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Journal articles on the topic 'Cable terminations'

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1

Jeon, Bub-Gyu, Sung-Jin Chang, Sung-Wan Kim, Dong-Uk Park, and Nakhyun Chun. "Experimental Study on the Acceleration Amplification Ratio of Cable Terminations for Electric Power Facilities." Energies 17, no. 22 (2024): 5641. http://dx.doi.org/10.3390/en17225641.

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Among national infrastructure facilities, electric power facilities are very important sites that must maintain their functions properly even during a natural disaster or during social crises. Therefore, seismic design is required when necessary for major electric power facilities that have a significant impact when damaged in the event of an earthquake. In electric power facilities, bushings are generally installed in devices or structures. Therefore, ground acceleration can be amplified through devices, such as transformers, or sub-structures. Among various electric power facilities, cable t
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2

Uydur, Cihat Cagdas, та Oktay Arikan. "Use of Tanδ and Partial Discharge for Evaluating the Cable Termination Assembly". Energies 13, № 20 (2020): 5299. http://dx.doi.org/10.3390/en13205299.

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It is known that the failure of cable terminations causes power outages and impairs system quality and continuity. Besides, serious economic losses on both the distribution and consumer sides occur. In this study, the dielectric behavior of the cable and the faults caused by the defects in the cable termination under overvoltage has been examined. As test samples, 12 kV XLPE insulated cable is used and they were aged at three (3*U0) and five (5*U0) times the rated voltage. After each aging cycle, dielectric parameters of the cable were measured by an OMIRCRON CPC100/CPTD1 device, and the parti
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3

Desouky, S. S., A. Z. El-Dein, R. A. Abd El-Aal, and N. A. A. El-Rahman. "A New Contribution in Reducing Electric Field Distribution Within/Around Medium Voltage Underground Cable Terminations." Engineering, Technology & Applied Science Research 7, no. 5 (2017): 1962–66. http://dx.doi.org/10.48084/etasr.1357.

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Ιn medium voltage cables, the stress control layers play an important part in controlling the electric field distribution around the medium voltage underground cable terminations. Underground cable accessories, used in medium voltage cable systems, need a stress control tube in order to maintain and control the insulation level which is designed for long life times. The term “electrical stress control” refers to the cable termination analysis of optimizing the electrical stress in the area of insulation shield cutback to reduce the electrical field concentration at this point in order to reduc
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4

Desouky, S. S., A. Z. El-Dein, El-Aal R. A. Abd, and N. A. A. El-Rahman. "A New Contribution in Reducing Electric Field Distribution Within/Around Medium Voltage Underground Cable Terminations." Engineering, Technology & Applied Science Research 7, no. 5 (2017): Engineering, Technology & Applied Science Research. https://doi.org/10.5281/zenodo.1037193.

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Ιn medium voltage cables, the stress control layers play an important part in controlling the electric field distribution around the medium voltage underground cable terminations. Underground cable accessories, used in medium voltage cable systems, need a stress control tube in order to maintain and control the insulation level which is designed for long life times. The term “electrical stress control” refers to the cable termination analysis of optimizing the electrical stress in the area of insulation shield cutback to reduce the electrical field concentration at this point in order to reduc
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5

Andrade, Arthur F., Edson G. Costa, Filipe L. M. Andrade, Clarice S. H. Soares, and George R. S. Lira. "Design of Cable Termination for AC Breakdown Voltage Tests." Energies 12, no. 16 (2019): 3075. http://dx.doi.org/10.3390/en12163075.

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International standards prescribe overvoltage tests to evaluate the insulating material performance of high-voltage cables. However, it is difficult to manage the electric fields at the cable ends when laboratory measurements are carried out because surface and external discharges occur at the cable termination. Therefore, this paper presents a procedure for designing cable terminations to reduce the electric field at the cable ends to appropriate levels even in the case of overvoltage tests. For this purpose, computer simulations of electric field distribution using the finite element method
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6

Nikolajevic, S. V., N. M. Pekaric-Nad, and R. M. Dimitrijevic. "Optimization of cable terminations." IEEE Transactions on Power Delivery 12, no. 2 (1997): 527–32. http://dx.doi.org/10.1109/61.584315.

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7

Raicevic, Nebojsa B., and Nikola Raicevic. "Reducing the impact of ELF electromagnetic fields of HV power cables on the environment by modeling the cable accessories." COMPEL: The International Journal for Computation and Mathematics in Electrical and Electronic Engineering 34, no. 4 (2015): 1016–28. http://dx.doi.org/10.1108/compel-10-2014-0251.

