DocumentCode :
2194879
Title :
Closed-loop HIRF experiments performed on a fault tolerant flight control computer
Author :
Belcastro, Celeste M.
Author_Institution :
NASA Langley Res. Center, Hampton, VA, USA
Volume :
1
fYear :
1997
fDate :
26-30 Oct 1997
Firstpage :
4.1
Abstract :
Closed-loop HIRF experiments were performed on a fault tolerant flight control computer (FCC) at the NASA Langley Research Center. The FCC used in the experiments was a quad-redundant flight control computer executing B737 Autoland control laws. The FCC was placed in one of the mode-stirred reverberation chambers in the HIRF Laboratory and interfaced to a computer simulation of the B737 flight dynamics, engines, sensors, actuators, and atmosphere in the Closed-Loop Systems Laboratory. Disturbances to the aircraft associated with wind gusts and turbulence were simulated during tests. Electrical isolation between the FCC under test and the simulation computer was achieved via a fiber optic interface for the analog and discrete signals. Closed-loop operation of the FCC enabled flight dynamics and atmospheric disturbances affecting the aircraft to be represented during tests. Upset was induced in the FCC as a result of exposure to HIRF, and the effect of upset on the simulated flight of the aircraft was observed and recorded. This paper presents a description of these closed-loop HIRF experiments, upset data obtained from the FCC during these experiments, and closed-loop effects on the simulated flight of the aircraft
Keywords :
aerodynamics; aerospace simulation; aircraft computers; aircraft control; digital simulation; electromagnetic interference; fault tolerant computing; reverberation chambers; B737 Autoland control laws; NASA Langley Research Center; closed-loop HIRF experiments; computer simulation; electrical isolation; fault tolerant flight control computer; fiber optic interface; flight dynamics; mode-stirred reverberation chambers; quad-redundant flight control computer; turbulence; upset data; wind gusts; Aerospace control; Aerospace simulation; Aircraft; Atmospheric modeling; Computational modeling; Computer simulation; FCC; Fault tolerance; Laboratories; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital Avionics Systems Conference, 1997. 16th DASC., AIAA/IEEE
Conference_Location :
Irvine, CA
Print_ISBN :
0-7803-4150-3
Type :
conf
DOI :
10.1109/DASC.1997.635062
Filename :
635062
Link To Document :
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