Development of Kalman hybrid redundancy for sensor fault-tolerant of safety critical system

被引:0
作者
Kim, Man Ho
Lee, Suk
Lee, Kyung Chang
机构
关键词
Fault-tolerant; IAE (Integral of the Absolute magnitude of Error) performance index; Intelligent vehicle; Kalman filter; Kalman hybridredundancy; Predictive hybrid redundancy; Safety critical system;
D O I
10.5302/J.ICROS.2008.14.11.1180
中图分类号
学科分类号
摘要
As many systems depend on electronics, concern for fault tolerance is growing rapidly in the safety critical system such as intelligent vehicle. In order to make system fault tolerant, there has been a body of research mainly from aerospace field including predictive hybrid redundancy by Lee. Although the predictive hybrid redundancy has the fault tolerant mechanism to satisfy the fault tolerant requirement of safety crucial system such as x-by-wire system, it suffers form the variability of prediction performance according to the input feature of system. As an alternative to the prediction method of predictive hybrid redundancy for robust fault tolerant, Kalman prediction has attracted some attention because of its well-known and often-used with its structure called Kalman hybrid redundancy. In addition, several numerical simulation results are given where the Kalman hybrid redundancy outperforms with predictive smoothing voter.
引用
收藏
页码:1180 / 1188
页数:8
相关论文
共 31 条
[1]  
10, 7, pp. 649-657, (2004)
[2]  
Yi K.S., Chung J.T., Nonlinear Brake Control for vehicle CW/CA System, IEEE/ASME Transaction on Mechatronics, 6, 1, pp. 17-25, (2001)
[3]  
13, 6, pp. 596-602, (2007)
[4]  
Isermann R., Schwarz R., Stolzl S., Fault-tolerant drive-bywire systems, IEEE Control Systems Magazine, 22, 5, pp. 64-81, (2002)
[5]  
Sung H.K., Lee S.H., Bien Z., Design and implementation of a fault tolerant controller for EMS systems, Mechatronics, 15, 10, pp. 1253-1272, (2005)
[6]  
Garcia-Lapresta J.L., A general class of simple majority decision rules based on linguistic opinions, Information sciences, 176, 4, pp. 352-365, (2006)
[7]  
Goeva-Popstojanova K., Grnarov A., N version programming with majority voting decision: Dependability modeling and evaluation, Microprocessing and Microprogramming, 38, 1, pp. 811-818, (1993)
[8]  
Shabgahi L., Bass G., Bennett J.M., Efficient implementation of inexact majority and median voters, Electronics Letters, 36, 15, pp. 1326-1328, (2000)
[9]  
Krstic M.D., Stojcev M.K., Djordjevic G.L., Andrejic I.D., A mid-value select voter, Microelectronics and Reliability, 45, 3, pp. 733-738, (2005)
[10]  
Levitin G., Lisnianski A., Reliability optimization for weighted voting system, Reliability engineering & system safety, 71, 2, pp. 131-138, (2001)