Title :
Smart controller design for solar-grid hybrid system: Microcontroller based automatic adjustable discretized solar-grid integration system
Author :
Neupane, Krishna ; Undeland, Tore M. ; Rouniyar, Amit
Author_Institution :
Dept. of Electr. Power Eng., Norwegian Univ. of Sci. & Technol., Trondheim, Norway
Abstract :
The integration of small sized standalone solar systems to the grid is technically complicated resulting into expensive operation which is not affordable to all. As such, this paper presents a smart controller based design using digital signal processing for cost effective operation of solar-grid tied system. The hybrid system is able to size the connected system and deploy the operation strategy so as to get the effective utilization of solar output. The synchronization is not necessary as this method can be effectively altered by the use of load discretization. This gives cheap, efficient, reliable and cost effective operation. The system has been tested for the 120 Watt solar panel with the battery backup storage and its effectiveness is observed. The battery backup is made to operate during the cut off of Grid or Grid and Solar supply. The performance of the system over the wide range of operation and transient states are assured by practical observation and modification. This system is defined to fill the necessity of regions where solar power is used only as backup purposes to charge the battery and is actively dumped during the presence of active grid. These regions include many parts of the world where grid cut off is common due to the shortage of energy.
Keywords :
hybrid power systems; intelligent control; power grids; power system control; solar cells; solar power stations; synchronisation; active grid; backup purposes; battery backup storage; connected system; digital signal processing; energy shortage; load discretization; microcontroller based automatic adjustable discretized solar-grid integration system; operation strategy; power 120 W; small sized standalone solar systems; smart controller design; solar output; solar panel; solar power; solar supply; solar-grid hybrid system; solar-grid tied system; synchronization; transient states; Batteries; Feeds; Hybrid power systems; Inverters; Microcontrollers; Switches; Synchronization; Discretization of energy; Dump power utilization; Hybrid system; Microcontroller based power controller; Pure sine wave inverter; Smart Controller; Solar-Grid hybrid system; automatic adjustable solar-grid integration;
Conference_Titel :
Intelligent Green Building and Smart Grid (IGBSG), 2014 International Conference on
Conference_Location :
Taipei
DOI :
10.1109/IGBSG.2014.6835155