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PMU-based distribution system state estimation with adaptive accuracy exploiting local decision metrics and IoT paradigm

机译:基于PMU的配电系统状态估计,具有自适应精度,可利用本地决策指标和IoT范式

摘要

A novel adaptive distribution system state estimation (DSSE) solution is presented and discussed, which relies on distributed decision points and exploits the Cloud-based Internet of Things (IoT) paradigm. Up to now, DSSE procedures have been using fixed settings regardless of the actual values of measurement accuracy, which is instead affected by the actual operating conditions of the network. The proposed DSSE is innovative with respect to previous literature, because it is adaptive in the use of updated accuracies for the measurement devices. The information used in the estimation process along with the rate of the execution are updated, depending on the indications of appropriate local metrics aimed at detecting possible variations in the operating conditions of the distribution network. Specifically, the variations and the trend of variation of the rms voltage values obtained by phasor measurement units (PMUs) are used to trigger changes in the DSSE. In case dynamics are detected, the measurement data are sent to the DSSE at higher rates and the estimation process runs consequently, updating the accuracy values to be considered in the estimation. The proposed system relies on a Cloud-based IoT platform, which has been designed to incorporate heterogeneous measurement devices, such as PMUs and smart meters. The results obtained on a 13-bus system demonstrate the validity of the proposed methodology that is efficient both in the estimation process and in the use of the communication resources.
机译:提出并讨论了一种新颖的自适应分布式系统状态估计(DSSE)解决方案,该解决方案依赖于分布式决策点并利用基于云的物联网(IoT)范式。到目前为止,DSSE程序一直使用固定设置,而与测量精度的实际值无关,而实际受到网络实际运行状况的影响。所提出的DSSE相对于先前的文献是创新的,因为它可以适应性地使用测量设备的更新精度。估计过程中使用的信息以及执行率将根据适当的本地度量标准的指示进行更新,这些指标旨在检测配电网络的运行状况是否可能发生变化。具体而言,将由相量测量单元(PMU)获得的均方根电压值的变化和变化趋势用于触发DSSE中的变化。如果检测到动态变化,则将测量数据以较高的速率发送到DSSE,从而进行估算过程,从而更新估算中要考虑的精度值。拟议的系统依赖于基于云的物联网平台,该平台旨在整合各种测量设备,例如PMU和智能仪表。在13总线系统上获得的结果证明了所提出方法的有效性,该方法在估计过程和通信资源使用方面均十分有效。

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