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Testing of ground fault relay response during the energisation of megawatt range electric boilers in thermal power plants

机译:在火力发电厂的兆瓦级电锅炉通电期间测试接地故障继电器响应

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摘要

Large controllable loads may support power systems with an increased penetration of fluctuating renewable energy, by providing a rapid response to a change in the power production. Megawatt range electric boilers are an example of such controllable loads, capable of change rapidly, with the advantage that the warmed water can be reused in a thermal power plant or for regional heating, thus, minimising the overall losses.However, one problem was raised by those purchasing the boilers, mainly a possible unwanted triggering of the protections relays, especially ground fault protection, during the energisation of a boiler. A special case for concern was the presence of an electric arc between the electrodes of the boiler and the water in the boiler during approximately 2s at the energisation, which can in theory be seen as a ground fault by the relay. The voltage and current transient waveforms were measured for two separate energisation transients of the boiler and the results used to build a PSCAD model able to replicate the results for different system configurations.The results of various PSCAD simulation, as well as the original measurements, are used as input signals for the testing of two ground fault protection relays, in order to assure that they are not triggered by the energisation of the boiler. The test is performed via an Omicron CMC transplay, which generates the signals that would be present at the secondary of the instrumentation transformers, resulting in a realistic simulation environment. The test of different cases demonstrates that the relays will not present unwanted triggering
机译:通过提供对发电量变化的快速响应,可控制的大负载可以为波动较大的可再生能源的渗透提供支持。兆瓦级电锅炉是这种可控制负载的示例,能够快速变化,其优点是热水可以在火力发电厂或区域供热中重复使用,从而将总损失降至最低。通过购买锅炉的人员,主要是在锅炉通电期间可能会意外触发保护继电器,尤其是接地故障保护。值得关注的一种特殊情况是在通电时约2秒内,锅炉电极与锅炉水之间存在电弧,理论上可以将其视为继电器的接地故障。测量了锅炉两个单独的通电瞬变的电压和电流瞬变波形,并将结果用于建立PSCAD模型,该模型可以复制不同系统配置的结果。各种PSCAD模拟的结果以及原始测量结果为用作测试两个接地故障保护继电器的输入信号,以确保它们不会被锅炉通电触发。该测试是通过Omicron CMC Transplay进行的,该Cplay生成的信号将出现在仪表变压器的次级线圈上,从而提供了一个逼真的仿真环境。在不同情况下的测试表明,继电器不会出现不必要的触发

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