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On decrement factor how and why X/R correction is used and abused

机译:关于递减因子如何以及为何使用和滥用X / R校正

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The dominantly reactive nature of electricity networks, coupled with fast protection times, means the short circuit response of the current waveform is rarely symmetrical. In reality, fault current asymmetry produces an increased rms equivalent current due to decaying DC offset modelled by decrement-factor. For earthing systems this larger rms current creates higher earthing voltages and should be considered properly so that worst case hazards and equipment ratings are assessed. The experience of the authors is that decrement-factor is often incorrectly applied to earthing assessments or not at all. Sound engineering argument supports a case for decrement-factor to NOT be applied in areas of earthing system analysis where mutual coupling is concerned, for instance pipeline induction studies and earth return coupling, such as OHEW or cable-sheath. This first paper of ongoing studies is a re-examination of decrement-factor and how such correction should be made correctly to power system earthing analysis.
机译:电网的主要无功特性,加上快速的保护时间,意味着电流波形的短路响应很少对称。实际上,由于递减系数建模的衰减直流偏移,故障电流不对称会产生均方根等效电流的增加。对于接地系统,此较大的均方根电流会产生较高的接地电压,应适当考虑以评估最坏情况下的危险和设备额定值。作者的经验是,递减因子通常不正确地应用于接地评估,或者根本不正确。声音工程学上的论点支持在因相互耦合而进行的接地系统分析领域(例如管道感应研究和接地回路耦合,例如OHEW或电缆护套)中不应用递减系数的情况。正在进行的研究的第一篇论文是对递减因子的重新检验,以及如何正确地对电力系统接地分析进行这种修正。

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