Articles liés à Aircraft Fault Tolerance:: A Biologically Inspired...

Aircraft Fault Tolerance:: A Biologically Inspired Immune Framework for Sub-System Failures - Couverture souple

Moncayo, Hever; Perhinschi, Mario

 
9783639357547: Aircraft Fault Tolerance:: A Biologically Inspired Immune Framework for Sub-System Failures

Synopsis

The capability to efficiently perform checkout, testing, and monitoring of aerospace vehicles, subsystems, and components during flight operations in the presence of uncertainties, nonlinearities, and component failures is a challenging problem. This requires intelligent systems with the ability to perform timely status determination, diagnostics, prognostics, and decision making as a key aspect to increase the safety of missions. This book describes the design, development, and flight-simulation testing of an integrated Artificial Immune System (AIS) for detection, identification, and evaluation of a wide variety of sensor, actuator, propulsion, and structural failures/damages including the prediction of the achievable states and other limitations on performance and handling qualities. The NASA IFCS F-15 research aircraft model is used and represents a supersonic fighter which include model following adaptive control laws based on non- linear dynamic inversion and artificial neural network augmentation. Flight simulation tests are described to analyze and demonstrate the performance of the immunity-based architecture.

Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.

Présentation de l'éditeur

The capability to efficiently perform checkout, testing, and monitoring of aerospace vehicles, subsystems, and components during flight operations in the presence of uncertainties, nonlinearities, and component failures is a challenging problem. This requires intelligent systems with the ability to perform timely status determination, diagnostics, prognostics, and decision making as a key aspect to increase the safety of missions. This book describes the design, development, and flight-simulation testing of an integrated Artificial Immune System (AIS) for detection, identification, and evaluation of a wide variety of sensor, actuator, propulsion, and structural failures/damages including the prediction of the achievable states and other limitations on performance and handling qualities. The NASA IFCS F-15 research aircraft model is used and represents a supersonic fighter which include model following adaptive control laws based on non- linear dynamic inversion and artificial neural network augmentation. Flight simulation tests are described to analyze and demonstrate the performance of the immunity-based architecture.

Biographie de l'auteur

Dr. Moncayo is a Post Doctoral Research fellow in the Mechanical and Aerospace Engineering Department at West Virginia University, USA. Dr. Perhinschi is an Associate Professor of MAE at WVU. Their main research activities are related to fault tolerant flight control systems and non-linear modeling and simulation of aerospace systems.

Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.