Cascaded Inductively Coupled DSTATCOM for Improved PQ Performance

SURESH KUMAR SUDABATTULA, Mrutyunjaya Mangaraj, Suresh Kumar Sudabattula

Abstract


This study presents the comprehensive analysis of CIC-DSTATCOM using icos  control technique for EPDS. The relevant advantages of this recommended CIC-DSTATCOM controller exhibits higher reliability, easier extension and better compensation capabilities under load perturbation. With this motivation, initially CDC-DSTATCOM is considered for PQ improvement by employing icos  controller. The control algorithm is implemented to generate the reference current which further helps to generate  the appropriate switching pulses for the DSTATCOM. Later to this, the design is extended for CIC-DSTATCOM on the same EPDS employing IFCT. Supremacy of the proposed approach is shown by comparing the results among both CIC-DSTATCOM and CDC-DSTATCOM. Finally, the improved performance analysis of the proposed method is carried out for harmonics reduction, improvement in power factor, load balancing, and potential regulation under load varying parameters and maintained improved PQ performance within the range of benchmark value of the IEEE-2030-7-2017 and IEC- 61000-1 grid data.

Keywords


CDC-DSTATCOM, CIC-DSTATCOM, icos? control algorithm, PQ Improvement.

Full Text:

PDF

References


S. B. Karanki, N. Geddada, M. K. Mishra and B. K. Kumar, "A DSTATCOM Topology with Reduced DC-Link Voltage Rating for Load Compensation with Non-stiff Source," in IEEE Transactions on Power Electronics, vol. 27, no. 3, pp. 1201-1211,2012.

Raveendra, N., Madhusudhan, V. & Jaya Laxmi, A. Rflsa, “control scheme for power quality disturbances mitigation in DSTATCOM with n-level inverter connected power systems”. Energy Systems vol. 11, pp. 753–778, 2020.

Kouadria, M.A., Allaoui, T. & Denai, “M. A hybrid fuzzy sliding-mode control for a three-phase shunt active power filter”. Energy Systems, vol. 8, pp. 297–308, 2017.

Bouafia, S., Benaissa, A., Barkat, S. et al. “Second order sliding mode control of three-level four-leg DSTATCOM based on instantaneous symmetrical components theory”. Energy Systems, vol. 9, pp. 79–111, 2018.

P. K. Y. Kundela, M. Mangaraj and S. K. Sudabattula, "Operation of Inductively Coupled DSTATCOM for Power Quality Enhancement," 2022 International Mobile and Embedded Technology Conference (MECON), 2022, pp. 210-214, doi: 10.1109/MECON53876.2022.9752372.

B. Singh, P. Jayaprakash, D. P. Kothari, A. Chandra and K. A. Haddad, "Comprehensive Study of DSTATCOM Configurations," IEEE Transactions on Industrial Informatics, vol. 10, no. 2, pp. 854-870, May, 2014.

A. Michaelides and T. Nicolaou, "Constructing an Integrated Inductive-Capacitive Component to Filter Harmonic Modulations," in IEEE Transactions on Power Delivery, vol. 36, no. 4, pp. 2109-2117, 2021.

F. Alhuwaishel, N. A. Ahmed and P. Enjeti, "Active output filter under nonlinear load condition for solar powered unmanned aircraft system," 2017 IEEE 6th International Conference on Renewable Energy Research and Applications (ICRERA), 2017, pp. 327-330, doi: 10.1109/ICRERA.2017.8191080.

Q. Liu and Y. Li, "An Inductive Filtering-Based Parallel Operating Transformer with Shared Filter for Power Quality Improvement of Wind Farm," in IEEE Transactions on Power Electronics, vol. 35, no. 9, pp. 9281-9290, 2020.

Xu, K. Dai, X. Chen and Y. Kang, "Unbalanced PCC voltage regulation with positive- and negative-sequence compensation tactics for MMC-DSTATCOM," IET Power Electronics, vol. 9, no. 15, pp. 2846-2858, 2016.

Yousfi Abdelkader, Tayeb Allaoue, CH. Abdelkader, “power quality improvement based on five level shunt APF using sliding mode control scheme connected to photovoltaic,” International Journal of Smart Grid, Vol. 1, No. 1, 2017, pp. 09~15.

M.Mangaraj and A. K. Panda, “NBP-based icos? control strategy for DSTATCOM,” IET Power Electronics, vol. 10, no. 12, pp. 1617 – 1625, 2017.

