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基于区间二型神经模糊系统的轨道电路故障诊断
引用本文:王梓丞,张亚东,郭进,苏丽娜,杨璟,宋辞,李科宏.基于区间二型神经模糊系统的轨道电路故障诊断[J].西南交通大学学报,2021,56(1):190-196.
作者姓名:王梓丞  张亚东  郭进  苏丽娜  杨璟  宋辞  李科宏
基金项目:国家自然科学基金项目(51878566,51578457);国家重点研究发展计划(2016YFC0802201);四川省科技重点研发项目(2018GZ0360)
摘    要:针对目前铁路现场对轨道电路故障的判别仍然采用阈值法导致维护效率偏低的问题,提出将神经网络与模糊逻辑相结合,构建区间二型神经模糊系统(interval type-2 neural-fuzzy system,IT2NFS),通过诊断模型实现对轨道电路故障模式的智能识别.首先通过结构识别建立初步的网络结构,采用均匀设计方法生...

关 键 词:轨道电路  神经网络  模糊逻辑  智能诊断  均匀设计方法  递归奇异值分解
收稿时间:2018-11-13

Fault Diagnosis for Track Circuit Based on Interval Type-2 Neural-Fuzzy System
WANG Zicheng,ZHANG Yadong,GUO Jin,SU Lina,YANG Jing,SONG Ci,LI Kehong.Fault Diagnosis for Track Circuit Based on Interval Type-2 Neural-Fuzzy System[J].Journal of Southwest Jiaotong University,2021,56(1):190-196.
Authors:WANG Zicheng  ZHANG Yadong  GUO Jin  SU Lina  YANG Jing  SONG Ci  LI Kehong
Abstract:At present, the threshold method, despite its low efficiency, has still been used to identify the fault of track circuit on site. To handle this, an interval type-2 neural-fuzzy system (IT2NFS) was built by combining neural networks and fuzzy logic. Intelligent identification of failure modes was realized by constructing a diagnostic model. During the construction of the diagnostic model, a preliminary network structure was established through the structure identification. Uniform design method was used to generate the mean values of fuzzy sets. Then the standard deviations and initial consequent parameters were generated through performing a similarity test on training samples. At last, the optimized consequent parameters were obtained by recursive singular value decomposition to reduce the output error. For 8 common failures, a total of 9000 samples were collected from the test platform. Of them, 6300 samples were used for model training, the rest 2700 samples were used for testing. The test results show that when using the IT2NFS model for fault diagnosis, the recognition rate of each fault category was above 82%, the average correct rate was 90.9%, and the simulation time was only 10.59 s. 
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