Title :
Sliding mode control based terminal impact angle constrained guidance laws using dual sliding surfaces
Author :
Rao, Sachit ; Ghose, Debasish
Author_Institution :
Systemantics India Pvt Ltd., Bangalore, India
Abstract :
In this paper, sliding mode control theory based guidance laws to intercept non-maneuvering targets at a desired impact angle are presented. The desired impact angle, defined in terms of a desired line-of-sight (LOS) angle, is achieved by selecting the missile´s lateral acceleration (latax) to enforce sliding mode on a sliding surface based on this LOS angle. As will be shown, this guidance law does not ensure interception for all states of the missile and the target during the engagement. Hence, to satisfy the requirement of interception at the desired impact angle, a second sliding surface is designed and a switching logic, based on the conditions necessary for interception, is presented that allows the latax to switch between enforcing sliding mode on one of these surfaces so that the target can be intercepted at the desired impact angle. The guidance laws are designed using non-linear engagement dynamics.
Keywords :
missile guidance; variable structure systems; dual sliding surfaces; latax; line-of-sight angle; missile lateral acceleration; nonlinear engagement dynamics; nonmaneuvering targets; sliding mode control theory based guidance laws; switching logic; terminal impact angle constrained guidance laws; Aerodynamics; Conferences; Missiles; Navigation; Sliding mode control; Switches;
Conference_Titel :
Variable Structure Systems (VSS), 2012 12th International Workshop on
Conference_Location :
Mumbai, Maharashtra
Print_ISBN :
978-1-4577-2066-6
Electronic_ISBN :
2158-3978
DOI :
10.1109/VSS.2012.6163523