TY - GEN
T1 - A design of simulation and analysis platform of BIT false alarm considering stochastic characteristics
AU - Shi, Junyou
AU - An, Weiran
AU - Liu, Kan
N1 - Publisher Copyright:
© 2014 IEEE.
PY - 2014/12/16
Y1 - 2014/12/16
N2 - Base on a comprehensive analysis of causes and classification of BIT false alarm, the stochastic characteristics mechanism of BIT false alarm is summarized, the parameters for BIT false alarm assessment is proposed, and the breakthrough of the method of BIT false alarm caused by which the noise analog and the research of BIT modeling and simulation methods considering stochastic characteristics. Therefore, the design of interface profile of BIT false alarm considering stochastic characteristics is completed. According to the methods of simulation, modeling and assessment of BIT false alarm considering stochastic characteristics, the simulation platform of BIT false alarm randomness is designed, combined with typical BIT false alarm circuit simulation cases in addition to provide technical support to apply for the practical application of engineering tools According to the existing simulation analysis of BIT false alarm circuit, considering the description of randomness factors and stochastic characteristics considering interference, study the BIT detection threshold randomness modeling, the methods of simulation considering the randomness of BIT, the design of false alarm simulation profile considering stochastic characteristics are achieved. Moreover, the process of working on the simulation platform is completed into designing framework and the functional modules in accordance with completing the design of input and output data structure, and the overall algorithm of simulation platform, through the communication interface of Matlab, Orcad and Labview joint simulation to complete the final design of each function, and the randomness of BIT false alarm.
AB - Base on a comprehensive analysis of causes and classification of BIT false alarm, the stochastic characteristics mechanism of BIT false alarm is summarized, the parameters for BIT false alarm assessment is proposed, and the breakthrough of the method of BIT false alarm caused by which the noise analog and the research of BIT modeling and simulation methods considering stochastic characteristics. Therefore, the design of interface profile of BIT false alarm considering stochastic characteristics is completed. According to the methods of simulation, modeling and assessment of BIT false alarm considering stochastic characteristics, the simulation platform of BIT false alarm randomness is designed, combined with typical BIT false alarm circuit simulation cases in addition to provide technical support to apply for the practical application of engineering tools According to the existing simulation analysis of BIT false alarm circuit, considering the description of randomness factors and stochastic characteristics considering interference, study the BIT detection threshold randomness modeling, the methods of simulation considering the randomness of BIT, the design of false alarm simulation profile considering stochastic characteristics are achieved. Moreover, the process of working on the simulation platform is completed into designing framework and the functional modules in accordance with completing the design of input and output data structure, and the overall algorithm of simulation platform, through the communication interface of Matlab, Orcad and Labview joint simulation to complete the final design of each function, and the randomness of BIT false alarm.
KW - BIT(Built-in Test)
KW - False Alarm
KW - Simulation
KW - Stochastic Characteristic
UR - https://www.scopus.com/pages/publications/84943150547
U2 - 10.1109/PHM.2014.6988214
DO - 10.1109/PHM.2014.6988214
M3 - 会议稿件
AN - SCOPUS:84943150547
T3 - Proceedings of 2014 Prognostics and System Health Management Conference, PHM 2014
SP - 456
EP - 459
BT - Proceedings of 2014 Prognostics and System Health Management Conference, PHM 2014
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2014 Prognostics and System Health Management Conference, PHM 2014
Y2 - 24 August 2014 through 27 August 2014
ER -