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Online modular level fault detection algorithm for grid-tied and off-grid PV systems

机译:并网和离网光伏系统的在线模块化水平故障检测算法

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摘要

This paper presents a new fault detection and diagnosis technique for solar photovoltaic (PV) systems operating under grid-tied and off-grid modes. The proposed technique is capable to identify the type and location (module level) of a fault. This technique relies on the local measurements, and model prediction outputs for fault detection and diagnosis. Multiple low cost sensors were used to acquire/monitor solar irradiance, PV module temperature, voltage and current at module level in a PV system. A low cost PV monitoring system based on power line communication (PLC) to monitor the status of each PV module is also described in this work. A new algorithm is developed to detect different types of faults, and to display other essential system information (with a watch window size of 10 min). Additionally, a user friendly web application is developed for easy access of monitored data via Internet. The proposed technique is shown to have lower computational requirements; therefore, the same microcontroller is used for data communication and fault detection without any external hardware or additional simulation software. This technique has been experimentally validated using the PV system developed at the Solar Laboratory, Alternate Hydro Energy Centre (AHEC), IIT Roorkee, India. Experimental results have demonstrated the effectiveness of proposed technique in detecting the various fault occurrences in both grid-tied and off-grid PV system.
机译:本文提出了一种在并网和离网模式下运行的太阳能光伏(PV)系统的新故障检测和诊断技术。所提出的技术能够识别故障的类型和位置(模块级别)。该技术依赖于本地测量以及模型预测输出以进行故障检测和诊断。在光伏系统中,使用了多个低成本传感器来获取/监视太阳能辐照度,光伏组件温度,组件级别的电压和电流。在这项工作中,还介绍了一种基于电力线通信(PLC)的低成本PV监视系统,用于监视每个PV模块的状态。开发了一种新算法来检测不同类型的故障,并显示其他基本系统信息(监视窗口大小为10分钟)。另外,开发了一个用户友好的Web应用程序,用于通过Internet轻松访问监视的数据。所提出的技术显示出较低的计算要求。因此,无需任何外部硬件或额外的仿真软件即可将同一微控制器用于数据通信和故障检测。该技术已使用印度IIT Roorkee的备用水能中心(AHEC)的太阳能实验室开发的光伏系统进行了实验验证。实验结果证明了该技术在检测并网和离网光伏系统中各种故障的有效性。

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