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飞行器电子系统的多故障诊断算法研究
引用本文:张毅,杨秀霞.飞行器电子系统的多故障诊断算法研究[J].系统工程与电子技术,2006,28(5):788-790.
作者姓名:张毅  杨秀霞
作者单位:海军航空工程学院控制工程系,山东,烟台,264001
摘    要:飞行器电子系统的多故障诊断问题可看作对各部件的故障概率求解的组合优化问题,在建立了系统故障诊断的概率因果模型基础上,运用遗传算法对飞行器电子设备各部件进行了故障定位。并针对遗传算法易陷入局优的缺点,提出了改进方法,将能量熵的选择加入到遗传算法的退火选择中,以充分地探索解空间,保持种群的多样性。试验结果表明,改进遗传算法能快速确定全局最优值,较好地解决了故障诊断领域中多故障关联的问题。

关 键 词:飞行器  电子系统  多故障诊断  遗传算法
文章编号:1001-506X(2006)05-0788-03
修稿时间:2005年4月20日

Study of multiple fault diagnosis algorithm for aircraft electronic system
ZHANG Yi,YANG Xiu-xia.Study of multiple fault diagnosis algorithm for aircraft electronic system[J].System Engineering and Electronics,2006,28(5):788-790.
Authors:ZHANG Yi  YANG Xiu-xia
Abstract:The multiple fault diagnosis for aircraft electronic system can be taken as a combination optimization problem to calculate the fault probability of every part.Based on building the probabilistic causal model for fault diagnosis,genetic algorithm(GA) is applied to aircraft electronic system fault location successfully.For GA is likely to fall into local optima,an improved GA is proposed.The energy-entropy selection is used in GA annealing selection,which can explore the solution space fully and keep the population diversity.The experimental results show that the improved GA is effective to determine the global optimal value quickly and solve the multiple-fault correlation problem in fault diagnosis.
Keywords:aircraft  electronic system  multiple fault diagnosis  genetic algorithm
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