2018
DOI: 10.15676/ijeei.2018.10.4.12
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Grounding Impedance Characteristics for Two-Layer Soil of Vertical Rod Configuration with Variation of Length and Diameter

Abstract: Abstracts: Grounding impedance is an important component of electrical power systems especially for protection for human safety and the continuity of the operation of power systems. At low frequency current injection the characteristics of grounding impedance is very resistive, however at high frequency it may be capacitive or inductive depending on the frequency. In order to build a grounding system used for lightning protection, it needs a careful and accurate design. It will receive high current and high fr… Show more

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Cited by 6 publications
(3 citation statements)
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“…Penentuan konfigurasi pentanahan berdasarkan kebutuhan proteksi dan wilayah pada sistem pentanahan, pada wilayah yang luas dapat dilakukan sistem pentanahan horizontal (grid/mesh) dan untuk wilayah proteksi yang relatif sempit sistem pentanahan dirancang secara vertikal (rod) [7]. Perancangan sistem pentanahan dalam instalasi listrik dilakukan dengan pengujian tanah untuk mengetahui kondisi tanah, pengujian dilakukan harus disesuaikan dengan standart yang berlaku.…”
Section: Pendahuluanunclassified
“…Penentuan konfigurasi pentanahan berdasarkan kebutuhan proteksi dan wilayah pada sistem pentanahan, pada wilayah yang luas dapat dilakukan sistem pentanahan horizontal (grid/mesh) dan untuk wilayah proteksi yang relatif sempit sistem pentanahan dirancang secara vertikal (rod) [7]. Perancangan sistem pentanahan dalam instalasi listrik dilakukan dengan pengujian tanah untuk mengetahui kondisi tanah, pengujian dilakukan harus disesuaikan dengan standart yang berlaku.…”
Section: Pendahuluanunclassified
“…Most substation grounding system safety evaluations and design procedures employ a homogenous soil environment as an input to calculate safety values (grid impedance, step, and touch voltages). However, despite significant studies into grounding behavior in homogenous soil environments (Mokhtari et al, 2016a;Nikolovski et al, 2016;Pavel et al, 2020) and horizontal two-layer soil with varying soil properties such as the upper layer height (Zaini & Ghoneim, 2012) and the soil reflection factors (K) (Gouda et al, 2019;Tong et al, 2019) and varying grid design parameters such as the analysis of single horizontal grounding conductor (de Araujo et al, 2019;Arnautovski-Toseva et al, 2007), the mesh count of a grounding system (Unde & Kushare, 2012), vertical rod length (Anggoro et al, 2018), there is presently no comprehensive study available that assess the grounding behavior in vertical two-layer soil under the impact of design parameters. Furthermore, no simultaneous comparisons or discussions between horizontal and vertical two-layer soil structures are available.…”
Section: Introductionmentioning
confidence: 99%
“…A detailed review of the grounding system behaviors in homogeneous soil conditions has been published in [24]. Although there is extensive research on grounding behavior in uniform [4], [5], [25] and two-layer soil; top layer depth of two-layer soil [14]; the number of grounding meshes [26]; length of ground rods in two-layer soil [27]; algorithms [3], [6], [28] and reflection factors [29], [30] there is still no complete analysis currently available which comprises the impact of grounding grid dimensions, the number of ground rods and the impact of grid depth as the grid design varies in twolayer soil on grounding grid behaviors and safety. Most of the investigations were based on many assumptions and different physical approaches, which resulted in many equations developed over the last few decades.…”
Section: Introductionmentioning
confidence: 99%