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Using Newton's Method to Search for Quasi-Periodic Relative Satellite Motion Based on Nonlinear Hamiltonian Models

机译:基于非线性哈密顿量模型的牛顿法搜索准周期性相对卫星运动

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In this paper, the monodromy variant of Newton's method is applied to locate periodic or quasi-periodic relative satellite motion. Advantages of using Newton's method to search for periodic or quasi-periodic relative satellite motion include simplicity of implementation, ability to deal with nonlinear dynamics, repeatability of the solutions due to its non-random nature, and fast convergence. A nonlinear Hamiltonian model is derived which incorporates eccentricity of the reference orbit, nonlinear gravitational terms and the J_2 perturbation. Closed-loop control of relative satellite motion is simulated with the aid of a discrete LQR controller with impulsive actuation.
机译:在本文中,牛顿法的单峰变体被用于定位周期性或准周期性的相对卫星运动。使用牛顿法搜索周期或准周期相对卫星运动的优势包括实现简单,具有处理非线性动力学的能力,由于其非随机性而导致的解决方案的可重复性以及快速收敛。推导了非线性哈密顿量模型,该模型结合了参考轨道的偏心率,非线性重力项和J_2摄动。借助于具有脉冲驱动的离散LQR控制器,模拟了相对卫星运动的闭环控制。

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