Works matching DE "OVERHEAD electric lines"
Results: 308
Dataset for Antenna-Based Detection of Fault Types in Covered Conductors for 22 kV Voltage Power Lines.
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- Scientific Data, 2024, v. 11, n. 1, p. 1, doi. 10.1038/s41597-024-04009-1
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Analytical solution of conductor tensile force in asymmetrical spans used in overhead power lines and substations with influence of tension insulators.
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- Electrical Engineering & Electromechanics, 2024, n. 5, p. 64, doi. 10.20998/2074-272X.2024.5.09
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Protection of workers against the magnetic field of 330-750 kV overhead power lines when performing work without removing the voltage under load.
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- Electrical Engineering & Electromechanics, 2024, n. 4, p. 70, doi. 10.20998/2074-272X.2024.4.09
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The method for design of electromagnetic hybrid active-passive shielding by overhead power lines magnetic field.
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- Electrical Engineering & Electromechanics, 2024, n. 4, p. 22, doi. 10.20998/2074-272X.2024.4.03
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The method for design of combined electromagnetic shield for overhead power lines magnetic field.
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- Electrical Engineering & Electromechanics, 2024, n. 3, p. 22, doi. 10.20998/2074-272X.2024.3.03
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Method for design of two-level system of active shielding of power frequency magnetic field based on a quasi-static model.
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- Electrical Engineering & Electromechanics, 2024, n. 2, p. 31, doi. 10.20998/2074-272X.2024.2.05
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Study of the influence of the parameters of modern grounding wires on the value of power losses in them for overhead power lines of 330-750 kV.
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- Electrical Engineering & Electromechanics, 2023, n. 6, p. 77, doi. 10.20998/2074-272X.2023.6.14
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Optimization of spatial arrangement of magnetic field sensors of closed loop system of overhead power lines magnetic field active silencing.
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- Electrical Engineering & Electromechanics, 2023, n. 4, p. 26, doi. 10.20998/2074-272X.2023.4.04
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The method of multi-objective parametric design of magnetic field active canceling robust system for residential multy-story buildings closed to double-circuit overhead power lines.
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- Electrical Engineering & Electromechanics, 2023, n. 2, p. 27, doi. 10.20998/2074-272X.2023.2.05
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Comparison of the effectiveness of thriple-loop and double-loop systems of active shielding of a magnetic field in a multi-storey old buildings.
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- Electrical Engineering & Electromechanics, 2022, n. 3, p. 21, doi. 10.20998/2074-272X.2022.3.04
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Method of adjustment of three circuit system of active shielding of magnetic field in multi-storey buildings from overhead power lines with wires triangular arrangement.
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- Electrical Engineering & Electromechanics, 2022, n. 1, p. 21, doi. 10.20998/2074-272X.2022.1.03
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REDUCTION OF MAGNETIC FIELD LEVEL IN RESIDENTIAL OLD BUILDINGS FROM OVERHEAD POWER LINES BY MEANS OF ACTIVE SCREENING.
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- Electrical Engineering & Electromechanics, 2021, n. 5, p. 24, doi. 10.20998/2074-272X.2021.5.04
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A CALCULATION MODEL FOR DETERMINATION OF IMPEDANCE OF POWER HIGH VOLTAGE SINGLE-CORE CABLES WITH POLYMER INSULATION.
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- Electrical Engineering & Electromechanics, 2021, v. 33, n. 3, p. 47, doi. 10.20998/2074-272X.2021.3.08
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OVERHEAD POWER LINES MAGNETIC FIELD REDUCING IN MULTI-STORY BUILDING BY ACTIVE SHIELDING MEANS.
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- Electrical Engineering & Electromechanics, 2021, n. 2, p. 23, doi. 10.20998/2074-272X.2021.2.04
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THE INVESTIGATION OF DISTRIBUTION OF THE MAGNETIC FLUX DENSITY OF OPERATING TWO-CIRCUIT POWER LINE 110 kV «CHTPP-CHERNIHIV-330» IN THE RESIDENTIAL AREA AND METHODS OF ITS DECREASING TO A SAFE LEVEL.
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- Electrical Engineering & Electromechanics, 2020, n. 6, p. 55, doi. 10.20998/2074-272X.2020.6.08
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SIMPLIFIED MATHEMATICAL MODEL OF GROUP OF OVERHEAD POWER LINES MAGNETIC FIELD.
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- Electrical Engineering & Electromechanics, 2020, n. 4, p. 24, doi. 10.20998/2074-272X.2020.4.04
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THE EFFECTIVENESS OF ACTIVE SHIELDING OF MAGNETIC FIELD WITH CIRCULAR SPACE-TIME CHARACTERISTIC AND WITH DIFFERENT SHIELDING COILS SPATIAL POSITIONS.
