首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Controlled switching technique for minimization of switching surge during energization of uncompensated and shunt compensated transmission lines for circuit breakers having pre-insertion resistors
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Controlled switching technique for minimization of switching surge during energization of uncompensated and shunt compensated transmission lines for circuit breakers having pre-insertion resistors

机译:控制开关技术,用于在具有预插入电阻器的断路器的未补偿和并联补偿传输线通电期间使开关浪涌最小化

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摘要

Controlled Switching Device (CSD) is considered to be the replacement of Pre-Insertion Resistor (PIR). Moreover, tie Circuit Breaker (CB) used in One-and-a-Half-Breaker (OHB) scheme as well as in line connected with nonswitchable reactor scheme are employed with PIR and CSD. In this paper, a new methodology has been proposed using CSD with PIR-CB for further mitigation of the switching surge during energization/re-energization of Uncompensated Transmission Line (UCTL) and Shunt reactor compensated Transmission Line (SCTL). Unlike the existing methodology (both for UCTL/SCTL) which requires line side voltage signatures, the proposed methodology does not necessitate the same for SCTL and requires only the polarity of line side voltages for UCTL. The performance of the proposed methodology has been evaluated by generating diversified cases on 400 kV UCTL and SCTL using PSCAD/EMTDC software package. The proposed switching strategy is able to mitigate the switching surge of the order of 33% for UCTL and 20% for SCTL. Comparative evaluation of the proposed methodology with usual PIR methodology clearly shows its effectiveness with reference to statistical variations of CB. The proposed methodology has been validated during effects of various parameters such as weather conditions, insulation resistance, change in closing phase sequence, and Surge Arrestor (SA).
机译:受控开关设备(CSD)被认为是预插入电阻器(PIR)的替代品。此外,PIR和CSD使用了一个半断路器(OHB)方案以及与不可切换电抗器方案串联的线路断路器(CB)。在本文中,已经提出了一种使用CSD和PIR-CB的新方法,以进一步缓解无补偿传输线(UCTL)和并联电抗器补偿传输线(SCTL)通电/重新通电期间的开关浪涌。与要求线侧电压签名的现有方法(对于UCTL / SCTL而言)不同,所提出的方法对于SCTL并不需要相同的方法,而对于UCTL仅需要线侧电压的极性。通过使用PSCAD / EMTDC软件包在400 kV UCTL和SCTL上生成各种案例,对所提出方法的性能进行了评估。所提出的转换策略能够将UCTL转换为33%并将SCTL转换为20%的转换浪涌。相对于CB的统计变化,对拟议方法与常规PIR方法的比较评估清楚地表明了其有效性。所提出的方法已在各种参数(例如天气条件,绝缘电阻,闭合相序的变化和浪涌抑制器(SA))的影响下得到了验证。

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