一种高压输电线路智能自适应重合闸方案

Xiangning Lin, Bin Wang, Z. Bo, A. Klimek
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引用次数: 6

摘要

提出了一种利用残余电压和模糊决策来提高重合闸成功率的判据。由于高压传输线的分布参数和两相传输线之间耦合电容的存在,在发生单相接地故障并发生断相后,故障相的残余电压仍然存在。因此,可用残余电压来区分输电线路的永久故障和暂态故障。然而,根据现有的剩余电压方案,当在输电线路两端附近发生单相对地永久故障时,永久故障可视为暂态故障。在这种情况下,系统的稳定性将受到威胁。为了克服这一问题,本文提出了一种新的模糊决策方案,利用电容耦合电压和边界条件的信息对现有判据进行修正,从而极大地提高了判断的正确率。采用经典的二输入一输出模型设计模糊控制器,采用STD工业控制计算机系统作为硬件平台。分析和试验结果表明,新判据可广泛应用于具有重合闸的继电保护,特别是电力系统的数字继电保护。
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An Intelligent Adaptive Reclosure Scheme for High Voltage Transmission Lines
A criterion using residual voltage and fuzzy decision to improve the successful rate of reclosing is proposed. Residual voltage of the faulted phase still remains after a single phase to ground fault occurs followed by the faulted phase breaking because distributed parameters of the high-voltage transmission line and coupling capacitance between one phase and another phase transmission lines exist. Therefore, the residual voltage can be used to distinguish between permanent faults and transient faults of transmission lines. However, a permanent fault may be regarded as transient one when permanent single-phase fault to ground occurs near either end of the transmission line according to the existing residual voltage scheme. In this case the system stability will be threaten. In order to overcome this problem, a new scheme using fuzzy decision is proposed in this paper, the information of capacitance coupling voltage and the boundary condition will be used to revise the present criteria, so that the correct rate of judgment can be improved extremely. A classical model with two inputs and one output is used to design the fuzzy controller, a STD industrial control computer system is used as the hardware platform. The analysis and test results show that the new criterion can be widely applied in protective relaying with reclosing, especially digital relaying of power systems.
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