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1

MIURA, Motohiro, and Akio SUEHIRO. "Introduction to GIS and Imaging GIS." Journal of the Visualization Society of Japan 23, no. 88 (2003): 3–11. http://dx.doi.org/10.3154/jvs.23.3.

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2

Redactie, AGORA. "Van gIS naar GIS." AGORA Magazine 7, no. 3 (October 12, 2019): 23. http://dx.doi.org/10.21825/agora.v7i3.15315.

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3

Rahman Azis Prasojo, Devi Soviati Mahmudah, Imron Ridzki, Muhammad Fahmi Hakim, and Priya Surya Harijanto. "Penilaian Kualitas Gas SF6 Pada GISTET 500/150 kV." Elposys: Jurnal Sistem Kelistrikan 9, no. 3 (February 16, 2023): 93–98. http://dx.doi.org/10.33795/elposys.v9i3.643.

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The number of Gas Insulated Switchgear (GIS) in operation is increasing in Indonesia. GIS failure requires expensive costs andextensive blackouts. Asset reliability management such as SF6 is needed to ensure GIS performance. Several studies have tested thequality of SF6 gas to assess the feasibility and operation of the GIS. However, a complete GIS feasibility study based on SF6 gas qualityparameters has not found. In this study, a condition assessment of the GISTET Kembangan 500/150 kV was carried out based on applicableinternational standards. There is an interesting phenomenon in the form of dew point anomaly and moisture content in severalcompartments, indicating that the gas is moist. The results of this study indicate the operational feasibility of the GISTET Kembangan500/150 kV , the effect of high humidity on GIS operations, and maintenance recommendations.
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4

Agos, Muhammad Faisal, Muhamad Nor B. Asiah, and Herlina Abdul Rahim. "Particle Detector for Gas Insulated Switchgear and the Effect on Environment." Applied Mechanics and Materials 284-287 (January 2013): 1099–103. http://dx.doi.org/10.4028/www.scientific.net/amm.284-287.1099.

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High voltage Gas Insulated Switchgear (GIS) is prone to metallic particles. The particle void can reduce the dielectric strength of the insulation material of SF6 gas. This paper discusses the developed particle detector for GIS using a new approach by using image processing to reduce flashover phenomena occurring on energized GIS. The particle detector consists of borescope, laptop and a detection program. The program was coded using MATLAB using image processing algorithm. The in-lab test was conducted on the simulated GIS to see the effectiveness of the particle detector to detect small particles inside the narrow GIS enclosure. In real world application, the borescope will be inserted through GIS access hole before filling the enclosure with SF6 gas. This new approach is proposed to be conducted during the erection and commissioning of new GIS. This new approach looks promising because it can reduce flashover phenomena caused by existence of metallic particle and also reduces Greenhouse gas emission to the air.
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Bespalov, Vadim Igor, Mihran Grigor Stakyan, and Grigorii Sergey Grishin. "Efficiency of Using Geoinformation Systems in the Design of Gas Distribution and Gas Consumption Networks." Journal of Architectural and Engineering Research 2 (June 29, 2022): 9–13. http://dx.doi.org/10.54338/27382656-2022.2-002.

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The scientific article is devoted to determining the effectiveness of the use of geoinformation systems (GIS) in the design of gas distribution and gas consumption networks. An experiment was carried out on a laboratory stand modeling ring, dead-end and mixed gas networks. The electronic model of a gas network identical to the laboratory stand in the ZuluGaz 10.0 software package, a module for expanding the GIS functionality for calculating gas supply networks designed to solve various industry. A comparative analysis of the results of an experiment and the results obtained during simulation in GIS is carried out. Based on the analysis, a conclusion is made about the accuracy of the GIS results and the feasibility of using GIS for the design of gas distribution and gas consumption systems.
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6

Huang, Gang, Xiu Ying Wu, Rui Fang Li, and Man Yuan. "Research on Gas Field Product Application Integration Model Base-on GIS." Applied Mechanics and Materials 530-531 (February 2014): 818–22. http://dx.doi.org/10.4028/www.scientific.net/amm.530-531.818.

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Although GIS application integration system has not officially formed, the distributed GIS application integration is the main means to implement the seamless integration between GIS and applications. This paper studied on the current situation of enterprises GIS application integration, and proposed an Loose Model Application Integration (LMAI) strategy based on meta-driven, defined the concept model and algorithm of application integration in loose coupling mode, designed the system integration framework of meta-model and applications, established the common application integration interface employing the Application-Oriented Component (AOC), developed the application integration system in GIS loose coupling mode underlying the Metadata-driven. Focusing on the GIS actual needs in gas field area, the effective integration and transmission query between GIS and the gas field professional application were implemented.
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7

S. P. Mehta, S. P. Mehta. "GIS Application in Oceanography." International Journal of Scientific Research 3, no. 1 (June 1, 2012): 145–47. http://dx.doi.org/10.15373/22778179/jan2014/47.

