Pseudospectral Method for Finding Optimal Control of Trajectory Bundles Based on Multi-Agent Optimization Algorithms

M.S. Karane
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Abstract

A class of problems of optimal control of nonlinear continuous deterministic systems under conditions of uncertainty is considered. To solve the problem, a numerical algorithm for finding the optimal control is formed, in which the parameterization of the control law is used, which depends on time and a set of coordinates of the state vector available for measurement. This approach is based on the approximation of the control law by a series using a system of basis functions with unknown coefficients. The search for unknown coefficients in the expansion of the control law is implemented using multi-agent optimization methods: a hybrid multi-agent interpolation search algorithm and a multi-agent algorithm based on the use of linear controllers for controlling the movement of agents. A software has been developed and two model examples and an applied problem of stabilizing a satellite with the help of engines installed on it have been solved.

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基于多智能体优化算法的轨迹束最优控制伪谱方法
研究一类不确定条件下的非线性连续确定系统的最优控制问题。为了解决这一问题,形成了一种寻找最优控制的数值算法,该算法使用控制律的参数化,控制律依赖于时间和一组可供测量的状态向量坐标。该方法是基于控制律的近似,通过一系列使用未知系数的基函数系统。采用多智能体优化方法对控制律展开中的未知系数进行搜索:混合多智能体插值搜索算法和基于线性控制器的多智能体运动控制算法。开发了一个软件,解决了两个模型算例和一个利用发动机稳定卫星的应用问题。
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