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Potential and field computations by an optimized Monte Carlo technique

机译:优化的蒙特卡罗技术潜在和现场计算

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The Monte Carlo method is applied to diverging field problems. The computational effort, expressed by the number of steps in random walks, is related to the relative space potential, the prespecified walk termination distance, and the degree of field nonuniformity in the gap. To obtain potential and field distributions in a given system, equations for these quantities are developed at neighboring space points using Green's function. The accuracy of the algorithm is markedly enhanced by seeking the optimal spacing of the neighboring points. The technique compares satisfactorily with the charge-simulation method in a case study on a hemispherically capped rod-plane gap.
机译:Monte Carlo方法应用于发散场问题。由随机散步的步骤数表示的计算工作与相对空间电位,预先流化的行走终止距离以及间隙中的野外不均匀程度有关。为了在给定的系统中获得潜在和现场分布,使用绿色的功能在相邻空间点开发这些数量的方程。通过寻求相邻点的最佳间隔,算法的准确性明显增强。该技术与电荷仿真方法令人满意地比较了半球盖杆面间隙的案例研究。

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