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8

NAWA, Yuji. "GIS and Functional Introduction to ArcGIS." Journal of the Visualization Society of Japan 23, no. 88 (2003): 11–16. http://dx.doi.org/10.3154/jvs.23.11.

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9

Openshaw, S. "GIS ‘Crime’ and GIS ‘Criminality’." Environment and Planning A: Economy and Space 25, no. 4 (April 1993): 451–58. http://dx.doi.org/10.1068/a250451.

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10

Dunn, Christine E. "Participatory GIS — a people's GIS?" Progress in Human Geography 31, no. 5 (October 2007): 616–37. http://dx.doi.org/10.1177/0309132507081493.

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11

Si, Wen-Rong, Chen-Zhao Fu, Zheng-Yong Hu, Bo Wang, and Jian Yang. "Numerical Study on Electromagnetic Coupled Heat Transfer and Ultrasonic Propagation in GIS Busbar Chamber." Mathematical Problems in Engineering 2022 (March 10, 2022): 1–14. http://dx.doi.org/10.1155/2022/7836212.

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In the present paper, the electromagnetic coupled heat transfer and ultrasonic propagation in a 252 kV three-phase GIS busbar chamber were numerically studied by using the finite element method. The electromagnetic loss and distributions of SF6 gas velocity, temperature, and breakdown margin in the GIS busbar chamber were carefully analyzed, and the influences of SF6 gas velocity and temperature variations on ultrasonic propagation performances in the GIS chamber were discussed in detail. It is found that the SF6 gas breakdown margin in the GIS busbar chamber is mainly affected by the electric field intensity. When I = 3300 A and U = 1050 kV, the minimum SF6 gas breakdown margin in the GIS busbar chamber is 7.98 kV/mm, which is located at top of busbar conductor A, where the thermal breakdown risk is relatively high. Furthermore, it is noted that, when natural convection in GIS busbar chamber is weak, the influences of SF6 gas velocity and temperature variations on sound propagation would be insignificant. For this case, when acoustic propagation simulation is performed, the SF6 gas would be assumed to be stationary and its temperature would be set to the average gas temperature of natural convection in the GIS chamber, which would be beneficial to reduce the computational time and maintain the simulation accuracy as well.
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12

Gao, Bao-Ming, Zheng-Yu Li, Jin-Wen Gao, Hao Liang, Zhi Yan, and Yi-Dan Hu. "The Simulation Study on Temperature Field Distribution of 220 kV Gas Insulated Switchgear." Journal of Nanoelectronics and Optoelectronics 16, no. 5 (May 1, 2021): 797–805. http://dx.doi.org/10.1166/jno.2021.2998.

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Under working conditions, the conductive rods in the GIS flow through the power frequency alternating current. Due to the coupling effect of the magnetic field and electric field between the metal aluminum shell and the conductive rod, induced eddy currents are generated in the metal shell of the GIS. The heat generated by the current heating effect of the GIS conductive rod and the eddy current loss of the metal casing will cause the temperature rise of GIS equipment. Due to the limited volume, the heat dissipation capacity of GIS is poor. Excessive temperature rise will accelerate the insulation aging of GIS equipment, and even damage its insulation, which will affect safe operation. In order to obtain the temperature change law of GIS, related influencing factors such as eddy current loss, skin effect, proximity effect, convective heat transfer of SF6 gas, and gravity of SF6 gas are comprehensively considered. The finite element analysis is used to research and discuss GIS magnetic field distribution, eddy current, temperature distribution and SF6 gas velocity. The initial value of the temperature of each part is set to 293.15 K (20 °C), and the temperature in the GIS is calculated to gradually decrease from the inside to the outside under the rated AC current of 3150 A. The temperature at the conductive rod position is the highest at 335.32 K, and the temperature at the housing position is the lowest at 294.65 K.
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13

He, Jin, Songyuan Li, Chi Zhang, Meng Cao, Rong Chen, and Xuliang Zhu. "A Case Analysis of Particle Defects Found in 220kV GIS by Ultrasonic Partial Discharge and SF6 Gas Decomposition Products Joint Detection." Journal of Physics: Conference Series 2440, no. 1 (January 1, 2023): 012012. http://dx.doi.org/10.1088/1742-6596/2440/1/012012.

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Abstract The particles inside GIS have become the biggest factor affecting the safe and stable operation of GIS. How to effectively and timely find the particle defects is very important to ensure the reliable operation of GIS. This article describes in detail how to find particles in GIS through ultrasonic partial discharge method and comprehensive diagnosis of SF6 gas decomposition products, and gives specific solutions, which will provide very useful experience for subsequent GIS operation and maintenance.
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14

Jung, Jin-Kyu. "Critical GIS Twenty Years After Friday Harbor Meeting: Critical Intervention to Epistemology, Ontology, Methodology, and the Social Implication of GIS." Journal of the Association of Korean Geographers 2, no. 2 (December 31, 2013): 199–215. http://dx.doi.org/10.25202/jakg.2.2.6.

