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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Nonparametric Tracking of the Time-Varying Dynamics of Weakly Nonlinear Periodically Time-Varying Systems Using Periodic Inputs
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Nonparametric Tracking of the Time-Varying Dynamics of Weakly Nonlinear Periodically Time-Varying Systems Using Periodic Inputs

机译:使用周期输入的弱非线性周期时变系统的时变动力学的非参数跟踪

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摘要

In this paper, a nonparametric estimation procedure is presented in order to track the evolution of the dynamics of continuous (discrete)-time (non)-linear periodically time-varying (PTV) systems. Multisine excitations are applied to a PTV system since this kind of excitation signals allows us to discriminate between the noise and the nonlinear distortion from a single experiment. The key idea is that a linear PTV system can be decomposed into an (in)finite series of transfer functions, the so-called harmonic transfer functions (HTFs). Moreover, a systematic methodology to determine the number of significant branches is provided in this paper as well. Making use of the local polynomial approximation, a method that was recently developed for multivariable (non)-linear time invariant systems, the HTFs, together with their uncertainties embedded in an output-error framework, are then obtained from only one single experiment. From these nonparametric estimates, the evolution of the dynamics, described by the instantaneous transfer function (ITF), can then be achieved in a simple way. The effectiveness of the identification scheme will be first illustrated through simulations before a real system will be identified. Eventually, the methodology is applied to a weakly nonlinear PTV electronic circuit.
机译:在本文中,提出了一种非参数估计程序,以跟踪连续(离散)时间(非线性)周期性周期性时变(PTV)系统的动力学演化。多正弦激励应用于PTV系统,因为这种激励信号使我们能够从单个实验中区分出噪声和非线性失真。关键思想是线性PTV系统可以分解为一系列有限的传递函数,即所谓的谐波传递函数(HTF)。此外,本文还提供了一种确定重要分支数量的系统方法。利用局部多项式逼近法,最近仅针对一个变量就获得了多变量(非线性)时不变系统的一种方法,即HTF及其不确定性嵌入输出误差框架中。从这些非参数估计中,可以用一种简单的方法来实现由瞬时传递函数(ITF)描述的动力学演化。在确定实际系统之前,将首先通过仿真说明识别方案的有效性。最终,该方法被应用于弱非线性PTV电子电路。

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