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首页> 外文期刊>international journal of emerging electric power systems >A new differential current circle diagram based technique for long transmission line protection
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A new differential current circle diagram based technique for long transmission line protection

机译:一种基于差分电流圆图的长输电线路保护新技术

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摘要

In view of sensitivity, selectivity, and operating speed of the relay, the current differential technique is an alternative against overcurrent and distance-based techniques for long transmission line protection. Moreover, this technique has limited performance due to Line Charging Capacitive Current (LCCC), Current Transformer (CT) saturation further, by using synchronized data, the effect of LCCC can be nullified. However, in case of synchronition is lost, the performance of the current differential is not reliable. Hence, in this paper, the Inverse of Difference of both end Current phasors (IDC) is applied to prevent maloperation due to channel delay and synchronization loss. The simulation experiments are conducted under various operating conditions on a 345 kV, 50 Hz, IEEE 39-bus network using PSCAD 4.5 and MATLAB (R2020a). Results reveal the enhanced security under CT saturation, LCCC and sensitivity under high resistance line to ground faults.
机译:鉴于继电器的灵敏度、选择性和工作速度,电流差分技术是长传输线保护中过流和基于距离的技术的替代方案。此外,由于线路充电电容电流(LCCC)、电流互感器(CT)饱和,该技术的性能有限,通过使用同步数据,可以抵消LCCC的影响。但是,在失去同步的情况下,电流差分的性能就不可靠。因此,该文采用两端电流相量差反比(IDC)来防止因信道延迟和同步损耗而导致的误操作。仿真实验在345 kV、50 Hz、IEEE 39总线网络上使用PSCAD 4.5和MATLAB(R2020a)进行。结果表明,在CT饱和度、LCCC和高电阻线对地故障下具有更高的安全性和灵敏度。

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