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New possibilities in field testing of distributed protection systems

机译:分布式保护系统现场测试的新可能性

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Due to the increasing complexity of our electrical power systems, the need for highly selective protection is increasingly being fulfilled by the use of teleprotection schemes or line differential protection. To test such protection systems properly, a distributed end-to-end test with synchronized injection is required. The first challenge for such a test is the correct calculation of the voltages and currents to inject at both (or even multiple) ends. Therefore, a simulation of the fault scenario based on the power system network, is needed which can deliver all of the required values. For the execution of an actual fault scenario (shot), a single software application which controls all test devices on both (or multiple) ends from a single PC, is much more convenient and productive than separate software applications, which have to be operated manually for synchronized injection. Controlling a remote test device is now possible using an existing Internet connection at each end of the test.
机译:由于我们的电力系统的复杂性越来越多,通过使用远程保护方案或线差动保护,越来越满足对高选择性保护的需求。为了正确测试这种保护系统,需要具有同步喷射的分布端到端测试。这种测试的第一个挑战是在两个(甚至多个)结束时对电压和电流进行正确计算。因此,需要基于电力系统网络的故障场景的模拟,其可以提供所有所需的值。为了执行实际故障方案(拍摄),单个软件应用程序,可在单个PC上控制(或多个)的所有测试设备,比单独的软件应用程序更方便,更高效,必须手动操作用于同步喷射。现在可以使用测试的每个结束时使用现有的Internet连接来控制远程测试设备。

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