Proportional complex integral based control of distributed energy converters connected to unbalanced grid system. (October 2020)
- Record Type:
- Journal Article
- Title:
- Proportional complex integral based control of distributed energy converters connected to unbalanced grid system. (October 2020)
- Main Title:
- Proportional complex integral based control of distributed energy converters connected to unbalanced grid system
- Authors:
- Meral, Mehmet Emin
Çeli̇k, Doğan - Abstract:
- Abstract: The high penetration of distributed energy resources (DERs) consisting of photovoltaic and fuel cell and wind power plants into the modern power grid results in several challenges such as stability and reliability. In this regard, this paper proposes proportional complex integral (PCI)-based control scheme of distributed energy inverter (DEI) connected to the utility grid to overcome limitations of synchronous rotating coordinate systems based control schemes. The dynamic performance, power quality and stability of the grid connected DEI are enhanced in contrast to proportional integral (PI)-based control scheme during unbalanced and distorted grid voltages. A noteworthy contribution of this paper is that the third-order (3rd) current harmonic stemmed from the DC-link voltage (DC-LV) oscillations is eliminated at the grid side. Elimination of the DC-LV oscillations contributes to reducing the size of the DC capacitance and increasing the lifetime of the power conversion system. Active power reference is calculated in a closed-loop control system based on the DC-LV controller or based on maximum allowable active power injection according to the control objectives. Another contribution to previous studies is to eliminate the need for a phase locked loop (PLL). The complexities and additional hardware requirement for phase estimation are reduced. The performance comparison for two control schemes has been evaluated in terms of dynamic response, removing active powerAbstract: The high penetration of distributed energy resources (DERs) consisting of photovoltaic and fuel cell and wind power plants into the modern power grid results in several challenges such as stability and reliability. In this regard, this paper proposes proportional complex integral (PCI)-based control scheme of distributed energy inverter (DEI) connected to the utility grid to overcome limitations of synchronous rotating coordinate systems based control schemes. The dynamic performance, power quality and stability of the grid connected DEI are enhanced in contrast to proportional integral (PI)-based control scheme during unbalanced and distorted grid voltages. A noteworthy contribution of this paper is that the third-order (3rd) current harmonic stemmed from the DC-link voltage (DC-LV) oscillations is eliminated at the grid side. Elimination of the DC-LV oscillations contributes to reducing the size of the DC capacitance and increasing the lifetime of the power conversion system. Active power reference is calculated in a closed-loop control system based on the DC-LV controller or based on maximum allowable active power injection according to the control objectives. Another contribution to previous studies is to eliminate the need for a phase locked loop (PLL). The complexities and additional hardware requirement for phase estimation are reduced. The performance comparison for two control schemes has been evaluated in terms of dynamic response, removing active power oscillations (APOs) for the DC-side voltage stability, removing reactive power oscillations (RPOs) for the AC side voltage stability, reducing the DC-LV oscillations for the elimination of third-order current harmonic and protection of the inverter from overcurrent. The effectiveness and availability of the proposed control scheme are confirmed through a set of case studies. Highlights: Performance comparisons of the PI and PCI-based control schemes are performed. Third-order current harmonic stemmed from the DC-link voltage oscillations is eliminated. The stability and dynamic behavior of the grid connected DEI system are enhanced. The size of the DC-side capacitor is reduced by mitigation of the DC-link voltage oscillations. The requirement of an additional phase estimation method is eliminated. … (more)
- Is Part Of:
- Control engineering practice. Volume 103(2020)
- Journal:
- Control engineering practice
- Issue:
- Volume 103(2020)
- Issue Display:
- Volume 103, Issue 2020 (2020)
- Year:
- 2020
- Volume:
- 103
- Issue:
- 2020
- Issue Sort Value:
- 2020-0103-2020-0000
- Page Start:
- Page End:
- Publication Date:
- 2020-10
- Subjects:
- Distributed energy converters -- DC-link voltage oscillations -- Proportional complex integral -- Third-order current harmonic -- Stationary reference frame -- Synchronous reference frame
Automatic control -- Periodicals
629.89 - Journal URLs:
- http://www.sciencedirect.com/science/journal/09670661 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.conengprac.2020.104574 ↗
- Languages:
- English
- ISSNs:
- 0967-0661
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 3462.020000
British Library DSC - BLDSS-3PM
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