IMCA-CAT, Hauptman-Woodward Institute, USA.
J Synchrotron Radiat. 2011 Nov;18(Pt 6):930-7. doi: 10.1107/S0909049511036648. Epub 2011 Sep 30.
One of the challenges of tuning bimorph mirrors with many electrodes is that the calculated focusing voltages can be different by more than the safety limit (such as 500 V for the mirrors used at 17-ID at the Advanced Photon Source) between adjacent electrodes. A study of this problem at 17-ID revealed that the inverse problem of the tuning in situ, using X-rays, became ill-conditioned when the number of electrodes was large and the calculated focusing voltages were contaminated with measurement errors. Increasing the number of beamlets during the tuning could reduce the matrix condition number in the problem, but obtaining voltages with variation below the safety limit was still not always guaranteed and multiple iterations of tuning were often required. Applying Tikhonov regularization and using the L-curve criterion for the determination of the regularization parameter made it straightforward to obtain focusing voltages with well behaved variations. Some characteristics of the tuning results obtained using Tikhonov regularization are given in this paper.
使用多电极调整双折射反射镜的一个挑战是,相邻电极之间的计算聚焦电压可能相差超过安全限制(例如,在高级光子源的 17-ID 处使用的反射镜为 500V)。在 17-ID 进行的这项研究表明,使用 X 射线进行原位调整的逆问题在电极数量较大且计算聚焦电压受到测量误差污染时变得病态。在调整过程中增加射束数量可以降低问题中的矩阵条件数,但仍不能保证始终获得低于安全限制的电压,并且通常需要多次调整迭代。应用 Tikhonov 正则化并用 L 曲线准则确定正则化参数,使得获得具有良好变化的聚焦电压变得非常简单。本文给出了使用 Tikhonov 正则化获得的调整结果的一些特征。