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The Optimal Mars Entry Guidance with External Disturbance Using Neural Network Solution

机译:神经网络的外部干扰最优火星进入制导

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In this study, a novel H_∞ guidance strategy based on optimal control theory is proposed to guide the spacecraft landing on the Mars precisely. Initially, the error system of entry phase with the external disturbance is derived, and the method of tracking the nominal entry trajectory is adopted. Considering the difference of magnitudes' order between several state variables concluding the altitude, the velocity and range, normalization strategy is used to avoid numerical problem. Subsequently, the H_∞ optimal control theory is introduced, and the difficulty of the entry phase is that the Hamilton-Jacobi-Isaacs (HJI) equation with control constraint must be solved. So the neural network (NN) is introduced to get the solution of HJI equation approximately. Finally, simulation is done to demonstrate the H_∞ guidance strategy.
机译:在这项研究中,提出了一种基于最优控制理论的新型H_∞制导策略,以精确地指导航天器在火星上着陆。首先,推导了具有外部干扰的进入相位误差系统,并采用了跟踪名义进入轨迹的方法。考虑到包括高度,速度和范围在内的几个状态变量之间的量级顺序差异,采用归一化策略来避免数值问题。随后,引入H_∞最优控制理论,进入阶段的困难在于必须求解具有控制约束的Hamilton-Jacobi-Isaacs(HJI)方程。因此引入了神经网络(NN)来近似地得到HJI方程的解。最后,通过仿真证明了H_∞制导策略。

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