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15

Swanson, Sandra E. "GIS." Journal of Hospital Librarianship 1, no. 3 (September 2001): 83–89. http://dx.doi.org/10.1300/j186v01n03_09.

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16

Dangermond, Jack, and R. Clint Brown. "GIS." Photogrammetric Engineering & Remote Sensing 69, no. 10 (October 1, 2003): 1159–64. http://dx.doi.org/10.14358/pers.69.10.1159.

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17

Heikkila, Eric J. "GIS is Dead; Long Live GIS!" Journal of the American Planning Association 64, no. 3 (September 30, 1998): 350–60. http://dx.doi.org/10.1080/01944369808975991.

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18

Liu, Yun Peng, Zi Jian Wang, and Yan Song Li. "Summary of Study on the GIS Partial Discharge Detection Technology and SF6 Alternative Gas." Advanced Materials Research 718-720 (July 2013): 611–16. http://dx.doi.org/10.4028/www.scientific.net/amr.718-720.611.

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Gas insulated switchgears occupy an important position in the power system. But the partial discharge would occur because of insulation defect, PD will lead to the GIS insulation damage after a long time, and will lead to serious consequences without treatment in time, therefore, the PD detection is particularly important. PD is detected by its secondary physical phenomena, including the phenomena of sound, light, electromagnetic waves and gas decomposition products and so on. At present, many scholars in China and foreign countries have done a comprehensive study on insulation detection technology of GIS and have achieved a large number of results. The author do a detailed overview on the detection technical of GIS insulation state, including GIS platform and the simulation of typical insulation defectspartial discharge detection methods, SF6 alternative gas and pattern recognition. These works provide a valuable reference for follow-up study of GIS.
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19

He, Chang, Ziwei He, and Qiang Xie. "Experimental Evaluations on Seismic Performances of Porcelain and GFRP Composite UHV GIS Bushings." Materials 15, no. 11 (June 6, 2022): 4035. http://dx.doi.org/10.3390/ma15114035.

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To evaluate the seismic performances of the ultra-high voltage (UHV) gas-insulated switchgear (GIS) bushings made by porcelain and glass fiber reinforced polymer (GFRP) composite materials, shaking table tests were conducted on the two full-scale GIS bushings. The dynamic characteristics and seismic responses of the two UHV GIS bushings were obtained. The experimental results indicated that the two UHV GIS bushings meet the seismic requirements in the corresponding standards. The supporting frame and bus canister amplify the seismic responses of the UHV GIS bushings. Under earthquakes, the GFRP composite UHV GIS bushing is safer than the porcelain bushing. In the seismic design of the electrical substation, the large seismic displacement of the GFRP composite UHV GIS bushings should be considered.
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20

Sang, Zhongqing, Xiaodong Gu, Yongxin Wang, Weiyun Jiang, and Wenjuan Cheng. "Waveform Correlation Analysis Method for Mechanical Characteristics of Circuit Breaker in Intelligent GIS Equipment." Journal of Physics: Conference Series 2218, no. 1 (March 1, 2022): 012054. http://dx.doi.org/10.1088/1742-6596/2218/1/012054.

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Abstract Gas-insulated electrical appliances (GIS) have the characteristics of small footprint and low cost. Therefore, GIS is widely used in intelligent substations. However, once the GIS fails, there will be shortcomings of long maintenance cycle, which seriously affects the normal life and production activities. Based on this, on the basis of summarizing and analyzing the GIS intelligent technology, this paper studies the correlation analysis method of the mechanical characteristic waveform of the intelligent GIS equipment circuit breaker from the aspects of equipment intelligence, device development and software development,corresponding theoretical guidance is provided for the practical application of intelligent GIS equipment circuit breakers.
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21

Chinchilla, Sandra P., Michael Doherty, and Abhishek Abhishek. "Gout Activity Score has predictive validity and is sensitive to change: results from the Nottingham Gout Treatment Trial (Phase II)." Rheumatology 58, no. 8 (February 4, 2019): 1378–82. http://dx.doi.org/10.1093/rheumatology/key446.

