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Optimisation of Earthing System Design through Touch Voltage Minimisation Using Ansys Maxwell

机译:通过使用ANSYS MAXWELL的触摸电压最小化优化接地系统设计

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Earthing system design is usually assessed based on the permissible touch voltage curve of EN 50522. The touch voltage is driven by the spatial placement of the earthing system electrodes, i.e. rods, strips, rings etc. Basically, if one wants to optimize the design, appropriate spatial placement of these electrodes has to be found. As this optimization could be quite challenging, it is usually based on the designing engineer experience and the final solution might not always be the optimal one. Thus, in this paper a software based (Sequential Non-Linear Programming) optimization technique is used to search for the 'optimum' solution of earthing system design by Ansys Maxwell. A simple double ring earthing system model was placed in horizontally stratified soil model with two layers and through the optimisation the burial depths of both rings were found. As the optimisation objective function the actual touch voltage was used. It was found that in most cases the Ansys Maxwell optimiser found the optimal design, however in a few cases more variations of earthing system were found with equal value of objective function meaning that possible local and global minimums can be expected.
机译:接地系统设计通常基于EN 50522的允许触摸电压曲线进行评估。触摸电压通过接地系统电极的空间放置,即杆,条带,环等基本上是基本上,如果一个人想要优化设计,那么必须找到这些电极的适当空间放置。由于这种优化可能是非常具有挑战性的,它通常基于设计工程师体验,最终解决方案可能并不总是最佳的。因此,在本文中,基于软件(顺序非线性编程)优化技术用于搜索ANSYS MAXWELL的“最佳”解决接地系统设计的解决方案。简单的双环接地系统模型被置于水平分层的土壤模型,两层,通过优化,发现了两个环的埋藏深度。随着优化目标函数,使用实际的触摸电压。结果发现,在大多数情况下,ANSYS Maxwell优化器发现最佳设计,然而,在少数情况下,发现具有相同的物理函数值的接地系统的变化意义,这意味着可以预期可能的本地和全局最小值。

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