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Robust control design for electrically driven high-pressure pumps using H approach with joint shaping functions

机译:具有联合整形功能的H 方法的电动高压泵的鲁棒控制设计

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Various applications use high-pressure pumps for waterjet machining. A cutting head generates the waterjet, which is capable to cut hard and brittle materials. These cutting heads induce pressure fluctuations that originate from enabling and disabling the waterjet with respect to an a priori unknown switching law. Any pressure fluctuation will degrade the cutting quality. Thus, the primary control objective is to reject these disturbances by means of the high-pressure pump. Furthermore, waterjet applications show significant uncertainties that necessitate a robust control design. This paper presents the robust control design for a specific electrically driven high-pressure pump. Consequently, $H$ controller synthesis is employed, taking into account expected parameter variations, exogenous disturbance and control requirements. This work introduces joint shaping functions, resulting in a reduced $H$ optimization problem. Subsequently, the obtained controller is verified on a validated simulation model.
机译:各种应用都使用高压泵进行水刀加工。切割头产生水刀,该水刀能够切割硬而脆的材料。这些切割头引起压力波动,该压力波动源于关于先验未知切换定律的启用和禁用水刀。任何压力波动都会降低切割质量。因此,主要的控制目的是借助于高压泵来消除这些干扰。此外,水刀的应用显示出很大的不确定性,因此需要强大的控制设计。本文介绍了用于特定电动高压泵的鲁棒控制设计。所以, $ H $ 考虑到预期的参数变化,外部干扰和控制要求,采用了控制器综合。这项工作引入了关节整形功能,从而减少了 $ H $ 优化问题。随后,在经过验证的仿真模型上验证获得的控制器。

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