An Advanced Control Strategy For Solar PV And Battery Storage Integration System Using A Three Level NPC Inverter

K Renuka, S Hema Supriya Reddy

Abstract


In this venture, another design of a three-level impartial point-braced (NPC) inverter that can incorporate sunlight based photovoltaic (PV) with battery stockpiling in a lattice associated framework is proposed. The quality of the proposed topology lies in a novel, developed unbalance three-level vector adjustment strategy that can create the right air conditioning voltage under lopsided dc voltage conditions. This venture shows the plan investigation of the proposed design and the hypothetical structure of the proposed regulation system. Another control calculation for the proposed framework is additionally exhibited with a specific end goal to control the power conveyance between the sun based PV, battery, and matrix, which at the same time gives greatest power point following (MPPT) operation for the sun based PV. In this venture fluffy controller used to lessened the music when contrasted with the PI controller. The adequacy of the proposed procedure is examined by the recreation of a few situations, including battery accusing and releasing of various levels of sun oriented illumination. The reenactment performed in MATLAB/SIMULINK condition.


References


Hamid R. Teymour, Student Member, IEEE, Danny Sutanto, Senior Member, IEEE, Kashem M. Muttaqi, Senior Member, IEEE, and P. Ciufo, Senior Member, IEEE” Solar PV and Battery Storage Integration using a New Configuration of a Three-Level NPC Inverter With Advanced Control Strategy” IEEE TRANSACTIONS ON ENERGY CONVERSION, VOL. 29, NO. 2, JUNE 2014.

O. M. Toledo, D. O. Filho, and A. S. A. C. Diniz, “Distributed photovoltaic generation and energy storage systems: A review,” Renewable

Sustainable Energy Rev., vol. 14, no. 1, pp. 506–511, 2010.

M. Bragard, N. Soltau, S. Thomas, and R. W. De Doncker, “The balance of renewable sources and user demands in grids: Power electronics for

modular battery energy storage systems,” IEEE Trans. Power Electron., vol. 25, no. 12, pp. 3049–3056, Dec. 2010.

A. Yazdani and P. P. Dash, “A control methodology and characterization of dynamics for a photovoltaic (PV) system interfaced with a distribution network,” IEEE Trans. Power Del., vol. 24, no. 3, pp. 1538–1551, Jul. 2009.

A. Yazdani, A. R. Di Fazio, H. Ghoddami, M. Russo, M. Kazerani, J. Jatskevich, K. Strunz, S. Leva, and J. A. Martinez, “Modeling guidelines and a benchmark for power system simulation studies of three-phase single-stage photovoltaic systems,” IEEE Trans. Power Del., vol. 26, no. 2, pp. 1247–1264, Apr. 2011.

M. A. Abdullah, A. H. M. Yatim, C. W. Tan, and R. Saidur, “A review of maximum power point tracking algorithms for wind energy systems,” Renewable Sustainable Energy Rev., vol. 16, no. 5, pp. 3220–3227, Jun. 2012. TEYMOUR et al.: SOLAR PV AND BATTERY STORAGE INTEGRATION USING A NEW CONFIGURATION 365

S. Burusteta, J. Pou, S. Ceballos, I. Marino, and J. A. Alzola, “Capacitor voltage balance limits in a multilevel-converter-based energy storage system,” in Proc. 14th Eur. Conf. Power Electron. Appl., Aug./Sep. 2011, pp. 1–9.

L. Xinchun, Shan Gao, J. Li, H. Lei, and Y. Kang, “A new control strategy to balance neutral-point voltage in three-level NPC inverter,” in Proc.IEEE 8th Int.Conf. Power Electron.ECCEAsia, May/Jun. 2011, pp. 2593– 2597.

J. Rodriguez, S. Bernet, P. K. Steimer, and I. E. Lizama, “A survey on neutral-point-clamped inverters,” IEEE Trans. Ind. Electron., vol. 57, no. 7, pp. 2219–2230, Jul. 2010.

A. Lewicki, Z. Krzeminski, and H. Abu-Rub, “Space-vector pulsewidth modulation for three-level npc converter with the neutral point voltage control,” IEEE Trans. Ind. Electron., vol. 58, no. 11, pp. 5076–5086, Nov. 2011.


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