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Purpose – Underground cables can produce higher electromagnetic fields directly above them than an overhead line. The majority of cable failures on distribution system are caused by defects in the cable accessories. Nowadays, significant research has been carried out worldwide into examining whether electricity, and in particular, the presence of electric and magnetic fields have an adverse impact on health, especially the occurrence of cancer and childhood leukemia. The purpose of this paper is to optimize the electric field distribution in underground cable accessories. This reduces the impa
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8

Ye, Hanyu, Tobias Fechner, Xianzhang Lei, et al. "Review on HVDC cable terminations." High Voltage 3, no. 2 (2018): 79–89. http://dx.doi.org/10.1049/hve.2017.0144.

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9

Dimitrijevic, Radisa, Dragan Tasic, Nebojsa Raicevic, Slavoljub Aleksic, and Neda Pekaric-Nadj. "Analysis of a MV XLPE cable termination design with embedded electrodes." Facta universitatis - series: Electronics and Energetics 23, no. 1 (2010): 99–117. http://dx.doi.org/10.2298/fuee1001099d.

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Insertion of embedded electrodes (EEs) inside a MV XLPE cable termination strongly affects electric field around the termination and accordingly must be carefully considered. In this paper, influence of embedded electrodes on voltage distribution in some constructions of the 20 kV cable terminations was analyzed. Different options were considered for a specific number of the EEs along the cable insulation surface, taking into account possible effects of floating or grounded EEs, their different position and separation. In every option, a basic method of stress relieving with resistive layer ov
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10

Song, Wen Wu, Meng Tao Qin, and Dong Dong Wang. "Study on the Cable Crosstalk of Ship Cabin." Applied Mechanics and Materials 719-720 (January 2015): 652–57. http://dx.doi.org/10.4028/www.scientific.net/amm.719-720.652.

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The mechanism of cable crosstalk involving what and how does the factors affect the level of crosstalk is introduced in detail. A transmission line model for predicting crosstalk between power cable and the other wires nearby with common reference ground based on multiconductor transmission theory (MTL) is developed. Crosstalk among circuit configurations when the victim cables with load terminations are different types is analyzed and simulated. Models where the types of the victim lines are shielded coaxial cable, shielded twisted pair and unshielded twisted pair are simulated. It is found t
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11

Zhu, Ke. "Published Papers Volume 30 - Issue 4 (Award Issue) Awarded Paper Use of insulation resistance imbalance degree for the condition assessment of power distribution cables." HKIE Transactions 30, no. 4 (2023): 2–12. http://dx.doi.org/10.33430/v30n4thie-2023-0019.

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Medium-voltage (MV) underground power distribution cables are critical assets of The Hong Kong Electric Co., Ltd. (HK Electric) for ensuring reliable customer power delivery. The inspection and condition assessment of these power distribution cables are conducted regularly to determine their health. During diagnostic tests, all MV cables have to pass a threshold of insulation resistance (IR) before they can be energised. Low IR readings may indicate a deterioration in insulation related to a high leakage current. However, defining a threshold value to assess the intrinsic condition of the powe
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12

Gorur, R. S., L. A. Johnson, and H. C. Hervig. "Contamination performance of silicone rubber cable terminations." IEEE Transactions on Power Delivery 6, no. 4 (1991): 1366–73. http://dx.doi.org/10.1109/61.97665.

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13

Yang, Yanhua, Jiali Li, Zhenbao Chen, et al. "Classification of Partial Discharge in Vehicle-Mounted Cable Termination of High-Speed Electric Multiple Unit: A Machine Learning-Based Approach." Electronics 13, no. 3 (2024): 495. http://dx.doi.org/10.3390/electronics13030495.

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This paper presents a machine learning-based approach to identify and separate partial discharge (PD) and two typical pulse interference (PI) signals in the vehicle-mounted cable terminations of high-speed electric multiple units (EMUs). First, a test platform was established to capture PD and two typical PI signals in these terminations. The acquired signals were then processed using the square envelope method to extract feature parameters, such as the rise time proportion, the left–right symmetry, and the upper–lower symmetry. PD signal classification was carried out on these signals, utiliz
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14

Xu, Ruoyu, Mingyu Zhou, Zhengyi Han, et al. "Development of Cable Accessories with SiR Insulation for 320kV HVDC Cables." E3S Web of Conferences 115 (2019): 01004. http://dx.doi.org/10.1051/e3sconf/201911501004.

