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Observer-based H2 controller design for a vibration isolation stage having hybrid electromagnets

机译:基于观察者的H2控制器设计,用于具有混合电磁铁的振动隔离级

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Vibration isolation systems based on hybrid electromagnets, consisting of electromagnet and permanent magnet, have a potential usage in many industrial areas, such as clean room design, transportation, semiconductor manufacturing, suspension systems, and robotic surgery due to providing mechanical contact free vibration isolation. Using permanent magnets in the electromagnet structure has some crucial advantages, such as a minimized volume and a more compact structure. Furthermore, the essential force for levitation of vibration isolation stage can be generated by only the permanent magnet(s), which means, by using hybrid electromagnets, magnetic levitation can be achieved with considerably low energy consumption against possible vibrations. This property is called zero-power behavior. However, the main problems of magnetic levitation process are as follows: it has highly nonlinear nature even if it can be linearized; it has unstable pole(s), which makes the system vulnerable in terms of stability. In recent years, linear matrix inequalitybased design of controllers has received considerable attention and become very popular due to their ability to satisfy multiobjective design requirements. However, an observer-based H2 controller design for a vibration isolation system having hybrid electromagnets has not been considered yet. Therefore, the linear matrix inequality-based controller is employed to minimize the effect of disturbances on the following objectives, such as vibration isolation, zero-power property, and protection of the levitation gap. The effectiveness of the proposed method is shown with the numerical simulation studies and compared with classical Linear Quadratic Regulator (LQR) approach.
机译:基于混合电磁铁的隔振系统,由电磁铁和永磁体组成,在许多工业领域具有潜在的用途,例如洁净室设计,运输,半导体制造,悬架系统和机器人手术,因为提供机械接触自由振动隔离。使用电磁铁结构中的永磁体具有一些至关重要的优点,例如最小化的体积和更紧凑的结构。此外,仅通过使用混合电磁铁的永磁体产生振动隔离阶段的振动隔离级的必要力,这意味着可以通过针对可能的振动的显着低能量消耗来实现磁悬浮。此属性称为零功率行为。然而,磁悬浮过程的主要问题如下:即使它可以线性化,它具有高度非线性性质;它具有不稳定的极点,这使得系统在稳定性方面易受攻击。近年来,控制器的线性矩阵不平等地设计的控制器已经受到了相当大的关注,并且由于它们能够满足多目标设计要求而变得非常受欢迎。然而,尚未考虑用于具有混合电磁铁的振动隔离系统的基于观察者的H2控制器设计。因此,采用基于线性矩阵的基于不等式的控制器来最小化干扰对以下目标的影响,例如振动隔离,零功率特性和悬浮间隙的保护。该方法的有效性以数值模拟研究显示,与经典线性二次调节器(LQR)方法进行比较。

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