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Extending performance and evaluating risks of PV systems failure using a fault tree and event tree approach: Analysis of the possible application

机译:使用故障树和事件树方法扩展性能并评估光伏系统故障的风险:可能的应用分析

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Performance and reliability of photovoltaic (PV) systems are important issues in the overall evaluation of a PV plant and its components. While performance is connected to the amount of energy produced by the PV installation in the working environmental conditions, reliability impacts the availability of the system to produce the expected amount of energy. In both cases, the evaluation should be done considering information and data coming from indoor as well as outdoor tests. In this paper a way of re-thinking performance, giving it a probabilistic connotation, and connecting the two concepts of performance and reliability is proposed. The paper follows a theoretical approach and discusses the way to obtaining such information, facing benefits and problems. The proposed probabilistic performance accounts for the probability of the system to function correctly, thus passing through the complementary evaluation of the probability of system malfunctions and consequences. Scenarios have to be identified where the system is not functioning properly or at all. They are expected to be combined in a probabilistic safety analysis (PSA) based approach, providing not only the required probability, but also being capable of giving a prioritization of the risks and the most dominant scenario associated to a specific situation. This approach can offer the possibility to highlight the most critical parts of a PV system, as well as providing support in design activities identifying weak connections.
机译:光伏(PV)系统的性能和可靠性是对光伏电站及其组件进行总体评估的重要问题。当性能与工作环境条件下光伏装置产生的能量有关时,可靠性会影响系统产生预期能量的可用性。在这两种情况下,评估时都应考虑来自室内和室外测试的信息和数据。本文提出了一种重新考虑性能的方法,赋予其概率含义,并将性能和可靠性这两个概念联系起来。本文遵循一种理论方法,并讨论了获取此类信息的方法,面临着利益和问题。拟议的概率性能说明了系统正常运行的可能性,因此通过对系统故障和后果的可能性进行补充评估。必须确定系统无法正常运行或根本无法运行的方案。期望将它们结合到基于概率安全分析(PSA)的方法中,不仅提供所需的概率,而且还能够对风险和与特定情况相关的最主要情况进行优先级排序。这种方法可以提供突出显示光伏系统最关键部分的可能性,并为确定弱连接的设计活动提供支持。

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