Design and control of autonomous wind-solar energy system with DFIG feeding 3-phase 4-wire network

Tiwari, S. K. ; Singh, Bhim ; Goel, P. K. (2015) Design and control of autonomous wind-solar energy system with DFIG feeding 3-phase 4-wire network In: Annual IEEE India Conference (INDICON), 2015, 17-20 Dec. 2015, New Delhi, India.

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Official URL: http://ieeexplore.ieee.org/document/7443822/

Related URL: http://dx.doi.org/10.1109/INDICON.2015.7443822

Abstract

This paper presents the design and control of a distributed generation system using wind and solar PV (Photovoltaic) energy sources feeding to a 3-phase 4-wire network. The wind energy conversion system consists of a wind turbine coupled to DFIG (Double Fed Induction Generator) equipped with MPPT (Maximum Power Tracking technology). The MPPT demands speed control which is realized using vector control of the rotor side converter. The voltage and frequency control is achieved through load side converter connected to the common DC bus. Solar PV power is fed to the same DC bus using DC-DC boost converter which is also equipped with MPPT algorithm to extract maximum energy from the incident solar energy. The system is modeled in Sim-Power System tool of MATLAB and its performance under all the practical conditions e.g. varying wind speed and radiation, unbalanced and nonlinear load has been presented. Under all these conditions, the stator currents flowing through DFIG are balanced and sinusoidal. The harmonics of the load voltage under all the conditions are also within requirement of IEEE 519 standard. The scheme doesn't envisage measurement of any mechanical quantities e.g. wind speed or rotor position.

Item Type:Conference or Workshop Item (Paper)
Source:Copyright of this article belongs to Institute of Electrical and Electronics Engineers.
Keywords:Power Quality; Renewable Energy; Solar PV; Wind Energy; DFIG; Vector Control and Battery Energy Storage
ID Code:110679
Deposited On:04 Aug 2017 13:09
Last Modified:04 Aug 2017 13:09

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