In this article, a neural integral sliding mode control strategy is presented for the finite-time fault-tolerant attitude tracking of rigid spacecraft subject to unknown inertia and disturbances. First, an integral sliding mode controller was developed by originally constructing a novel integral sliding mode surface to avoid the singularity problem. Then, the neural network (NN) was embedded into the integral sliding mode controller to compensate the lumped uncertainty and replace the robust switching term. In this way, the chattering phenomenon was significantly suppressed. Particularly, the mechanism of indirect neural approximation was introduced through inequality relaxation. Benefiting from this design, only a single learning parameter...
Published version of an article in the journal: Abstract and Applied Analysis. Also available from t...
The problem of finite-time attitude-tracking control (ATC) for a rigid spacecraft subject to inertia...
An intelligent failure-tolerant approach is proposed for attitude tracking control of a rigid spacec...
In this article, a neural integral sliding mode control strategy is presented for the finite-time fa...
In this article, we develop attitude tracking control methods for spacecraft as rigid bodies against...
Published version of an article in the journal: Mathematical Problems in Engineering. Also available...
Liu, Xiaoping/0000-0003-1808-4233In this paper, the problem of finite-time attitude-tracking control...
In this paper, we focus on solving the problems of inertia-free attitude tracking control for spacec...
AbstractA fault tolerant control (FTC) design technique against actuator stuck faults is investigate...
This article investigates the attitude stabilization problem of a rigid spacecraft with actuator sat...
The problem of finite-time prescribed performance control (PPC) for spacecraft attitude maneuvering ...
Liu, Xiaoping/0000-0003-1808-4233; Jing, Yuan Wei/0000-0002-3347-2448This paper provides a new solut...
Published version of an article in the journal: Abstract and Applied Analysis. Also available from t...
The problem of finite-time attitude-tracking control (ATC) for a rigid spacecraft subject to inertia...
An intelligent failure-tolerant approach is proposed for attitude tracking control of a rigid spacec...
In this article, a neural integral sliding mode control strategy is presented for the finite-time fa...
In this article, we develop attitude tracking control methods for spacecraft as rigid bodies against...
Published version of an article in the journal: Mathematical Problems in Engineering. Also available...
Liu, Xiaoping/0000-0003-1808-4233In this paper, the problem of finite-time attitude-tracking control...
In this paper, we focus on solving the problems of inertia-free attitude tracking control for spacec...
AbstractA fault tolerant control (FTC) design technique against actuator stuck faults is investigate...
This article investigates the attitude stabilization problem of a rigid spacecraft with actuator sat...
The problem of finite-time prescribed performance control (PPC) for spacecraft attitude maneuvering ...
Liu, Xiaoping/0000-0003-1808-4233; Jing, Yuan Wei/0000-0002-3347-2448This paper provides a new solut...
Published version of an article in the journal: Abstract and Applied Analysis. Also available from t...
The problem of finite-time attitude-tracking control (ATC) for a rigid spacecraft subject to inertia...
An intelligent failure-tolerant approach is proposed for attitude tracking control of a rigid spacec...