An off-grid model setup for wind electric conversion system

Wind is one of the most abundant and environment friendly energy sources among renewable power sources. This paper aims to provide an efficient, reliable and cost effective model for off grid wind power solution for small industries, homes, Base transceiver station BTS and remote rural areas. Primary focus is on the design of an efficient and intelligent charge controller that utilizes maximum wind power and avoids any battery overcharge thus enhancing battery life. The complete setup incorporates an Electric Generator, a rectifier block along with proper filtering, DC-DC converter, setup for pulse charging, battery bank and a sine wave inverter. This controller continuously monitors the battery status, and modifies the charge current accordingly. Pulse charging has been introduced to allow high current pulses for a shorter time resulting in reduced unwanted chemical reactions at the electrode surface. Power steering circuit is also used to steer and dissipate the power into the dummy loads to avoid the unnecessary charge flow into the battery bank.

[1]  Davood Yazdani,et al.  A High Performance Wind-Electric Battery Charging System , 2006, 2006 Canadian Conference on Electrical and Computer Engineering.

[2]  Hossin Hosseinian,et al.  Power Electronics , 2020, 2020 27th International Conference on Mixed Design of Integrated Circuits and System (MIXDES).

[3]  Vahan Gevorgian,et al.  A peak power tracker for small wind turbines in battery charging applications , 1999 .

[4]  Thomas Ackermann,et al.  Wind Power in Power Systems , 2005 .

[5]  R. H. Newnham,et al.  Valve-regulated lead/acid batteries , 1996 .

[6]  M.A. Azim,et al.  Microcontroller based standalone PV system for wireless sensor node , 2008, 2008 International Conference on Computer and Communication Engineering.