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引用次数: 0

摘要

在具有普遍电线电阻的电力线中,电压损失可以改变从开始到所涉及的消费者的路径上导体的横截面面积。路径各线段导线截面积的增大应使导线费用的总增加量最小。当导线成本与导线电压损失的导数在路径的所有段上相等时,就会发生这种情况。该导数可以用导体成本作为电流密度函数的曲线来确定。当变压器处于最优馈电区域时,当变压器单位成本的减量等于电网单位成本的增量时,变压器单位成本的减量达到最小。如果在最佳馈电区域的成本有效导线不满足电压损失的条件,则应考虑增加导线的横截面或减小馈电区域。如果没有必要的数据,可以在商业数据的基础上建立成本与电流密度的曲线。
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Distribution Networks Including the Power Lines with Prevailing Resistance
In power lines with prevailing wire resistance, voltage loss can be varied changing the cross-section area of the conductors on the path from the beginning to the consumer in question. The enlargement of cross-section area of wires of all line segments of the path should be such that the summary increase of wire cost is minimum. This occurs when derivatives of the wire costs by voltage loss of this wire for all segments of the path are equal. The said derivative can be determined using curves of conductor cost as function of current density. The lowest per unit of transferred energy cost of an optimum fed zone, with transformer located properly in the zone, takes place when, enlarging the zone, the decrement of transformer per unit cost equals to the increment of grid per unit cost. If for cost effective wires in optimum fed zone the condition of voltage loss is not met, the options should be considered increasing the cross-section of wires or decreasing the fed zone. If all necessary data are not possible, the said curve of cost versus current density can be built on the base of commerce data.
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