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Reusable Rocket Pinpoint Landing Under Complex Propulsion System Constraints via Second-Order Cone Programming

  • Northwestern Polytechnical University Xian
  • CAS - Institute of Mechanics

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Advances in reusable rocket technology have made high-precision landing a critical technical challenge in spaceflight research. Traditional trajectory optimization methods are typically focused on fuel efficiency, terminal accuracy, and fundamental safety constraints but often neglect the dynamic characteristics of the propulsion system, particularly physical limits on the thrust magnitude rate. Ignoring these constraints can produce control commands that exceed maximum throttling capabilities and thereby compromise mission feasibility. To address these challenges, this paper proposes an efficient trajectory optimization algorithm within a lossless convex optimization framework that incorporates thrust magnitude rate, maximum pitch-over, and glide-slope cone constraints to build a realistic rocket landing model under multiple restrictions. To obtain a high-precision solution to the continuous-time optimal control problem, first-order-hold (FOH) discretization is applied to control variables and relaxation variables express thrust rate constraints in differential form. Combined with a convexification strategy, certain nonconvex constraints are transformed and the problem is reformulated as a second-order cone program (SOCP). The algorithm converges rapidly to a high-quality feasible trajectory without requiring an initial guess. These attributes underscore the strong engineering practicality and significant potential of the suggested algorithm for online applications. Simulation results demonstrate that the proposed method can effectively generate fuel-optimal landing trajectories while significantly enhancing the safety and feasibility of the mission. This approach broadens the modeling scope of rocket landing trajectory optimization and offers a robust and practical solution framework for autonomous precision landing missions subject to complex propulsion system constraints.

源语言英语
主期刊名Proceedings of The 2025 Asia-Pacific International Symposium on Aerospace Technology- Proceedings of APISAT 2025
编辑Jinyoung Suk, Bok Jik Lee, Shinkyu Jeong, Kyubok Ahn
出版商Springer Science and Business Media Deutschland GmbH
305-315
页数11
ISBN(印刷版)9789819211821
DOI
出版状态已出版 - 2027
活动Asia-Pacific International Symposium on Aerospace Technology, APISAT 2025 - Seoul Olympic Parkte, 韩国
期限: 27 10月 202529 10月 2025

丛书

姓名Lecture Notes in Mechanical Engineering
Prt F95
ISSN(印刷版)2195-4356
ISSN(电子版)2195-4364

会议

会议Asia-Pacific International Symposium on Aerospace Technology, APISAT 2025
国家/地区韩国
Seoul Olympic Parkte
时期27/10/2529/10/25

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