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Power Quality Effects on the Measurement of Reactive Power in Three-Phase Power Systems in the Light of the IEEE Standard 1459-2000

机译:鉴于IEEE标准1459-2000,对三相电力系统无功功率测量的电力质量效应

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Reactive power is a very important quantity in electric power systems since it affects the efficiency of these systems. Also, capacitive loads can produce over-voltages in electric transformers by Ferranti effect, which produces bad power quality, so it is necessary to measure the reactive power correctly. In this paper reactive phenomena in three-phase power systems with unbalanced voltages are expressed and measured in the light of the IEEE Std 1459-2000. For analyzing the reactive phenomena the positive-sequence fundamental frequency instantaneous reactive power is used. By comparing the expressions of this instantaneous power in three-phase systems with unbalanced voltages with those corresponding to balanced voltages, the reactive phenomenon due to the unbalances is obtained by separating of the traditional reactive power yield by the reactive loads in electric power systems. These reactive phenomena in three-phase power systems are formulated in the same way as Steinmetz defined reactive power in single-phase systems, by adding the amplitudes of each phase of its respective instantaneous reactive power. In the paper, this new formulation of the reactive phenomena has been applied on actual industrial and urban electric installations to obtain values of these reactive powers. Data registered express the following conclusions: a) reactive power is divided into two components: due to the reactive loads and caused by the unbalances, b) both reactive components can be inductive or capacitive quantities and, therefore, can he added or compensated, c) reactive power caused by the unbalances can exist even though in resistive systems, when there are unbalances at sources and at loads in the same time and, generally, when there is not any symmetry in the system.
机译:无功功率是电力系统中非常重要的数量,因为它影响了这些系统的效率。此外,电容负载可以通过Ferranti效应产生电动变压器的过电压,这产生了不良的功率质量,因此需要正确测量无功功率。在本文中,在IEEE STD 1459-2000的光中表示和测量具有不平衡电压的三相电力系统中的反应性现象。为了分析反应性现象,使用正序频率瞬时无功功率。通过将该瞬时功率的表达与具有与平衡电压相对应的不平衡电压的三相系统中的表达式进行比较,通过通过电力系统中的反应载体分离传统的无功功率产量来获得由于不平衡的反应现象。通过在单相系统中添加其各自的瞬时无功功率的每个相的幅度,这些反应性现象以与单相系统中的幅度相同的方式配制。本文在实际工业和城市电气装置上应用了这种反应性现象的新配方,以获得这些反应力的价值。数据注册表达了以下结论:a)无功功率分为两个组分:由于反应性负荷并且由不平衡引起的,b)两个反应部件都可以是电感或电容量,因此,他可以添加或补偿,c )由于在电阻系统中,当在源处并且在同一时的负载下并且通常,当系统中没有任何对称时,即使在电阻系统中也可以存在反应性。

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