Warianty tytułu
Języki publikacji
Abstrakty
The DTSTACOM is a power quality compensator that can be used in the distribution grid to compensate the demand of reactive power, which can be produced by different linear and non-linear loads. In this process, the control method of DSTATCOM is one of the key factors influencing the performance of DSTATCOM. This study aims to analyse the effect of two modulation schemes, Pulse Width Modulation (PWM) and Hysteresis Current Control (HCC), under several conditions. The proposed modelling approach and Synchronous Reference Frame (SRF) theory are used to verify reactive power compensation and total harmonic distortion (THD). Further, PWM and Hysteresis Current Control (HCC) with proportional-integral (PI) controller simulated in MATLAB for different cases, and percentage THD was calculated to prove the effectiveness of the proposed method for the control of reactive power and THD with grid-connected DSTATCOM. The results presented here justify that the HCC controller can be better than the PWM method to generate the PWM pulses for reduction of harmonics under various conditions of DTSTACOM to compensate the reactive power. Additionally, the simulation was performed to check the efficacy of the projected method to reduce THD by varying the current control band of HCC.
Czasopismo
Rocznik
Tom
Strony
220--237
Opis fizyczny
Bibliogr. 24 poz., rys., tab.
Twórcy
autor
- Department of Electrical Engineering, The Charutar Vidya Mandal (CVM) University, Anand, Gujarat, India, mineshkumar.joshi@cvmu.edu.in
autor
- Department of Electrical Engineering, The Charutar Vidya Mandal (CVM) University, Anand, Gujarat, India, r2patel@yahoo.com
Bibliografia
- Amoozegar, D. (2016). DSTATCOM Modelling for Voltage Stability with Fuzzy Logic PI Current Controller. International Journal of Electrical Power & Energy Systems, 76, pp. 129–135. doi: 10.1016/j.ijepes.2015.09.017.
- Bollen, M. (1999). Understanding Power Quality Problems: Voltage Sags and Interruptions. New York: IEEE Press.
- Chebabhi, M. (2016). Four leg D-STATCOM Based on Synchronous Reference Frame Theory with Enhanced Phase Locked Loop for Compensating a Four-Wire Distribution Network under Unbalanced PCC Voltages and loads. Journal of Power Technology, Vol.96 (1), pp.15–26.
- Chothani, N., Joshi, M., Patel, D. and Raichura, M. (2021). Adaptive PID controller based static var 236 compensation in EHV transmission line. In: IEEE International Conference on Communication information and Computing Technology (ICCICT), June 25–27, IEEE, India,2021.
- Daniel, A. and Ramin, M. (2018). Hysteresis band current control applied to a five- level NPC type G converter. In: 13th IEEE International Conference on Industry Applications, IEEE, Brazil, pp. 17–23.
- Deng, Y. (2007). A Comparison between STATCOMs using PWM Voltage Control and Hysteresis Current Control (HCC). Concordia University, Canada, pp. 1–115.
- Edris, A. (2000). FACTS Technology Development: An Update. Power Engineering Review, 20(3), pp. 599–627. doi: 10.1109/39.825623.
- Eun, S. and Sang, J. (2004). A novel hysteresis current controller to reduce the switching frequency and current error in D-STATCOM. In: IEEE International Conference Industrial Electronics Society.
- Hingorani, N. G. and GyugyI, L. (1999). Understanding FACTS: Concepts and Technology of Flexible AC Transmission Systems. Wiley-IEEE Press, USA.
- Kalyanraj, D. and Lenin Prakash, S. (2014). Design and Digital Implementation of Constant Frequency Hysteresis Current Controller for Three-Phase Voltage Source Inverter using TMS320F2812. International Journal of Emerging Electric Power Systems, 15(1), pp. 13–23. doi: 10.1515/ijeeps-2013-0141.
- Kamel, E. and Fenghua, G. (2020). Modelling and Design of the Improved D-STATCOM Control for Power Distribution Grid. Springer Nature Switzerland, 2, p. 1519.
- Khatir, M., ZidiI, A., Fellah, M., Hadjeri, S. and Flitti, M. (2012). The Impact Study of a STATCOM on Communication Failure in an HVDC Inverter Feeding a weak AC System. Journal of Electrical Engineering, 63(2), pp. 95–102.
- Li, S., Xu, L. and Haskew, T. (2013). Control of VSCbased STATCOM Using Conventional and DirectCurrent Vector Control Strategies. International Journal of Electrical Power & Energy Systems, 45(1), pp. 175–186.
- Liu, X., Wang, J. and Yao, G. (2012). A Novel Hysteresis Current Control Strategy with Fuzzy Bandwidth for Active Power Filter. Elektronika ir Elektrotechnika, 4, pp. 3–8.
- Mangaraj, M. and Sabat, J. (2023). Evaluation of SVCCoupled Hybrid DSTATCOM using JLMS Algorithm for Enhancement of Power Quality. Power Electronics and Drives, 8(43), pp. 21–30.
- Marei, M. I., El Saadany, E. F. and Salama, M. M. A. (2004). A novel control scheme for STATCOM using space vector modulation-based hysteresis current controller. In: 2004 11th International Conference on Harmonics and Quality of Power (IEEE Cat. No.04EX951), 12–15 September 2004, Lake Placid, NY, USA: IEEE. doi: 10.1109/ICHQP.2004.1409329.
- Ngasop, N. and David, A. (2020). Using Hysteresis Band Method for the Control of Three-Phase STATCOM Connected to a Transport Network. European Journal of Engineering Research and Science, 5(7). doi: 10.24018/ejers.2020.5.7.1983.
- Pal, Y., Swarup, A. and Singh, B. (2011). A Control Strategy Based on UTT and Icosϕ Theory of Three-Phase, Four-Wire UPQC for Power Quality Improvement. International Journal of Engineering Science Technology, 3(1), pp. 30–40.
- Pasrba, J. (2004). How FACTS Controllers Benefit AC Transmission Systems. Power Engineering Society General Meeting, 2, pp. 1257–1262.
- Rahim, A. H. M. A. and Kandlawala, M. F. (2004). Robust STATCOM Voltage Controller Design Using Loop-Shaping Technique. Electric Power Systems Research, 68(1), pp. 61–74. doi: 10.1016/S03787796(03)00153-6.
- Raju, A., Cheriyan, E. P. and Rijil, R. (2020). Investigations on STATCOM using Current Error Space Phasor Based Modified Hysteresis Current Controller. IETGTD, WILEY, 2020
- Safari, A., Ahmadian, A. and Golkar, M. (2013). Comparison of Honey Bee Mating Optimization and Genetic Algorithm for Coordinated Design of PSS and STATCOM based on Damping of Power System Oscillation. Journal of Electrical Engineering, 64(3), pp. 133–142.
- Singh, B., Dube, S. and Arya, S. (2015). An Improved Control Algorithm of DSTATCOM for Power Quality Improvement. International Journal of Electrical Power & Energy Systems, 64, pp. 493–504. doi: 10.1016/j.ijepes.2014.07.055.
- Tripathi, S. (2018). Design and Control of a STATCOM for Non-Linear Load Compensation: A Simple Approach. Riga Technical University, 14(2), pp. 172–184.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki i promocja sportu (2025).
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
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