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Sentinella: Smart Monitoring of Photovoltaic Systems at Panel Level

机译:Sentinella:面板级别的光伏系统智能监控

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The monitoring of photovoltaic (PV) systems is important for the optimization of their efficiency. In this paper, a low-cost smart multisensor architecture equipped with voltage, current, irradiance, temperature, and inertial sensors, for the monitoring (at the panel level) of a PV system, is presented with the aim of detecting the causes of efficiency losses. The system is based on a Wireless Sensor Networks with sensing nodes installed on each PV panel. The acquired data are then transferred to a service center where dedicated paradigms continuously perform the assessment of electrical efficiency as well the estimation of correlated causes, at the single panel level. In this paper, the detection of critical faults (temporary and permanent shadowing, dirtying, and anomalous aging) is addressed. The methodology adopted to estimate efficiency losses and related causes is based on the comparison between the measured efficiency of each PV panel and the nominal one estimated in the real operating conditions. Moreover, the anomalous aging estimation is based on the five parameter model approach that exploits a dedicated minimization paradigm to analyze the mismatch between the nominal current–voltage model of the PV panel and the measured one. The main advantage of the proposed approach is the continuous monitoring of PV plants and the assessment of possible causes of power inefficiency at the PV panel level, allowing for the implementation of a really efficient distributed fault diagnosis system. The experimental results are presented along with the analysis of the uncertainty affecting the measurement system.
机译:光伏(PV)系统的监视对于优化效率非常重要。在本文中,提出了一种低成本的智能多传感器架构,该架构配备了电压,电流,辐照度,温度和惯性传感器,用于监控(在面板一级)光伏系统,旨在检测效率起因。损失。该系统基于无线传感器网络,每个光伏面板上均安装了传感节点。然后,将获取的数据传输到服务中心,在该中心,专用范例会在单个面板级别上连续执行电效率评估以及相关原因的评估。在本文中,解决了关键故障(临时和永久性阴影,脏污和异常老化)的检测。估算效率损失和相关原因所采用的方法是基于每个光伏面板的实测效率与实际运行条件下估算的标称效率之间的比较。此外,异常老化估计基于五参数模型方法,该方法利用专用的最小化范式来分析光伏面板的标称电流-电压模型与被测模型之间的不匹配。提出的方法的主要优点是对光伏电站的连续监视以及在光伏面板级别评估功率效率低下的可能原因,从而可以实施真正有效的分布式故障诊断系统。给出了实验结果以及对影响测量系统的不确定性的分析。

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