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High-frequency impacts in a converter-based back-to-back tie; the Eagle Pass installation

机译:基于转换器的背对背式领带中的高频冲击; Eagle通过安装

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Voltage sourced converter-based transmission controllers, which use gate turn off switching components, introduce a new type of high voltage stress on insulation systems and materials. Fast switching components like IGBTs may generate or cause high-frequency voltages, which are superimposed upon the power frequency (50/60 Hz) voltage. Insulation within the station may thereby be continuously exposed to a new type of voltage stress, for which it has not been designed or tested. The high-frequency voltages may, under special circumstances, cause insulation damages at magnitude levels, which are well below the dielectric voltage withstand at power frequency. Compact insulation systems with resistive/refractive grading of the electrical field are particularly critical. Several compact type cable terminations rated 24 kV with resistive/refractive stressgrading have failed in the voltage soured converter-based back-to-back installation at Eagle Pass substation in the State of Texas. Through field measurements, laboratory tests, and simulations, the root cause of the failures has been identified. The compact cable terminations have been replaced by another type of termination, which is not sensitive to high-frequency voltages. The voltage sourced converter-based back-to-back installation in Eagle Pass is a joint ABB, EPRI, and AEP field demonstration project, which has been commissioned.
机译:基于电压的基于转换器的传输控制器,使用闸门关闭开关组件,在绝缘系统和材料上引入了一种新型的高压应力。像IGBT等快速切换组件可以产生或导致高频电压,其叠加在功率频率(50/60 Hz)电压上。由此可以连续地暴露于尚未设计或测试的新型电压应力中的驻地内的绝缘。在特殊情况下,高频电压可能导致幅度水平的绝缘损坏,这远远低于功率频率的介电电压。具有电阻/折射率的紧凑型绝缘系统尤其重要。几个紧凑型电缆终端额定电压/折射应力介的24 kV在德克萨斯州的Eagle Pass变电站上的电压源于转换器的背靠背安装失败。通过现场测量,实验室测试和模拟,已经确定了失败的根本原因。紧凑型电缆终端已被另一种类型的终端取代,这对高频电压不敏感。 Eagle Pass中的基于电压的基于转换器的背靠背安装是ABB,EPRI和AEP现场演示项目,已被委托。

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