Abstract
Electrical distribution systems are witnessing the increase in nonlinear loads with the increased demand for power electronics devices. Such non-linear loads draw distorted currents that degrade the power quality of distribution systems. This paper presents the schematic procedure of the modeling and simulation of the Distribution Static Compensator (DSTATCOM) for power factor improvements. It is important to establish a means of providing reactive power compensation near the distribution side. This article presents the use of a D-STATCOM for compensation of harmonics in distribution systems. It describes the methodology of designing controllers based on DQ method. The current regulator control with two-input two-output for the AC side of a voltagessourcesconverter (VSC) can be represented by a transfer function with single–input–single–output. The proposed shunt controller is based on the VSC topology which generates controllable current directly at its output terminal. All responses are carried out using MATLAB/SIMULINK toolbox.
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References
Padiyar KR (2008) FACTS controllers in power transmission and distribution. New Age International, New Delhi
Herrera RS, Salmeron P, Kim H (2008) Instantaneous reactive power theory applied to active power filter compensations: different approaches, assessment, and experimental results. IEEE Trans Ind Electron 55(1):184–196
Masand D, Jain S, Agnihotri G (2008) Control strategies for distribution static compensator for power quality improvement. IETE J Res 54(6):421–428
Singh B, Solanki J (2009) A comparison of control algorithms for DSTATCOM. IEEE Trans Ind Electron 56(7):2738–2745
Dash P, Padhee M, Barik S. Estimation of power quality indices in distributed generation systems during power islanding conditions. Int J Elect Power Energy Syst 36(1):18–30
Ray PK, Mohanty SR, Kishore N (2013) Classification of power quality disturbances due to environmental characteristics in distributed generation system. IEEE Trans Sust Energy 4(2):302–313
Kar MK, Rout BD, Moharana JK (2014) Improvement of power factor of a grid connected load system using a static compensator. J Found Appl Phys 1(1):5–10
Kumar C, Mishra MK (2014) A voltage controlled DSTATCOM for power quality improvement. IEEE Trans Power Deliv 29(3)
Singh B, Dube SK, Arya SR (2015) An improved control algorithm of DSTATCOM for power quality improvement. Electr Power Energy Syst 64:493–504
Mahela OP, Shaik AG (2016) Power quality improvement in distribution network using DSTATCOM with battery energy storage system. Int J Electr Power Energy syst 83:229–240
Mangaraj M, Panda AK (2017) Performance analysis of DSTATCOM employing various control algorithms. IET Gener Transm Distrib 11(10):2643–2653
Iqbal F, Khan MT, Siddiqui AS (2018) Optimal placement of DG and DSTATCOM for loss reduction and voltage profile improvement. Alex Eng J 755–765
Chen Y, Wen M, Xianggen Yin EL, Lai J, Wang Z (2018) Passivity-based control of cascaded multilevel converter based DSTATCOM integrated with distribution transformer. Electr Power Syst Res 154:1–12
Pradhan M, Mishra MK (2019) Dual P-Q Theory based energy-optimized dynamic voltage restorer for power quality improvement in a distribution system. IEEE Trans Ind Electron 66(4)
Zhang T, Yu L (2020) Optimal allocation of DSTATCOM considering the uncertainty of photovoltaic systems. IEEJ Trans Electr Electron Eng 15:355–363
Sayahi K, Kadri A, Bacha F, Marzougui H (2020) Implementation of a DSTATCOM control strategy based on direct power control method for grid connected wind turbine. Electr Power Energy Syst 121:1–14
Rohouma W, Balog RS, Peerzada AA, Begovic MM (2020) D-STATCOM for harmonic mitigation in low voltage distribution network with high penetration of nonlinear loads. Renew Energy 145:1449–1464
Abas N et al (2020) Power quality improvement using dynamic voltage restorer. IEEE Access 8:164325–164349
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Kar, M.K., Kumar, S., Singh, A.K. (2022). Power Quality Improvement of an Interconnected Grid System Using PWM Technique of D-STATCOM. In: Kumar, S., Singh, B., Singh, A.K. (eds) Recent Advances in Power Electronics and Drives. Lecture Notes in Electrical Engineering, vol 852. Springer, Singapore. https://doi.org/10.1007/978-981-16-9239-0_3
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DOI: https://doi.org/10.1007/978-981-16-9239-0_3
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