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A Hybrid Optimization Technique Applied to the Intermediate-Target Optimal Control Problem

机译:混合优化技术在中目标最优控制问题中的应用

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The DoD has introduced the concept of Manned-Unmanned Teaming, a subset of which is the loyal wingman. Optimal control techniques have been proposed as a method for rapidly solving the intermediate-target (mid-point constraint) optimal control problem. Initial results using direct orthogonal collocation and a gradient-based method for solving the resulting nonlinear program reveals a tendency to converge to or to get `stuck’ in locally optimal solutions. The literature suggested a hybrid technique in which a particle swarm optimization is used to quickly find a neighborhood of a more globally minimal solution, at which point the algorithm switches to a gradient-based nonlinear programming solver to converge on the globally optimal solution. The work herein applies the hybrid optimization technique to rapidly solve the loyal wingman optimal control problem. After establishing the background and describing the loyal wingman particle swarm optimization algorithm, the problem is solved first using the gradient-based direct orthogonal collocation method, then re-solved using a hybrid approach in which the results of the particle swarm optimization algorithm are used as the initial guess for the gradient-based direct orthogonal collocation method. Results comparing the final trajectory and convergence time, demonstrate the hybrid technique as a reliable method for producing rapid, autonomous, and feasible solutions to the loyal wingman optimal control problem.
机译:国防部引入了“无人驾驶联队”的概念,其中一部分是忠诚的边锋。提出了最优控制技术作为快速解决中间目标(中点约束)最优控制问题的方法。使用直接正交搭配和基于梯度的方法求解所得非线性程序的初步结果表明,存在趋于收敛或卡在局部最优解中的趋势。文献提出了一种混合技术,其中使用粒子群优化算法快速找到更全局最小解的邻域,然后该算法切换到基于梯度的非线性规划求解器,以收敛于全局最优解。本文的工作应用混合优化技术来快速解决忠诚的机翼兵最优控制问题。在建立了背景并描述了忠诚的wingman粒子群优化算法后,首先使用基于梯度的直接正交配置方法解决了该问题,然后使用将粒子群优化算法的结果用作结果的混合方法重新解决了该问题。基于梯度的直接正交配置方法的初步猜测。比较最终轨迹和收敛时间的结果表明,混合技术是一种可靠的方法,可以为忠诚的机翼兵最优控制问题提供快速,自治和可行的解决方案。

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