A two-layer sliding mode control architecture is proposed to achieve simultaneous terminal time and angle constraints in nonlinear intercept guidance for stationary and constant-velocity targets.
Nonsingular Terminal Sliding Mode Guidance with Impact Angle Constraints
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Bifurcation theory is applied via a computational approach to derive and analyze engagement laws for planar circular pursuit between a pursuer and a circling point-mass target, considering cases with and without speed dynamics.
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Terminal Time and Angle-Constrained Nonlinear Intercept Guidance
A two-layer sliding mode control architecture is proposed to achieve simultaneous terminal time and angle constraints in nonlinear intercept guidance for stationary and constant-velocity targets.
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A Study of the Circular Pursuit Dynamics using Bifurcation Theoretic Computational Approach
Bifurcation theory is applied via a computational approach to derive and analyze engagement laws for planar circular pursuit between a pursuer and a circling point-mass target, considering cases with and without speed dynamics.