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Optimizing the Positioning of Power Sources in Industrial Units Electrical Power Systems on the Basis of the Method of Distributed Power Density

机译:基于分布式功率密度的方法优化工业单元电力系统中电源的定位

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The article analyzes the electrical power system of a machine construction workshop where optimal positioning of power sources (power substation, distribution points) has to be determined so as to lower the metal consumption. The goal of the work is to develop a model of an efficient electrical power system at an industrial unit employing the method of distributed power density, developed by the authors. This method will help to determine the position of power sources. The amount of energy losses per power transmission and the metal consumption of the system were used as optimization criteria. The suggested method is based on the presentation of each surface load in the form of solids of revolution, limited by planes produced by the multiple of the basic function and the load power. The results were analyzed by means of substituting the group of consumers by an equivalent consumer and determining the radius of diffusion. The method of distributed power density allows to design the system of power supply with better characteristics in terms of minimal losses per power transmission and minimal metal consumption. The suggested method can be used in designing the power systems of industrial units and larger geographical areas. This method will help to determine the best position for reactive power compensators, the installation of which will help to minimize the losses in the system, increase the quality of the power supplied to the consumer unit.
机译:本文分析了机器结构车间的电力系统,其中必须确定电源(功率变电,分配点)的最佳定位,以降低金属消耗。该工作的目标是在采用作者开发的分布式电力密度方法的工业单元中开发一个高效电力系统的模型。该方法将有助于确定电源的位置。每个动力传递的能量损失量和系统的金属消耗用作优化标准。所建议的方法基于旋转固体形式的每个表面负荷的呈现,限制由基本功能的倍数和负载功率产生的平面。通过通过等同的消费者代替消费者组并确定扩散半径来分析结果。分布式功率密度的方法允许设计电源系统,在每个动力传动和最小金属消耗的最小损耗方面具有更好的特性。建议的方法可用于设计工业单位的电力系统和更大的地理区域。该方法将有助于确定无功补偿器的最佳位置,安装它将有助于最小化系统中的损耗,提高提供给消费者单元的电力的质量。

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