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HVDC cable accessories with environment-friendly insulating material and flexible compatibility other than ethylene propylene diene monomer (EPDM) are demanded in the global market. In this paper, the authors present their newly developed silicone rubber (SiR) insulated cable joints and terminations as a potential answer to that call. Simulation models were built in computer programs. Three most venerable spots in the insulator were identified. SiR insulated accessories with optimised conductivity were produced and tested according to Cigre TB 496 and IEC 62895:2017. The test objects passed th
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15

Marinis, Thomas F., and Joseph W. Soucy. "Isolation Resistance of Encapsulated Electrical Conductors and Terminations for Biomedical Applications." International Symposium on Microelectronics 2015, no. 1 (2015): 000536–43. http://dx.doi.org/10.4071/isom-2015-tha11.

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Implanted electronic medical devices are evolving into architectures that are comprised of multiple packages that require reliable, high density electrical interconnections. Both power and digital signals must be routed between devices on cables that are immersed in an ionic, electrically conductive medium. Electronics are typically housed in hermetic packages with electrical feed throughs that must also be protected from the implant environment. The polymer materials used to encapsulate cable conductors and terminations must be biocompatible, compliant and of minimal thickness. These requirem
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16

Pattabi, Pranav, Ali Naderian Jahromi, Shanon Lo, Kurtis Martin-Sturmey, and Nirvaan Bhagwandass. "Practical Approach to Underground Distribution Power Cable Fleet Management." Energies 16, no. 8 (2023): 3526. http://dx.doi.org/10.3390/en16083526.

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With the growing requirements imposed by regulatory authorities, grid operators and power utilities firms are confronted with the challenging task of ensuring the reliability, safety, and resilience of distribution networks amid aging asset infrastructure and a lack of resources. Over the past 15 years, the health index (HI)-based analysis has become an increasingly popular asset management tool for several power utilities. This strongly focuses on HI-based analysis to consider not only factors such as the cable vintage, type, and operating conditions, but also maintenance testing data. In thi
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17

Smiley, E. Thomas. "Dead-end Stop Terminated Tree Support Cable Systems." Arboriculture & Urban Forestry 37, no. 2 (2011): 67–73. http://dx.doi.org/10.48044/jauf.2011.010.

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Supplemental support systems are used to reduce the risk of failure of codominant stems. The goal of this study was to evaluate dead-end stop terminated cables used in trees and to compare the strength of small tree cable systems. Field evaluations comparing eyebolt and Wire Stop® anchored cables found an enlargement of the hole through the branch in 39% of the Wire Stop terminations with a mean size of 6 mm. Static break tests found that the strength of cable system varied with the strength of the wood and system configuration. From a system strength perspective in oak: bent eye screw lags &l
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18

Wouters, P. A. A. F., F. Barakou, and E. F. Steennis. "Application of Open-air Capacitive Sensors for Voltage Monitoring near Terminations in HV and EHV Insulated Connections." Proceedings of the Nordic Insulation Symposium, no. 26 (August 8, 2019): 70–75. http://dx.doi.org/10.5324/nordis.v0i26.3281.

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Contactless capacitive sensors are applied to monitor(over)voltages near the overhead line terminations of asubstation or at cable to line transitions. The sensor response isthe signal time derivative when loaded with a resistiveimpedance and the waveform is restored by integration. As partof this differentiating/integrating (D/I) measuring concept, theuse of open-air sensors results in excellent EMC characteristicsbut the inherent cross-coupling to other phases has to be dealtwith. Three applications are presented: 1) For a 150 kV cabletermination the partial discharge activity needs to be re
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19

Hoeft, Lothar O., Joseph S. Hofstra, Janice R. Evert, and John E. Merrell. "Selected Measurements of Connectors, Backshells, and Cable Terminations." IEEE Transactions on Nuclear Science 33, no. 6 (1986): 1688–93. http://dx.doi.org/10.1109/tns.1986.4334665.

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20

Ross, R. "Dealing with interface problems in polymer cable terminations." IEEE Electrical Insulation Magazine 15, no. 4 (1999): 5–9. http://dx.doi.org/10.1109/57.776938.

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21

Raicevic, Nebojsa B., Slavoljub R. Aleksic, and Sasa S. Ilic. "One numerical method to determine improved cable terminations." Electric Power Systems Research 81, no. 4 (2011): 942–48. http://dx.doi.org/10.1016/j.epsr.2010.11.019.

