Title :
A Worst Case Benchmark Problem to Validate Voter Logic
Author :
Kumar, N. Ashok ; Jeppu, Yogananda V. ; Chandramouli, K.
Author_Institution :
Sch. of Inf. Technol. & Eng., VIT Univ., Vellore, India
fDate :
Feb. 27 2014-March 1 2014
Abstract :
Aircraft flight control systems consist of primary controls and secondary control systems. Primary flight control systems provide the operation for the airplane´s elevator, aileron rudder and horizontal stabilizer trim actuator. Simulink models are used to design and simulate such systems. Sensor failures happen very often and the control system is designed to be robust against sensor failures. Voting logic is used to select a good sensor in a multi sensor environment. The design of voter logic requires scenarios which provide catastrophic disastrous situations to study their effectiveness. This research proposes a strategy that finds a worst case scenario for an autopilot namely using an orthogonal array based algorithm and Design of Experiments (DOE). The voter logic is tested against such a situation and proves to improve the situation drastically.
Keywords :
actuators; aerospace simulation; aircraft control; control system synthesis; design of experiments; failure analysis; lifts; redundancy; sensor fusion; DOE; Simulink model; aileron rudder; aircraft flight control system; airplane elevator; catastrophic disastrous situation; control system design; design of experiment; horizontal stabilizer trim actuator; multisensor environment; orthogonal array based algorithm; primary flight control system; secondary control systems; sensor failure; sensor selection; voter logic design; worst case benchmark problem; Aerospace control; Airplanes; Arrays; Atmospheric modeling; Computational modeling; Control systems; Aerospace Simulation; Autopilot (AP); Control Law (CLAW); Design of Experiment; Mathematical Model;
Conference_Titel :
Computing and Communication Technologies (WCCCT), 2014 World Congress on
Conference_Location :
Trichirappalli
Print_ISBN :
978-1-4799-2876-7
DOI :
10.1109/WCCCT.2014.17