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Abstract Objectives To examine the predictive validity of the Gout Activity Score (GAS), its correlation with the Gout Impact Scale (GIS) and their sensitivity to change. Methods Data from a clinical trial in which participants with one or more gout flares in the previous year were recruited from primary care and randomized to nurse-led or continuing usual care were used in this study. GAS and GIS were calculated as described, with higher scores indicating worse disease activity and quality of life, respectively. The correlation between GAS and GIS was examined using Spearman’s correlation. Standardized response means (SRMs) were calculated to assess sensitivity to change. The association between GAS at baseline and the number of flares in the next 12 months was evaluated using Poisson regression. Data analyses were performed using STATA version 14, with P-values <0.05 being statistically significant. Results There was low positive correlation between GAS and gout concern overall and unmet treatment need subscales of GIS (r = 0.34–0.45). Female sex associated independently with fewer gout flares, while increasing GAS, BMI and age associated independently with frequent flares. Of all the outcome measures examined, GAS was the most responsive to change (SRM 0.89 to −0.53). Of the GIS domains, the gout concern overall domain had the best sensitivity to change (SRM 1.06–0.01). Conclusion GAS is sensitive to change, has predictive validity and correlates with relevant domains of GIS such as gout concern overall. Additional independent validation of GAS is required before it can be adopted in clinical practice.
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22

Zhaochuang Zhang. "Research on the Application of Multi-Physics Field Coupling Simulation in the Analysis of Temperature Field of 500kv GIS Circuit Breaker." Journal of Electrical Systems 20, no. 6s (April 29, 2024): 630–37. http://dx.doi.org/10.52783/jes.2716.

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Gas insulated switchgear (GIS) is a crucial part of any electrical infrastructure. Overheating the conductor on the GIS busbar would reduce the effectiveness of the insulating gas and shorten the life of the device. We then maximize output by fine-tuning the busbar's rotation angle, central distance, and conductor thickness. Dependable electrical systems always include gas insulated transmission lines (GIL) and gas insulated switchgear (GIS). Because of their reduced total cost and greater efficiency in terms of both space use and power transmission, GILs are gradually replacing conventional overhead lines for long-distance, high-power transmission. The reliability of GIL performance and the ease with which designs can be optimized necessitates research into their power loss and temperature profiles. The study found that the maximum temperature and power loss variances were approximately 70% attributable to differences in conductor thickness. By employing the aforementioned combination method (A1, B5, C5), energy consumption and thermal load in the GIS can be reduced. The research also shows that SF6 gas retains its outstanding insulating capacity after undergoing structural optimization. The calculation of the gas breakdown margin demonstrates this. In conclusion, the results of this study contribute to the understanding of heat transmission in three-phase GIS busbars and their optimization and engineering. Examining the temperature field of 500kV GIS circuit breakers, it highlights the value of multi-physics field coupling simulations in improving the reliability and performance of power system components, especially GILs. This is done so that power system components are more reliable and run more efficiently. Optimal heat transmission and other design considerations for three-phase GIS busbars are the most important takeaways from this research.
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23

TAMEISHI, Hideo. "Fisheries Information and GIS." Geoinformatics 8, no. 2 (1997): 117–25. http://dx.doi.org/10.6010/geoinformatics1990.8.2_117.

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24

MIYAZAKI, Tadakuni. "Environmental Information and GIS." Geoinformatics 8, no. 2 (1997): 127–35. http://dx.doi.org/10.6010/geoinformatics1990.8.2_127.

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25

FUKUSHIMA, Yoshikazu. "Map Information and GIS." Geoinformatics 8, no. 2 (1997): 93–98. http://dx.doi.org/10.6010/geoinformatics1990.8.2_93.

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26

MASUMOTO, Shinji, Kiyoji SHIONO, Venkatesh RAGHAVAN, Masanori SAKAMOTO, and Kiyoshi WADATSUMI. "Geologic Information on GIS." Geoinformatics 8, no. 2 (1997): 99–106. http://dx.doi.org/10.6010/geoinformatics1990.8.2_99.

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27

Sianturi, Abednego Setiabudi, and Josie Sidharta. "Partial Discharge yang Merusak Isolasi SF6 pada Gas Insulated Switchgear (GIS) Tiga Fasa Pengaruh Keberadaan Partikel Asing." JE-Unisla 6, no. 2 (September 20, 2021): 50. http://dx.doi.org/10.30736/je-unisla.v6i2.697.

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This paper analyzes the effect of the presence of foreign particles on an equilateral arrangement of 3 phase gas insulated switchgear (GIS) insulation equipment. Gas Insulated Switchgear (GIS) that uses SF6 insulation, partial discharge will occur as the insulation ages and there are several other factors that affect the insulation. Partial Discharge needs to be detected to avoid failures that cause damage to equipment in theGIS. In this calculation, the electric field characteristics will be analyzed in 3-phase equilateral GIS by varying the location of the particles in the GIS tank. Particles are modeled to have a length of 5 mm and a thickness of 0.5 mm located in a 3 phase GIS equilateral arrangement with a tank diameter of 150 mm and a conductor diameter of 25 mm. The electric field calculations are reviewed at several points in the 3-phase equilateral GIS tank. The simulation and calculation of the electric field were calculated with FEM method software. The results of the calculations show that thereare differences in the characteristics of the electric field between normal GIS and GIS where foreign particles are present. The difference in these characteristics can be seen in the magnitude of the electric field, and the ratio of eccentricity from some point of view.
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28

Duan, Jianjia, Sanwei Liu, Zeyu Zeng, Fuyong Huang, and Xiaoli Duan. "Electrical performance analysis of 110 kv GIS terminal extension conducting rod." E3S Web of Conferences 185 (2020): 01020. http://dx.doi.org/10.1051/e3sconf/202018501020.