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22

Ветлугаев, С. С., А. Н. Горобец, Л. Е. Макаров, В. Л. Овсиенко, А. М. Кудлаев та Т. Р. Хазиахметов. "Повреждения муфт кабелей высокого напряжения и усовершенствование системы мониторинга частичных разрядов". Кабели и провода, № 2(412) (6 травня 2025): 23–29. https://doi.org/10.62994/2072-215x.2025.30.15.003.

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Рассматриваются повреждения муфт кабелей высокого напряжения и усовершенствования системы мониторинга частичных разрядов. The failures of HV cable systems terminations and improvements of partial discharge monitoring in insulation are being considered in that context.
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23

Gorur, R. S., L. A. Johnson, and H. C. Hervig. "Correction to 'Contamination performance of silicone rubber cable terminations'." IEEE Transactions on Power Delivery 7, no. 1 (1992): 15. http://dx.doi.org/10.1109/61.108884.

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24

Raoof, M. "Design of sheathed spiral strands against free bending fatigue at terminations." Journal of Strain Analysis for Engineering Design 28, no. 3 (1993): 163–74. http://dx.doi.org/10.1243/03093247v283163.

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Significant shortcomings of the previously available approaches for designing steel cables against free beinding fatigue at nominally fixed terminations are briefly discussed. The salient features of a more appropriate design approach based on the ‘contact stress-slip’ parameter are presented. Unlike traditional approaches, this approach takes the effect of interwire/interlayer fretting fully into account. In view of the lengthy theoretical formulations for the previously reported contact stress-slip approach, the present paper covers in detail the development of a set of straightforward desig
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25

Shaker, Yomna O., Ayman H. El-Hag, Utkarsh Patel, and Shesha H. Jayaram. "Thermal modeling of medium voltage cable terminations under square pulses." IEEE Transactions on Dielectrics and Electrical Insulation 21, no. 3 (2014): 932–39. http://dx.doi.org/10.1109/tdei.2014.6832234.

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26

Sayah, A., N. Oussalah, and S. A. Boggs. "Optimization of water terminations for testing of solid dielectric cable." IEEE Transactions on Dielectrics and Electrical Insulation 23, no. 1 (2016): 61–69. http://dx.doi.org/10.1109/tdei.2015.005296.

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27

Rhyner, J., and M. G. Bou-Diab. "One-dimensional model for nonlinear stress control in cable terminations." IEEE Transactions on Dielectrics and Electrical Insulation 4, no. 6 (1997): 785–91. http://dx.doi.org/10.1109/94.654706.

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28

Li, Zhong-Yuan, Wei-Feng Sun, and Hong Zhao. "Significantly Improved Electrical Properties of Photo-Initiated Auxiliary Crosslinking EPDM Used for Cable Termination." Polymers 11, no. 12 (2019): 2083. http://dx.doi.org/10.3390/polym11122083.

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In order to achieve high quality electrical materials for cable terminations, the crosslinked ethylene-propylene-diene monomer (EPDM) materials, with adequate breakdown strength, appropriately increased conductivity and are developed by employing auxiliary crosslinker and ultraviolet (UV) photoinitiated crosslinking technique. The characteristic cyclic anhydrides with coupled carbonyl groups are utilized as auxiliary crosslinkers to promote crosslinking efficiency and provide polar-groups to EPDM molecules in UV-initiated crosslinking processes, which can be effectively fulfilled in industrial
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29

Selsing, Jorgen. "A Versatile Computer Method for Computation of Conductor Temperatures in Cable Terminations and Pipe Cable Systems." IEEE Power Engineering Review PER-5, no. 4 (1985): 23–24. http://dx.doi.org/10.1109/mper.1985.5528800.

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30

Selsing, Jorgen. "A Versatile Computer Method for Computation of Conductor Temperatures in Cable Terminations and Pipe Cable Systems." IEEE Transactions on Power Apparatus and Systems PAS-104, no. 4 (1985): 768–74. http://dx.doi.org/10.1109/tpas.1985.319072.

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31

Labrosse, M., A. Nawrocki, and T. Conway. "Influence of Friction on the Cyclic Response of Simple Straight Wire Rope Strands under Axial Loads." Tire Science and Technology 28, no. 4 (2000): 233–47. http://dx.doi.org/10.2346/1.2136002.

