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Thermal Aging of Photovoltaic Cables Based Cross-Linked Polyolefin (XLPO) Insulation

机译:光伏电缆交联聚烯烃(XLPO)绝缘的热老化

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Photovoltaic and wind turbine energy systems have a pivotal role to meet the growth in power demand. The power generated from the renewable energy sources has main advantages of the absence of harmful emissions and infinite availability. The integration of photovoltaic systems into the power grid is expected to increase with the continuous reduction in the capital cost of these systems. The photovoltaic systems are exposed to extreme ambient conditions such as solar radiations, wind, humidity and thermal stresses. Cables in the photovoltaic systems are of great importance since they provide the link between the main components of the photovoltaic systems so, the reliability, efficiency and lifetime of the photovoltaic systems affected greatly by the functionality of these cables. This research presents a study of the insulation condition of Cross-Linked Polyolefin insulation based photovoltaic cable samples exposed to elevated temperature of 120 °C for four cycles. The analysis based on the measurement of the insulation capacitance, insulation resistance and the dissipation factor or tangent delta after each cycle as a function of frequency ranged from 100 Hz to 500 kHz. The results showed that the capacitance had a slight change with increasing the ageing period while the insulation resistance and the dissipation factor were more affected.
机译:光伏和风力涡轮机能源系统在满足电力需求增长方面具有举足轻重的作用。由可再生能源产生的电力的主要优点是没有有害排放物和无限的可用性。随着这些系统的资本成本的不断降低,预计将光伏系统集成到电网中会增加。光伏系统暴露于极端的环境条件下,例如太阳辐射,风,湿气和热应力。光伏系统中的电缆非常重要,因为它们提供了光伏系统主要组件之间的链接,因此,光伏系统的可靠性,效率和寿命会受到这些电缆功能的极大影响。这项研究提出了对交联聚烯烃绝缘的光伏电缆样品在120°C的高温下暴露四个周期的绝缘条件的研究。该分析基于每个周期之后的绝缘电容,绝缘电阻和耗散因数或正切增量的测量结果,该测量结果是频率范围为100 Hz至500 kHz的函数。结果表明,随着老化时间的增加,电容量有微小变化,而绝缘电阻和耗散系数受到的影响更大。

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