TY - JOUR
T1 - Cooperative guidance with multiple constraints using convex optimization
AU - Jiang, Huan
AU - An, Ze
AU - Yu, Ya'nan
AU - Chen, Shishi
AU - Xiong, Fen Fen
N1 - Publisher Copyright:
© 2018 Elsevier Masson SAS
PY - 2018/8
Y1 - 2018/8
N2 - In the existing closed-loop cooperative guidance approaches for salvo attack of multiple missiles, the multiple constraints and time-variant velocity basically cannot be effectively considered. Therefore, two closed-loop cooperative guidance methods are developed in this paper, by employing the efficient convex optimization technique and receding horizon control (RHC) strategy. During each guidance cycle of RHC, the system coordination target is updated and then broadcasted to each missile as a constraint. Subsequently, the convex optimization technique is utilized to solve the multi-constraint optimal proportional guidance problem of each missile online to achieve the consensus on time-to-go among missiles. Simulation results show that for three cases with different conditions of velocity, the cooperative simultaneous attack under multiple constraints can be effectively carried out using each of the two proposed cooperative guidance laws, which verify their effectiveness and feasibility.
AB - In the existing closed-loop cooperative guidance approaches for salvo attack of multiple missiles, the multiple constraints and time-variant velocity basically cannot be effectively considered. Therefore, two closed-loop cooperative guidance methods are developed in this paper, by employing the efficient convex optimization technique and receding horizon control (RHC) strategy. During each guidance cycle of RHC, the system coordination target is updated and then broadcasted to each missile as a constraint. Subsequently, the convex optimization technique is utilized to solve the multi-constraint optimal proportional guidance problem of each missile online to achieve the consensus on time-to-go among missiles. Simulation results show that for three cases with different conditions of velocity, the cooperative simultaneous attack under multiple constraints can be effectively carried out using each of the two proposed cooperative guidance laws, which verify their effectiveness and feasibility.
KW - Cooperative guidance
KW - Multi-constraint
KW - Receding horizon control
KW - Successive convex optimization
KW - Time-to-go coordination
UR - http://www.scopus.com/inward/record.url?scp=85048799365&partnerID=8YFLogxK
U2 - 10.1016/j.ast.2018.06.001
DO - 10.1016/j.ast.2018.06.001
M3 - Article
AN - SCOPUS:85048799365
SN - 1270-9638
VL - 79
SP - 426
EP - 440
JO - Aerospace Science and Technology
JF - Aerospace Science and Technology
ER -