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Fuzzy controller for beam stabilization in a heavy-ion synchrotron

机译:重离子同步加速器中电子束稳定的模糊控制器

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In this paper a fuzzy controller is presented which guides a disturbed particle beam in a heavy-ion synchrotron back to the stable fixed point and thus prevents undesired longitudinal beam oscillations. The advantage over common control systems which only provide additional damping of the beam oscillations is the minimal increase of the rms beam emittance. The decision making of the controller depends on the position of the barycenter of the bunch in phase space which consists of the phase slip to the accelerating gap voltage and the energy deviation to the reference particle. As only the phase slip can be measured it is shown how the energy deviation can be obtained by differentiating the phase slip with a robust sliding mode differentiator as developed by Levant [8]. The performance of the proposed fuzzy controller is demonstrated by macro particle simulations.
机译:在本文中,提出了一种模糊控制器,该控制器将重离子同步加速器中受干扰的粒子束引导回稳定的固定点,从而防止了不希望的纵向束振荡。相对于仅提供额外的光束振荡衰减的普通控制系统,其优势在于有效值光束发射的最小增加。控制器的决策取决于相空间中束的重心的位置,该相空间包括加速间隙电压的相位跳变和参考粒子的能量偏差。由于只能测量相位滑移,因此显示了如何用Levant [8]开发的鲁棒滑模微分器对相位滑移进行微分,从而获得能量偏差。宏粒子仿真证明了所提出的模糊控制器的性能。

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