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首页> 外文期刊>American journal of applied sciences >Determination of Nonlinear Optimal Feedback Law for Satellite Injection Problem Using Neighboring Optimal Control | Science Publications
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Determination of Nonlinear Optimal Feedback Law for Satellite Injection Problem Using Neighboring Optimal Control | Science Publications

机译:邻域最优控制确定卫星注入问题的非线性最优反馈律科学出版物

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> An optimal trajectory design of a nonlinear satellite injection problem for transfer to a final target orbit by minimizing the time was investigated. Indeed, this design was an exact solution to the nonlinear two-point boundary value problem which determined optimal control history as well as optimal state trajectories in the open-loop form. Furthermore, the obtained optimal guidance strategy was exerted in the closed-loop form against the environment disturbances using neighboring optimal control method in the exact solution. Neighboring Optimal Control (NOC) law could produce time-variant feedback gains minimizing the performance measure to second order for perturbations from a nominal optimal path. Generally, this law was a function of perturbations appeared in the states and constraints and could be computed utilizing the backward sweep method. The simulation results indicated that the presented methodology was successfully utilized in the real world applications with good robustness to each noise or disturbance produced in each state variable.
机译: >研究了通过最小化时间将非线性卫星注入问题转移到最终目标轨道的最优轨迹设计。确实,此设计是非线性两点边值问题的精确解决方案,该问题确定了最佳控制历史以及开环形式的最佳状态轨迹。此外,使用精确控制中的邻近最优控制方法,以闭环形式针对环境扰动施加了获得的最优制导策略。邻近最优控制(NOC)律可以产生时变反馈增益,从而将性能度量最小化至二阶,以消除来自标称最优路径的扰动。通常,该定律是状态和约束中出现扰动的函数,可以使用后向扫描方法进行计算。仿真结果表明,所提出的方法已在现实世界的应用中成功使用,对每个状态变量中产生的每种噪声或干扰具有良好的鲁棒性。

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