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Abstract The frictional damping properties of axially loaded simple straight wire rope strands are studied using an analytical model for cables of current design. Since the cable axial response is driven by the interwire local pivoting, a first linear model is built in which pivoting occurs without friction. A hysteretic model is then built after a specific law of friction is established. Using comparisons with experimental results described in the literature, the frictional energy dissipated over a load cycle is shown to be very small compared to the elastic strain energy and other dissipatio
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32

Zhang, Jing, Wei Wang, Lin Cheng, Haoming Wang, and Jiping Liu. "Breakdown mechanism Analysis of Silicone Oil Flocculation in XLPE Cable Terminations." Journal of Physics: Conference Series 1176 (March 2019): 062065. http://dx.doi.org/10.1088/1742-6596/1176/6/062065.

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33

Espino-Cortes, F. P., S. Jayaram, and E. A. Cherney. "Stress grading materials for cable terminations under fast-rise time pulses." IEEE Transactions on Dielectrics and Electrical Insulation 13, no. 2 (2006): 430–35. http://dx.doi.org/10.1109/tdei.2006.1624289.

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34

Lemke, Eberhard, Thomas Strehl, Sacha Markalous, and Werner Weissenberg. "Ultra-wide-band PD diagnostics of power cable terminations in service." IEEE Transactions on Dielectrics and Electrical Insulation 15, no. 6 (2008): 1570–75. http://dx.doi.org/10.1109/tdei.2008.4712659.

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35

Gorur, R. S., and B. S. Bernstein. "Field and laboratory aging of polymeric cable terminations. II. Laboratory aging." IEEE Transactions on Power Delivery 13, no. 2 (1998): 323–29. http://dx.doi.org/10.1109/61.660897.

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36

Nikolajevic, S. V., N. M. Pekaric-Nad, and R. M. Dimitrijevic. "A new concept in construction of cable terminations for medium voltages." IEEE Transactions on Power Delivery 13, no. 3 (1998): 712–17. http://dx.doi.org/10.1109/61.686964.

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37

Mauseth, Frank, Sverre Hvidsten, and Geir Birkenes. "Water ingress in high-voltage cross-linked polyethylene (XLPE) cable terminations." IEEE Electrical Insulation Magazine 28, no. 5 (2012): 24–31. http://dx.doi.org/10.1109/mei.2012.6268439.

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38

Teyber, Reed, Maxim Marchevsky, Soren Prestemon, Jeremy Weiss, and Danko van der Laan. "CORC $^{\circledR}$ cable terminations with integrated Hall arrays for quench detection." Superconductor Science and Technology 33, no. 9 (2020): 095009. http://dx.doi.org/10.1088/1361-6668/ab9ef3.

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39

Chambela, Prisca, and Aviti Mushi. "Comparison of On-Line Partial Discharge Detection Techniques for High Voltage Power Cable Joints and Terminations." Tanzania Journal of Engineering and Technology 42, no. 1 (2023): 146–54. http://dx.doi.org/10.52339/tjet.v42i1.895.

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Cable joints and terminations play a vital role in providing dependable electrical connection, mechanical support and physical safeguard. These provide electrical stress control to shielded power cables. Despite their usefulness, they suffer from partial discharges (PD) because of enhanced voltage stress, moisture ingress and poor workmanship (during installation). Therefore, it is necessary to undertake on-line PD detection to determine their state. Some of these techniques are capacitive coupler (CC); acoustic emission (AE); and high frequency current transducer (HFCT). This article presents
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40

Mason, William P., Alexander J. Shturmakov, Jay A. Johnson, and Scott Haman. "A new 122 mm electromechanical drill for deep ice-sheet coring (DISC): 2. Mechanical design." Annals of Glaciology 47 (2007): 35–40. http://dx.doi.org/10.3189/172756407786857640.

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AbstractThe deep ice-sheet coring (DISC) drill consists of four major mechanical drilling subsystems and four subsystems supporting on-surface activities. The mechanical drilling subsystems are a drill sonde, a drill cable, a tower and a winch. The drill sonde is the down-hole portion of the drill system and consists of six distinct sections: (1) the cutter head, (2) the core barrel, (3) the screen section, (4) the motor/pump section, (5) the instrument section and (6) the upper sonde, which includes anti-torques and drill cable terminations. The drill cable not only provides the means of supp
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41

Uckol, Halil Ibrahim, Suat Ilhan, and Aydogan Ozdemir. "Workmanship defect classification in medium voltage cable terminations with convolutional neural network." Electric Power Systems Research 194 (May 2021): 107105. http://dx.doi.org/10.1016/j.epsr.2021.107105.

