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A receding horizon D-optimization approach for model identification-oriented input design and application in combustion engines

机译:一种面向模型识别的输入设计与应用中的后视D优化方法

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摘要

In this paper, a receding horizon D-optimization approach for model identification-oriented input design is proposed, and a practical application is demonstrated for internal combustion engines. The proposed approach consists of a recursive parameter identification algorithm and an input signal design algorithm; where the latter provides D-optimal excitation signal for the adaptation of the parameter estimation in the following identification phase. The D-optimization algorithm is constructed with the Continuation/GMRES method, which provides an approximate solution according to the current parameter of the model. To validate effectiveness and feasibility of the proposed approach, testing results applying the proposed approach to an internal combustion engine are demonstrated and conducted on a full-scale engine test bench.
机译:本文提出了一种面向模型识别的输入设计的渐进式水平D优化方法,并在内燃机中得到了实际应用。该方法包括递归参数识别算法和输入信号设计算法。其中,后者在随后的识别阶段为参数估计的调整提供了D最优激励信号。使用Continuation / GMRES方法构造D优化算法,该算法根据模型的当前参数提供近似解决方案。为了验证所提出的方法的有效性和可行性,演示了将所提出的方法应用于内燃机的测试结果,并在全面的发动机测试台上进行了测试。

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