首页> 外文会议>International Conference on Electric Power Equipment - Switching Technology >Development of synthetic test methods for high-voltage circuit breakers 145–1200 kV
【24h】

Development of synthetic test methods for high-voltage circuit breakers 145–1200 kV

机译:开发145–1200 kV高压断路器的综合测试方法

获取原文

摘要

Nowadays, a clear trend of increase of system voltage to 800 kV AC and above can be observed in the world. This calls for the need of having test facilities to verify the fault current interruption performance of circuit breakers for such “super grids”. Standard synthetic test-methods for fault current interruption verification cannot be applied to circuit breakers of 800 kV and above, and alternative solution must be searched for. The present contribution highlights the test-circuits and test-methods that the author's laboratories have developed in recent year to be able to carry out a full test-program of short-circuit tests on circuit breakers up to 1200 kV. For such tests, separate, well-synchronized sources for the supply of fault current and transient recovery voltage (TRV) are required, combined to synthetic test circuits. In this contribution, it is shown how this principle is stretched further to be applied for UHV (above 800 kV) switchgear. A recently commissioned system of a two-stage synthetic installation is demonstrated, with actual test examples of 800 and 1100 kV circuit breakers, for which TRV's in excess of 2000 kV are required. A key feature of the test-circuit is that the circuit breaker under test can remain on ground, which greatly facilitates efficient testing compared to test approaches in which the breaker must be installed on an isolated platform. In case of three poles of a circuit breakers being mounted in a single enclosure, the international standards require synthetic testing of each pole simultaneously. The expansion of the laboratory with a new synthetic installation enables full three-phase synthetic testing, even under effectively earthed conditions, examples of which will be shown. In addition, three-phase closing ('making') tests will be illustrated, including the full power testing of a switch, designed to activate closing resistors in an 800 kV GIS circuit breaker.
机译:如今,在世界范围内可以观察到明显的系统电压升高到800 kV AC或更高的趋势。这就需要有测试设备来验证这种“超级电网”的断路器的故障电流中断性能。用于故障电流中断验证的标准综合测试方法不能应用于800 kV及以上的断路器,必须寻求替代解决方案。本稿着重介绍了作者实验室近年来开发的测试电路和测试方法,它们能够对1200 kV以下的断路器进行短路测试的完整测试程序。对于此类测试,需要单独的,同步良好的电源,以提供故障电流和瞬态恢复电压(TRV),并与综合测试电路结合使用。在此文稿中,显示了如何进一步扩展此原理以应用于特高压(800 kV以上)开关设备。演示了最近调试的两阶段合成装置的系统,并以800和1100 kV断路器的实际测试示例为例,为此需要超过2000 kV的TRV。测试电路的关键特征在于,被测试的断路器可以保持在地面上,与必须将断路器安装在隔离平台上的测试方法相比,这极大​​地促进了高效的测试。如果将三极断路器安装在一个外壳中,则国际标准要求同时对每个极进行综合测试。通过使用新的合成设备扩展实验室,即使在有效接地的条件下,也可以进行完整的三相合成测试,下面将举例说明。此外,还将说明三相闭合(“接通”)测试,包括开关的全功率测试,该开关旨在激活800 kV GIS断路器中的闭合电阻。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号