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As GIS terminal is in cooperation with GIS switch, the GIS terminal with 470 mm structure is usually equipped with a 757 mm structure GIS switch. In order to study the influence of the extended conductive pole on the electrical performance of GIS cable terminal, the contact resistance of the extended conductive pole is measured. The measurement results show that the contact resistance meets the requirements of conductive flow. Through finite element simulation calculation of the influence of the extended conducting rod on the GIS terminal electric field distribution, it was found that the maximum field strength of the cable terminal of the extended conducting rod increased by 2 kv/mm, which was smaller than the breakdown field strength of sulfur hexafluoride gas, and the extended conducting rod did not affect the safe and stable operation of the GIS terminal. Extend the conductive rod by finite element simulation calculation interface without air gap and 0.1 mm gap, the distribution of electric field in both cases, contact resistance conforms to the requirements under the premise, extend the conductive rod interface is 0.1 mm gap the maximum field strength of 1.4 kv/mm, less than the sulfur hexafluoride gas breakdown voltage, contact air gap does not affect the safe and stable operation of the GIS terminal.
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Yang, Jing Gang, Yong Yong Jia, Ke Zhao, and Shan Gao. "Simulation Study of Partial Discharge UHF Wave Transmission Characteristic in GIS Typical Structure." Applied Mechanics and Materials 672-674 (October 2014): 787–92. http://dx.doi.org/10.4028/www.scientific.net/amm.672-674.787.

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Defects inside the gas-insulated switchgear (GIS) will produce ultra-high frequency (UHF) electromagnetic waves. The waves will be affected by the shell of GIS when propagating inside the GIS cavity. In the 0-3GHz frequency range, propagation characteristic of electromagnetic which is excited by partial discharge in GIS is simulated based on the method of finite difference time domain (FDTD). This paper designs the GIS simulation models with and without insulator according to the size of a 220kV single phase GIS bus and sets a metal protrusion defect on the bus as the PD source. The transmission characteristics of model waves inside typical GIS structures, and the influence of the insulator to the propagation of electromagnetic wave was studied via setting the different directions of electromagnetic, comparing the time and frequency domain results of electromagnetic wave in different structures and measurement angles.
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30

Konno, Evandro Augusto Boian, Éder Paulo Belato Alves, Gladson Ricardo Flor Bertolini, Cláudio Henrique Barbieri, and Nilton Mazzer. "Remobilização por alongamento estático cíclico em músculo sóleo de ratos imobilizados em encurtamento." Revista Brasileira de Medicina do Esporte 14, no. 2 (April 2008): 122–25. http://dx.doi.org/10.1590/s1517-86922008000200008.

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A fibra muscular tem grandes propriedades plásticas, respondendo a diferentes estímulos com o aumento ou diminuição de sua massa, comprimento e número de sarcômeros em série. O objetivo deste estudo foi analisar os efeitos do alongamento passivo estático em 3 séries diárias de 30 s e da remobilização livre, por um período de duas semanas, no músculo sóleo de ratos imobilizado em posição de encurtamento. Para isso, foram utilizados 12 ratos (Wistar) divididos em 2 grupos: G1 (n=6) - músculo sóleo esquerdo (MSE) imobilizado e solto na gaiola (GIS); G2 (n=6) - MSE imobilizado e alongado diariamente (GIA). Foram comparadas as variações encontradas entre o MSE e o MSD (direito) de cada grupo. As variáveis foram: peso muscular, comprimento muscular, número de sarcômeros em série e comprimento de sarcômeros. Os resultados das variáveis analisadas, comparando o MSE com o MSD foram: peso muscular: GIS=-23,16%, (p=0,0007), GIA-32,43% (p=0,0008); comprimento muscular: GIS=-5,47% (p=0,0120); GIA=-9,99% (p=0,0034); número de sarcômeros em série: GIS=-15,42% (p=0,0047); GIA=-8,08% (p=0,0008); comprimento do sarcômero: GIS=11,16% (p=0,0142); GIA=-1,92% (p=0,3783). Através desses resultados, pode-se concluir que nem o alongamento, nem a remobilização livre promovem a restauração na estrutura dos músculos esqueléticos submetidos à imobilização prolongada.
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Ana, Ricardo Santa, Marvin Muchametow, and Manjunath Ramesh. "New Method of Leak Rate Measurement in SF6 Free Medium Voltage Switchgear Using Helium and Ambient Air." B&H Electrical Engineering 15, no. 1 (October 1, 2021): 54–62. http://dx.doi.org/10.2478/bhee-2021-0006.

