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An application of system identification in metrology

机译:系统识别在计量学中的应用

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Metrology is advancing by development of new measurement techniques and corresponding hardware. A given measurement technique, however, has fundamental speed and precision limitations. In order to overcome the hardware limitations, we develop signal processing methods based on the prior knowledge that the measurement process dynamics is linear time-invariant. Our approach is to model the measurement process as a step response of a dynamical system, where the input step level is the quantity of interest. The solution proposed is an algorithm that does real-time processing of the sensor's measurements. It is shown that when the measurement process dynamics is known, the input estimation problem is equivalent to state estimation. Otherwise, the input estimation problem can be solved as a system identification problem. The main underlying assumption is that the measured quantity is constant and the measurement process is a low-order linear time-invariant system. The methods are validated and compared on applications of temperature and weight measurement.
机译:通过开发新的测量技术和相应的硬件,计量学得到了发展。但是,给定的测量技术具有基本的速度和精度限制。为了克服硬件限制,我们基于测量过程动力学是线性时不变的先验知识开发了信号处理方法。我们的方法是将测量过程建模为动力系统的阶跃响应,其中输入阶跃水平为感兴趣的数量。提出的解决方案是一种对传感器的测量值进行实时处理的算法。结果表明,当测量过程动力学已知时,输入估计问题等同于状态估计。否则,可以将输入估计问题解决为系统识别问题。主要的基本假设是,被测量是恒定的,并且测量过程是低阶线性时不变系统。这些方法在温度和重量测量的应用中得到了验证和比较。

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