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Signal Estimation for Vehicle Body Accelerations Using Piecewise Linear System Identification in the Frequency Domain

机译:基于频域分段线性系统识别的车身加速度信号估计

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摘要

In this work, we investigate a signal estimation problem which is common and critical for durability design of vehicle bodies. The relation between the frequency responses of accelerometers is the target to model so that the ones of easy-to-measure accelerometers can estimate the responses of hard-to-measure accelerometers. A piecewise linear frequency-domain identification method relying on finite impulse response (FIR) models is proposed and performed to tackle the nonlinearity issue in the signal estimation problems: first, the interesting frequency range is segmented into three subranges which are clearly identified by peak histograms of frequency signals. Then, FIR models which provide a satisfactory description of the system are constructed to estimate the frequency responses of the interesting signals at subranges, one for each. The performance of the proposed approach is validated by using real-world data under multiple working conditions. The results show that the proposed method has a good estimation accuracy, and it brings the benefit that the number of accelerometers can be significantly reduced during the durability design of vehicle bodies.
机译:在这项工作中,我们研究了一种信号估计问题,该问题对于车身耐久性设计具有常见性和关键性。加速度计的频率响应之间的关系是建模的目标,以便易于测量的加速度计可以估计难以测量的加速度计的响应。针对信号估计问题中的非线性问题,提出并实施了一种基于有限脉冲响应(FIR)模型的分段线性频域辨识方法:首先,将感兴趣的频率范围分割为3个子范围,通过频率信号的峰值直方图进行清晰识别。然后,构建了对系统进行满意描述的FIR模型,以估计子范围内感兴趣信号的频率响应,每个子范围一个。利用真实数据在多种工况下验证了所提方法的性能。结果表明,所提方法具有较好的估计精度,在车身耐久性设计过程中,加速度计数量可显著减少。

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