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中压真空断路器开断后击穿电压特性的测量
Measurements of Breakdown Voltage Characteristics of Medium Voltage Vacuum Circuit Breaker After Current Interruption
| 作者 | Szymon Stoczko · Marcin Szewczyk · Waldemar Chmielak · Radosław Szreder · Zbigniew Pochanke |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2025年2月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 SiC器件 工商业光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 真空断路器 击穿电压特性 测试电路 大电流部分 拉布斯高压部分 |
语言:
中文摘要
本文提出一种用于测量真空断路器开断后击穿电压特性的试验电路。该电路结合IEC 62271-101标准中的合成试验电路大电流部分与Rabus型高压部分,前者模拟过零后的实际电流条件,后者施加高压以获取击穿电压特性。通过调节大电流部分可反映影响灭弧室物理状态的实际开断电流条件。以一款商用12 kV/1250 A/31.5 kA真空断路器为例,测量击穿电压随时间的变化,并结合触头行程曲线转换为触头开距函数,使结果可适用于具有相同灭弧室特性但操动机构不同的断路器。
English Abstract
We present a test circuit for measuring the breakdown voltage characteristics of a vacuum circuit breaker after current interruption process. The test circuit combines the high current part from the synthetic test circuit as per IEC Std. 62271-101 with the so-called Rabus high voltage part. The high current part reproduces the current phase before voltage build-up occurring after zero current crossing, then the Rabus high voltage part provides voltage breakdowns constituting breakdown voltage characteristics. The high current part can be adjusted to represent the actual current conditions which influences the physical conditions of the contact system upon which the interruption process is highly dependent. To illustrate the measuring system and the measuring procedure, the measurements of the breakdown voltages are reported for a commercial 12 kV/1250 A/31.5 kA vacuum circuit breaker. The breakdown voltages are measured primarily as a function of time and then converted via a contact travel curve into the vacuum interrupter contact gap function. This allows the results to be converted back and applied to a breaker with the same characteristics of the vacuum interrupter unit operating in similar current conditions, but with different mechanical characteristics of the breaker-specific actuator than the one used in testing.
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SunView 深度解读
该真空断路器击穿电压特性测量技术对阳光电源中压储能系统具有重要应用价值。在PowerTitan等大型储能系统中,中压真空断路器是关键保护设备,其开断后的介质恢复特性直接影响系统可靠性。该研究提出的击穿电压-触头开距特性测量方法,可用于优化ST系列储能变流器的中压开关柜设计,特别是在短路故障开断后的重合闸时序控制。通过建立触头开距与击穿电压的量化关系,可为1500V光伏系统和充电桩的直流断路器选型提供参考,优化最小开距设计,提升设备紧凑性。该测试方法还可应用于阳光电源智能运维平台,通过监测断路器动作特性实现预测性维护,降低储能电站非计划停机风险。