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Temperature safety analysis and backup protection scheme improvement for overhead transmission line in power oscillation condition

机译:电力振荡条件下架空输电线路温度安全分析及后备保护方案的改进

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摘要

The oscillating block module is usually adopted to avoid false action of distance protection of overhead transmission lines during power oscillation. However, this scheme ignores the safe operation of conductor temperature during oscillating block. This paper focuses on the conductor overheating problem and safety protection issue during power oscillation. Firstly, through analysis the differences in conductor temperature calculations under oscillating current, short-circuit current and normal load, a numerical iterative method of conductor temperature rise (CTR) calculation under power oscillating current is proposed using the transient thermal balance equation. Then, the safe operation scheme of transmission line is proposed by setting temperature alarm and temperature off-limit trip out. An improved backup protection based on the combination of temperature and impedance is proposed to avoid false action of distance protection, also provide overheating protection for transmission line during power oscillation. Finally, a two-source power system and the modified 29-bus system are adopted to verify the CTR calculation and the improved backup protection. Results indicate that the proposed scheme can provide effective evidence of safe operation and relay setting for transmission lines through excavating the tolerance ability of overcurrent and oscillating current.
机译:通常采用振荡块模块来避免功率振荡期间架空传输线距离保护的误动作。然而,该方案忽略了在振荡块期间导体温度的安全操作。本文着重研究功率振荡过程中的导体过热问题和安全保护问题。首先,通过分析在振荡电流,短路电流和正常负载下导体温度计算的差异,提出了一种利用瞬态热平衡方程计算导体振荡温度在功率振荡电流下的数值迭代方法。然后,通过设置温度报警和温度超限跳闸,提出了输电线路的安全运行方案。提出了一种基于温度和阻抗相结合的改进后备保护措施,避免了距离保护的误动作,也为输电线路在振荡过程中提供了过热保护。最后,采用两源电力系统和改进的29总线系统来验证CTR计算和改进的后备保护。结果表明,该方案通过挖掘过电流和振荡电流的耐受能力,可以为输电线路的安全运行和继电保护提供有效的证据。

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