Author:
Preeti Kabra,Rani Donepudi Sudha
Abstract
Purpose
The earlier methods are more resilient to improvements such as load shift and path change. This results in problems such as a voltage drop and a high reactive flux. In addition, due to the delay, congestion or interruption of the transmission, the system cannot receive all phasor measurement unit (PMU) measurements at the relevant time as well as the presence of noise in the received data.
Design/methodology/approach
With the development of wide area measurement system technologies, it seems to be possible to track voltage stability online via time-stamped PMUs. As the voltage instability causes a voltage decomposition, voltage instability is one of the most important problems when monitoring the power supply.
Findings
This harmonic distortion significantly decreases the data quality in the grid. As a result, instability ascertainment based on PMU has been suggested as a method for detecting voltage instability in power systems monitored with PMU. In addition, a technique called instability amendment via load dropping has been proposed to keep the device from collapsing due to voltage failure.
Originality/value
To improve the power output, the power prominence melioration technique was developed. This proposed system has been implemented in MATLAB Simulink and compared with the recent researches.
Subject
Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications
Reference26 articles.
1. Power quality improvement using dynamic voltage restorer;IEEE Access,2020
2. Performance evaluation of voltage stability indices for a static voltage collapse prediction,2020
3. Real-time voltage stability monitoring using machine learning-based pmu measurements,2020
4. A novel multiobjective OPP for power system small signal stability assessment considering WAMS uncertainties;IEEE Transactions on Industrial Informatics,2019
5. Packet-data anomaly detection in PMU-based state estimator using convolutional neural network;International Journal of Electrical Power and Energy Systems,2019
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