[2] JANN T. Aerodynamic Model Identification GNC Design f the Parafoilload System ALEX[COL]16th AIAA Aerodynamic Decelerat Systems Technology Conference Seminar, 2124 May, 2001, Boston, MA, USA. https:doi.g10.25146.20012015.
[4] STEIN J, MADSEN C, STRAHAN A. An Overview of the Guided Parafoil System Derived from X38 Experience[COL]18th AIAA Aerodynamic Decelerat Systems Technology Conference Seminar, 2326 May, 2005, Munich, Germany. https:doi.g10.25146.20051652.
[5] H ZHU, Q SUN, J TAO et al. Flexible Modeling of Parafoil Delivery System in Wind Environments. Communications in Nonlinear Science and Numerical Simulation, 108, 106210.1-106210.22(2022).
[8] SUN H, SUN Q, TAO J, et al. Accurate Homing Control of Parafoil Delivery System Based on Active Disturbance Rejection Control[C]2021 IEEE 10th Data Driven Control Learning Systems Conference (DDCLS). [S. l. ]: IEEE, 2021: 117.
[10] H GAO, J TAO, M DEHMER et al. In-flight Wind Field Identification and Prediction of Parafoil Systems. Applied Sciences, 10, 1-15(2020).
[11] RAKESH R, HARIKUMAR R. Autonomous Air System Using SmallScale Parafoil[COL]2019 International Conference on Computer Communication Infmatics (ICCCI), 2019: 16. https:api.semanticscholar.gCpusID:201833011.
[13] VISHNIAK A. Simulation of the Payloadparachutewing System Flight Dynamics[COL]Aerospace Design Conference, 2012: 305310. https:api.semanticscholar.gCpusID:62374221.
[14] X XING, L FENG, M CHEN et al. Modeling and Research of a Multi-stage Parachute System for the Booster Recovery. Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering, 237, 1135-57(2022).
[21] J TAO, Q SUN, Z Q CHEN et al. Dynamic Modeling of a Parafoil System Considering Flap Deflection. Journal of Southeast University (English Edition), 33, 416-425(2017).