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42

Espin-Delgado, Angela, Shimi Sudha Letha, Sarah K. Ronnberg, and Math H. J. Bollen. "Failure of MV Cable Terminations Due to Supraharmonic Voltages: A Risk Indicator." IEEE Open Journal of Industry Applications 1 (2020): 42–51. http://dx.doi.org/10.1109/ojia.2020.2998000.

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43

Gorur, R. S., and B. S. Bernstein. "Field and laboratory aging of polymeric distribution cable terminations. I. Field aging." IEEE Transactions on Power Delivery 13, no. 2 (1998): 316–22. http://dx.doi.org/10.1109/61.660896.

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44

Berkemeier, Rouven, Robert Bach, and Stefan Tenbohlen. "3D-localization of partial discharges in XLPE-cable-terminations using UHF-sensors." IET Conference Proceedings 2023, no. 46 (2023): 1296–301. https://doi.org/10.1049/icp.2024.2518.

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45

Liu, Zhengwei, Jiali Li, Tingyu Zhang, et al. "Accurate Identification of Partial Discharge Signals in Cable Terminations of High-Speed Electric Multiple Unit Using Wavelet Transform and Deep Belief Network." Applied Sciences 14, no. 11 (2024): 4743. http://dx.doi.org/10.3390/app14114743.

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Cable termination serves as a crucial carrier for high-speed train power transmission and a weak part of the cable insulation system. Partial discharge detection plays a significant role in evaluating insulation status. However, field testing signals are often contaminated by external corona interference, which affects detection accuracy. This paper proposes a classification model based on wavelet transform (WT) and deep belief network (DBN) to accurately and rapidly identify corona discharge in the partial discharge signals of vehicle-mounted cable terminals. The method utilizes wavelet trans
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46

Braun, William F. "Reliability Study of Cable, Terminations, and Splices by Electric Utilities in the Northwest." IEEE Transactions on Industry Applications IA-23, no. 1 (1987): 144–52. http://dx.doi.org/10.1109/tia.1987.4504879.

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47

Adetona, Zacchaeus A., Joel Ogunyemi, and Irmiya Bitrus. "Maintenance Management Regime for Off-Grid Solar PV Renewable Energy System in Nigeria." European Journal of Engineering Research and Science 5, no. 11 (2020): 1376–82. http://dx.doi.org/10.24018/ejers.2020.5.11.2233.

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The perennial inadequate power supply problem in Nigeria, the worldwide call for green energy and the unavailability of grid electrical supply or difficulty in accessing it have created a need for the adoption of renewable energy such as solar PV systems. PV systems have a lifespan ranging from 10 to 25 years if well maintained but it has been observed that PV systems do not last up to their useful lifespan in Nigeria. A preliminary survey carried out showed that 71.2% of sample did not carry out any maintenance on their PV installations, 85.7% agreed that a lack of maintenance was responsible
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48

Adetona, Zacchaeus A., Joel Ogunyemi, and Irmiya Bitrus. "Maintenance Management Regime for Off-Grid Solar PV Renewable Energy System in Nigeria." European Journal of Engineering and Technology Research 5, no. 11 (2020): 1376–82. http://dx.doi.org/10.24018/ejeng.2020.5.11.2233.

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The perennial inadequate power supply problem in Nigeria, the worldwide call for green energy and the unavailability of grid electrical supply or difficulty in accessing it have created a need for the adoption of renewable energy such as solar PV systems. PV systems have a lifespan ranging from 10 to 25 years if well maintained but it has been observed that PV systems do not last up to their useful lifespan in Nigeria. A preliminary survey carried out showed that 71.2% of sample did not carry out any maintenance on their PV installations, 85.7% agreed that a lack of maintenance was responsible
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OKAMURA, Haruo. "The terminations of multi-layered elongated substances (Design of a submarine optical cable coupling)." Transactions of the Japan Society of Mechanical Engineers Series C 52, no. 473 (1986): 400–405. http://dx.doi.org/10.1299/kikaic.52.400.

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Malik, N. H., F. R. Pazheri, A. A. Al-Arainy, and M. I. Qureshi. "Analytical Calculation of AC and DC Electric Field Distribution at High Voltage Cable Terminations." Arabian Journal for Science and Engineering 39, no. 4 (2014): 3051–59. http://dx.doi.org/10.1007/s13369-013-0939-9.

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