Astrodynamics and Mechanical Design Principles for Next-Generation Space Exploration Systems

Authors

  • Jeeya Tushar Jain École Mondiale World School, Mumbai

DOI:

https://doi.org/10.70917/ijcisim-2026-3965

Abstract

The increasing complexity of deep-space missions encapsulates the essentiality of a transition from conventional component-centric spacecraft development toward integrated, adaptive system architectures. This study investigates how astrodynamics, structural design, and intelligent control can be incorporated to formulate a common framework and overcome the limitations of traditionally isolated trajectory as well as mechanical subsystems. A systematic literature review based on the PRISMA 2020 methodology was conducted using more than 500 publications retrieved from IEEE Xplore, Scopus, Web of Science, NASA Astrophysics Data System, ScienceDirect, and the American Institute of Aeronautics and Astronautics Library. The review was further strengthened through quantitative simulations of representative astrodynamic scenarios, qualitative analyses of missions such as the James Webb Space Telescope, and comparative evaluation of control–structure interaction strategies. The findings demonstrate that integrating smart materials with AI-authorized control laws allows spacecraft structures to adapt dynamically to changing operational environments, resulting in improvements in flutter suppression and aerodynamic performance of up to 20 percent. In addition, consolidated optimization of propulsion, structural configuration, and trajectory design enhances payload capability, while digital twin technologies combined with intelligent materials facilitate predictive health assessment and real-time adaptive control, thereby narrowing the gap between theoretical concepts and flight-capable systems. The study proposes a holistic co-design paradigm that encompasses autonomous decision-making, uncertainty quantification, and model-order reduction to support scalable and resilient deep-space exploration architectures despite existing computational, materialistic, and validation challenges.

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Published

2026-07-29

How to Cite

Jeeya Tushar Jain. (2026). Astrodynamics and Mechanical Design Principles for Next-Generation Space Exploration Systems. International Journal of Computer Information Systems and Industrial Management Applications, 18(12s), 937–951. https://doi.org/10.70917/ijcisim-2026-3965

Issue

Section

Original Articles