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  1. National Taiwan Ocean University Research Hub
  2. 電機資訊學院
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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/21450
Title: Adaptive WAMS-Based Secondary Voltage Control
Authors: Heng-Yi Su
Jian-Hong Liu 
Chia-Chi Chu
Keywords: Phasor measurement unit (PMU);Maximum likelohood;Secondary voltage control (SVC);Wide area measurement system (WAMS);Worst-case design
Issue Date: Sep-2020
Start page/Pages: 353-372
Source: Wide Area Power System Stability Protection, and Security
Abstract: 
Voltage instability is a growing threat to the security and the reliability of power grids,especially as the penetration level of intermittent renewable energies increase significantly in recent years.Voltage instability and even voltage collapse will take place as the loss of control of the voltage profiles in a power system.To achieve more efficient voltage regulation in power systems, the hierarchical threelevel coordinated voltage control mechanism has been developed recently to prevent voltage collapse through the appropriate management of reactive power sources.This chapter presents recent developments in adaptive secondary voltage control (SVC) by utilizing real-time measurements of power systems obtained from the wide-area measurement system (WAMS).These methods are adaptive in the sense that load disturbances are estimated from synchronized phasors of WAMS in nearly real-time.Thus, these control inputs of SVC can be synthesized to minimize deviations in load voltage profiles under the worst-case scen ario. Uncertainties in measurement are also taken into considerations by exploring the maximum likelihood (ML) method to further improve SVC performance. Comprehensive simulations on a variety of IEEE benchmark systems have been performed to verify the feasibility and the effectiveness of these schemes.
URI: http://scholars.ntou.edu.tw/handle/123456789/21450
Appears in Collections:電機工程學系

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