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On a method for finding position and orientation of accelerometers from their signals

机译:一种从加速度计信号中查找加速度计位置和方向的方法

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摘要

In many experimental structural dynamics applications where accelerometers are used, it is important to know their position and orientation. The typical approaches to determine this are time-consuming and can require additional costly equipment. The study presents a method that can retrieve this information directly from the accelerometers' readings, under the assumption that the object under test can move as a rigid body. To some degree, this assumption is satisfied in some practical applications, such as experimental modal analysis, where free-free boundary conditions are often assumed, and the test object can move as a rigid body within a constrained range. However, the presented method is not applicable for test objects with fixed supports, and cannot be used in, for example, many civil engineering applications. The paper introduces the method, discusses its applicability and constraints, demonstrates the method on a case study and provides the estimations of the method's precision. The study also compares the method with the analogous accelerometer arrays self-calibration method, which was developed for different application areas.
机译:在许多使用加速度计的实验性结构动力学应用中,了解其位置和方向很重要。确定这种情况的典型方法非常耗时,并且可能需要其他昂贵的设备。这项研究提出了一种方法,该方法可以假设被测物体可以像刚体一样运动,可以直接从加速度计的读数中检索这些信息。在某种程度上,这个假设在某些实际应用中是可以满足的,例如实验模态分析,其中通常假设自由边界条件,并且测试对象可以在约束范围内作为刚体移动。然而,提出的方法不适用于具有固定支撑的测试对象,并且不能用于例如许多土木工程应用中。本文介绍了该方法,讨论了其适用性和约束条件,并通过案例研究对该方法进行了说明,并提供了对该方法精度的估计。研究还将该方法与针对不同应用领域开发的类似加速度计阵列自校准方法进行了比较。

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