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Optimization of sector geometry of a compact cyclotron by random search and matrix methods

机译:通过随机搜索和矩阵方法优化紧凑型回旋加速器的扇形几何

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We have developed two iterative techniques to optimize the pole profile of the hill of a cyclotron magnet. One of the optimization method is based on random search technique and in another method we have found out the unknown parameters by using the matrix method. In both these methods we have approximated the sector shape by a polynomial function of radius and the coefficients of polynomial are optimized to get the isochronous magnetic field. Compared with the previous shimming scheme, this method gives smooth pole shape of the hill and takes less computation time for optimization. The proposed optimization method has been used to design the magnet of a high current compact cyclotron where valleys are deep and the effect of fringe field is dominant at lower radii; however, it can be used for the low flutter magnet geometry as well. In the random search method we can also give the constraint on the coil current of the magnet.
机译:我们开发了两种迭代技术来优化回旋加速器磁体的磁极剖面。一种优化方法是基于随机搜索技术,而另一种方法是使用矩阵方法找出未知参数。在这两种方法中,我们都通过半径的多项式函数来近似扇形,并且优化了多项式的系数以获得等时磁场。与以前的匀场方案相比,该方法给出了山峰的平滑杆形,并且减少了优化所需的计算时间。所提出的优化方法已被用于设计大电流紧凑型回旋加速器的磁体,该磁体的谷部较深,并且在较低半径下边缘场的影响最为明显。但是,它也可以用于低振颤的磁体几何形状。在随机搜索方法中,我们还可以限制磁体的线圈电流。

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