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Reactive power: A simplified model to justify the cost of interventions

机译:无功功率:简化模型以证明干预成本

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The electricity accounts of major electricity users include various cost components other than the unit cost of electricity. These added costs can be subdivided into reactive power charges and network charges. Typical mining groups and other large industries usually operate substantial inductive loads such as induction furnaces, induction motors and large transformers. These inductive loads all add up to increase the reactive power. This increases the reactive power- and network charges billed by the power utility, Eskom. There are many recognized ways to improve power quality. These include, amongst others, power factor correction installations. This paper investigates some of the typical interventions commercially available to correct low power factors. Because these interventions require considerable capital expenses, a financial analysis is required to explore the viability of these types of projects. A simplified financial model is presented to help make these decisions easier. This financial model includes reactive power- and network charges, as well as capital expenditure and interest. Using this model the payback period for the power factor correction installation is calculated and used to evaluate the feasibility of the installation.
机译:主要用电者的用电帐户除电的单位成本外还包括各种成本组成部分。这些增加的成本可以细分为无功功率费用和网络费用。典型的采矿集团和其他大型工业通常会运行大量的感应负载,例如感应炉,感应电动机和大型变压器。这些感性负载加起来会增加无功功率。这会增加由电力公司Eskom收取的无功和网络费用。有许多公认的方法可以改善电源质量。其中包括功率因数校正装置。本文研究了一些可用于纠正低功率因数的典型干预措施。由于这些干预措施需要大量的资本支出,因此需要进行财务分析以探讨此类项目的可行性。提出了简化的财务模型,以帮助简化这些决策。该财务模型包括无功功率和网络费用,以及资本支出和利息。使用此模型,可以计算出功率因数校正设备的投资回收期,并将其用于评估安装的可行性。

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