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首页> 外文期刊>Electromagnetic Compatibility, IEEE Transactions on >Impedance and Admittance Formulas for a Multistair Model of Transmission Towers
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Impedance and Admittance Formulas for a Multistair Model of Transmission Towers

机译:用于传动塔多学分型模型的阻抗和纳米型公式

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This article discusses formulas for the surge/characteristic impedance of vertical conductors. Calculated results of the surge impedance are compared with measured results on vertical conductors and transmission towers. The accuracy of the available time-domain formulas is not satisfactory except for Hara's formulas, while the frequency-domain formulas show satisfactory accuracy. A two-stair model representing a nonuniform transmission tower is investigated based on ABCD parameters, and an approximate characteristic impedance of the nonuniform tower is derived. The circuit-theory approach and finite-difference time-domain (FDTD) computed results using the two-stair model are shown to give better agreement with measured results on UHV and 500-kV towers than those obtained using a single-conductor approximation (uniform line). The FDTD computed results clearly show the position-dependence of line parameters. Existing time-domain formulas describe only the surge impedance seen from the tower top or from the tower base, and thus, are not applicable to a lightning shielding failure studies involving back-flashover, which require the knowledge of the surge impedances of the upper, middle, and lower parts of the tower.
机译:本文讨论了垂直导体浪涌/特征阻抗的公式。将浪涌阻抗的计算结果与垂直导体和传动塔上的测量结果进行了比较。除Hara的公式外,可用时域公式的准确性并不令人满意,而频率域公式显示令人满意的精度。基于ABCD参数研究了代表非均匀透射塔的两级模型,衍生非均匀塔的近似特性阻抗。使用双台阶模型的电路理论方法和有限差分时间域(FDTD)计算结果显示,与使用单导体近似获得的UHV和500 kV塔上的测量结果提供更好的协议(均匀线)。 FDTD计算结果清楚地显示了线参数的位置依赖性。现有的时域公式仅描述从塔顶或塔架基座看的浪涌阻抗,因此,不适用于涉及回闪络的闪电屏蔽失败,这需要了解上部的浪涌阻抗的浪涌阻抗塔的中间和下部。

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