Port-Hamiltonian Based Control of the Sun-Earth 3D Circular Restricted Three-Body Problem: Stabilization of the L1 Lagrange Point

Hao Yan
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引用次数: 1

Abstract

In this paper, we use Port-Hamiltonian framework to stabilize the Lagrange points in the Sun-Earth three-dimensional Circular Restricted Three-Body Problem (CRTBP). Through rewriting the CRTBP into Port-Hamiltonian framework, we are allowed to design the feedback controller through energy-shaping and dissipation injection. The closed-loop Hamiltonian is a candidate of the Lyapunov function to establish nonlinear stability of the designed equilibrium, which enlarges the application region of feedback controller compared with that based on linearized dynamics. Results show that the Port-Hamiltonian approach allows us to successfully stabilize the Lagrange points, where the Linear Quadratic Regulator (LQR) may fail. The feedback system based on Port-Hamiltonian approach is also robust against white noise in the inputs.
基于port - hamilton的太阳-地球三维圆形受限三体问题控制:L1拉格朗日点的稳定
本文利用port - hamilton框架稳定了太阳-地球三维圆形受限三体问题(CRTBP)中的拉格朗日点。通过将CRTBP改写成port - hamilton框架,我们可以通过能量整形和耗散注入来设计反馈控制器。利用闭环哈密顿量作为Lyapunov函数的候选项来建立所设计平衡的非线性稳定性,与基于线性化动力学的反馈控制器相比,扩大了反馈控制器的应用范围。结果表明,port - hamilton方法使我们能够成功地稳定线性二次调节器(LQR)可能失效的拉格朗日点。基于port - hamilton方法的反馈系统对输入中的白噪声也具有鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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