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Utilizing IEC61850 Standard and the Generic Object Orientated Substation Event Facility in Modern Protection and Control Devices

机译:在现代保护和控制设备中利用IEC 61850标准和面向对象的通用变电站事件设施

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IEC61850 technology has proved to be the future of communications in the power system protection environment. The numerous benefits of IEC61850 overshadow what the current widely used DNP3 technology has to offer. This paper is concerned with the investigation of the electrical protection communications technology which will be most beneficial to power utilities. In evaluating the two communication design alternatives, IEC61850 and DNP3, the research relied on theory, laboratory experiments, probability models and equipment purchase data. Analytical analysis of the two designs was carried out using a Monte Carlo approach whereby the stochastic weights of the seven evaluation criteria used in this research were presented as inputs to Monte Carlo analysis. The Simple Additive Weighting (SAW) strategy was employed as a deterministic model within Monte Carlo to evaluate the probability of IEC61850 being the most preferred technology over DNP3 or DNP3 over IEC61850 conversely. Three worst case scenarios of preferences were used during Monte Carlo evaluation. It was found through statistical analysis of the analytically obtained overall results that the probability of DNP3 technology being beneficial over IEC61850 was 0.54 in one of the worst case scenarios. In the other two worst case scenarios the probability of IEC61850 being the most desirable technology was found to be 0.52 and 0.59.
机译:事实证明,IEC61850技术是电力系统保护环境中通信的未来。 IEC61850的众多优势使当前广泛使用的DNP3技术所提供的优势黯然失色。本文关注电气保护通信技术的研究,这对电力公司将是最有益的。在评估两个通信设计替代方案IEC61850和DNP3时,该研究依赖于理论,实验室实验,概率模型和设备购买数据。使用蒙特卡洛方法对这两种设计进行了分析,从而将本研究中使用的七个评估标准的随机权重作为蒙特卡洛分析的输入。相反,简单蒙特卡洛(SAW)策略被用作Monte Carlo中的确定性模型,以相反地评估IEC61850是DNP3或DNP3优于IEC61850的首选技术的可能性。在蒙特卡洛评估中使用了三种最坏的偏好方案。通过对分析得出的总体结果进行统计分析,发现在最坏的情况之一中,DNP3技术优于IEC61850的可能性为0.54。在其他两种最坏的情况下,发现IEC61850是最理想的技术的可能性为0.52和0.59。

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