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Modelling Transposed-150kV-HVTLsWest Kalimantan Subsystemand 275kV SEB-PLN InterconnectionVoltage Unbalance Mitigation

机译:加里曼丹子系统和275kV SEB-PLN互连的转置式150kV-HVTL建模电压不平衡缓解

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The 275kV regional interconnection HVTL Mambong (Sarawak) to Bengkayang (West Kalimantan) imposes challenges to the GSO (Grid System Operators) to maintain the voltage levels and voltage unbalance within limits. We suggest how to design the strategies for stable operations under unbalance system situations for the power system interconnection. According to the existing concept, the transposition of transmission line phases is intended to reduce the current and voltage unbalance in the normal electrical system operating mode and to limit the obstructive influence of transmission lines on the transmission channel of low frequency. The length of the transposition process for lines with horizontal phase allocation should not exceed 24 km, and should not exceed 48 km at triangle allocation. The discrepancy in its parameter at one transposition interval is not completely balanced over the entire process, since the line is distributed at different conditions at one of the intervals. For a period in total the resulting parameters of line phases are different. Thus, even at the exact symmetry current and voltage systems at one end of the full transposition cycle, these systems at the other end become imbalances. This paper provides an analysis by applying the EMT Evaluation (Electromagnetic Transients Analysis) of the transposed 150 kV (Tayan-Sandai) transmission line of 162 km length. In this way, the findings obtained attest to the continuity of the inquiries and can also be used to address the problems of the specification of acceptable unbalance rates in longer lines.
机译:275kV区域互连HVTL Mambong(沙捞越)与Bengkayang(西加里曼丹)对GSO(电网系统运营商)提出了挑战,要求将电压水平和电压不平衡保持在极限范围内。我们建议如何设计不平衡系统情况下的稳定运行策略,以实现电力系统互连。根据现有的概念,传输线相位的转换旨在减少正常电气系统工作模式下的电流和电压不平衡,并限制传输线对低频传输通道的阻碍性影响。具有水平相位分配的线的换位过程的长度不应超过24 km,并且在三角形分配时不应超过48 km。在一个换位间隔中,其参数差异在整个过程中并未完全平衡,因为该行在一个间隔中处于不同条件下分布。在整个周期中,线路相位的最终参数是不同的。因此,即使在整个换位周期的一端具有精确对称的电流和电压系统,另一端的这些系统也变得不平衡。本文通过应用EMT评估(电磁暂态分析)对转置后的162 km的150 kV(泰安-三代)输电线路进行了分析。这样,获得的结果证明了查询的连续性,也可以用于解决较长线路中可接受的不平衡率规范的问题。

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