论文标题
同步储存环的轨道反馈系统中的对称剥削
Symmetry Exploitation in Orbit Feedback Systems of Synchrotron Storage Rings
论文作者
论文摘要
同步基因的存储环的结构对称性是在磁性晶格的设计阶段有意创建的,但是在稳定加速颗粒束的控制算法的设计中,它们并未考虑它们。但是,控制算法的选择受同步加速器的速度要求的限制。同步基因的标准控制算法基于轨道响应矩阵的奇异值分解(SVD)。 SVD控制器既没有利用结构对称性,也没有表现出任何速度优势。基于Betatron函数的周期性和反射特性,我们表明这些结构对称性是轨道响应矩阵遗传的。我们表明,矩阵的产生的块循环和中心对称特性可用于控制器的不同计算有效分解。由于磁铁和监视器的奇数放置,我们还解决了对称性损坏的情况。我们的有效分解可以使同步基因的更高级控制技术(例如需要实时优化的控制算法)使用。这些先进的控制技术反过来又可以提高同步源光源中的研究质量。
Structural symmetries in the storage ring of synchrotrons are intentionally created during the design phase of the magnetic lattices, but they are not considered in the design of control algorithms that stabilize the beam of accelerated particles. The choice of control algorithm, however, is limited by the speed requirements of the synchrotron. Standard control algorithms for synchrotrons are based on a singular value decomposition (SVD) of the orbit response matrix. SVD controllers neither exploit the structural symmetries nor exhibit any speed advantages. Based on the periodicity and the reflection properties of the betatron function, we show that these structural symmetries are inherited by the orbit response matrix. We show that the resulting block-circulant and centrosymmetric properties of the matrix can be used for different computationally efficient decompositions of the controller. We also address the case of broken symmetry due to odd placements of magnets and monitors. Our efficient decomposition could enable the use of more advanced control techniques for synchrotrons, such as control algorithms that require real-time optimization. These advanced control techniques could in turn increase the quality of research in synchrotron light sources.