• Corpus ID: 16998108

HYBRID ( SOLAR AND WIND ) ENERGY SYSTEMS FOR RURAL ELECTRIFICATION

@inproceedings{Muralikrishna2008HYBRIDS,
  title={HYBRID ( SOLAR AND WIND ) ENERGY SYSTEMS FOR RURAL ELECTRIFICATION},
  author={M. Muralikrishna and Vemuri Lakshminarayana},
  year={2008}
}
Hybrid power system can be used to reduce energy storage requirements. The influence of the Deficiency of Power Supply Probability (DPSP), Relative Excess Power Generated (REPG), Energy to Load Ratio (ELR), fraction of PV and wind energy, and coverage of PV and wind energy against the system size and performance were analyzed. The technical feasibility of PV-wind hybrid system in given range of load demand was evaluated. The methodology of Life Cycle Cost (LCC) for economic evaluation of stand… 

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References

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Steady-state performance of a grid-connected rooftop hybrid wind-photovoltaic power system with battery storage

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Summary form only given, as follows. This paper reports the performance of a 4-kW grid-connected residential wind-photovoltic system (WPS) with battery storage located In Lowell, MA, USA. The system

Methodology for optimally sizing the combination of a battery bank and PV array in a wind/PV hybrid system

In this paper, a methodology for calculation of the optimum size of a battery bank and the PV array for a standalone hybrid wind/PV power system is developed. Long term data of wind speed and

ARPN Journal of Engineering and Applied Sciences ©2006-2008 Asian Research Publishing Network (ARPN). All rights reserved

  • ARPN Journal of Engineering and Applied Sciences ©2006-2008 Asian Research Publishing Network (ARPN). All rights reserved

Figure-4. Variation of deficiency of power supply probability with respect to life cycle cost for Standalone photovoltaic, wind and hybrid systems at Poompuhar

  • Figure-4. Variation of deficiency of power supply probability with respect to life cycle cost for Standalone photovoltaic, wind and hybrid systems at Poompuhar

Figure-3. Variation of levelised energy cost with respect to solar PV system capacity with variable wind system capacity for 3 days of battery autonomy at Poompuhar

  • Figure-3. Variation of levelised energy cost with respect to solar PV system capacity with variable wind system capacity for 3 days of battery autonomy at Poompuhar