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Statistical Switching Overvoltage Studies of Optimized Unconventional High Surge Impedance Loading Lines via Numerical Laplace Transform

机译:通过数值拉普拉斯变换优化非传统高浪涌阻抗负载线的统计切换过电压研究

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摘要

The development of a revolutionary design for transmission lines was recently introduced by shifting phase configurations and sub-conductors into "unconventional" arrangements that were geometrically optimized to maximize natural power. The objective of this paper is to study the electromagnetic transients that result from the simultaneous and sequential line energization and re-energization of the previously developed unconventional high surge impedance loading (HSIL) lines. Statistical switching overvoltage (SSOV) studies are performed using a frequency domain method based on the inverse numerical Laplace transform. Compared to a conventional line, all unconventional HSIL line designs studied in this paper lead to very similar surges for long line lengths (400 km) and similar values for short line lengths (100 km), indicating additional advantages of these lines. The use of a frequency domain method for SSOV studies offers enhanced accuracy, simulation flexibility, and substantially lower computational burden compared with traditional time-domain methods.
机译:最近通过将阶段配置和子导体转化为“非常规”的布置来引入用于传输线的革命性设计,以使几何优化以最大化自然功率。本文的目的是研究由先前开发的非常规高浪涌阻抗负载(HSIL)线的同时和顺序线通电和再通电产生的电磁瞬变。使用基于逆数量拉普拉斯变换的频域方法进行统计切换过电压(SSOV)研究。与传统的线相比,本文研究的所有非常规速率线路设计导致长线长度(400 km)的非常相似的浪涌,短线长度(100km)的类似值,表示这些线的额外优点。与传统的时域方法相比,使用频域方法的使用频率域方法提供了增强的准确性,模拟灵活性和基本上更低的计算负担。

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