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Using multiple pickups for transverse feedback systems and optimal pickups-kicker placement for noise power minimization

机译:将多个拾音器用于横向反馈系统,以及最佳拾音器-转角位置,以将噪声功率降至最低

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We propose a new concept to use multiple pickups for estimating the beam displacement at the position 90° before the kicker is activated. The estimated values should be the driving feedback signal. The signals from the different pickups are delayed such that they correspond to the same bunch. Subsequently, a weighted sum of the delayed signals is suggested as an estimator of the feedback correction signal. The weighting coefficients are calculated in order to achieve an unbiased estimator, i.e., the output corresponds to the actual beam displacement at the position 90° before the kicker for non-noisy pickup signals. Furthermore, the estimator must provide the minimal noise power at the output among all linear unbiased estimators. This proposed concept is applied in our new approach to find optimal places for the pickups and the kicker around the accelerator ring such that the noise effect on the feedback quality is minimized. Finally, simulation results for the heavy ions synchrotrons SIS 18 at the GSI are shown.
机译:我们提出了一个新概念,即使用多个拾音器来估计在启动踢手之前在90°位置的光束位移。估计值应该是驾驶反馈信号。来自不同拾音器的信号被延迟,从而它们对应于同一束。随后,建议将延迟信号的加权和作为反馈校正信号的估计器。计算加权系数是为了获得一个无偏估计量,即,输出对应于无噪声拾取信号在踢纸器之前90°位置处的实际光束位移。此外,在所有线性无偏估计器中,估计器必须在输出端提供最小的噪声功率。在我们的新方法中应用了此提议的概念,以找到加速器环周围的拾音器和踢脚的最佳位置,从而将对反馈质量的噪声影响最小化。最后,显示了GSI上重离子同步加速器SIS 18的仿真结果。

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