TY - GEN
T1 - A probabilistic method for certification of analytically redundant systems
AU - Hu, Bin
AU - Seiler, Peter
PY - 2013
Y1 - 2013
N2 - Analytical fault detection algorithms have the potential to reduce the size, power and weight of fault tolerant safety-critical aerospace systems. One obstacle is the need for appropriate tools to certify the reliability of these systems. To complement high fidelity Monte Carlo simulations, this paper presents a theoretical method to assess the probabilistic performance of analytically redundant systems. Specifically, this paper considers a dual-redundant fault tolerant system that uses a fault detection algorithm to switch between the hardware components. The exact system failure rate per hour is computed using the law of total probability. The analysis assumes known failure models for the hardware components as well as knowledge of the probabilistic performance of the fault detection logic. A numerical example is provided to demonstrate the proposed method.
AB - Analytical fault detection algorithms have the potential to reduce the size, power and weight of fault tolerant safety-critical aerospace systems. One obstacle is the need for appropriate tools to certify the reliability of these systems. To complement high fidelity Monte Carlo simulations, this paper presents a theoretical method to assess the probabilistic performance of analytically redundant systems. Specifically, this paper considers a dual-redundant fault tolerant system that uses a fault detection algorithm to switch between the hardware components. The exact system failure rate per hour is computed using the law of total probability. The analysis assumes known failure models for the hardware components as well as knowledge of the probabilistic performance of the fault detection logic. A numerical example is provided to demonstrate the proposed method.
UR - http://www.scopus.com/inward/record.url?scp=84897722513&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=84897722513&partnerID=8YFLogxK
U2 - 10.1109/SysTol.2013.6693814
DO - 10.1109/SysTol.2013.6693814
M3 - Conference contribution
AN - SCOPUS:84897722513
SN - 9781479928552
T3 - Conference on Control and Fault-Tolerant Systems, SysTol
SP - 13
EP - 18
BT - 2nd International Conference on Control and Fault-Tolerant Systems, SysTol 2013
T2 - 2nd International Conference on Control and Fault-Tolerant Systems, SysTol 2013
Y2 - 9 October 2013 through 11 October 2013
ER -