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A nonlinear control for a BTB STATCOM system with asymmetrically structured converters

Authors
Lee, Young OkKang, Hyun JaeHan, YoungseongChung, Chung Choo
Issue Date
Sep-2011
Publisher
IEEE
Keywords
BTB STATCOM; damping controller; input-output linearization; zero dynamics
Citation
2011 IEEE PES Trondheim PowerTech: The Power of Technology for a Sustainable Society, POWERTECH 2011, pp.1 - 8
Indexed
SCOPUS
Journal Title
2011 IEEE PES Trondheim PowerTech: The Power of Technology for a Sustainable Society, POWERTECH 2011
Start Page
1
End Page
8
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/167716
DOI
10.1109/PTC.2011.6019219
Abstract
This paper describes a new BTB STATCOM system with asymmetrically structured converters and develops its mathematical model. The BTB STATCOM employs a PWM technology for a rectifier station and a multipulse technology for an inverter station. We propose a control strategy for the following three control variables: active and reactive rectifier power and DC voltage. In the rectifier station, input-output linearization via the feedback control law is applied for independent control of the active and reactive power. Conversely, the input-output linearization controller is not applicable for maintaining the DC voltage. We design an alternative indirect damping controller for the reactive current within the inverter station. The proposed controller provides an improved stability margin and a decreased oscillation for DC voltage with a degraded reactive current tracking performance of the inverter. The effectiveness of the proposed controller is validated via the local stability at each operating point and the performance of the time response. Parameter-dependent Lyapunov functions for zero dynamics and the closed-loop system prove the stability of the damped internal dynamics and closed-loop system, respectively.
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