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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Adaptive and Nonlinear Control of Discharge Pressure for Variable Displacement Axial Piston Pumps
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Adaptive and Nonlinear Control of Discharge Pressure for Variable Displacement Axial Piston Pumps

机译:可变排量轴向活塞泵排出压力的自适应和非线性控制

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摘要

This paper proposes, for the first time without using any linearization or order reduction, an adaptive and model-based discharge pressure control design for the variable displacement axial piston pumps (VDAPPs), whose dynamical behaviors are highly nonlinear and can be described by a fourth-order differential equation. The rigorous stability proof, with an asymptotic convergence, is given for the entire system. In the proposed novel controller design method, the specifically designed stabilizing terms constitute an essential core to cancel out all the stability-preventing terms. The experimental results reveal that rapid parameter adaptation significantly improves the feedback signal tracking precision compared to a known-parameter controller design. In the comparative experiments, the adaptive controller design demonstrates the state-of-the-art discharge pressure control performance, enabling a possibility for energy consumption reductions in hydraulic systems driven with VDAPP.
机译:本文提出,首次不使用任何线性化或降低,用于可变排量轴向活塞泵(VDAPP)的自适应和模型的排出压力控制设计,其动力学行为是高度非线性的,并且可以通过第四个描述 -Order差动方程。 具有渐近收敛的严格稳定性证据,用于整个系统。 在所提出的新型控制器设计方法中,专门设计的稳定术语构成取消所有防止稳定性术语的必要核心。 实验结果表明,与已知参数控制器设计相比,快速参数适应显着提高了反馈信号跟踪精度。 在比较实验中,自适应控制器设计演示了最先进的放电压力控制性能,使得能够降低与VDAPP驱动的液压系统中的能量消耗。

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