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Harmonic Analysis of Power Systems in order to Network Conversion

机译:动力系统谐波分析,以便网络转换

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Conversion of three-Phase Single-Circuit (3PSC) network to three-Phase Double-Circuit (3PDC) and six-Phase Single-Circuit (6PSC) network is a well known method to increase the power transfer capability of the network to meet the increasing energy demand. The most significant constraints maybe used to decide on the optimal alternative, are total loss of the network and desirable voltage limits, while harmonics are omitted. However, harmonic impacts may cause damage to instruments, lead to undesirable power quality and increase total loss of the network. Thereby, in order to obtain the accurate result or adopting an optimal alternative for network conversion, harmonics should be considered. In this paper, harmonic analysis due to conversion of a 3PSC network to 3PDC and 6PSC network is performed. In the study, conversion of entire and one line of the network are analyzed, separately. The results show that suitable alternative for network conversion, with or without considering the effects of harmonics, is different. Also TIF of current is dependent of type of conversion and is different for 3PDC and 6PSC systems; but THD of voltages completely depends on the type of harmonic source in the network. However, analysis of frequency scan results shows that the number of resonances is more in 6PSC conversion than 3PDC counterpart. Also 6PSC conversion leads to less propagation of disturbances along the system during high frequency transients such as lightning surges.
机译:三相单电路(3PSC)网络转换为三相双电路(3PDC)和六相单电路(6PSC)网络是一种众所周知的方法,可以提高网络的功率传输能力以满足增加能源需求。最重要的限制可能用于确定最佳替代方案,是网络的总损失和期望的电压限制,而省略谐波。然而,谐波影响可能会对仪器造成损坏,导致不良电能质量,增加网络的总损失。由此,为了获得准确的结果或采用网络转换的最佳替代方案,应考虑谐波。在本文中,执行了由3PSC网络转换为3PDC和6PSC网络的谐波分析。在研究中,分别分别分析整个网络的转换和一行网络。结果表明,网络转换的合适替代方案,有或不考虑谐波的影响,是不同的。电流的TIF也取决于转换类型,对于3PDC和6PSC系统而言不同;但电压的THD完全取决于网络中的谐波源的类型。然而,频率扫描结果分析表明,共振次数比3PDC对应于3PDC转换更多。在高频瞬变(如避雷浪涌)期间,6PSC转换也导致沿系统沿着系统的扰动较少。

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