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动态数据流能够为维修工作提供强大的辅助作用,维修人员据此能够对各类传感器产生的相关动态数据(输进、输出讯号期间)进行快速解读,可有效弥补传统评判、维修汽车产生各类故障过程以维修经验为主的方式的不足。主要对基于RBF和数据流的汽车电控发动机故障诊断过程进行了研究,在分析汽车数据流的基础上,介绍了运用RBF和数据流诊断电控发动机故障的原理及过程,进一步提高借助数据流开展诊断与评判相关故障工作的效率及准确率,以期为完善发动机故障的检测过程提供参考。
Abstract:Dynamic data flow can provide a powerful auxiliary function for maintenance work. Maintenance personnel can quickly interpret related dynamic data(during input and output signals) generated by various sensors, which can effectively compensate for traditional evaluation and maintenance of automobile production. This paper mainly studies the fault diagnosis process of automobile electronically controlled engine based on RBF and data flow. Based on the analysis of automobile data flow, it introduces the application of RBF and data flow, diagnoses electronically controlled engine failure, and further improves the efficiency and accuracy of the diagnosis and evaluation of related faults by means of data flow, in order to provide reference for improving the detection process of engine faults.
[1] 董军,何嘉伟,邓雄章,等.汽车发动机缸孔珩磨表面织构预测建模与工艺参数优化[J].组合机床与自动化加工技术,2018(9):107-110.
[2] 阿依古丽·木沙于甫,吐尔洪江·吐拉克.La变质处理对汽车发动机用ZL205合金组织和力学性能的影响[J].热加工工艺,2018(3):107-111.
[3] 史俊涛.由故障案例引发对当代汽车电控发动机系统故障诊断及维修技术的探索[J].时代汽车,2019(6):168-169.
[4] Vrac Damir S,Sidjanin Leposava P,Kovac Pavel P,et al .The influence of honing process parameters on surface quality,productivity,cutting angle and coefficients of friction[J].Industrial Lubrication and Tribology.2016 (2):77-83.
[5] Fuzhou Feng,Aiwei Si,Hongxing Zhang.Research on Fault Diagnosis of Diesel Engine Based on Bispectrum Analysis and Genetic Neural Network[J].Procedia Engineering,2016(3):2454-2458.
[6] 李兆鹏,祖炳洁.数据流分析在电控发动机故障诊断中的应用研究[J].农业装备与车辆工程,2017(7):97-100.
[7] 寇祖涛.汽车电控发动机系统故障诊断与维修技术分析[J].科技创新与应用,2017(13):126-127.
[8] 祁平.故障代码分析和数据流分析在电控发动机故障诊断中的应用[J].内燃机与配件,2017(8):103-104.
[9] 刘金良.数据流分析在汽车电控发动机故障诊断中的应用分析[J].时代汽车,2019(3):168-169.
基本信息:
中图分类号:U472
引用信息:
[1]麦鹏.基于RBF和数据流的汽车电控发动机故障诊断装置研究[J].微型电脑应用,2020,36(07):45-48.
基金信息:
校级科学研究项目(2016KJ024)
2020-07-20
2020-07-20