Sensors placement for the faults detection and isolation based on bridge linked configuration of photovoltaic array

S. Latreche, A. Khenfer, M. Khemliche
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引用次数: 2

Abstract

Introduction. The photovoltaic market has been increased over the last decade at a remarkable pace even during difficult economic times. Photovoltaic energy production becomes widely used because of its advantages as a renewable and clean energy source. It is eco-friendly, inexhaustible, easy to install, and the manufacturing time is relatively short. Photovoltaic modules have a theoretical lifespan of approximately 20 years. In real-life and for several reasons, some photovoltaic modules start to fail after being used for a period of 8 to 10 years. Therefore, to ensure safe and reliable operation of photovoltaic power plants in a timely manner, a monitoring system must be established in order to detect, isolate and resolve faults. The novelty of the proposed work consists in the development of a new model of sensors placement for faults detection in a photovoltaic system. The fault can be detected accurately after the analysis of changes in measured quantities. Purpose. Analysis of the possibility of the number and the position of the sensors into the strings in function of different faults. Methods. This new method is adapted to the bridge linked configuration. It can detect and locate failure points quickly and accurately by comparing the measured values. Results. The feasibility of the chosen model is proven by the simulation results under MATLAB/Simulink environment for several types of faults such as short-circuit current, open circuit voltage in the photovoltaic modules, partially and completely shaded cell and module.
基于桥接结构的光伏阵列故障检测与隔离传感器布置
介绍。在过去十年中,即使在经济困难时期,光伏市场也以惊人的速度增长。光伏发电因其可再生能源和清洁能源的优点而得到广泛应用。环保,用之不竭,安装方便,制造时间相对较短。光伏组件的理论寿命约为20年。在现实生活中,由于种种原因,一些光伏组件在使用8到10年后就开始出现故障。因此,为了及时保证光伏电站安全可靠运行,必须建立监测系统,及时发现、隔离和解决故障。提出的工作的新颖之处在于开发了一种用于光伏系统故障检测的传感器放置新模型。通过对测量量变化的分析,可以准确地检测出故障。目的。分析了传感器的数量和位置在不同功能串中出现故障的可能性。方法。该方法适用于桥梁连接结构。通过对测量值的比较,可以快速准确地检测和定位故障点。结果。通过在MATLAB/Simulink环境下对光伏组件短路电流、开路电压、部分和完全遮蔽电池和组件等几种故障进行仿真,验证了所选模型的可行性。
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