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Multi-Phase Rocket Landing Guidance Using Sequential Convex Programming

  • Bader Ayran*
  • , Ismail Bayezit
  • *Bu çalışma için yazışmadan sorumlu yazar
  • Istanbul Technical University

Araştırma çıktısı: Kitap/Rapor/Konferans Bildirisinde BölümKonferans katkısıHakem

Özet

This paper presents a Sequential Convex Programming (SCP) framework for solving nonconvex optimal control problems with improved numerical efficiency and robustness. The proposed algorithm iteratively linearizes the system dynamics and constraints, formulating a sequence of convex subproblems that are solved using a high-performance conic solver. Key innovations include the use of of diagonal scaling matrices and centering vectors to transform state, control, and parameter variables into scaled quantities, ensuring better numerical conditioning and solver performance. The framework also incorporates trust regions and virtual states to handle artificial infeasibility and ensure convergence. The effectiveness of the approach is demonstrated through a multi-phase rocket landing guidance problem, where the algorithm achieves real-time performance while maintaining high accuracy. The results highlight the scalability and robustness of the proposed method, making it suitable for complex nonlinear control applications in aerospace and beyond.

Orijinal dilİngilizce
Ana bilgisayar yayını başlığı2025 25th International Conference on Control, Automation and Systems, ICCAS 2025
YayınlayanIEEE Computer Society
Sayfalar1896-1901
Sayfa sayısı6
ISBN (Elektronik)9788993215397
DOI'lar
Yayın durumuYayınlandı - 2025
Etkinlik25th International Conference on Control, Automation and Systems, ICCAS 2025 - Incheon, Korea, Republic of
Süre: 4 Kas 20257 Kas 2025

Yayın serisi

AdıInternational Conference on Control, Automation and Systems
ISSN (Basılı)1598-7833

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???event.eventtypes.event.conference???25th International Conference on Control, Automation and Systems, ICCAS 2025
Ülke/BölgeKorea, Republic of
ŞehirIncheon
Periyot4/11/257/11/25

Bibliyografik not

Publisher Copyright:
© 2025 ICROS.

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