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Robust multi-objective control for systems involving human-in-the-loop passivity constraints with application to electric power steering

机译:涉及人在回路中被动约束的系统的鲁棒多目标控制及其在电动助力转向中的应用

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This paper is concerned with the stability and synthesis of fixed structure controllers satisfying robust multi-objective H2/H performance for systems involving human-in-the-loop actuation. Closed loop robust stability conditions are studied for both sector-bounded and passive uncertainties. An iterative algorithm comprised of both genetic algorithms and semi-definite programming is presented for control synthesis purposes. This approach is used to design a 2-degree-of-freedom controller for an Electric power steering system. Experimental results using hardware-in-the-loop setup are given. The results indicate that the control design did satisfy the criteria for robust performance.
机译:本文涉及满足鲁棒多目标H 2 / H 性能的固定结构控制器的稳定性和合成,用于涉及人在循环致动的系统。为扇形有限和被动的不确定性研究了闭环稳健的稳定性条件。包括遗传算法和半定编程的迭代算法,用于控制综合目的。该方法用于设计用于电动动力转向系统的2级自由度控制器。给出了使用硬件循环设置的实验结果。结果表明,控制设计确实满足了鲁棒性能的标准。

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