电隔离开关运行时电磁辐射特性分析与建模

J. Su
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引用次数: 0

摘要

电气隔离开关运行时产生的电磁辐射会引起系统一次侧绝缘危险、二次设备故障等电磁干扰问题。电磁干扰将直接导致电网保护发生故障或损坏,影响二次回路的可靠性。利用超快瞬态过电压波形和频率分量,分析了传导耦合和辐射耦合的过程。根据超快瞬态过电压通过CT、CVT和空间电磁场的过程,讨论了电缆二次干扰的机理。建立了具有分布参数的线路模型、具有可重复击穿的隔离开关模型、具有开闭电阻的隔离开关模型和相控断路器模型。数值计算内部隔离器和断路器运行空载电路时产生的过电压。数值计算了在空载电路中,隔离器和断路器产生的过电压。结合电力系统典型电路的分析方法,建立了电气隔离开关的过电压分析模型,实现了电磁辐射特性仿真。实验表明,在隔离开关闭合操作的整个过程中,隔离开关会发生上百次的击穿。短线扰动电压随工频电源电压跳跃式变化,呈现阶跃电压波,过电压扰动持续几百毫秒。
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Analysis and Modeling of Electromagnetic Radiation Characteristics During Switch Operation of Electrical Isolation
The electromagnetic radiation generated by the operation of the electrical isolation switch will cause electromagnetic interference problems such as the insulation risk of the primary side of the system and the malfunction of the secondary equipment. Electromagnetic interference will directly cause the power grid protection to malfunction or damage, and affect the reliability of the secondary circuit. With the ultra-fast transient overvoltage waveform and frequency components, the process of conduction coupling and radiation coupling is analyzed. According to the process of ultra-fast transient overvoltage passing through CT, CVT and space electromagnetic field, the mechanism of secondary cable interference is discussed. The following models are established, a line model with distributed parameters, a model of an isolating switch with repeatable breakdown, a model of an isolating switch with opening and closing resistors, and a phase-controlled circuit breaker. Numerically calculate the overvoltage generated by the internal disconnector and circuit breaker operating the no-load circuit. Numerical calculations are made for the overvoltage generated by the disconnector and circuit breaker operating the no-load circuit. Combined with the analysis method of the typical circuit of the power system, the overvoltage analysis model of the electrical isolation switch is established, and the electromagnetic radiation characteristic simulation is realized. Experiments show that during the whole process of the isolation switch closing operation, the isolation switch will break down hundreds of times. The short-line disturbance voltage follows the change of the power frequency power supply voltage in a jump mode, presents a step voltage wave, and the overvoltage disturbance lasts for several hundred milliseconds.
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