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A design of small current grounding line detection device based on MCGS and steady-state signal

机译:基于MCGS和稳态信号的小电流接地线检测装置设计

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In neutral point ineffectively grounding power system, the single-phase-to-earth fault is most likely to occur. Due to the complicated environment when single-phase-to-earth fault occurs, lots of domestic and foreign experts are focus on the related research of related theories and devices. Although varieties of fault line detection theories are emerge endlessly, the results are unsatisfactory. The main reason is that the front channel signal detection, sampling, conversion is inaccurately. For those reason,Combined with zerosequence admittance method, MCGS (Monitor and Control Generated System) touch screen module, ADAM-4117 data acquisition module, front-end circuit module and power resource module are used to develop a new type of fault line detection device in this paper. By this line detection device,the flaw of previous line detection device can be remedied. And the new device which can improve the degree of accuracy and the efficiency in line detection can make the line detection really play a role. And then the stability and reliability of power system will improve. Before then,the line detection device mainly base on DSP and SCM and utilize the zero-sequence current method. The MCGS software is available for many years. But not develop its advantages in line detection field. This combination is the first time. In addition,zero sequence admittance method has never appeared in the actual line detection device. The accuracy and instantaneity of this device in fault line detection are verified through laboratory and actual transformer substation experiments.
机译:在中性点无效接地的电力系统中,单相接地故障最有可能发生。由于发生单相接地故障的环境复杂,国内外许多专家都在关注相关理论和装置的相关研究。尽管故障线检测理论的出现层出不穷,但结果仍不尽人意。主要原因是前通道信号的检测,采样,转换不准确。因此,结合零序导纳方法,使用MCGS触摸屏模块,ADAM-4117数据采集模块,前端电路模块和电源模块开发了新型故障线检测装置。在本文中。通过该线检测装置,可以弥补先前的线检测装置的缺陷。而新的可以提高线路检测的准确性和效率的设备可以使线路检测真正发挥作用。进而提高电力系统的稳定性和可靠性。在此之前,线路检测设备主要基于DSP和SCM,并采用零序电流方法。 MCGS软件已经可用了很多年。但是没有发展其在线路检测领域的优势。这是第一次组合。另外,零序导纳方法从未出现在实际的线路检测装置中。通过实验室和实际的变电站实验,验证了该设备在故障线路检测中的准确性和瞬时性。

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