A nonlinear suboptimal guidance law is presented in this paper for successful interception of ground targets by air-launched missiles and guided munitions. The main feature of this guidance law is that it accurately satisfies terminal impact angle constraints in both azimuth as well as elevation simultaneously. In addition, it is capable of hitting the target with high accuracy as well as minimizing the lateral acceleration demand. The guidance law is synthesized using recently developed model predictive static programming (MPSP). Performance of the proposed MPSP guidance is demonstrated using three-dimensional (3-D) nonlinear engagement dynamics by considering stationary, moving, and maneuvering targets. Effectiveness of the proposed guida...
A partial integrated guidance and control design for an interception with terminal impact angle cons...
Combining the philosophies of nonlinear model predictive control and approximate dynamic programming...
In this paper, sliding-mode-control-based guidance laws to intercept stationary, constant-velocity, ...
Using the recently proposed computationally efficient model predictive static programming (MPSP), a ...
Three-dimensional impact angle constrained air-to-air missile guidance problem with third order auto...
Using a recently developed method named as model predictive static programming (MPSP), a nonlinear s...
A new `generalized model predictive static programming (G-MPSP)' technique is presented in this pape...
A new generalized model predictive static programming technique is presented for rapidly solving a c...
A new nonlinear guidance law for air-to-ground missile cooperation attacks is proposed in this paper...
Using the recently developed computationally efficient model predictive static programming and a clo...
A three-dimensional strap-down seeker based field of view and impact angle constrained guidance law ...
A new technique named as model predictive spread acceleration guidance (MPSAG) is proposed in this p...
This paper proposes an optimal impact angle control guidance law for homing missiles with a narrow f...
A new technique named as model predictive spread acceleration guidance (MPSAG) is proposed in this p...
A novel three dimensional aiming point guidance law is presented in this paper, which eliminates the...
A partial integrated guidance and control design for an interception with terminal impact angle cons...
Combining the philosophies of nonlinear model predictive control and approximate dynamic programming...
In this paper, sliding-mode-control-based guidance laws to intercept stationary, constant-velocity, ...
Using the recently proposed computationally efficient model predictive static programming (MPSP), a ...
Three-dimensional impact angle constrained air-to-air missile guidance problem with third order auto...
Using a recently developed method named as model predictive static programming (MPSP), a nonlinear s...
A new `generalized model predictive static programming (G-MPSP)' technique is presented in this pape...
A new generalized model predictive static programming technique is presented for rapidly solving a c...
A new nonlinear guidance law for air-to-ground missile cooperation attacks is proposed in this paper...
Using the recently developed computationally efficient model predictive static programming and a clo...
A three-dimensional strap-down seeker based field of view and impact angle constrained guidance law ...
A new technique named as model predictive spread acceleration guidance (MPSAG) is proposed in this p...
This paper proposes an optimal impact angle control guidance law for homing missiles with a narrow f...
A new technique named as model predictive spread acceleration guidance (MPSAG) is proposed in this p...
A novel three dimensional aiming point guidance law is presented in this paper, which eliminates the...
A partial integrated guidance and control design for an interception with terminal impact angle cons...
Combining the philosophies of nonlinear model predictive control and approximate dynamic programming...
In this paper, sliding-mode-control-based guidance laws to intercept stationary, constant-velocity, ...