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Modeling And Analysis Of Twelve-Phase (Multi- Phase) Dstatcom For Multi-Phase Load Circuits

Authors: Zakir Husain;

Modeling And Analysis Of Twelve-Phase (Multi- Phase) Dstatcom For Multi-Phase Load Circuits

Abstract

{"references": ["D. Basic, J. G. Zhu, and G. Boardman, \u2015Transient performance study \nof brushless doubly fed twiin stator generator, IEEE Trans. Energy \nConvers., vol. 18, no. 3, pp. 400\u2013408, Jul. 2003.", "G.K. Singh, Self excited induction generator research- a survey, Elect. \nPower Syst. Res., vol. 69, pp. 107\u2013114, 2004.", "Zakir Husain, R.K. Singh, and S.N. Tiwari,\" Multi-phase (6 &12 phase) \nTransmission Lines: Performance Characteristics\", Int. J. of \nMathematics & Computers in Simulation, Issue 2, vol.1, pp.150-159.", "Chunju Fan, Ling Liu, and Yu Tian, \" A Fault-Location Method for 12-\nPhase Transmission Line Based on Twelve Sequence-Component \nMethod\", IEEE Trans.on power delivery, vol. 26, no.1, 135-142, 2011.", "D. Yazdani, A. Khajehoddin, G. Joos, \"Full utilization of inverter of \nsplit phase derives by mean of a dual three phase space vector', IEEE \nTrans. on Industrial Electronics, Vol. 56, No. 1, 2009", "G. Renukadev, K. Rajambal,\" Geralize Model of Multi-Phase Induction\nMotor Drive using Matlb/Sumlink\", IEEE PES Innovative Smart Grid\nTechnologies--India, 2011", "L. Gyugyi, \"Reactive power generation and control by thyristor \ncircuits,\" IEEE Trans. on Ind. Appl. 1A-15, no 5, 1979, pp. 521-531.", "H. Akagi,Y. Kanazawa, K. Fugita and A. Nabe, \"Generalized theory of \ninstantaneous reactive power and its application,\" Electrical Engg. in\nJapan, vol. 103, no.4, 1983. pp.58-66", "H. Akagi, Y. Kanazawa and A. Nabe, \"Instantaneous reactive power\ncompensators comparing switching devices without energy storage\ncomponents,\" IEEE Trans. IndAppl., vol. 1A-20, no.3, 1984, pp .625-\n630,. \n[10] A. Ghosh, A.Joshi, A new approach to load balancing and power factor \ncorrection in power distribution system,\" IEEE Trans.on power \ndelivery, vol. 15, no.1, 2000, pp.417-422\n[11] Zakir Husain, R.K. Singh, A. Iqbql and S.N. Tiwari,\" An algorithmic \napproach to load balance and u.p.f correction in multi-phase (twelve-\nphase) Load Circuits\" POWER'09,Genova, Italy 2009, pp. 174-181\n[12] Tejas Zaveri 1, B.R.Bhalja2 and Naimish Zaveri,\" Simulation and \nControl Strategies for DSTATCOM, IInt.J on control system & \nInstrumentation, vol.1, no.1, pp.52-56, 2010 \n[13] K.U. Rani1, P. Sridhar, \" Fast Acting PI controller for DC Link Voltage \nControl in a DSTATCOM Under various Loadng Conditions Int. J of\nEngg. & Science Research, vol2, Issue 12, pp. 2042-2053, 2012\n[14] Zakir Husain, An approach to to load balancing and unity power factor\ncontrol in multi-phase (sixphase) load circuits using multiphase \nDSTATCOM, WCECS12, San Francisco, USA, 2012. \n[15] M. Adres and E.H. Watana, \"New control algorithms for series and \nshunt three-phase four wire active power filtrs,\" IEEE Trans. Power\nDelivery, vol.10, no3, 1995, pp.1649-1656. \n[16] P. Verdelho, and G.D. Marques, \"An active power filter and unbalanced \ncurrent compensator,\" IEEE Trans. On Industrial Electronics, vol. 44, \nno. 3 1997, pp. 321-328 \n[17] F.Z. Peng, G.W. Ott, Jr., and D.J. Adams, \"Harmonic and reactive \npower compensation based on the generalized instantaneous reative\npower theory for three-phase four-wire systems,\" IEEE Trans.on power \nelectroics, vol. 13, no..6, 1998, pp. 1174\u20141181.\n[18] V. Cardenas, N. Vazquez, C. Hernandes, S. Horta, Analysis and design \nof a three-phase sliding mode controller for a shunt active power filter,\"\nProc. of IEEE power electronics specialist conference-PESC'99, \npp.236-241."]}

This paper presents modeling and analysis of 12-phase distribution static compensator (DSTATCOM), which is capable of balancing the source currents in spite of unbalanced loading and phase outages. In addition to balance the supply current, the power factor can be set to a desired value. The theory of instantaneous symmetrical components is used to generate the twelve-phase reference currents. These reference currents are then tracked using current controlled voltage source inverter, operated in a hysteresis band control scheme. An ideal compensator in place of physical realization of the compensator is used. The performance of the proposed DTATCOM is validated through MATLAB simulation and detailed simulation results are given.

Keywords

Modeling, Multiphase, DSTATCOM, Load balancing, Power factor correction.

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