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Challenges to overcurrent protection devices under line-line faults in solar photovoltaic arrays

机译:太阳能光伏阵列线路故障下过流保护器件的挑战

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Solar photovoltaic (PV) arrays behave distinctively from conventional power sources so that they need special consideration in fault analysis and protection. The faults inside PV arrays usually cause overcurrent that may damage PV components. This paper focuses on the challenges to overcurrent protection devices (OCPDs) in a PV array under two types of unique fault scenarios. One is a line-line fault that occurs under low irradiance conditions. In this circumstance, the fault current may not be large enough to trip the OCPDs in the PV array, even when high irradiance occurs later in the day. The other fault scenario is that when PV blocking diodes are used in the PV array, the reverse current may be greatly limited. However, OCPDs might not detect the reverse current properly. In both fault scenarios, the fault may not be cleared successfully by conventional OCPDs. Therefore, faults may remain undetected, which could lead to reduced system efficiency, reduced system reliability, and even unexpected safety hazards.
机译:太阳能光伏(PV)阵列的行为与常规电源截然不同,因此在故障分析和保护中需要特别考虑。光伏阵列内部的故障通常会导致过电流,从而可能损坏光伏组件。本文着重介绍在两种独特的故障情况下,光伏阵列中的过流保护器件(OCPD)所面临的挑战。一种是在低辐照条件下发生的线路故障。在这种情况下,即使当天晚些时候发生高辐照度,故障电流也可能不足以触发PV阵列中的OCPD。另一个故障情况是在PV阵列中使用PV隔离二极管时,反向电流可能会受到很大限制。但是,OCPD可能无法正确检测反向电流。在这两种故障情况下,传统的OCPD可能无法成功清除故障。因此,可能无法检测到故障,这可能导致系统效率降低,系统可靠性降低,甚至出现意外的安全隐患。

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