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On-line Monitoring and Fault Diagnosis of Air Gap and Stator Bar Vibration of Large-scale Hydro-generator by Using RBF

机译:用RBF通过RBF对大规模水力发电机气隙和定子杆振动的在线监测和故障诊断

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In this paper, the mathematics' model of RBF Neural Network that is special cases of FLANN is investigated. FLANN is that unknown functions are expressed by a combination of a series of base functions (pi(x) that consist of input variables. The 1# generator air gap and stator bar vibration of Ge Heyan Hydropower Station are measured on-line using the ZOOM system and SBV system of VibroSystem Inc. The stating graphs of ZOOM system and SBV system include Signature, Pole, Sample, and Trend pictures of generator air gap and stator bar vibration. The fault trees of generator including 15 fault eigenvectors are generated. The simulation of RBF is launched by function simurb. The training of RBF network is earned on with two functions: solverbe or solverb.
机译:本文研究了佛罗兰省特殊情况的RBF神经网络的数学模型。 Flann是未知功能是由一系列基本功能的组合表示(PI(x),由输入变量组成。GE HeyaN水电站的1#发电机气隙和定子杆振动使用变焦测量在线测量 Vibrosystem Inc.的系统和SBV系统。变焦系统和SBV系统的说明图包括发电机气隙和定子杆振动的签名,杆,样本和趋势图片。产生包括15个故障特征向量的发电机的故障树。模拟 RBF是由函数模拟推出的。RBF网络的培训有两个功能:Solverbe或Solverb。

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