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Abstract The current medium voltage Gas Insulated Switchgears (GIS) predominantly use Sulphur Hexafluoride (SF6) as insulation medium. The leakage tests performed on GIS use either SF6 or Helium medium to ensure gas tightness. However, SF6 has been strictly regulated for the last years due to the high global warming potential effect on the planet. As a response, new technologies are emerging using air as insulation medium. The present work establishes a basic comparison of the leakage rate in a medium voltage GIS using two different leak detection methods: Helium leak detector and Residual Gas Analyser (RGA). Both methods use Helium and additionally RGA using air as tracer gas.
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Ding, Pei, Zhen Hua Yan, Fei Yue Ma, Liang Zhang, Jun Hao Li, and Yan Ming Li. "The Study of Vibration Diagnosis Method for GIS." Applied Mechanics and Materials 295-298 (February 2013): 2429–32. http://dx.doi.org/10.4028/www.scientific.net/amm.295-298.2429.

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Gas insulated switchgear (GIS) will generate vibration during normal operation for the electromagnetic force. There will be generate abnormal vibration when the contacts are undesirable, the guide rod stressed unevenness. Therefore, it can be effective in fault diagnosis of this machineries through the vibration test of GIS in field. The vibration detection method of GIS equipment in field is studied in this paper, the composition of the vibration detection system is described. The field test has been done using vibration detection system and the test results show that through the vibration signal detected from the GIS equipment, the vibration characteristics of GIS can be clarified and make the fault diagnosis effectively.
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33

A, Müller,. "GIS in species protection GIS im Artenschutz." GIS Business 12, no. 3 (June 26, 2019): 37–41. http://dx.doi.org/10.26643/gis.v12i3.5181.

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34

Korucu, Mustafa G. "GIS and Types of GIS Education Programs." Procedia - Social and Behavioral Sciences 46 (2012): 209–15. http://dx.doi.org/10.1016/j.sbspro.2012.05.095.

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35

Masumoto, Shinji, and Tatsuya Nemoto. "Seminar on GIS." Journal of the Geological Society of Japan 118, Supplement (2012): S116—S122. http://dx.doi.org/10.5575/geosoc.2012.0049.

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36

Onal, E. "Breakdown Mechanism of Different Sulphur Hexafluoride Gas Mixtures." Advances in Materials Science and Engineering 2018 (2018): 1–4. http://dx.doi.org/10.1155/2018/3206132.

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Sulphur hexafluoride (SF6) gas and SF6 gas mixtures are widely used in gas-insulated systems (GIS) because they have good dielectric and thermal properties. Among the various gas mixtures investigated so far, SF6-air, SF6-CO2, and SF6-N2 are most used gas mixtures. Also, these mixtures have much technical superiority in GIS. These are nontoxic and nonflammable gases, and they have less sensitivity to nonuniformities and higher liquefaction temperature at high pressure. GIS, switchgears, circuit breakers, and substations are systems that work with alternating current and have nonuniform electric fields. For this reason, in this study the breakdown mechanisms of 0.125, 0.5, 1, and 20% SF6 gas mixtures with rod-plane configuration under AC voltage are investigated and explained breakdown mechanism.
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37

Li, Tianhui, Xiangdong Wang, Siming Zeng, Chaomin Gu, Chi Dong, Li Zhen, Da Zhang, and Hongliang Liu. "Gas Insulated Switchgear Partial Discharge Type Identification Based on Frequency Division Features and Improved Long Short-Term Memory Neural Networks." Journal of Nanoelectronics and Optoelectronics 19, no. 2 (February 1, 2024): 169–77. http://dx.doi.org/10.1166/jno.2024.3579.

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In order to ensure the safe and stable operation of gas insulated switchgear (GIS), a new method for identifying the type of partial discharge in GIS is proposed. First, the GIS partial discharge experimental platform produced four partial discharge signals. Second, the energy moments are calculated at each frequency to produce the frequency division features after the four partial discharge signals have been decomposed using variational modal decomposition (VMD). Finally, the type of GIS partial discharge is determined using the LSTM model enhanced by the quantum cuckoo search (QCS) algorithm. The experimental results show that the proposed method can successfully identify four types of partial discharge in GIS with an accuracy of 99%.
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38

Rahmat, Saepul, and Riyani Prima Dewi. "Distribusi Medan Listrik di Kompartemen Busbar Gas Insulated Switchgear (GIS) Menggunakan Charge Simulation Method." E-JOINT (Electronica and Electrical Journal Of Innovation Technology) 1, no. 2 (December 27, 2020): 47–52. http://dx.doi.org/10.35970/e-joint.v1i2.436.

