DocumentCode
3731259
Title
A 3D nonlinear guidance law with impact terminal angle constraints
Author
Xinsan Li;Lixin Wang; Chen Ke; Yan Xunliang;Xiaohu Fan;Bangping Ding
Author_Institution
Department 3, The Second Artillery Engineering University, Xi´an Shaanxi, China
fYear
2015
Firstpage
2242
Lastpage
2246
Abstract
Generalized model predictive static programming (G-MPSP) technique is presented in this paper in the continuous time framework for rapidly solving a class of 3D nonlinear optimal control problems with hard terminal constraints. A key feature of the technique is backward propagation of a small-dimensional weight matrix dynamics, using which the control history got updated. It leads to a static optimization problem and it is the reason for its high computational efficiency. Various maneuvering ground targets is considered in the simulation studies. The simulation results show that impact angle constraints are met in addition to achieving near zero miss distance and the variation in the lateral acceleration history is quite smooth throughout the engagement.
Keywords
Yttrium
Publisher
ieee
Conference_Titel
Chinese Automation Congress (CAC), 2015
Type
conf
DOI
10.1109/CAC.2015.7382876
Filename
7382876
Link To Document