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Optimization of a particle optical system in a mutilprocessor environment

机译:mutilprocessor环境中粒子光学系统的优化

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摘要

In the design of a charged particle optical system, many geometrical and electric parameters have to be optimized to improve the performance characteristics. In every optimization cycle, the electromagnetic field and particle trajectories have to be calculated. Therefore, the optimization of a charged particle optical system is limited by the computer resources seriously. Apart from this, numerical errors of calculation may also influence the convergence of merit function. This article studies how to improve the optimization of charged particle optical systems. A new method is used to determine the gradient matrix. With this method, the accuracy of the Jacobian matrix can be improved. In this paper, the charged particle optical system is optimized with a Message Passing Interface (MPI). The electromagnetic field, particle trajectories and gradients of optimization variables are calculated on networks of workstations. Therefore, the speed of optimization has been increased largely. It is possible to design a complicated charged particle optical system with optimum quality on a MPI environment. Finally, an electron gun for a cathode ray tube has been optimized on a MPI environment to verify the method proposed in this paper. (C) 2002 Elsevier Science B.V. All rights reserved. References: 10
机译:在带电粒子光学系统的设计中,必须优化许多几何和电学参数,以提高性能特征。在每个优化周期中,都必须计算电磁场和粒子轨迹。因此,带电粒子光学系统的优化受到计算机资源的严重限制。除此之外,计算的数值误差也可能影响功函数的收敛性。本文研究了如何改进带电粒子光学系统的优化。使用一种新方法来确定梯度矩阵。通过这种方法,可以提高雅可比矩阵的精度。本文利用消息传递接口(MPI)对带电粒子光学系统进行了优化。优化变量的电磁场、粒子轨迹和梯度是在工作站网络上计算的。因此,优化速度大大提高。可以在MPI环境中设计出具有最佳质量的复杂带电粒子光学系统。最后,在MPI环境下对阴极射线管电子枪进行了优化,验证了本文提出的方法。(C) 2002 Elsevier Science B.V.保留所有权利。[参考资料: 10]

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