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Optimal experimental design for mechanistic nonlinear dynamic models using multisine inputs: Application to a Diesel engine

机译:多正弦输入的机械非线性动力学模型的最佳实验设计:在柴油机上的应用

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For many applications first-principles nonlinear dynamic models are preferred by practitioners. Parameter estimation for these models is often a non-trivial and time consuming task. The use of optimally designed dynamic inputs can reduce the experimental burden and increase the accuracy of the estimated parameters. Traditionally, piecewise polynomial input sequences are exploited for this purpose. In contrast, this paper proposes optimal experiment design with the use of random phase multisine inputs, which are typically used for black box model identification. The main motivations are (i) the practical requirement that the inputs have to be concentrated around an operating point, and (ii) the fact that fast dynamics have to be included in the input profile without introducing a large number of discretization parameters. Moreover, multisines can be designed to excite exclusively a specific frequency band of interest. As an illustration, optimal inputs are designed and validated experimentally for estimating the parameters important for the dynamical behaviour of a Diesel engine air path model.
机译:对于许多应用,第一原理非线性动力学模型是从业者首选的。这些模型的参数估计通常是一项艰巨且耗时的任务。使用优化设计的动态输入可以减少实验负担并提高估计参数的准确性。传统上,分段多项式输入序列用于此目的。相反,本文提出了使用随机相位多正弦输入(通常用于黑匣子模型识别)的最佳实验设计。主要动机是(i)输入必须集中在工作点附近的实际要求,以及(ii)必须在不引入大量离散化参数的情况下将快速动态包含在输入配置文件中的事实。此外,可以将多正弦信号设计为仅激发特定的感兴趣频段。作为说明,设计并通过实验验证了最佳输入,以估计对于柴油机空气路径模型的动力学行为很重要的参数。

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