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Optimization of high voltage insulators within three dimensional field distributions

机译:在三维场分布内优化高压绝缘子

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In previous articles a method was presented for optimizing high voltage insulators by means of cubic splines, which was restricted to the condition that both, the insulator and the field distribution should be axially symmetrical. In this paper the possibilities of optimizing high voltage insulators within three dimensional (not merely axially symmetrical) electrostatic field distributions are analyzed. As proposed previously, the minimization of total field strength intensity was chosen as the optimization criterion. The optimization is carried out by means of an iterative process. An axially symmetrical high voltage insulator is taken as a starting point During the process the shape of the surface is modified while preserving the axial symmetry of the whole piece. In each iteration the distribution of the total field strength intensity is calculated along a predefined set of generating curves of the axially symmetrical original contour. For each generating curve of the set a modified curve is calculated. From all the modified curves a new unique generating curve is determined. The shape of the new contour is obtained using smoothing cubic splines. The functionality of the proposed method is shown for two test arrangements with different degrees of asymmetry.
机译:在先前的文章中,提出了一种通过三次样条来优化高压绝缘子的方法,该方法仅限于绝缘子和电场分布都应轴向对称的条件。在本文中,分析了在三维(不仅轴向对称)静电场分布内优化高压绝缘子的可能性。如先前所提议的,将总场强强度的最小化选择为优化标准。通过迭代过程进行优化。以轴向对称的高压绝缘子为起点。在此过程中,在保留整个零件的轴向对称性的同时,修改了表面的形状。在每次迭代中,沿着轴向对称的原始轮廓的一组预定生成曲线来计算总场强强度的分布。对于该组的每个生成曲线,都会计算一条修改后的曲线。从所有修改后的曲线中,确定一条新的唯一生成曲线。使用平滑三次样条曲线可获得新轮廓的形状。对于具有不同不对称度的两个测试装置,显示了所提出方法的功能。

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