A Decomposition Four-Component Model for Calculating Power Losses in Low-Voltage Power Supply Systems

D. Tugay, O. Shkurpela, Valentyn Akymov, I. Kostenko, O. Plakhtii
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引用次数: 1

Abstract

A new model for decomposition of the total power losses, which includes four components is proposed. Each of the components of the proposed model has a certain physical meaning due to the nature of electromagnetic processes in a three-phase four-wire system. Definitions to describe each of the proposed components are formulated. It is shown that each of supplementary components of the total loss power is proportional to the minimum possible loss power and to the square of the RMS value of the power, which is caused by its occurrence in three-phase four-wire power supply system, and it is inversely proportional to the mean square of the net power loss. The synthesized Matlab-model for verification of the four-component structure of power losses showed a high degree of its adequacy. The proposed model allows us to rethink the description of power losses in three-phase AC circuits and can be used in specialized measuring instruments for electrical networks monitoring. Using the information obtained in the monitoring process, it is possible to plan technical measures to reduce losses of electrical energy in the power supply system, as well as to estimate the capital costs of these measures.
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低压供电系统功率损耗计算的四分量分解模型
提出了一种包含四分量的总损耗分解模型。由于三相四线制系统中电磁过程的性质,所提出的模型的每个组成部分都具有一定的物理意义。给出了描述每个建议组件的定义。结果表明,总损耗功率的各补充分量与三相四线制供电系统中出现的最小可能损耗功率和功率均方根值的平方成正比,与净损耗的均方成反比。验证四分量结构的matlab综合模型具有较高的充分性。所提出的模型使我们能够重新思考三相交流电路中功率损耗的描述,并可用于电网监测的专用测量仪器。利用监测过程中获得的信息,可以规划技术措施,以减少供电系统中的电能损失,并估计这些措施的资金成本。
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