DocumentCode
985754
Title
Harmonic voltage and current transfer, and AC- and DC-side impedances of HVDC converters
Author
Riedel, Peter
Author_Institution
Siemens AG, Erlangen, Germany
Volume
20
Issue
3
fYear
2005
fDate
7/1/2005 12:00:00 AM
Firstpage
2095
Lastpage
2099
Abstract
This paper presents a set of equations for line commutated HVdc systems that can be used to calculate the main voltages and currents of positive or negative sequence on the ac side of the rectifier or inverter and to calculate the main voltages and currents on the dc side that are related to one ac system background voltage harmonic of positive or negative sequence. Furthermore, the frequency-dependent impedances of a line commutated HVdc system on the ac or dc side can be derived. It will illustrate how the converter impedances on both sides are related via an impedance transformation function, which is the product of the transfer functions for currents and voltages. The equations for the impedances differ from those given in a previous IEEE paper, especially with respect to the representation of the impedance for the converter transformers. It did, however, lead to similar results for the CIGRE benchmark model. In order to distinguish between a monopolar and bipolar scheme, the equations take the numbers of poles into account. Furthermore, six- or 12-pulse arrangements are considered.
Keywords
HVDC power convertors; harmonics; impedance convertors; invertors; rectifiers; transfer functions; AC-side impedance; CIGRE benchmark model; DC-side impedance; HVDC converters; bipolar scheme; harmonic current transfer; harmonic voltage transfer; impedance transformation function; inverter; line commutated HVDC systems; monopolar scheme; rectifier; transfer functions; Analog-digital conversion; Equations; HVDC transmission; Impedance; Inverters; Power harmonic filters; Power system harmonics; Rectifiers; Resonance; Voltage; Frequency conversion; HVdc converters; HVdc transmission; frequency-domain analysis; harmonic analysis; impedance; power system harmonics; power system modeling; resonance; transfer functions;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/TPWRD.2005.848719
Filename
1458884
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