TY - JOUR
T1 - Penetration Trajectory Programming for Air-Breathing Hypersonic Vehicles During the Cruise Phase
AU - Guo, Hang
AU - Fu, Wen Xing
AU - Fu, Bin
AU - Chen, Kang
AU - Yan, Jie
N1 - Publisher Copyright:
© 2017, Editorial Dept. of JA. All right reserved.
PY - 2017/3/15
Y1 - 2017/3/15
N2 - With regarding to the midcourse interception strategy with terminal impact angle constraint that the air-breathing hypersonic vehicles encounter during the cruise phase, the mathematical model of attack and defense countermeasure is established on the basis of the appropriate hypothesis on bilateral strategies and then with specified bilateral terminal trajectory angle errors as terminal constraint, maximum terminal vertical and horizontal position errors and minimum control inputs as performance index, a penetration trajectory satisfying control inputs' saturation limitations is developed with optimized Model Predictive Static Programming(MPSP). Furthermore, by the optimized algorithm, not only the convergence rate is guaranteed under the vehicle's control inputs' saturation limitations, but the convergence robustness is enhanced under different initial conditions and constraints by adaptively adjusting the weight matrices of control inputs and the vector errors between expected and actual terminal states.
AB - With regarding to the midcourse interception strategy with terminal impact angle constraint that the air-breathing hypersonic vehicles encounter during the cruise phase, the mathematical model of attack and defense countermeasure is established on the basis of the appropriate hypothesis on bilateral strategies and then with specified bilateral terminal trajectory angle errors as terminal constraint, maximum terminal vertical and horizontal position errors and minimum control inputs as performance index, a penetration trajectory satisfying control inputs' saturation limitations is developed with optimized Model Predictive Static Programming(MPSP). Furthermore, by the optimized algorithm, not only the convergence rate is guaranteed under the vehicle's control inputs' saturation limitations, but the convergence robustness is enhanced under different initial conditions and constraints by adaptively adjusting the weight matrices of control inputs and the vector errors between expected and actual terminal states.
KW - Air-Breathing hypersonic vehicles
KW - Attack and defense countermeasure
KW - Optimized model predictive static programming
KW - Penetration in cruise phase
UR - http://www.scopus.com/inward/record.url?scp=85019889128&partnerID=8YFLogxK
U2 - 10.3873/j.issn.1000-1328.2017.03.009
DO - 10.3873/j.issn.1000-1328.2017.03.009
M3 - 文章
AN - SCOPUS:85019889128
SN - 1000-1328
VL - 38
SP - 287
EP - 295
JO - Yuhang Xuebao/Journal of Astronautics
JF - Yuhang Xuebao/Journal of Astronautics
IS - 3
ER -