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A Neurodynamic Optimization Approach to Robust Pole Assignment for Synthesizing Linear State Feedback Control Systems

机译:一种用于合成线性状态反馈控制系统的鲁棒杆分配的神经动力学优化方法

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This paper presents a neurodynamic optimization approach to robust pole assignment for synthesizing linear control systems via state feedback. A pseudoconvex objective function is minimized as a robustness measure. A neurodynamic model is applied whose global convergence was theoretically proved for constrained pseudoconvex optimization. Compared with existing approaches on benchmark problems, the convergence of proposed neurodynamic approach to global optimal solutions can be guaranteed. Simulation results of the proposed neurodynamic approach is reported to demonstrate its superiority.
机译:本文介绍了通过状态反馈合成线性控制系统的鲁棒杆分配的神经动力学优化方法。伪变速函数被最小化为稳健性测量。应用了神经动力学模型,其理论上证明了受限制的伪动脉优化的全球收敛。与基准问题的现有方法相比,可以保证提出的全球最佳解决方案的神经动力学方法的收敛。据报道,拟议的神经动力学方法的仿真结果证明了其优越性。

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