This work presents the estimation of the parameters of an experimental setup, which is modeled as a system with three degrees of freedom, composed by a shaft, two rotors, and a DC motor, that emulates a drilling process. A Bayesian technique is used in the estimation process, to take into account the uncertainties and variabilities intrinsic to the measurement taken, which are modeled as a noise of Gaussian nature. With this procedure it is expected to check the reliability of the nominal values of the physical parameters of the test rig. An estimation process assuming that nine parameters of the experimental apparatus are unknown is conducted, and the results show that for some quantities the relative deviation with respect to the nominal values is very high. This deviation evidentiates a strong deficiency in the mathematical model used to describe the dynamic behavior of the experimental apparatus.
翻译:这项工作展示了对实验装置参数的估计,实验装置的模型是三度自由的系统,由一条轴、两台转子和一个模拟钻探过程的DC马达组成。在估计过程中使用了一种贝叶斯技术,以考虑到测量所固有的不确定性和变异性,这种技术以高斯自然的噪音为模型。根据这个程序,预计它将检查测试装置物理参数的名义值的可靠性。假设实验装置的九个参数未知,进行估计过程,结果显示某些数量相对于名义值的相对偏差非常高。这种偏差表明用来描述实验装置动态行为的数学模型存在严重缺陷。