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Overvoltage control strategy and techniques of the UHV controllable metal oxide surge arrester

机译:特高压可控金属氧化物避雷器的过电压控制策略和技术

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According to mitigation effect of the controllable metal oxide surge arrester (CMOA) on switching overvoltage and absorbing energy of the CMOA components, the main parameters, suach as system threshold voltage at thyristor triggering moment U, and controllable ratio α, were specified. The control strategy of the CMOA for switching overvoltage was then drawn up. Due to the special characteristic of operating conditions of COMA thyristor valve, a new control and measuring technique was put forward. The influencing factors on the accuracy of the technique were analyzed. It indicates that breakdown voltage deviation of breakdown diode and voltage sharing rate deviation of thyristor valve are two main factors affecting control accuracy of CMOA. However, errors could be controlled within the allowable range. In order to testify the control and measuring technique, an 110kV CMOA was manufactured, which was used to testify its operation characteristic. And its response properties on impulse current and voltage were tested and discussed. It is shown that thyristor valve could operate at the set threshold value. After the valve was closed, its residual voltage reduced to 0 straightly, and residual voltage of CMOA had a reduction of 25%. Turn-on relay time of thyristor valve was 3.0μs, less than the set value. Hence the control strategy and techniques of CMOA was realized correctly.
机译:根据可控金属氧化物电涌放电器(CMOA)对CMOA组件的开关过电压和吸收能量的缓解作用,规定了主要参数,可控硅触发力矩U处的系统阈值电压suach和可控比率α。然后制定了用于开关过电压的CMOA的控制策略。由于COMA晶闸管阀的工作条件的特殊性,提出了一种新的控制和测量技术。分析了影响该技术准确性的因素。这表明,击穿二极管的击穿电压偏差和晶闸管阀的均压率偏差是影响CMOA控制精度的两个主要因素。但是,可以将误差控制在允许范围内。为了验证控制和测量技术,制造了110kV CMOA,用于验证其操作特性。并测试和讨论了其对脉冲电流和电压的响应特性。晶闸管阀可以在设定的阈值下工作。阀门关闭后,其残余电压直接降至0,而CMOA的残余电压降低了25%。晶闸管阀的接通继电器时间为3.0μs,小于设定值。因此,正确实现了CMOA的控制策略和技术。

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