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Computational Model for the Dimensioning of Neutral Conductor in Low Voltage Power Networks Operating in Various Regimes

机译:在不同情况下运行的低压电网中的中性导体尺寸计算模型

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In low-voltage electrical installations, power issues having the highest incidence are related to the presence of higher harmonics in the waveform spectrum of the absorbed currents and also to the imbalances in the three-phase distributions. The deforming (non-sinusoidal) regime becomes even more undesirable for networks having a low short-circuit response factor (high impedance systems) and, normally, it also causes distortion of waveforms of the supply voltage. Current unbalance (more rarely) is typically seen in networks that supply single-phase consumers (where virtually no balancing is possible on each phase) causing unwanted effects in installations. In this paper, we will investigate how the neutral conductor should be dimensioned inside low-voltage three-phase electric installations, where these deforming modes and / or load imbalances may occur. A new algorithm, easy to implement in any software environment, dedicated for dimensioning the neutral conductor of that installation, will be also described.
机译:在低压电气设备中,发生率最高的电源问题与吸收电流的波形频谱中高次谐波的存在以及三相分布的不平衡有关。对于具有低短路响应因子的网络(高阻抗系统),变形(非正弦)状态变得更加不可取,并且通常还会导致电源电压波形失真。电流不平衡(很少见)通常出现在为单相用电设备供电的网络中(实际上每相都不可能实现平衡),从而在安装过程中产生不良影响。在本文中,我们将研究低压三相电气设备中中性导体的尺寸,在这些电气设备中可能会发生这些变形模式和/或负载不平衡。还将描述一种新的算法,该算法易于在任何软件环境中实施,专用于确定该设备的中性线的尺寸。

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