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首页> 外文期刊>Serbian Journal of Electrical Engineering >Biogeography-based algorithm for high voltage electrode surface optimization of a single-phase GIS bus terminal
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Biogeography-based algorithm for high voltage electrode surface optimization of a single-phase GIS bus terminal

机译:基于生物地理学的单相GIS总线终端高压电极表面优化算法

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摘要

A new method applying the biogeography-based optimization (BBO) technique is presented for the optimization of high voltage electrode surfaces. The aim is to obtain the optimization of the electrode shape in order to achieve a uniform field distribution along the surface of the electrode and maintain maximum field stress at minimum value. The principle of the developed optimization technique is described with an axi-symmetric single-phase GIS bus terminal electrode considered as a quarter-ellipse. In this scheme different aspects of the optimization technique are compared by means of semi-infinite line charges and ring charges to compute the electric field with the charge simulation method (CSM). The new Biogeography Based optimized approach helps in achieving a uniform field distribution with a minimum electric stress on the electrode surface and a minimum deviation angle for the otherwise normal stress vector, holding the assignment factor within the assigned range. The deviation angle is the more sensitive indicator of the simulation accuracy .The assignment factor has an impact on simulation accuracy. The combined BBO/CSM algorithm is capable of finding a better-quality solution, better accuracy, better convergence characteristics and computational efficiency.
机译:提出了一种基于生物地理优化(BBO)技术的高压电极表面优化新方法。目的是获得电极形状的优化,以实现沿电极表面的均匀场分布,并将最大场应力保持在最小值。以轴对称单相GIS总线端子电极(被视为四分之一椭圆形)描述了开发的优化技术的原理。在该方案中,通过半无限线电荷和环形电荷比较了优化技术的不同方面,以利用电荷模拟方法(CSM)计算电场。新的基于生物地理学的优化方法有助于在电极表面上的最小电应力和法向应力矢量的最小偏差角的情况下实现均匀的场分布,从而将分配因子保持在分配范围内。偏差角是模拟精度的更敏感指标。分配因子对模拟精度有影响。结合的BBO / CSM算法能够找到质量更高的解决方案,更好的精度,更好的收敛特性和计算效率。

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