Title :
Steady-state performance of a grid-connected rooftop hybrid wind-photovoltaic power system with battery storage
Author :
Giraud, Francois ; Salameh, Zyiad M.
Author_Institution :
Dept. of Electr. Eng., Massachusetts Univ., Lowell, MA, USA
fDate :
3/1/2001 12:00:00 AM
Abstract :
This paper reports the performance of a 4-kW grid-connected residential wind-photovoltaic system (WPS) with battery storage located in Lowell, MA, USA. The system was originally designed to meet a typical New-England (TNE) load demand with a loss of power supply probability (LPSP) of one day in ten years as recommended by the Utility Company. The data used in the calculation was wind speed and irradiance of Login Airport Boston (LAB) obtained from the National Climate Center in North Carolina. The present performance study is based on two-year operation. (May 1996-Apr 1998) of the WPS. Unlike conventional generation, the wind and the sunrays are available at no cost and generate electricity pollution-free. Around noontime the WPS satisfies its load and provides additional energy to the storage or to the grid. On-site energy production is undoubtedly accompanied with minimization of environmental pollution, reduction of losses in power systems transmission and distribution equipment, and supports the utility in demand side management. This paper includes discussion on system reliability, power quality, loss of supply and effects of the randomness of the wind and the solar radiation on system design
Keywords :
battery storage plants; demand side management; photovoltaic power systems; secondary cells; solar cell arrays; solar power stations; wind power plants; 4 kW; USA; battery storage; demand side management; environmental pollution; grid-connected rooftop hybrid wind-PV power system; load demand; loss of power supply probability; on-site energy production; steady-state performance; Airports; Batteries; Costs; Pollution; Power generation; Power supplies; Power system management; Steady-state; Wind energy generation; Wind speed;
Journal_Title :
Energy Conversion, IEEE Transactions on