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Energy yields of small grid connected photovoltaic system: effects of component reliability and maintenance

机译:小型并网光伏系统的能源产量:组件可靠性和维护的影响

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The likelihood of system failure of small systems is investigated in order to establish the risk associated for the investment into a photovoltaic (PV) system for small domestic applications. This is achieved by reviewing existing literature on PV system failure rates and using these as an input for a statistical PV system yield simulation tool that considers failure and repair. It is typically assumed that these systems do not require any maintenance, but it is shown that this will have near catastrophic impact on the energy production of PV systems. The no maintenance is not a likely scenario, as small systems have to register their generation to achieve a feed-in-tariff. In a later stage, when PV is used for self-consumption only, this may change but in the present market most users are forced to carry out a quarterly check and thus this catastrophic failure is avoided by the need of having to apply for the feed-in-tariff. Minimum maintenance strategies for ensuring profitable system operation are investigated and their cost-effectiveness is discussed. It is shown that the present situation where many systems are neither monitored nor is any maintenance carried out results in a high probability of unsuccessful system operation as failure detection may take a very long time. Successful system operation here is defined as not recovering the financial investment. It would be advisable to carry out at least monthly performance checks as otherwise it is likely to have more than 10% energy lost because of system downtime. This requires, however, availability of irradiance data as otherwise it is not possible to identify whether low yields are due to resource issues or really system yield issues.
机译:为了确定小型家庭应用的光伏(PV)系统的投资风险,调查了小型系统发生系统故障的可能性。通过查看有关光伏系统故障率的现有文献,并将其用作考虑故障和维修的统计光伏系统良率模拟工具的输入,可以实现这一目标。通常假定这些系统不需要任何维护,但是事实表明,这将对PV系统的能源生产产生近乎灾难性的影响。不维护是不可能的情况,因为小型系统必须注册其发电量才能实现上网电价。在以后的阶段中,当PV仅用于自耗时,这可能会改变,但是在当前市场中,大多数用户被迫进行季度检查,因此,避免了这种灾难性的故障,因为必须申请饲料关税。研究了确保系统正常运行的最低维护策略,并讨论了其成本效益。结果表明,既不监视许多系统也不进行任何维护的当前状况,导致系统无法成功运行的可能性很高,因为故障检测可能需要很长时间。成功的系统操作在此定义为不收回金融投资。建议至少每月进行一次性能检查,否则可能会由于系统停机而导致能量损失超过10%。但是,这需要辐照度数据的可用性,否则将无法确定低产量是由于资源问题还是真正的系统产量问题。

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