借多尺度基础的多分辨率性质的优势,新的建模方案可用于捕获非线性系统在不同尺度上的全局和局部特征。该算法还提供了模型结构/模型大小与建模误差之间的权衡,其中一种强调具有可变模型结构的建模误差,而另一种则强调具有更好建模误差的所需模型大小。基于数据的建模示例用于说明具有不同多尺度基础的多尺度建模方案的有效性。 [参考:36]

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