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Nonlinear constrained optimal control problem: a PSO–GA-based discrete augmented Lagrangian approach

机译:非线性约束最优控制问题:基于PSO-GA的离散增广拉格朗日方法

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摘要

This work deals with the optimal control problem which has been proposed to solve using the discrete augmented Lagrangian-based nonlinear programming approach. It is shown that this technique guarantees a satisfactory performance by minimizing the energy and maximizing the output. Further, a hybrid particle swarm and genetic algorithm-based approach is used to achieve the optimal value of Lagrange multipliers and required parameters. The designed scheme has been successfully tested through extensive simulation. The successful use of the proposed scheme encourages to other physical systems. The proposed scheme is evaluated extensively on a laboratory-scale coupled-tank system.
机译:这项工作解决了最优控制问题,该问题已被提出以使用离散增广的基于拉格朗日的非线性规划方法来解决。结果表明,该技术通过最小化能量和最大化输出来保证令人满意的性能。此外,使用基于混合粒子群和遗传算法的方法来获得拉格朗日乘数和所需参数的最佳值。通过广泛的仿真,已成功测试了设计的方案。所提议方案的成功使用鼓励了其他物理系统。拟议的方案在实验室规模的耦合罐系统上进行了广泛的评估。

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