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Multi-objective optimization of overhead transmission lines including the phase sequence optimization

机译:架空输电线路的多目标优化,包括相序优化

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Since the human density, technologies, industries and services are in continuous grow, the electrical power consumption increments over the time. To satisfy those power levels the transmission lines should increment their power capacity. However, the increment has to be done taking into account that the line projects should use the lowest possible space to decrease their environmental impact. The present paper proposes the use of optimized multi-circuit transmission lines with several circuits and voltage levels on the same tower. A mixed-integer non-linear programming (MINLP) model with variables in a permutation based space for optimizing the surge impedance loading (SIL), right of way (ROW), costs and height of power transmission lines is presented and solved using evolutionary computation with a multi-objective approach based on the Non-dominated Sorting Genetic Algorithm II (NSGA-II). The optimization is done by choosing the optimal position, type and quantity of conductors as well as the phase sequence in multi-circuit transmission lines. To deal with the different types of decision variables, a custom constraint handling is proposed. As a result of the optimization process, multi-circuit power transmission lines with narrower ROW, lower environmental impact, higher SIL and similar costs to conventional lines are obtained.
机译:由于人的密度,技术,行业和服务的不断增长,因此,功耗随时间增加。为了满足这些功率水平,传输线应增加其功率容量。但是,必须在考虑到生产线项目应使用尽可能最小的空间以减少其对环境的影响的情况下进行增量。本文提出了在同一塔上使用具有多个电路和电压水平的优化多电路传输线。提出了一种混合整数非线性规划(MINLP)模型,该模型在基于排列的空间中具有变量,用于优化电涌阻抗负载(SIL),通行权(ROW),输电线路的成本和高度,并通过进化计算进行求解基于非支配排序遗传算法II(NSGA-II)的多目标方法。通过选择最佳位置,类型和数量的导体以及多回路传输线中的相序来进行优化。为了处理不同类型的决策变量,提出了自定义约束处理。作为优化过程的结果,获得了具有更窄的ROW,更低的环境影响,更高的SIL以及与常规线路类似的成本的多回路输电线路。

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