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Rotor balancing using high breakdown-point and bounded-influence estimators

机译:使用高故障点和有界影响估计器进行转子平衡

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摘要

In industrial field, one of the most important practical problems of rotating machinery concerns rotor balancing. Many different methods are used for rotor balancing. Traditional influence coefficient method is often employed along with weighted least squares in order to reduce vibration amplitude, typically at selected rotating speeds like critical or operating ones. Usually the selection of the weights of the least-squares algorithm is manually made by a skilled operator that can decide in which speed range the vibration reduction is more effective. Several methods have been proposed in order to avoid operator's arbitrariness and an automatic procedure based on robust regression is introduced in this paper. In particular, the analysis is focused on high breakdown-point and bounded-influence estimators. Theoretical aspects and properties of these methods are investigated. The effectiveness and robustness of the proposed balancing procedure are shown by means of an experimental case using a test-rig.
机译:在工业领域,旋转机械最重要的实际问题之一是转子平衡。许多不同的方法用于转子平衡。通常会采用传统的影响系数方法以及加权最小二乘法来减小振动幅度,通常在选定的转速(如临界转速或工作转速)下才能减小振动幅度。通常,最小二乘算法权重的选择是由熟练的操作员手动进行的,该操作员可以决定减振在哪个速度范围内更有效。为了避免操作员的随意性,提出了几种方法,并介绍了一种基于鲁棒回归的自动过程。尤其是,分析着重于高故障点和有影响力的估计量。研究了这些方法的理论方面和性质。所提出的平衡程序的有效性和鲁棒性通过使用试验台的实验案例得以展示。

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