Control of Full-Scale Converter based Wind Power Plants for damping of low frequency system oscillations
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Document typeConference report
Defense date2011
PublisherIEEE Press. Institute of Electrical and Electronics Engineers
Rights accessRestricted access - publisher's policy
Abstract
Damping of low frequency power oscillations is one
of essential aspects of maintaining power system stability. In
literature can be found publications on damping capability of
Doubly Fed Induction Generator based wind turbines. This
paper extends discussion on Wind Power Plant damping
capability to Full-Scale Converter based type. Moreover
resemblance of such Wind Power Plant to modern FACTS
devices is recognized and exploited. Paper discusses many aspect
of damping controller design, including feedback signal selection
and control effectiveness with respect to wind farm location.
Analysis and design is based on modal analysis, therefore
matching modeling approach for wind power plant is proposed.
Finally, performance of Wind Power Plant damping control is
compared to a regular power system stabilizer installed on a
synchronous generator.
CitationRodriguez, P.; Teodorescu, R.; Adamczyk, A. Control of Full-Scale Converter based Wind Power Plants for damping of low frequency system oscillations. A: IEEE PES Trondheim PowerTech. "2011 IEEE Trondheim PowerTech : Trondheim, Norway, 19 - 23 June 2011". Trondheim: IEEE Press. Institute of Electrical and Electronics Engineers, 2011, p. 1-7.
ISBN9781424484195
Publisher versionhttp://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=6019421
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