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A General Integrated Design and Control Strategy Considering System Decomposition With Application to a Rocket Flight Attitude Control System

机译:考虑系统分解应用于火箭飞行姿态控制系统的一般集成设计和控制策略

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摘要

Optimizing design and control sequentially is a typical way to improve performance for a dynamic engineering system. However, this type of strategy overlooks the impact on the design from control and may cause low system-level optimality for complex systems that include multilayer subsystems. To obtain improved system performance than sequential strategies, this article proposes an integrated design and control (IDC) strategy for an engineering system. The IDC approach considers the system decomposition, examines the two-way influence between design and control for each layer, and optimizes subsystems simultaneously. The effectiveness of the IDC strategy is verified by the case study of a rocket flight attitude control (RFAC) system. The experimental results show that compared with the sequential strategy, the proposed integrated strategy can achieve better performance at the system level.
机译:顺序优化设计和控制是一种提高动态工程系统性能的典型方式。然而,这种类型的策略忽略了对控制的影响,可能导致包括多层子系统的复杂系统的低系统级最优性。为了获得提高的系统性能而不是顺序策略,本文提出了一种工程系统的集成设计和控制(IDC)策略。 IDC方法考虑系统分解,检查每个层的设计和控制之间的双向影响,并同时优化子系统。通过对火箭飞行姿态控制(RFAC)系统的案例研究验证了IDC策略的有效性。实验结果表明,与顺序策略相比,所提出的综合策略可以在系统级别实现更好的性能。

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