Paper
23 January 2017 Blockage fault diagnosis method of combine harvester based on BPNN and DS evidence theory
Jin Chen, Kai Xu, Yifan Wang, Kun Wang, Shuqing Wang
Author Affiliations +
Proceedings Volume 10322, Seventh International Conference on Electronics and Information Engineering; 103224C (2017) https://doi.org/10.1117/12.2265524
Event: Seventh International Conference on Electronics and Information Engineering, 2016, Nanjing, China
Abstract
According to the complexity and the lack of intelligent analysis method of combine harvester blockage fault , this paper puts forward a method , based on the combination of BP neural network (BPNN)and DS evidence theory , for combine harvester blockage fault diagnosis. Choosing cutting table auger, conveyer trough, threshing cylinder and grain conveying auger as the study, this paper divides the condition of combine harvester into four categories, namely, normal, slightly blocking, blockage, severe blockage, which being as an identification framework for DS evidence theory. BP neural network is used for analysing speed information of monitoring points and distributing basic probability for each proposition in the identification framework. Dempster combination rule converged information at different time to obtain diagnostic results.Test results show that this method can timely and accurately judge the work state of combine harvester, the blocking fault warning time will be increased to 2 seconds and the success probability of blocking fault warning reach more than 90%.
© (2017) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Jin Chen, Kai Xu, Yifan Wang, Kun Wang, and Shuqing Wang "Blockage fault diagnosis method of combine harvester based on BPNN and DS evidence theory", Proc. SPIE 10322, Seventh International Conference on Electronics and Information Engineering, 103224C (23 January 2017); https://doi.org/10.1117/12.2265524
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KEYWORDS
Neural networks

Neurons

Probability theory

Algorithms

Evolutionary algorithms

Algorithm development

Sensors

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