Cable Lines

Articles were published in well-known scientific and technical magazines, specializing on the problems of electrical power systems and networks.

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1. General information about cable lines

  • 2018: Choosing an optimal position of single-core cables for 6-500 kV cable lines (Cyr, Eng)
  • 2018: Inspection of screen and outer sheath of 6-500 kV cable lines (Cyr)
  • 2017: Features of power transmission over long cable lines of 6-500 kV AC-voltage (Cyr)
  • 2016: Design and construction of 6-500 kV cable lines. Important issues (Cyr, Eng)
  • 2015: Application features of cables with cross-linked polyethylene insulation (Cyr, Eng)

2. Cable line impedances

  • 2023: Short-circuit currents in 6-500 kV electrical networks containing cable lines (Cyr, Eng1, Eng2)
  • 2023: Longitudinal impedance calculation method for cable lines with single-core high voltage cables (Eng1, Eng2)
  • 2018: Longitudinal parameters of 6-500 kV cable lines with single-core cables (Cyr)

3. Cable lines safety

  • 2019: Ways to reduce the voltages induced on 6-500 kV cable lines (Cyr)
  • 2017: Voltage induced on high voltage cable lines (Cyr, Eng)
  • 2014: Safety of 6-500 kV cable lines (Cyr)

4. Selection of the core cross-section

  • 2023: Cable line current-carrying capacity when laying in pipes (Cyr, Eng)
  • 2017: System of correction factors when choosing cables (Cyr)
  • 2015: Selection of 6-500 kV cable lines taking into account overloads (Cyr, Eng)
  • 2015: Selection of load parameters of 110-500 kV cable lines (Cyr, Eng)

5. Selection of the screen cross-section

  • 2023: Issues of choosing the cross-section of 6-500 kV cable screens (Cyr, Eng)
  • 2018: Checking of 6-500 kV cable lines in case of short-circuits. Conditions of thermal stability and non-combustibility (Cyr)
  • 2017: Single-core and three-core 6-35 kV cables. Differences in the selection of screens cross-section and screens grounding scheme (Cyr, Eng)
  • 2014: Metallic screen selection for 6-500 kV cables taking into account the aperiodic current (Cyr, Eng)
  • 2009: Screen cross-section selection of single-core power cables (Cyr)

6. Selection of the screens bonding/grounding scheme

  • 2022: Problems of using coaxial wires for cross-bonding of cable line screens (Cyr, Eng)
  • 2017: Cable screen grounding in 20 kV network (Cyr, Eng)
  • 2016: Calculation of grounding for 6-500 kV cable screens, taking into account the route features (Cyr)
  • 2013: Selection and implementation of bonding/grounding schemes for single-core cable screens (Cyr, Eng)
  • 2012: Screens cross-bonding for 6-500 kV cable lines. Practical aspects of use (Cyr)
  • 2011: Metal bus. Efficiency in parallel laying with single-core cables (Cyr)
  • 2011: Cross-bonding of single-core cables and their screens (Cyr)
  • 2009: Screen power losses and the efficiency of screen cross-bonding for 6-500 kV cable lines (Cyr)

7. Cross-bonding manholes for link boxes

  • 2016: Wells grounding on 6-500 kV cable lines with screens cross-bonding (Cyr)
  • 2015: Plastic wells for screens cross-bonding of 6-500 kV cables (Cyr, Eng)
  • 2015: Design and installation of cross-bonding of cable line screens (Cyr, Eng)
  • 2013: Requirements for grounding in cross-bonding nodes of single-core 6-500 kV power cables (Cyr)

8. Cable protection against overvoltages

  • 2017: Transient resonance in schemes with 6-500 kV cable lines (Cyr, Eng1, Eng2)
  • 2016: High-voltage lines with single-core cables. Protection against overvoltages (Cyr)
  • 2016: Screens grounding of 6-500 kV single-core cables: distance from joints to link-boxes (Cyr, Eng)
  • 2014: Metal-oxide surge arrester application for protection of 6-500 kV cables (Cyr, Eng)
  • 2014: Outer sheath testing of 6-500 kV cable lines (Cyr)
  • 2008: Overvoltages on outer sheath of 6-500 kV single-core cables and protection against them (Cyr)

9. Typical mistakes in screen’s bonding

  • 2014: Typical mistakes when performing grounding of single-core 6-500 kV cables. Part 2 (Cyr, Eng)
  • 2013: Typical mistakes when performing grounding of single-core 6-500 kV cables. Part 1 (Cyr, Eng)

10. Armored cables

  • 2015: Armored cables 6-35 kV: problems and solutions (Cyr)

11. Mixed overhead and cable lines

  • 2018: Overview of the world experience in the construction of termination points between high-voltage cable and overhead lines (Cyr, Eng)
  • 2018: Automatic reclosure on mixed cable and overhead lines. Background of the issue (Cyr)
  • 2017: Cable and overhead lines. Automatic reclosure and switching overvoltages (Cyr)
  • 2017: Grounding of termination points on 35-500 kV mixed overhead and cable lines (Cyr)
  • 2015: Automatic reclosure for mixed cable and overhead lines (Cyr, Eng)
  • 2010: Universal self-supporting 6-35 kV cable (Cyr)

12. Network relay protection and neutral grounding

  • 2018: On improving the efficiency of the use of temperature monitoring for 110-500 kV cable lines (Cyr)
  • 2016: Neutral grounding in 6-35 kV cable networks (Cyr)
  • 2016: False operation of relay protections on 6-35 kV lines with single-core cables (Cyr)

13. Thermal calculation of cable lines

  • 2015: Cable lines laid in polymer pipes. Thermal calculation (Cyr)
  • 2014: Cable lines 6-500 kV. Thermal calculation in case of short circuit (Cyr)
  • 2013: Thermal calculation of 6-500 kV cable lines laid in polyethylene pipes (Cyr)

14. Cable line testing and fault locating

  • 2022: New CFL-pipes for effective fault localization of power cables (CIGRE)
  • 2019: Damage locating of 6-500 kV cables in polymer pipes (Cyr, Eng, IEEE)
  • 2019: Testing of 6-500 kV cables in polymer pipes (Cyr, Eng, IEEE)

15. Cable lines in ducts

  • 2018: Fire hazard of 6-500 kV cable lines in polymer pipes (Cyr, Eng)
  • 2016: About ways to increase the current capacity of cables in pipes (Cyr, Eng)
  • 2016: Mechanical calculation of polymer pipes (Cyr)
  • 2015: Polymer pipe as the most important element of the 6-500 kV cable system (Cyr, Eng)
  • 2015: About polyethylene pipes for laying cable lines (Cyr)
  • 2014: Requirements for cable line pipes (Cyr, Eng)
  • 2014: Heat resistance of 6-500 kV cable lines. Requirements for polyethylene pipes (Cyr, Eng)