Dynamic Stability Improvement of Decentralized Wind Farms by Effective Distribution Static Compensator

Dynamic instability of decentralized wind energy farms is a major issue to deliver continuous green energy to electricity consumers. This instability is caused by variations of voltage and frequency parameters due to intermittencies in wind power. Previously, droop control and inverter-based schemes...

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Main Authors: Muhammad Naveed Naz, Saqif Imtiaz, Muhammad Kamran Liaquat Bhatti, Waseem Qaiser Awan, Muhammad Siddique, Ashfaq Riaz
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:Journal of Modern Power Systems and Clean Energy
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9438066/
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spelling doaj-6e39babca9754d99b81066fa05fbb4672021-05-23T18:22:48ZengIEEEJournal of Modern Power Systems and Clean Energy2196-54202021-01-019351652510.35833/MPCE.2018.004229438066Dynamic Stability Improvement of Decentralized Wind Farms by Effective Distribution Static CompensatorMuhammad Naveed Naz0Saqif Imtiaz1Muhammad Kamran Liaquat Bhatti2Waseem Qaiser Awan3Muhammad Siddique4Ashfaq Riaz5NFC Institute of Engineering & Technology,Department of Electrical Engineering,Multan,PakistanNFC Institute of Engineering & Technology,Department of Electrical Engineering,Multan,PakistanNFC Institute of Engineering & Technology,Department of Electrical Engineering,Multan,PakistanMultan Electric Power Company,Multan,PakistanNFC Institute of Engineering & Technology,Department of Electrical Engineering,Multan,PakistanNFC Institute of Engineering & Technology,Department of Electrical Engineering,Multan,PakistanDynamic instability of decentralized wind energy farms is a major issue to deliver continuous green energy to electricity consumers. This instability is caused by variations of voltage and frequency parameters due to intermittencies in wind power. Previously, droop control and inverter-based schemes have been proposed to regulate the voltage by balancing reactive power, while inertial control, digital mapping technique of proportional-integral-differential (PID) controller and efficiency control strategy have been developed to regulate the frequency. In this paper, voltage stability is improved by a new joint strategy of distribution static compensator (DSTATCOM) six-pulse controller based reactive power management among decentralized wind turbines and controlled charging of capacitor bank. The frequency stability is ensured by a joint coordinated utilization of capacitor bank and distributed wind power turbines dispatching through a new DSTATCOM six-pulse controller scheme. In both strategies, power grid is contributed as a backup source with less priority. These new joint strategies for voltage and frequency stabilities will enhance the stable active power delivery to end users. A system test case is developed to verify the proposed joint strategies. The test results of the proposed new schemes are proved to be effective in terms of stability improvement of voltage, frequency and active power generation.https://ieeexplore.ieee.org/document/9438066/Dynamic instabilitydecentralized wind energy farmsvoltage instabilityfrequency instabilitydistribution static compensator (DSTATCOM)reactive power management
collection DOAJ
language English
format Article
sources DOAJ
author Muhammad Naveed Naz
Saqif Imtiaz
Muhammad Kamran Liaquat Bhatti
Waseem Qaiser Awan
Muhammad Siddique
Ashfaq Riaz
spellingShingle Muhammad Naveed Naz
Saqif Imtiaz
Muhammad Kamran Liaquat Bhatti
Waseem Qaiser Awan
Muhammad Siddique
Ashfaq Riaz
Dynamic Stability Improvement of Decentralized Wind Farms by Effective Distribution Static Compensator
Journal of Modern Power Systems and Clean Energy
Dynamic instability
decentralized wind energy farms
voltage instability
frequency instability
distribution static compensator (DSTATCOM)
reactive power management
author_facet Muhammad Naveed Naz
Saqif Imtiaz
Muhammad Kamran Liaquat Bhatti
Waseem Qaiser Awan
Muhammad Siddique
Ashfaq Riaz
author_sort Muhammad Naveed Naz
title Dynamic Stability Improvement of Decentralized Wind Farms by Effective Distribution Static Compensator
title_short Dynamic Stability Improvement of Decentralized Wind Farms by Effective Distribution Static Compensator
title_full Dynamic Stability Improvement of Decentralized Wind Farms by Effective Distribution Static Compensator
title_fullStr Dynamic Stability Improvement of Decentralized Wind Farms by Effective Distribution Static Compensator
title_full_unstemmed Dynamic Stability Improvement of Decentralized Wind Farms by Effective Distribution Static Compensator
title_sort dynamic stability improvement of decentralized wind farms by effective distribution static compensator
publisher IEEE
series Journal of Modern Power Systems and Clean Energy
issn 2196-5420
publishDate 2021-01-01
description Dynamic instability of decentralized wind energy farms is a major issue to deliver continuous green energy to electricity consumers. This instability is caused by variations of voltage and frequency parameters due to intermittencies in wind power. Previously, droop control and inverter-based schemes have been proposed to regulate the voltage by balancing reactive power, while inertial control, digital mapping technique of proportional-integral-differential (PID) controller and efficiency control strategy have been developed to regulate the frequency. In this paper, voltage stability is improved by a new joint strategy of distribution static compensator (DSTATCOM) six-pulse controller based reactive power management among decentralized wind turbines and controlled charging of capacitor bank. The frequency stability is ensured by a joint coordinated utilization of capacitor bank and distributed wind power turbines dispatching through a new DSTATCOM six-pulse controller scheme. In both strategies, power grid is contributed as a backup source with less priority. These new joint strategies for voltage and frequency stabilities will enhance the stable active power delivery to end users. A system test case is developed to verify the proposed joint strategies. The test results of the proposed new schemes are proved to be effective in terms of stability improvement of voltage, frequency and active power generation.
topic Dynamic instability
decentralized wind energy farms
voltage instability
frequency instability
distribution static compensator (DSTATCOM)
reactive power management
url https://ieeexplore.ieee.org/document/9438066/
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