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Use of intelligent metering systems to optimize the network state estimation in the distribution network 4.0

机译:使用智能计量系统优化分发网络4.0中的网络状态估计

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The present article begins with the theoretical composition of the communication infrastructure of an iMsys. In the next step, the practical field test realisation of the system will be presented on the basis of the implementation results achieved so far together with research partners from industry within the scope of the DESIGNETZ project. It will be shown how and in which form SM data are implemented and processed within the project in the rolled out distribution grid automation system. Within the context of the processing operation, synergies resulting from the combination of SM data and the own sensor measurement values of the distribution grid automation system will be demonstrated. The focus will be on improving the quality of the linear substitute value formation towards an adaptive substitute value formation, which enables a more exact power flow calculation. Finally, simulative results are presented which substantiate the added value of SM data. The differentiation between the various granularities of the SM data and the sensor measurement values provided by the automation system itself is made and its potential for expansion is presented. In the next step, the relevance of a concept for the processing of averaged energy values, the transmission of which is prescribed by the Measuring Point Operating Act (MPOA), will be examined based on the regulatory frameworks of iMsys. Based on this, future scenarios in which different granularities of SM data are available are described and target-oriented concepts for the use of the existing granularities are envisaged. Finally, the limitations and advantages of SM data are discussed and summarized.
机译:本文始于IMSYS的通信基础设施的理论构成。在下一步中,系统的实际现场测试实现将基于到目前为止从工业范围内与工业范围的研究合作伙伴一起实现的实现结果。将显示在轧制的分发网格自动化系统中在项目中实现和处理SM数据的方式和处理。在处理操作的上下文中,将参考由SM数据的组合和分布网格自动化系统的组合产生的协同作用。重点将提高线性替代值形成朝向自适应替代值形成的质量,这使得能够更精确的功率流量计算。最后,提出了模拟结果,其证实了SM数据的附加值。 SM数据的各种粒度与由自动化系统本身提供的各种粒度之间的差异,并且呈现了其扩展的可能性。在下一步骤中,将基于IMSYS的调节框架检查由测量点操作动作(MPOA)进行平均能值的概念的相关性,其传输由测量点操作动作(MPOA)。基于这一,将描述有关SM数据的不同粒度的未来情景,并设想用于使用现有粒度的目标概念。最后,讨论并汇总了SM数据的局限性和优点。

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