Search Results - "Larsen, E.V."

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  1. 1

    A thyristor controlled series compensation model for power system stability analysis by Paserba, J.J., Miller, N.W., Larsen, E.V., Piwko, R.J.

    Published in IEEE transactions on power delivery (01-07-1995)
    “…Thyristor-controlled series compensation (TCSC) is expected to be applied in transmission systems to achieve a number of benefits. To ensure best use of this…”
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    Journal Article
  2. 2

    Characteristics and rating considerations of thyristor controlled series compensation by Larsen, E.V., Clark, K., Miske, S.A., Urbanek, J.

    Published in IEEE transactions on power delivery (01-04-1994)
    “…Thyristor-controlled series compensation systems are expected to provide benefits to utility transmission systems, with applications forthcoming over the next…”
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    Journal Article Conference Proceeding
  3. 3

    Thyristor controlled series compensation prototype installation at the Slatt 500 kV substation by Urbanek, J., Piwko, R.J., Larsen, E.V., Damsky, B.L., Furumasu, B.C., Mittlestadt, W., Eden, J.D.

    Published in IEEE transactions on power delivery (01-07-1993)
    “…A new type of series power capacitor controlled by thyristor switches, is presented. Its major components, basic operating modes, and control/protection system…”
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    Journal Article Conference Proceeding
  4. 4

    Concepts for design of FACTS controllers to damp power swings by Larsen, E.V., Sanchez-Gasca, J.J., Chow, J.H.

    Published in IEEE transactions on power systems (01-05-1995)
    “…The design of controllers sited in the transmission network for damping interarea power oscillations requires several types of analytical tools and field…”
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    Journal Article
  5. 5

    Applying Power System Stabilizers Part II: Performance Objectives and Tuning Concepts by Larsen, E.V., Swann, D.A.

    “…This part of a three-part paper deals first with the performance objectives of power system stabilizers in terms of the type of oscillations for which they are…”
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    Journal Article
  6. 6

    VFT Operational Overview - The Laredo Project by Pratico, E.R., Wegner, C., Larsen, E.V., Piwko, R.J., Wallace, D.R., Kidd, D.

    “…A variable frequency transformer (VFT) is being installed at AEP's Laredo substation, where it will be used to exchange up to 100 MW of power between the…”
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    Conference Proceeding
  7. 7

    Geomagnetic disturbance effects on power systems by Albertson, V.D., Bozoki, B., Feero, W.E., Kappenman, J.G., Larsen, E.V., Nordell, D.E., Ponder, J., Prabhakara, F.S., Thompson, K., Walling, R.

    Published in IEEE transactions on power delivery (01-07-1993)
    “…The trends in interconnected power systems and the equipment to transmit and control power flows and system voltage profiles have made power systems more…”
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    Journal Article
  8. 8

    Benefits of GTO-based compensation systems for electric utility applications by Larsen, E.V., Miller, N.W., Nilsson, S.L., Lindgren, S.R.

    Published in IEEE transactions on power delivery (01-10-1992)
    “…The performance of reactive compensation systems based on gate-turnoff thyristors offers potential benefits compared to conventional compensators. The authors…”
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    Journal Article Conference Proceeding
  9. 9

    Damping control design based on time-domain identified models by Leirbukt, A.B., Chow, J.H., Sanchez-Gasca, J.J., Larsen, E.V.

    Published in IEEE transactions on power systems (01-02-1999)
    “…This paper presents an integrated approach for designing damping controllers for large power systems. First, a low-order model is identified from a time…”
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    Journal Article
  10. 10

    Low-order harmonic interactions on AC/DC systems by Larsen, E.V., Baker, D.H., McIver, J.C.

    Published in IEEE transactions on power delivery (01-01-1989)
    “…A technique is described to evaluate harmonic interaction. It is based on linearizing the harmonic interaction between AC and DC sides of the converter,…”
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    Journal Article Conference Proceeding
  11. 11

    A classical approach to constructing a power flow controller by Larsen, E.V.

