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Optimal Design of Grounding System in Transmission Line

机译:输电线路接地系统的最佳设计

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摘要

A novel optimization methodology is proposed for the design of transmission line grounding systems, taking into account technical as well as economical considerations. The problem of designing the grounding systems of transmission lines is stated as a linear-integer programming problem in terms of the construction characteristics and the particular requirements of the tower grounding schemes at the supports of each of the different line sections, in order to minimize the variable investment costs, subject to the maximum allowed line outage rate due to the lightning activity. The mathematical statement of the problem allows solutions in which the transmission tower footing resistance changes along the line, depending on the cost and on the particular characteristics of each tower grounding, assuring however, that the average behavior enforces the desired outage rate due to lightning activity, selecting the complementary electrode scheme required at each tower. The methodology is tested on a real case consisting of a 230kV transmission line, 85.4km long, with 180 towers. The linear programming branch and bound mathematical technique was applied for the solution of the test case. Two different simulation approaches for the calculation of the behavior of the line subject to lightning phenomena were evaluated without loss of generality: the approach proposed in [1], selected as an initial test due to its simplicity, and the improved version presented in [2]. Results are presented and compared to the design obtained through conventional tower design approaches with important reductions in the investment costs, encouraging the use and further development of the methodology.
机译:提出了一种新的优化方法,用于设计传输线接地系统,考虑到技术以及经济的考虑。在施工特性和每个不同线部分的支撑件处的塔接地方案的施工特性和特定要求中,设计了传输线接地系统的问题,以便最小化可变的投资成本,由于雷电活动而达到最大允许的线路中断率。问题的数学陈述允许传输塔脚踏电阻沿线改变的解决方案,这取决于每个塔接地的特定特性,确保平均行为引起的避雷活动引起的所需的中断率,选择各大塔所需的互补电极方案。该方法在由230kV传输线,85.4km长,180塔中组成的实际情况上进行测试。施加线性编程分支和绑定的数学技术用于测试案例的解决方案。评估两种不同的模拟方法,用于计算受闪电现象的线路的行为而不丧失一般性:[1]中提出的方法,由于其简单性而选择作为初始测试,以及[2中的改进版本]。结果出现并与通过传统塔设计方法获得的设计进行了比较,以投资成本的重要减少,鼓励使用和进一步发展方法。

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