牵引网高频阻抗特性研究
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朱明(1995—),女,硕士研究生,研究方向为牵引供电计算。E-mail:zhu-ming113@126.com。

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U223.2

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国家自然科学基金项目(51467004)


Research on High Frequency Impedance Characteristics of Traction Network
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    摘要:

    经典牵引网阻抗计算公式采用实心圆导线模型及 Carson 级数法,其在推导过程中皆以工频(50 Hz)为条件,并不适合高频计算。 为了准确描述牵引网高频阻抗特性,运用双曲余切近似和 Sunde 地阻抗计算法总结出针对牵引网高频阻抗计算公式。 结合 Python 科学计算及仿真,以沪宁无锡东变电所东段供电臂的牵引网架设为实例给出阻抗特性曲线,分析了牵引网高频阻抗与架设高度、大地电导率之间的关系。 结果表明低频电流时大地导电率和高度对阻抗数值影响不大,但高频尤其频率高于 104 Hz 后大地导电率和架设高度对牵引网阻抗的影响不容忽视,在模拟高频或快速瞬变的情况下需精确大地电导率和架设高度的数值。

    Abstract:

    The classical traction network impedance calculation formula use the solid circular wire model and the Carson series method, but it is based on the power frequency (50 Hz) during the derivation process, which is not suitable for high frequency calculation. In order to accurately describe the high-frequency impedance characteristics of the traction network, the hyperbolic cotangent approximation and the Sunde ground impedance calculation method are used to summarize the calculation formula for the high-frequency impedance of the traction network. Combined with the scientific calculation and simulation of Python, the traction grid of the power supply arm of the east section of Shanghai-Nanjing Wuxi Substation is used as an example, and the relationship between the high-frequency impedance of the traction grid and the erection height and earth conductivity is analyzed. The results show that the conductivity and height of the earth have little effect on the impedance value under low frequency currents, but the effect of the earth conductivity and erecting height on the impedance of the traction network at the high frequency, especially when the frequency is higher than 104 , cannot be ignored. In the simulation of high frequency or fast transient, the values of ground conductivity and erection height need to be accurate.

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引用本文

朱明,陈剑云.牵引网高频阻抗特性研究[J].华东交通大学学报,2020,37(5):15-22.
Zhu Ming, Chen Jianyun. Research on High Frequency Impedance Characteristics of Traction Network[J]. JOURNAL OF EAST CHINA JIAOTONG UNIVERSTTY,2020,37(5):15-22

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  • 在线发布日期: 2021-05-11
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