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Approximate system identification using system based orthonormal functions

机译:基于系统的正交功能近似系统识别

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The problem of approximate system identification is addressed. The use of prefilters that are based on a special class of system based orthonormal functions is proposed. It is shown that every linear finite dimensional time invariant discrete time system gives rise to two sets of orthonormal functions and that both can be used as a basis of the space l/sub 2/. The derivation of these functions, to be considered as a generalization of the Laguerre polynomials, is based on the properties of discrete time all-pass functions. Transformation of the input/output signals of a linear system in terms of these functions leads to new system descriptions, and new possibilities arise for the construction of approximate identification methods, with favorable properties allowing the use of simple estimation techniques and a systematic choice of prefilters.
机译:解决了近似系统识别的问题。提出了基于特殊类型的基于系统的正常功能的前滤器的使用。结果表明,每个线性有限尺寸不变的离散时间系统产生两组正交功能,并且两者都可以用作空间L / SUB 2 /的基础。这些函数的推导,被认为是Laguerre多项式的概括,基于离散时间全通过功能的性质。在这些功能方面的线性系统的输入/输出信号的转换导致新的系统描述,并且出现了近似识别方法的构造,具有良好的估计技术以及系统选择的预滤器的有利性能。

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