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Penelitian ini bertujuan untuk mengilustrasikan distribusi medan listrik di kompartemen busbar tipe gas insulated switchgear (GIS). Gas Insulated Substation (GIS) merupakan rangkaian peralatan gardu induk yang terpasang di dalam sebuah metal enclosure dan diisolasi oleh gas bertekanan yaitu Sulfur Hexafluoride (SF6). Dalam simulasi ini, diasumsikan titik referensi berada di sekitar contact pin busbar, dan titik muatan buatan berada disekitar kompartemen busbar. Simulasi dilakukan dengan menentukan titik referensi dan titik muatan bantuan untuk menghitung nilai muatan yang akan dicari yaitu contact pin. Titik muatan buatan ini terletak disembarang titik disekitar kompartemen busbar GIS dan akan dihitung nilai muatannya melalui metode simulasi muatan (charge simulation method) dengan bantuan komputasi Matlab
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39

Yan, Yu, Wei Jiang, Zhiping Luo, Jianjun Zhang, and Weidong Liu. "System Optimization and Robustness Stability Control for GIS Inspection Robot in Complex Microgrid Networks." Complexity 2021 (February 27, 2021): 1–12. http://dx.doi.org/10.1155/2021/6691905.

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GIS (gas-insulated switchgear) is important equipment in the substation system in a complex microgrid network. Due to the long-term service in harsh operation environments, the electrical performance of GIS equipment will be seriously affected. Therefore, the regular maintenance of GIS equipment in the substation system is a routine task so as to ensure the normal operation of the microgrid networks. The traditional method relies on manual labor, where not only with the low operation efficiency but also regarding some maintenance, labors cannot reach the inside of the GIS equipment, which seriously restricted the completion of GIS equipment maintenance operation. Based on the above analysis, a basic configuration of a GIS equipment maintenance robot with smart structure, convenient control, and stable motion characteristic has been proposed in this paper. Through the optimization design of the chassis adsorption system, the GIS inspection robot can achieve hanging and vertical adsorption inside the GIS equipment and some special motion status. In this way, the entire GIS equipment can be inspected without blind spots. Through establishing the mechanical model of the GIS inspection robot under the hanging and vertical motion state, the robustness and stability of the GIS inspection robot in the special status have been analyzed, and the corresponding GIS inspection robot robust stability motion control method has also been proposed. Finally, through the integrated design of mechanical system and hardware and software control system, the GIS inspection robot physical prototype system has been developed and the maintenance operation experiment has been carried out in Hunan Electric Power Company Maintenance Company through simulating the internal GIS equipment. The physical prototype can realize the basic movement and special movement in internal GIS equipment without any blind spots and complete the inspection task of GIS equipment operation; the movement of GIS robot is dexterous and stable in the whole operation process, which has strong robust stability. The research of GIS inspection robot in the complex microgrid networks has important theoretical significance and practical application value for the intelligent operation and maintenance management of substation system in complex microgrid networks.
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40

Limerick, Sam, Lucy Luo, Gary Long, David Morehouse, Jack Perrin, Steve Jackson, Robert King, and Kirk Kuykendall. "GIS-Automated Oil and Gas Field Boundaries." Journal of Map & Geography Libraries 4, no. 2 (June 26, 2008): 319–35. http://dx.doi.org/10.1080/15420350802142652.

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41

Nugraha, Anggara Trisna, Moch Fadhil Ramadhan, Muhammad Jafar Shiddiq, and Muhammad Fikri Fathurrohman. "Comparison of Insulated Switch Gear with Desiccant Addition to SF6 Gas Quality System at Waru Substation." JEEMECS (Journal of Electrical Engineering, Mechatronic and Computer Science) 6, no. 2 (August 10, 2023): 77–86. http://dx.doi.org/10.26905/jeemecs.v6i2.6044.

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In electrical instrumentality with SF6 gas insulation, the quality of SF6 gas in line with the standard is prime to wise insulation power, if there' a decrease in gas quality, there'll even be a decrease among the number of voltage insulation on electrical equipment. throughout this case, it had been found that the quality of SF6 gas was deteriorating within the Ganz whole GIS Compartment at the Waru Substation Substaction, specifically the position level of the SF6 isolation gas that exceeded the required standard limit. Besides, this GIS isn't equipped with silica gel/desiccant as a condition gripping material and gas sorbent material from amendment PMT (IEEE Std 11251993) that ends throughout a decrease among the standard of SF6 gas. The addition of drier among the GIS is needed to keep up the quality of SF6 gas. These materials are analyzed for quantity and performance once applied within the compartment therefore as that deterioration of the quality of SF6 gas and thus the prevalence of insulation failure is avoided as early as possible, and SF6 remains in its characteristics with a BDV of 78.6 kV/cm (according to SF6 crucial Breakdown Volatge). And it hoped that SF6 gas will add line with it operate as a decent insulating medium. As degree application, a drier experiment has been administered among the GIS compartment at the Waru Substation station
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42

Xie, Peng Sheng, Jun Kang, Qiu Yang Li, Jia Lin Zhu, and Li Li. "Finite Element Simulation of Partical Discharge Acoustic Pressure Levels Distribution in Gas Insulated Switchgear." Applied Mechanics and Materials 487 (January 2014): 447–54. http://dx.doi.org/10.4028/www.scientific.net/amm.487.447.