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- Electrical Engineering & Electromechanics, 2020, n. 3, p. 15, doi. 10.20998/2074-272X.2020.3.03
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ACTIVE SHIELDING OF MAGNETIC FIELD WITH CIRCULAR SPACE-TIME CHARACTERISTIC.
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- Electrical Engineering & Electromechanics, 2020, n. 2, p. 26, doi. 10.20998/2074-272X.2020.2.04
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Accurate Surge Arrester Modeling for Optimal Risk-Aware Lightning Protection Utilizing a Hybrid Monte Carlo–Particle Swarm Optimization Algorithm.
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- Technologies (2227-7080), 2024, v. 12, n. 6, p. 88, doi. 10.3390/technologies12060088
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Estimation of the Spatial and Temporal Distribution of Magnetic Fields around Overhead Power Lines—A Case Study.
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- Mathematics (2227-7390), 2023, v. 11, n. 10, p. 2292, doi. 10.3390/math11102292
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Modeling and Simulation of High Voltage Power Lines under Transient and Persistent Faults.
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- Mathematics (2227-7390), 2023, v. 11, n. 1, p. 21, doi. 10.3390/math11010021
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"AVES SILVESTRES Y LÍNEAS AÉREAS DE ALTA TENSIÓN: OBLIGACIONES BÁSICAS E INCOHERENCIAS EN EL REAL DECRETO 1432/2008, SOBRE MEDIDAS PARA LA PROTECCIÓN DE LA AVIFAUNA CONTRA LA COLISIÓN Y LA ELECTROCUCIÓN EN LÍNEAS ELÉCTRICAS DE ALTA TENSIÓN"
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- Actualidad Jurídica Ambiental, 2023, n. 134, p. 1, doi. 10.56398/ajacieda.00255
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La Dirección General de Medio Natural y Evaluación Ambiental, amplia el listado de líneas eléctricas aéreas de distribución que no se ajustan a las prescripciones técnicas establecidas en el Real Decreto 1432/08. Resolución de 30 de enero de 2023.
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- Actualidad Jurídica Ambiental, 2023, n. 132, p. 188
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DEFORMATION OF THE HELICAL TYPE WIRE STRUCTURES.
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- Periódico Tchê Química, 2019, v. 16, n. 33, p. 583, doi. 10.52571/ptq.v16.n33.2019.598_periodico33_pgs_583_601.pdf
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Determinants of homeowners' attitudes to the installation of high-voltage overhead transmission lines.
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- Journal of Environmental Planning & Management, 2016, v. 59, n. 4, p. 666, doi. 10.1080/09640568.2015.1035776
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Strategic Routeing and Environmental Impact Assessment for Overhead Electrical Transmission Lines.
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- Journal of Environmental Planning & Management, 2002, v. 45, n. 5, p. 747, doi. 10.1080/0964056022000013101
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Statistical analysis of lightning surges on distribution lines based on the observation.
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- Electrical Engineering in Japan, 2008, v. 165, n. 2, p. 36, doi. 10.1002/eej.20468
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METHOD AND ALGORITHM FOR QUANTITATIVE ANALYSIS OF AVERAGE MONTHLY VALUES OF THE OPERATIONAL RELIABILITY OF OVERHEAD POWER LINES.
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- Reliability: Theory & Applications, 2024, v. 19, n. 2, p. 647
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Numerical Simulation of Homogeneous–Heterogeneous Reactions through a Hybrid Nanofluid Flowing over a Rotating Disc for Solar Heating Applications.
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- Sustainability (2071-1050), 2021, v. 13, n. 15, p. 8289, doi. 10.3390/su13158289
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The potential effect of low-frequency EM fields on the human body.
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- Journal of Electrical Systems, 2020, v. 16, n. 1, p. 119
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Die Elektrifizierung der blassgrauen Bänder.
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- Technikgeschichte, 2012, v. 79, n. 2, p. 109
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Experimental Investigation on the Effect of the Electrochemical Corrosion on Destruction of Metal Fastening Elements of Portal Type Supports.
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- International Review of Electrical Engineering, 2023, v. 18, n. 2, p. 119, doi. 10.15866/iree.v18i2.23286
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Flashover Probability Distribution and Volt-Time Curves of Medium Voltage Overhead Line Insulation Under Combined AC and Lightning Impulse Voltages.
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- International Review of Electrical Engineering, 2015, v. 10, n. 5, p. 625, doi. 10.15866/iree.v10i5.7150
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Evaluation of Lightning Overvoltage Protection Schemes for Pole-Mounted Distribution Transformers.
