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Study and protection of lightning overvoltage on DC cables of solar power generation

机译:太阳能直流电缆雷电过电压的研究与保护

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In this paper, lightning induced overvoltage on DC cables of solar power panel, which was laid on the ground and an underground level with proper insulation thickness, was investigated when a lightning strike at a nearby place and its proper protection scheme was verified. The result shows that on ground cable voltage is approximately 28.83% more than that of the underground cable having soil resistivity 100Ω-m. Moreover, when soil resistivity increases to 1000Ω-m then the underground cable voltage is less about 48.50% than that of the on ground cable. The induced voltage caused by lightning electromagnetic interference on DC cables of solar power system at power conditioning subsystem (PCS) is analysed using electromagnetic field analysis approach. The FDTD method was applied to calculate induced voltage. Virtual Surge Test Lab (VSTL) is used for FDTD calculations, which solve Maxwell's electromagnetic equations with least approximations. The model of solar power system was represented with thin wires.
机译:本文研究了在附近场所发生雷击时,对铺设在地面和地下且绝缘厚度合适的太阳能电池板的直流电缆上的雷电感应过电压的情况,并验证了其适当的保护方案。结果表明,接地电缆的电压比土壤电阻率为100Ω-m的地下电缆大约高28.83%。此外,当土壤电阻率增加到1000Ω-m时,地下电缆的电压比接地电缆的电压低约48.50%。采用电磁场分析方法,分析了雷电电磁干扰对电力调节子系统(PCS)太阳能系统直流电缆的感应电压。 FDTD方法用于计算感应电压。虚拟浪涌测试实验室(VSTL)用于FDTD计算,它以最小近似值求解麦克斯韦的电磁方程。太阳能系统的模型用细线表示。

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