    “…A new approach is described for realizing continuous control of power flow in AC power lines. The approach is based on "classical" electrical engineering…”
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    Conference Proceeding
  12. 12

    Control design for SVC's on the Mead-Adelanto and Mead-Phoenix transmission project by Larsen, E.V., Clark, K., Hill, A.T., Piwko, R.J., Beshir, M.J., Bhuiyan, M., Hormozi, F.J., Braun, K.

    Published in IEEE transactions on power delivery (01-07-1996)
    “…A major project is under construction to increase the capability of the 500 kV transmission system between Arizona and Southern California, USA. This project…”
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    Journal Article
  13. 13

    Design of a supplementary modulation control function for the Chester SVC by Larsen, E.V., Rostamkolai, N., Fisher, D.A., Poitras, A.E.

    Published in IEEE transactions on power delivery (01-04-1993)
    “…The Chester static volt-ampere reactive (VAr) compensator (SVC) was recently installed in New England on the 345 kV interconnection between Maine and New…”
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    Journal Article Conference Proceeding
  14. 14

    Variable Frequency Transformer - FACTS Technology for Asynchronous Power Transfer by Piwko, R.J., Larsen, E.V.

    “…A new power transmission technology has been developed. The variable frequency transformer (VFT) is a controllable, bi-directional transmission device that can…”
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    Conference Proceeding
  15. 15

    Variable frequency transformer - a new alternative for asynchronous power transfer by Piwko, R.J., Larsen, E.V., Wegner, C.A.

    “…A new power transmission technology has been developed. The variable frequency transformer (VFT) is a controllable, bi-directional transmission device that can…”
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    Conference Proceeding
  16. 16

    Parallel AC/DC transmission lines steady-state induction issues by Larsen, E.V., Walling, R.A., Bridenbaugh, C.J.

    Published in IEEE transactions on power delivery (01-01-1989)
    “…Steady-state induction at fundamental-frequency into an HVDC transmission circuit from parallel AC lines can lead to several adverse impacts on system…”
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    Journal Article Conference Proceeding
  17. 17

    Subsynchronous torsional interactions with static var compensators ― concepts and practical implications by ROSTAMKOLAI, N, PIWKO, R. J, LARSEN, E. V, FISHER, D. A, MOBARAK, M. A, POITRAS, A. E

    Published in IEEE transactions on power systems (01-11-1990)
    “…In 1987, planning for the installation of a static var compensator (SVC) in Chester, Maine, was initiated. Project participants were concerned that the SVC…”
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    Conference Proceeding Journal Article
  18. 18

    Hydro-Quebec multiple SVC application control stability study by Gerin-Lajoie, L., Scott, G., Breault, S., Larsen, E.V., Baker, D.H., Imece, A.F.

    Published in IEEE transactions on power delivery (01-07-1990)
    “…A report is presented on the SVC (static VAR compensator) control stability studies undertaken as part of an overall system improvement project. It is shown…”
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    Journal Article Conference Proceeding
  19. 19

    Basic aspects of applying SVC's to series-compensated AC transmission lines by Larsen, E.V., Baker, D.H., Imece, A.F., Gerin-Lajoie, L., Scott, G.

    Published in IEEE transactions on power delivery (01-07-1990)
    “…Basic information is presented on SVC (static VAR compensator) interactions with series-compensated transmission lines. A potential exists for adverse…”
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    Journal Article Conference Proceeding
  20. 20

    Stability analysis of a digitally based HVDC firing-pulse synchronization control by Larsen, E.V., Clark, K., Lorden, D.J.

    Published in IEEE transactions on power delivery (01-07-1992)
    “…A step-by-step analysis of the performance and stability characteristics of a digitally based DC firing-pulse synchronizing control is presented. The transient…”
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    Journal Article