E. Lei, X. Yin, Z. Zhang and Y. Chen, "An Improved Transformer Winding Tap Injection DSTATCOM Topology for Medium-Voltage Reactive Power Compensation, "IEEE Transactions on Power Electronics, vol. 33, no. 3, pp. 2113-2126, 2018.

M.Mangaraj and A. K. Panda, “DSTATCOM deploying CGBP based icos ? neural network technique for power conditioning,” Ain Shams Engg. Journal, vol. 9, no. 4, pp. 1535-1546, 2018.

H. Myneni and G. Siva Kumar, "Simple algorithm for current and voltage control of LCL DSTATCOM for power quality improvement," IET Generation, Transmission & Distribution, vol. 13, no. 3, pp. 423-434, 2019.

M.Mangaraj, A. K. Panda, T. Penthia and A. R. Dash, “An Adaptive LMBP Training Based Control Technique for DSTATCOM,” IET Generation, Transmission and Distribution, vol. 14, no. 3, pp. 516 – 524, 2020.

M.Mangaraj and J. Sabat, “MVSI and AVSI-supported DSTATCOM for PQ Analysis,” IETE Journal of Research, 2021.

B. N. Rao, Y. Suresh, A. K. Panda, B. S. Naik and V. Jammala, "Development of cascaded multilevel inverter based active power filter with reduced transformers," in CPSS Transactions on Power Electronics and Applications, vol. 5, no. 2, pp. 147-157, 2020.

Y. Li, T. K. Saha, F. Yao, Y. Cao, W. Liu, F. Liu, S. Hu, L. Luo, Y. Chen, G. Zhou and C. Rehtanz, " An Inductively Filtered Multi-Winding Rectifier Transformer and Its Application in Industrial DC Power Supply System," in IEEE Transactions on Industrial Electronics, pp. 0278-0046, 2015.

J. Yu, Y. Lia, Y. Cao and Y. Xu, “An impedance-match design scheme for inductively active power filter in distribution networks,” International Journal of Electrical Power and Energy System, vol. 99, pp. 638-649, 2018.

S. D. Swain, P. K. Ray and K. B. Mohanty, "Improvement of Power Quality Using a Robust Hybrid Series Active Power Filter," in IEEE Transactions on Power Electronics, vol. 32, no. 5, pp. 3490-3498, 2017.

Y. Li, T. K. Saha, O. Krause, Y. Cao and C. Rehtanz, "An Inductively Active Filtering Method for Power-Quality Improvement of Distribution Networks with Nonlinear Loads," in IEEE Transactions on Power Delivery, vol. 28, no. 4, pp. 2465-2473, 2013.

P. Salmeron and S. P. Litran, "Improvement of the Electric Power Quality Using Series Active and Shunt Passive Filters," in IEEE Transactions on Power Delivery, vol. 25, no. 2, pp. 0885-8977, 2010.

M. Mangaraj, "Operation of Hebbian least mean square controlled distributed static compensator." IET Generation, Transmission & Distribution (2021).

P. W. Sun, C. Liu, J. S. Lai, and C. L. Chen, “Cascade dual buck inverter with phase-shift control,” IEEE Trans. Power Electron., vol. 27, no. 4, 2012.

B. Singh, and S. Kumar, “Control of DSTATCOM using Icos? algorithm”, 2009 35th Annual Conference of IEEE Industrial Electronics, pp. 322-327.

G. S. Rao, B. S. Goud and C. R. Reddy, "Power Quality Improvement using ASO Technique," 2021 9th International Conference on Smart Grid (icSmartGrid), 2021, pp. 238-242, doi: 10.1109/icSmartGrid52357.2021.9551226.




DOI (PDF): https://doi.org/10.20508/ijrer.v12i4.13420.g8604

Refbacks

  • There are currently no refbacks.


Online ISSN: 1309-0127

Publisher: Gazi University

IJRER is cited in SCOPUS, EBSCO, WEB of SCIENCE (Clarivate Analytics);

IJRER has been cited in Emerging Sources Citation Index from 2016 in web of science.

WEB of SCIENCE in 2025; 

h=35,

Average citation per item=6.59

Last three Years Impact Factor=(1947+1753+1586)/(146+201+78)=5286/425=12.43

Category Quartile:Q4