Discrete Operational Data Analysis in Real Time Mode to Deduce the Catastrophic Failure Causes of a Charred Central Inverter

Youssef BadryHassan, M. Orabi, M. Gaafar
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Abstract

The central inverter plays a significant role in large-scale PV plants. It is used to convert the DC power produced by many strings of the PV modules to AC power which is injected into the grid. So, it is considered the core of the PV plant. It affects distinctly the PV plant availability. So, the partial or total failures of inverters negatively affect PV plant availability. The inverter is designed to operate under specific conditions. Also, it is designed to produce AC power with technical specifications based on the input DC power characteristics. There are two types of data monitored during the inverter operation. The first type is the instantaneous data stored in the communication board memory. It is continuous time values that represent the waveforms of inverter outputs such as voltage, current, frequency, etcetera. Often, in the event of catastrophic failures that lead to the complete burning of the inverter, the instantaneous data is lost and can’t be restored. The second type is the operational data monitored and recorded by the SCADA system for each interval. It includes discrete RMS of inverter outputs such as voltage, current, frequency, etcetera. Most SCADA systems are designed to record data per minute. Hereby, the operational data is considered the sole data source in the event of catastrophic failures of the PV inverter. This paper presents an analytical model of the inverter operational data before fault occurrence. The objective of analyzing the inverter operational data is to deduce the thread-tip observation that indicates the failure causes of the grid-tie PV inverter.
焦化中心逆变器灾难性故障原因的实时离散运行数据分析
中央逆变器在大型光伏电站中起着至关重要的作用。它用于将多串光伏组件产生的直流电转换成交流电注入电网。因此,它被认为是光伏电站的核心。它明显影响光伏电站的可用性。因此,逆变器的部分或全部故障都会对光伏电站的可用性产生负面影响。逆变器是为在特定条件下运行而设计的。根据输入的直流电源特性,产生具有技术指标的交流电源。在逆变器运行过程中监控的数据有两种类型。第一种类型是存储在通信板存储器中的瞬时数据。它是连续的时间值,表示逆变器输出的波形,如电压、电流、频率等。通常,在灾难性故障导致逆变器完全烧毁的情况下,瞬时数据丢失并且无法恢复。第二类是由SCADA系统在每个井段监测和记录的作业数据。它包括逆变器输出的离散均方根,如电压、电流、频率等。大多数SCADA系统被设计成每分钟记录数据。因此,将运行数据视为光伏逆变器发生灾难性故障时的唯一数据源。本文建立了逆变器故障前运行数据的解析模型。分析逆变器运行数据的目的是推导出提示并网光伏逆变器故障原因的线尖观测值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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