AbstractA fault tolerant control (FTC) design technique against actuator stuck faults is investigated using integral-type sliding mode control (ISMC) with application to spacecraft attitude maneuvering control system. The principle of the proposed FTC scheme is to design an integral-type sliding mode attitude controller using on-line parameter adaptive updating law to compensate for the effects of stuck actuators. This adaptive law also provides both the estimates of the system parameters and external disturbances such that a prior knowledge of the spacecraft inertia or boundedness of disturbances is not required. Moreover, by including the integral feedback term, the designed controller can not only tolerate actuator stuck faults, but also...
For spacecraft attitude control system, we consider the aircraft's control surface deflection positi...
In this article, a novel finite-time attitude-tracking control scheme is proposed by using the presc...
This paper proposes an attitude tracking control for a rigid spacecraft that adapts to two types of ...
AbstractA fault tolerant control (FTC) design technique against actuator stuck faults is investigate...
Two fault-tolerant control (FTC) schemes for spacecraft attitude stabilization with external disturb...
Future spacecraft are expected to achieve highly accurate pointing, fast slewing from large initial ...
This paper focuses on the potential actuator failures of spacecraft in practical engineering applica...
An actuator fault-tolerant attitude control was reported. Two kinds of spacecraft actuator failures ...
Spacecraft play an increasingly important role in various areas of modern society, such as telecommu...
In this paper, a novel adaptive dynamic sliding mode (ADSM) fault-tolerant control (FTC) methodology...
Liu, Xiaoping/0000-0003-1808-4233; Jing, Yuan Wei/0000-0002-3347-2448This paper provides a new solut...
In this article, a neural integral sliding mode control strategy is presented for the finite-time fa...
An intelligent failure-tolerant approach is proposed for attitude tracking control of a rigid spacec...
Published version of an article in the journal: Mathematical Problems in Engineering. Also available...
This paper designs an active fault-tolerant control system for spacecraft attitude control in the pr...
For spacecraft attitude control system, we consider the aircraft's control surface deflection positi...
In this article, a novel finite-time attitude-tracking control scheme is proposed by using the presc...
This paper proposes an attitude tracking control for a rigid spacecraft that adapts to two types of ...
AbstractA fault tolerant control (FTC) design technique against actuator stuck faults is investigate...
Two fault-tolerant control (FTC) schemes for spacecraft attitude stabilization with external disturb...
Future spacecraft are expected to achieve highly accurate pointing, fast slewing from large initial ...
This paper focuses on the potential actuator failures of spacecraft in practical engineering applica...
An actuator fault-tolerant attitude control was reported. Two kinds of spacecraft actuator failures ...
Spacecraft play an increasingly important role in various areas of modern society, such as telecommu...
In this paper, a novel adaptive dynamic sliding mode (ADSM) fault-tolerant control (FTC) methodology...
Liu, Xiaoping/0000-0003-1808-4233; Jing, Yuan Wei/0000-0002-3347-2448This paper provides a new solut...
In this article, a neural integral sliding mode control strategy is presented for the finite-time fa...
An intelligent failure-tolerant approach is proposed for attitude tracking control of a rigid spacec...
Published version of an article in the journal: Mathematical Problems in Engineering. Also available...
This paper designs an active fault-tolerant control system for spacecraft attitude control in the pr...
For spacecraft attitude control system, we consider the aircraft's control surface deflection positi...
In this article, a novel finite-time attitude-tracking control scheme is proposed by using the presc...
This paper proposes an attitude tracking control for a rigid spacecraft that adapts to two types of ...