LAPSE:2019.1476
Published Article
LAPSE:2019.1476
Predictive Direct Flux Control—A New Control Method of Voltage Source Inverters in Distributed Generation Applications
December 10, 2019
Voltage source inverters (VSIs) have been widely utilized in electric drives and distributed generations (DGs), where electromagnetic torque, currents and voltages are usually the control objectives. The inverter flux, defined as the integral of the inverter voltage, however, is seldom studied. Although a conventional flux control approach has been developed, it presents major drawbacks of large flux ripples, leading to distorted inverter output currents and large power ripples. This paper proposes a new control strategy of VSIs by controlling the inverter flux. To improve the system’s steady-state and transient performance, a predictive control scheme is adopted. The flux amplitude and flux angle can be well regulated by choosing the optimum inverter control action according to formulated selection criteria. Hence, the inverter flux can be controlled to have a specified magnitude and a specified position relative to the grid flux with less ripples. This results in a satisfactory line current performance with a fast transient response. The proposed predictive direct flux control (PDFC) method is tested in a 3 MW high-power grid-connected VSI system in the MATLAB/Simulink environment, and the results demonstrate its effectiveness.
Keywords
inverter flux, predictive control, voltage source inverter (VSI)
Suggested Citation
Hu J. Predictive Direct Flux Control—A New Control Method of Voltage Source Inverters in Distributed Generation Applications. (2019). LAPSE:2019.1476
Author Affiliations
Hu J: Department of Electrical Engineering, The Hong Kong Polytechnic University, Hong Kong, China [ORCID]
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Journal Name
Energies
Volume
10
Issue
4
Article Number
E428
Year
2017
Publication Date
2017-03-23
Published Version
ISSN
1996-1073
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Original Submission
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PII: en10040428, Publication Type: Journal Article
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LAPSE:2019.1476
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doi:10.3390/en10040428
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Dec 10, 2019
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CC BY 4.0
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Dec 10, 2019
 
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Original Submitter
Calvin Tsay
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