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Dissipativity preserving balancing for nonlinear systems A Hankel operator approach

机译:非线性系统的耗散保持平衡Hankel算子方法。

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In this paper we present a version of balancing for nonlinear systems which is dissipative with respect to a general quadratic supply rate that depends on the input and the output of the system. We discuss an approach that allows us to apply the theory of balancing based upon Hankel singular value analysis. In order to do that we prove that the available storage and the required supply of the original system are the controllability and the observability functions of a modified, asymptotically stable, system. Then Hankel singular value theory can be applied and the axis singular value functions of the modified system equal the nonlinear extensions of ``similarity invariants'' obtained from the required supply and available storage of the original system. Furthermore, we also consider an extension of normalized comprime factorizations and relate the available storage and required supply with the controllability and observability functions of the factorizations. The obtained relations are used to perform model order reduction based on balanced truncation, yielding dissipative reduced order models for the original systems. A second order electrical circuit example is included to illustrate the results.
机译:在本文中,我们提出了一种非线性系统平衡的版本,该版本相对于取决于系统输入和输出的一般二次供给速率而言是耗散的。我们讨论一种方法,该方法使我们可以应用基于Hankel奇异值分析的平衡理论。为此,我们证明原始系统的可用存储空间和所需的供给是经过修改的渐近稳定系统的可控制性和可观察性功能。然后可以应用汉克奇异值理论,修改后的系统的轴奇异值函数等于从原始系统的所需供应和可用存储中获得的``相似不变性''的非线性扩展。此外,我们还考虑了归一化卷积分解的扩展,并将可用存储和所需供给与分解的可控制性和可观察性函数相关联。所获得的关系用于基于平衡截断执行模型降阶,从而为原始系统生成耗散的降阶模型。包含一个二阶电路示例以说明结果。

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