Title :
FINDER, a system providing complex decision support for commercial transport replanning operations
Author :
Bittermann, Vincent ; Deker, Guy ; Sassus, Pierre ; Mielnik, Jean-Christophe ; Jud, Jean-Marie
Author_Institution :
Commercial Avionics Div., SEXTANT Avionique, Velizy, France
fDate :
3/1/1994 12:00:00 AM
Abstract :
Decision-aid systems, likely to appear in future aircraft generations, could play a central role in the cockpit thanks to the broad spectrum of functionalities and decision support facilities they will offer to the crew. As part of such systems, the exploratory FINDER mock-up is a knowledge-based system (KBS) designed to help crew members continually optimize their flight plan by suggesting solutions considering exhaustive information related to flight context, either on pilot request or upon external information occurrence. The successful evaluation by AIR FRANCE pilots of that first mock-up dedicated to diversion procedure on pilot request has led to the current development of an enhanced system with nominal Enroute operations and real-time capabilities. Nominal Enroute operations concern the optimization with respect to an evolutive constraining or favouring environment (due to weather, traffic or regulated areas, ETOPS constraints). This study paves the way for a future Flight Assistant System concept which is already under investigation and may take place in SEXTANT Avionique´s future development steps.<>
Keywords :
aerospace computer control; aircraft control; computerised navigation; decision support systems; knowledge based systems; optimisation; planning (artificial intelligence); AIR FRANCE pilots; ETOPS constraints; FINDER; FINDER mock-up; Flight Assistant System; KBS; SEXTANT; cockpit; commercial transport replanning operations; complex decision support; decision support facilities; diversion procedure; flight plan; knowledge-based system; nominal Enroute operations; optimization; real-time; regulated areas; traffic; weather; Aerospace electronics; Air traffic control; Aircraft; Artificial intelligence; Automation; Certification; Constraint optimization; Design optimization; Knowledge based systems; Real time systems;
Journal_Title :
Aerospace and Electronic Systems Magazine, IEEE