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In this paper, we present an acoustic-structure couple interaction model of partial discharge (PD) in Gas Insulated Switchgear, the interaction between the internal acoustic source of partial discharge and structure of GIS is simulated with the finite element analysis, and the internal and external acoustic pressure levels distribution of GIS is obtained. The results based on the frequency sweep shown that the internal acoustic pressure levels is bigger than the external acoustic pressure levels of GIS in the ultrasonic frequency spectrum,it suggests that it should use the ultrasonic sensor with a broadband spectrum response to measure partial discharge in GIS, which can obtain high sensitivity. In addition, the external sound pressure of GIS is very small, and the signal of the Ultrasonic sensors must be amplified for measurement. Meanwhile, the outside acoustic pressure of the epoxy insulator is so small that it can properly judge the adjacent GIS unit partial discharge conditions.
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43

Wang, Yonghong, Bing Xiao, Guizhong Qiu, Lipeng Bi, Keqiang Xu, Chongqing Jiao, and Shuyun Cao. "Extraction of Equivalent Circuit Parameter of the GIS Pipe Spacer." E3S Web of Conferences 185 (2020): 01014. http://dx.doi.org/10.1051/e3sconf/202018501014.

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In Gas Insulated Switchgear (GIS) substation, the spacer used for supporting conductor, isolating air chamber and insulation is a very important insulation component in GIS pipe, and it is important to study the spacer to ensure the insulation performance and quality of GIS. Local distortion of electric field distribution will be produced when electromagnetic wave propagates to spacers. In this article, the static capacitance calculated by electromagnetic simulation is used to model spacers.
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44

Yu, Hong, Maoyong Cao, Tanbo Zhu, and Fanming Liu. "Study of Heating Device for Sulfur Hexafluoride Gasification." Sensor Letters 18, no. 2 (February 1, 2020): 157–63. http://dx.doi.org/10.1166/sl.2020.4201.

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Sulfur hexafluoride (SF6) gas has been used to gas-insulated switchgear (GIS) because of its insulation properties and extinguishing characteristics. The processing of liquid sulfur hexafluoride from cylinders into GIS is endothermic. The processing gas inflation always leads to decrease SF6 gas inflation speed due to the lack of heat supplement and the infiltrated moisture will stick on the GIS equipment, especially at the valve outlet. In the paper, a heater detection device for sulfur hexafluoride (SF6) steel cylinder is developed. The new heater device will monitor and display the specific temperature and humidity of the valve outlet instantaneously and then heat and dry the sulfur hexafluoride (SF6) steel cylinder with automatic and stability. Then it helps to speed up the sulfur hexafluoride gasification. Meanwhile, the whole device is portable in safety.
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45

Beriozko, A., A. Rybkina, A. Soloviev, and R. Krasnoperov. "Intellectual GIS." Vestnik Otdelenia nauk o Zemle RAN 1, no. 3 (November 14, 2009): 1–7. http://dx.doi.org/10.2205/2009nz000006.

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46

Retalis, A. "Gis Basics." Photogrammetric Record 18, no. 101 (March 2003): 83–84. http://dx.doi.org/10.1111/0031-868x.t01-3-00006.

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47

Bailey, Timothy J., and James B. M. Schick. "Historical GIS." Social Science Computer Review 27, no. 3 (February 19, 2009): 291–96. http://dx.doi.org/10.1177/0894439308329757.

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48

Ricker, Kim M. "GIS Mentoring." Library Trends 55, no. 2 (2006): 349–60. http://dx.doi.org/10.1353/lib.2006.0061.

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49

Aji, Ablimit, Fusheng Wang, Hoang Vo, Rubao Lee, Qiaoling Liu, Xiaodong Zhang, and Joel Saltz. "Hadoop GIS." Proceedings of the VLDB Endowment 6, no. 11 (August 27, 2013): 1009–20. http://dx.doi.org/10.14778/2536222.2536227.

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50

Moss, Margaret P., and Matthew C. Schell. "GIS(c)." Advances in Nursing Science 27, no. 2 (April 2004): 150–59. http://dx.doi.org/10.1097/00012272-200404000-00008.

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