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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Low-Bias Control of AMB Subject to Voltage Saturation: State-Feedback and Observer Designs
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Low-Bias Control of AMB Subject to Voltage Saturation: State-Feedback and Observer Designs

机译:经受电压饱和的AMB的低偏置控制:状态反馈和观察器设计

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摘要

This paper addresses the problem of low-bias control for an active magnetic bearing (AMB) subject to voltage saturation. Using a generalized complementarity flux condition, a simple, three-dimensional (3-D) flux-based model is used to describe the dynamics of the low-bias mode of operation. Several stabilizing controllers are derived by applying recent results from nonlinear control theory. Specifically, the asymptotic small-gain theorem of Teel and passivity-based ideas are instrumental in our designs. Both soft and hard saturation constraints are accommodated. When flux measurements are not available, a nonlinear reduced order observer is proposed to estimate the flux. We show global asymptotic stability for all controller-observer interconnections. Numerical simulations against a high-fidelity AMB model show the effectiveness of the proposed control designs.
机译:本文解决了有源磁铁轴承(AMB)在电压饱和下的低偏置控制问题。使用广义互补通量条件,可以使用简单的基于三维(3-D)磁通的模型来描述低偏置操作模式的动力学。通过应用非线性控制理论的最新结果,得出了几种稳定控制器。具体来说,Teel的渐近小增益定理和基于被动的思想对我们的设计至关重要。软性和硬性饱和度约束都得到满足。当通量测量不可用时,建议使用非线性降阶观测器来估算通量。我们显示了所有控制器-观察者互连的全局渐近稳定性。针对高保真AMB模型的数值仿真表明了所提出的控制设计的有效性。

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