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Methodology for optimizing the capacity and costs of overhead transmission lines by modifying their bundle geometry

机译:通过修改架空线束几何形状来优化架空输电线路的容量和成本的方法

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摘要

The electrical power systems demand is continuously growing, in such a way that it is necessary to pursue methods to increase the overhead transmission line power capacity for single circuit lines. In this paper, it is proposed a methodology to increase the line energy transport capacity at lower costs. The enhancement is done by modifying the bundle geometry by using a heuristic optimization process divided into two steps. Firstly, a fixed bundle geometry is generated. Secondly, this form is modified seeking the optimization of line energy transmission capacities. During all process, electrical, mechanical and economical analyses are performed. As result, single circuit line geometries with almost 26% higher surge impedance loading than the original, significant costs reduction (50%), moderate bundles size (smaller than 2.5m), similar electric fields within the conductors of the bundle, smaller right of way, and similar transient response were obtained. Thus, compared with regular single circuit transmission lines, these new transmission lines have a lower overall cost and environmental impact. Finally, a transient analysis of the proposed transmission line is presented.
机译:电力系统需求以这样的方式持续增长,使得有必要寻求增加单回路线路的架空传输线电力容量的方法。在本文中,提出了一种以较低的成本提高线路能量传输能力的方法。通过使用分为两个步骤的启发式优化过程来修改束的几何形状,可以完成增强功能。首先,生成固定的束几何形状。其次,修改此形式以寻求线路能量传输容量的优化。在所有过程中,都要进行电气,机械和经济分析。结果是,单电路线的几何形状具有比原始电涌阻抗负载高出近26%的电涌阻抗,显着降低了成本(50%),线束尺寸适中(小于2.5m),线束导体内的电场相似,方式,获得类似的瞬态响应。因此,与常规的单回路传输线相比,这些新的传输线具有较低的总体成本和环境影响。最后,对所提出的传输线进行了瞬态分析。

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