Search Results - "Van Der Wielen, P. C. J. M."

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  1. 1

    Approximation of transmission line parameters of single-core and three-core XLPE cables by Wagenaars, P., Wouters, P.A.A.F., Van Der Wielen, P.C.J.M., Steennis, E.F.

    “…A transmission line model of a power cable is required for the analysis of the behavior of high-frequency phenomena, such as partial discharges, lightning…”
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    Journal Article
  2. 2

    Adaptive templates for matched filter bank for continuous online partial discharge monitoring by Wagenaars, P., Wouters, P. A. A. F., Van Der Wielen, P. C. J. M., Steennis, E. F.

    “…Matched filtering can be applied to recorded signals for maximum detection sensitivity during online partial discharge (PD) measurements in medium-voltage…”
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    Journal Article
  3. 3

    Accurate estimation of the time-of-arrival of partial discharge pulses in cable systems in service by Wagenaars, P., Wouters, P.A.A.F., Van Der Wielen, P.C.J.M., Steennis, E.F.

    “…Accurate location of the origins of partial discharges in power cable systems, based on arrival times, is imperative for the identification and assessment of…”
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    Journal Article
  4. 4

    Influence of Ring Main Units and Substations on Online Partial-Discharge Detection and Location in Medium-Voltage Cable Networks by Wagenaars, P, Wouters, P A A F, van der Wielen, P C J M, Steennis, E F

    Published in IEEE transactions on power delivery (01-04-2011)
    “…Online partial-discharge (PD) monitoring of medium-voltage power cables is traditionally performed on a cable between two consecutive ring main units (RMUs)…”
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    Journal Article
  5. 5

    Partial discharge parameters to evaluate the insulation condition of on-line located defects in medium voltage cable networks by Gargari, S. Mousavi, Wouters, P. A. A. F., van der Wielen, P. C. J. M., Steennis, E. F.

    “…Partial discharge analysis has a long record as reliable diagnostic tool to assess the integrity and the quality of electrical insulation of power systems…”
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    Journal Article
  6. 6

    Challenges in Wave-Velocity Based Cable Temperature Monitoring for Widespread Implementation in Medium-Voltage Networks by Wouters, P. A. A. F., van der Wielen, P. C. J. M., Kruizinga, B., Wagenaars, P.

    “…Knowledge on the temperature of the mediumvoltage network is essential for optimising its utilisation. This is even more imperative now many networks are…”
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    Conference Proceeding
  7. 7

    Detection limitation of high frequency signal travelling along underground power cable by Yan Li, Wouters, P. A. A. F., Wagenaars, P., van der Wielen, P. C. J. M., Steennis, E. F.

    “…High frequency pulse injection is part of many diagnostics techniques, e.g. cable fault location. An injected pulse along an underground power cable will…”
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    Conference Proceeding
  8. 8

    Risk-controlled application of current MV cable feeders in the future by intelligent continuous diagnostics by van der Wielen, P. C. J. M., Steennis, E. F.

    “…In future (smart) grids different load flows and patterns will occur. This will also have impact on the cable feeders between all smart appliances. Especially…”
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    Conference Proceeding
  9. 9

    Practical experiences with on-line PD monitoring and interpretation for MV cable systems by Gargari, S M, Wouters, P A A F, van der Wielen, P C J M, Steennis, E F

    “…PD monitoring on-line with location (PD-OL) is one of the successful diagnostic tools for MV cable networks which has been recently introduced to the main…”
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    Conference Proceeding
  10. 10

    Algorithms for Arrival Time Estimation of Partial Discharge Pulses in Cable Systems by Wagenaars, P., Wouters, P.A.A., van der Wielen, P.C.M., Steennis, E.F.

    “…Partial discharge (PD) detection and location in cable systems is a valuable tool for the estimation of the condition of the system. Accurate localization of…”
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    Conference Proceeding
  11. 11

    Approximation of Transmission Line Parameters of Single-Core XLPE Cables by Wagenaars, P., Wouters, P.A.A.F., van der Wielen, P.C.J.M., Steennis, E.F.

    “…An accurate model of the high frequency behavior of a power cable is required for the precise simulation of the propagation of partial discharges in such a…”
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    Conference Proceeding
  12. 12

    Experiences with diagnostics on complete in-service MV cable feeders by van der Wielen, P. C. J. M., Steennis, E. F.

    “…By using an on-line continuous condition monitoring system, many problems in cable connections can be detected before leading to an outage. The system used for…”
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    Conference Proceeding
  13. 13

    Power cable joint modelin high frequency by Yan Li, Wouters, P. A. A. F., Wagenaars, P., van der Wielen, P. C. J. M., Steennis, E. F.

    “…Models in high frequency range for underground power cabling system are the basis for the analysis of many condition diagnostic techniques, for instance,…”
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    Conference Proceeding
  14. 14

    Estimation of transmission line parameters single-core XLPE cables considering semiconducting layer by Yan Li, Wouters, P. A. A. F., Wagenaars, P., van der Wielen, P. C. J. M., Steennis, E. F.

    “…A power cable model for partial discharge (PD)pulse propagation requires knowledge of all factors influencingthe transmission line parameters of the cable…”
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    Conference Proceeding
  15. 15

    Smartening cable connections by an intelligent health monitor system by van der Wielen, P C J M, Steennis, E F

    “…A new technology for smartening existing cable connections by means of implementing an intelligent heath monitoring system is described. The system is called…”
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    Conference Proceeding
  16. 16

    PD location in power cables using parametric models by Veen, J., van der Wielen, P.C.J.M.

    “…In order to locate partial discharge in power cables, multiple pulses are detected using sensor(s) either installed at a single cable end or at both ends. The…”
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    Conference Proceeding
  17. 17

    Cancellation of continuous periodic interference for PD detection by Veen, J., van der Wielen, P.C.J.M., Steennis, E.F.

    “…Practical partial discharge detection is generally impeded by noise and interference. Especially in case of on-line detection in the field, the signal-to-noise…”
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    Conference Proceeding