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- International Review of Electrical Engineering, 2015, v. 10, n. 5, p. 616, doi. 10.15866/iree.v10i5.7266
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A Critical Review on the Contamination Effect on Distribution Overhead Lines.
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- International Review of Electrical Engineering, 2010, v. 5, n. 5, p. 2461
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Consideration of the Guard Line in the Overhead Transmission Line Parameter Computation.
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- International Review of Electrical Engineering, 2006, v. 1, n. 4, p. 552
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European directive on electromagnetic fields.
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- European Radiology, 2006, v. 16, n. 12, p. 2886, doi. 10.1007/s00330-006-0479-8
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THE DESIGN AND IMPLEMENTATION OF A CODE OF PRACTICE FOR LOW VOLTAGE OVERHEAD UTILITY PRUNING OF TREES.
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- Arboricultural Journal: The International Journal of Urban Forestry, 1998, v. 22, n. 2, p. 121, doi. 10.1080/03071375.1998.9747198
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BOURNEMOUTH BOROUGH COUNCIL.
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- Arboricultural Journal: The International Journal of Urban Forestry, 1998, v. 22, n. 2, p. 125, doi. 10.1080/03071375.1998.9747199
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- Article
Rational design of steel–GFRP towers for ultracompact overhead power lines.
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- Mechanics of Advanced Materials & Structures, 2020, v. 27, n. 3, p. 189, doi. 10.1080/15376494.2018.1472331
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预应力混凝土坡屋面结构设计分析.
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- Guangdong Architecture Civil Engineering, 2022, v. 29, n. 3, p. 17, doi. 10.19731/j.gdtmyjz.2022.03.005
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Wind Regime Change over the Russian Territory and the Accident Rate of Overhead Power Lines.
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- Doklady Physics, 2021, v. 66, n. 3, p. 80, doi. 10.1134/S1028335821030034
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INDUCTIVE COUPLING BETWEEN OVERHEAD POWER LINES AND NEARBY METALLIC PIPELINES. A NEURAL NETWORK APPROACH.
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- Carpathian Journal of Electrical Engineering, 2015, v. 9, n. 1, p. 29
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가공전선로에 의한 유도전압의영향평가.
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- Journal of Korean Institute of Electromagnetic Engineering & Science / Han-Guk Jeonjapa Hakoe Nonmunji, 2023, v. 34, n. 5, p. 377, doi. 10.5515/KJKIEES.2023.34.5.377
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ВИЗНАЧЕННЯ ВЕЛИЧИНИ ЄМНОСТІ СИСТЕМИ ПРОВІД-ІЗОЛЯТОР-ШТИР В ПОВІТРЯНИХ ЛІНІЯХ НАПРУГОЮ 6-10 кВ ДЛЯ ОЦІНКИ МОЖЛИВОСТІ РАННЬОЇ ДІАГНОСТИКИ СТАНУ ІЗОЛЯЦІЇ.
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- Technical Electrodynamics / Tekhnichna Elektrodynamika, 2024, n. 6, p. 77, doi. 10.15407/techned2024.06.077
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ЗАХИЩЕНІ ІЗОЛЯЦІЄЮ ПРОВОДИ ДЛЯ ПОВІТРЯНИХ ЛІНІЙ ЕЛЕКТРОПЕРЕДАЧІ НА СЕРЕДНЮ НАПРУГУ: ПЕРЕВАГИ, КОМПЬЮТЕРНІ РОЗРАХУНКИ.
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- Technical Electrodynamics / Tekhnichna Elektrodynamika, 2022, n. 5, p. 14, doi. 10.15407/techned2022.05.014
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ACTIVE SHIELDING OF MAGNETIC FIELD Of OVERHEAD POWER LINE WITH PHASE CONDUCTORS OF TRIANGLE ARRANGEMENT.
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- Technical Electrodynamics / Tekhnichna Elektrodynamika, 2020, n. 4, p. 25, doi. 10.15407/techned2020.04.025
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Teaching electrical power systems using computer simulations.
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- International Journal of Electrical Engineering Education, 2003, v. 40, n. 1, p. 72, doi. 10.7227/IJEEE.40.1.8
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Monte Carlo analysis of a transposed overhead line.
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- International Journal of Electrical Engineering Education, 2000, v. 37, n. 4, p. 368, doi. 10.7227/IJEEE.37.4.6
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Measurements and Estimation of the Extremely Low Frequency Magnetic Field of the Overhead Power Lines.
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- Electronics & Electrical Engineering, 2013, v. 19, n. 7, p. 33, doi. 10.5755/j01.eee19.7.5159
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