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S. I. Khrenov

Researcher at Moscow Power Engineering Institute

Publications -  24
Citations -  40

S. I. Khrenov is an academic researcher from Moscow Power Engineering Institute. The author has contributed to research in topics: Voltage & Environmental science. The author has an hindex of 4, co-authored 15 publications receiving 29 citations.

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Using Dual Circuits to Simulate Electromagnetic Processes in Cascade Station Service Voltage Transformers

TL;DR: The algorithm for determination of the parameters of transformer model for calculation of steady state conditions is presented, which provides a good coincidence with experimental values for integral parameters, such as the power loss and the root-mean-square value of magnetizing current.
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Determining the efficiency of the compensation of single-phase capacitive earth currents using arc-suppression coils of different designs implemented in an experimental workbench

TL;DR: In this paper, the authors compared the response times of plunger-type and magnetic bias-controlled single-phase capacitive earth currents using arc-suppression coils of two cardinally different designs, i.e., plunger type coils and coils controlled by magnetic bias.
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Analysis of the purification processes of exhaust gases in a plate electrostatic precipitator taking into account particle entrainment from electrodes

TL;DR: In this paper, a physical-mathematical model of the processes related with the particlelayer growth and discharge of particles from the electrodes to the hopper is proposed, along with the forces of gravity, cohesion, and adhesion, being about violation of layer stability.
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Minimization of high harmonics in the current of a biasing controlled arc suppressing reactor

TL;DR: In this article, the authors proposed an approach to optimize the magnetic system of a biasing controlled arc suppressing Reactor (ASR) based on adjustment of the magnetic core according to the results of experimental measurements of the harmonic composition of reactor currents within a wide biasing range.
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The idea of system control and monitoring of a complete medium-voltage switchgear with solid insulation

TL;DR: In this article, the authors present a control and monitoring system for a 35-kV switchgear with the shielded solid insulation, which is constructed in the form of two cells, one having a three-position sulphur hexafluoride load break-disconnecting-grounding switch with a motor-spring drive.