2019
DOI: 10.1002/tee.22873
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Coordinated power control strategy of voltage source converter‐based multiterminal high‐voltage direct current based on the voltage‐current curve

Abstract: To achieve power distribution quickly and improve the anti-interference capability of the voltage source converter-based multiterminal high-voltage direct current (VSC-MTDC) system, a coordinated control strategy based on the V-I curve is proposed in this article. The proposed control strategy includes the conventional droop control, the improved droop control, which considers the voltage dead band and fixed dc voltage control. The conventional droop control is utilized in one of the multiple converter station… Show more

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Cited by 4 publications
(1 citation statement)
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“…In [34], [35], VM control and VD control are combined to participate in the active power regulation of the system through the switching of the control system. A voltage dead band is set for the droop control method in [36]; when the DC voltage is within the range of the dead band, the slave operates in constant power mode; otherwise, the slave will switch to VD mode. However, the above methods are mostly for multiple MMCs connected in series, but not for the Baihetan-Jiangsu project, where multiple MMCs are connected in parallel.…”
Section: Introductionmentioning
confidence: 99%
“…In [34], [35], VM control and VD control are combined to participate in the active power regulation of the system through the switching of the control system. A voltage dead band is set for the droop control method in [36]; when the DC voltage is within the range of the dead band, the slave operates in constant power mode; otherwise, the slave will switch to VD mode. However, the above methods are mostly for multiple MMCs connected in series, but not for the Baihetan-Jiangsu project, where multiple MMCs are connected in parallel.…”
Section: Introductionmentioning
confidence: 99%