张毅龙, 沈思远, 杨冬阳, 刘亚坤. 风光储混合系统的雷电过电压仿真[J]. 高电压技术, 2023, 49(2): 738-746. DOI: 10.13336/j.1003-6520.hve.20211503
引用本文: 张毅龙, 沈思远, 杨冬阳, 刘亚坤. 风光储混合系统的雷电过电压仿真[J]. 高电压技术, 2023, 49(2): 738-746. DOI: 10.13336/j.1003-6520.hve.20211503
ZHANG Yilong, SHEN Siyuan, YANG Dongyang, LIU Yakun. Simulation of Overvoltage in Wind-photovoltaic-energy Storage Hybrid System Induced by Lightning Stroke[J]. High Voltage Engineering, 2023, 49(2): 738-746. DOI: 10.13336/j.1003-6520.hve.20211503
Citation: ZHANG Yilong, SHEN Siyuan, YANG Dongyang, LIU Yakun. Simulation of Overvoltage in Wind-photovoltaic-energy Storage Hybrid System Induced by Lightning Stroke[J]. High Voltage Engineering, 2023, 49(2): 738-746. DOI: 10.13336/j.1003-6520.hve.20211503

风光储混合系统的雷电过电压仿真

Simulation of Overvoltage in Wind-photovoltaic-energy Storage Hybrid System Induced by Lightning Stroke

  • 摘要: 风光储混合系统相比于单一风电场或光伏系统具有多端源载混合的特点,混合系统的端口阻抗网络及其雷电下暂态响应特性与单一系统存在差别。利用PSCAD/EMTDC搭建风光储混合系统的暂态模型,计算风光储混合系统的雷电过电压分布,分析混合系统遭受雷击位置、架空线长度和避雷器接地方式对混合系统过电压水平的影响。结果表明,混合系统中光伏侧遭受雷击时变压器的过电压峰值高于风机侧遭受雷击情况;增大风机侧接入母线的架空线长度或减小光伏侧的架空线长度均可降低混合系统的过电压;风机侧与光伏侧的变压器高压侧避雷器均采用公共接地方式,储能侧采用单独接地方式可有效抑制混合系统的雷电过电压水平。

     

    Abstract: Compared with a single wind farm or photovoltaic system, the wind- photovoltaic- energy storage hybrid system has the characteristics of multi-terminal source load mixing. The port impedance network and lightning transient response of the hybrid system are distinct from those of a single system. The PSCAD/EMTDC is used to build the transient model of the wind- photovoltaic-energy storage hybrid system. Then, the lightning overvoltage distribution of the hybrid system is calculated, and the effects of lightning location, overhead line length and arrester grounding mode on the overvoltage level of the hybrid system are analyzed. Results show that, in the hybrid system, the peak overvoltage of the transformer when the photovoltaic side is struck by lightning is higher than that when the wind turbine side is struck by lightning. The overvoltage of the hybrid system can be reduced by increasing the length of the overhead line connected to the bus from the wind turbine side and by decreasing the length from the photovoltaic side. It is suggested that the common grounding method is adopted in arresters at the high voltage side of the transformers at both the wind turbine and photovoltaic sides, and the separate grounding method is adopted to restrain the overvoltage at the energy storage side.

     

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