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Techniques for Characterising Vibration Inputs to Structures in Multiple Source Situations

机译:多源情况下表征结构振动输入的技术

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Practical techniques of characterising unknown dynamic inputs to structures rely on accurate measurements of the response of the system and the application of inverse techniques to identify the different forces and moments applied at the interfaces between the sources and the receiving structure. The sources may be the result of several generating mechanisms contained within a single mechanical unit linked to the structure or the combination of several different components, that are connected independently. This paper discusses some aspects of methods that may be used to separate and evaluate the characteristic force inputs generated by a specific source at the structure interface in a multiple source situation. Inverse methods of force identification are linked with the signals from reference transducers to reduce the effects of interference from secondary sources. It is shown that different types of estimator produce different types of result if signal conditioning is applied to the inverse method. The application of these techniques is illustrated by experiments conducted on a test bench intended for electric motors. The aim of the experiments was to test different ways of reducing errors in identifying the force inputs generated by the motor due to the vibrations of the generator used as a brake on the test bench.
机译:表征结构的未知动态输入的实用技术依赖于对系统响应的准确测量以及逆向技术的应用,以识别在源和接收结构之间的界面处施加的不同力和力矩。源可能是包含在单个机械单元内的多个生成机构的结果,该单个机械单元链接到该结构,或者是多个独立连接的不同组件的组合。本文讨论了在多源情况下可用于分离和评估由特定源在结构界面处生成的特征力输入的方法的某些方面。反作用力识别方法与来自参考换能器的信号相关联,以减少来自次级源的干扰的影响。结果表明,如果将信号调节应用于逆方法,则不同类型的估计器会产生不同类型的结果。这些技术的应用通过在旨在用于电动机的测试台上进行的实验来说明。实验的目的是测试各种减少误差的方法,这些误差可用来识别由于测试台上用作制动器的发电机的振动而产生的电机力输入。

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