Abstract
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Article Information:
LMI-Based Method of Robust Fault Detection H∞ Filter for Anti-Pinch of Pure Electric Vehicles
Xiaogang Yu, Changyun Miao, Haijing Yang, Hongqiang Li, Fangshu Liu, Yongqiang Meng and Hong Chen
Corresponding Author: Hongqiang Li
Submitted: April 03, 2012
Accepted: April 17, 2012
Published: August 01, 2012 |
Abstract:
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In order to effectively solve the risk of safety on power window, this study introduces the LMI-based
method of designing robust fault detection H∞ filter for anti-pinch window control system. For detecting the
pinched condition, the pinch torque is considered as a fault to design a residual generator. By comparing the
residual signal with the pre-designed threshold, the occurrence of pinch can be detected. The main contribution
consisted of the formulation of the multi-objective optimization H∞ and H- problem as H∞ optimization problem
by using the residual error instead of residual. The solution of the optimization problem is solved via LMI
technique. Based on MATLAB, the results show that the algorithm can detect the fault after it occurs 70 ms.
In addition, simulation results show that the proposed algorithm has high sensitivity to fault and strong
robustness to uncertainties.
Key words: Anti-pinch window, H∞ filter, LMI, pure electric vehicle, robust fault detection, ,
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Cite this Reference:
Xiaogang Yu, Changyun Miao, Haijing Yang, Hongqiang Li, Fangshu Liu, Yongqiang Meng and Hong Chen, . LMI-Based Method of Robust Fault Detection H∞ Filter for Anti-Pinch of Pure Electric Vehicles. Research Journal of Applied Sciences, Engineering and Technology, (15): 2555-2563.
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ISSN (Online): 2040-7467
ISSN (Print): 2040-7459 |
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