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Title: Lightning grounding grid model considering both the frequency-dependent behavior and ionization phenomenon
Authors: Chen, H 
Du, Y 
Issue Date: Feb-2019
Source: IEEE transactions on electromagnetic compatibility, Feb. 2019, v. 61, no. 1, p. 157-165
Abstract: A grounding grid is essential to the lightning protection of power systems. This paper presents a modified partial element equivalent circuit method for predicting the transient behavior of the grounding grid. The frequency-dependent parameters of the grounding grid are obtained first by using the image method. Both modified nodal formulation and vector fitting techniques are applied to derive an extended equivalent network for time-domain simulation. In this method, the soil ionization effect is considered using a nonlinear resistance. The proposed method is verified with experimental results available in the literature. Finally, lightning transients in the grounding grid of a radio base station is presented. The ionization and propagation effects on grounding grid performance are discussed.
Keywords: Equivalent circuit
Grounding grid
Lightning transient
Partial element equivalent circuit (PEEC)
Soil ionization
Publisher: Institute of Electrical and Electronics Engineers
Journal: IEEE transactions on electromagnetic compatibility 
ISSN: 0018-9375
EISSN: 1558-187X
DOI: 10.1109/TEMC.2017.2789210
Rights: © 2018 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for all other uses, in any current or future media, including reprinting/republishing this material for advertising or promotional purposes, creating new collective works, for resale or redistribution to servers or lists, or reuse of any copyrighted component of this work in other works.
The following publication H. Chen and Y. Du, "Lightning Grounding Grid Model Considering Both the Frequency-Dependent Behavior and Ionization Phenomenon," in IEEE Transactions on Electromagnetic Compatibility, vol. 61, no. 1, pp. 157-165, Feb. 2019 is available at https://doi.org/10.1109/TEMC.2017.2789210.
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