DocumentCode :
11333
Title :
Capturability Analysis of a 3-D Retro-PN Guidance Law for Higher Speed Nonmaneuvering Targets
Author :
Ghosh, Sudip ; Ghose, Debasish ; Raha, Soumyendu
Author_Institution :
Dept. of Aerosp. Eng., Indian Inst. of Sci., Bangalore, India
Volume :
22
Issue :
5
fYear :
2014
fDate :
Sept. 2014
Firstpage :
1864
Lastpage :
1874
Abstract :
This brief presents the capturability analysis of a 3-D Retro-proportional navigation (Retro-PN) guidance law, which uses a negative navigation constant (as against the usual positive one), for intercepting targets having higher speeds than interceptors. This modification makes it possible to achieve collision conditions that were inaccessible to the standard PN law. A modified polar coordinate system, that makes the model more compact, is used in this brief for capturability analysis. In addition to the ratio of the target to interceptor speeds, the directional cosines of the interceptor, and target velocity vectors play a crucial role in the capturability. The existence of nontrivial capture zone of the Retro-PN guidance law and necessary and sufficient conditions, for capturing the target in finite time, are presented. A sufficient condition on the navigation constant is derived to ensure finiteness of the line-of-sight turn rate. The results are more extensive than those available for 2-D engagements, which can be obtained as special cases of this brief. Simulation results are given to support the analytical results.
Keywords :
collision avoidance; missile guidance; velocity control; 2D engagements; 3D retro-PN guidance law; 3D retro-proportional navigation; capturability analysis; collision conditions; directional cosines; finite time; higher speed nonmaneuvering targets; intercepting targets; line-of-sight turn rate; modified polar coordinate system; necessary conditions; negative navigation constant; nontrivial capture zone; sufficient conditions; target velocity vectors; target-to-interceptor speeds ratio; Acceleration; Clocks; Navigation; Radio frequency; Standards; Trajectory; Vectors; Capturability analysis; Retro-PN; Retro-PN.; guidance laws; high-speed target; proportional navigation (PN);
fLanguage :
English
Journal_Title :
Control Systems Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6536
Type :
jour
DOI :
10.1109/TCST.2013.2289014
Filename :
6678707
Link To Document :
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