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Capacitor switching transients prediction in noisy environments
Conference proceeding

Capacitor switching transients prediction in noisy environments

D Sochulfakova, D Niebur, C.O Nwankpa, R Fischl, D Richardson and AMER AUTOMAT CONTROL COUNCIL
Proceedings of the 1998 American Control Conference. ACC (IEEE Cat. No.98CH36207), v 6, pp 3396-3397 vol.6
1998

Abstract

Capacitors Communication switching Equations Frequency Power harmonic filters Predictive models Surge protection Switches Voltage Working environment noise
The purpose of this project is to design a voltage transient predictor capable of predicting voltage across the load N time steps into the future. The system is modeled as a generator bus and a load bus connected by a short line model with a switchable capacitor placed along the line. Based on the analytical expression for system states, a novel discrete Kalman filter model is proposed and used for prediction. A study with respect to the capacitor position, switching time, noise level, and number of predicted time steps was conducted.

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Web of Science research areas
Automation & Control Systems
Computer Science, Interdisciplinary Applications
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