Title of article :
Dynamic behavior of a stand-alone hybrid power generation system of wind turbine, microturbine, solar array and battery storage
Author/Authors :
Kalantar، نويسنده , , M. and Mousavi G.، نويسنده , , S.M.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Pages :
14
From page :
3051
To page :
3064
Abstract :
This paper presents dynamic behavior and simulation results in a stand-alone hybrid power generation system of wind turbine, microturbine, solar array and battery storage. The hybrid system consists of a 195 kW wind turbine, an 85 kW solar array; a 230 kW microturbine and a 2.14 kAh lead acid battery pack optimized based on economic analysis using genetic algorithm (GA). At first, a developed Lyapunov model reference adaptive feedback linearization method accompanied by an indirect space vector control is applied for extraction of maximum energy from a variable speed wind power generation system. Then, a fuzzy logic controller is designed for the mentioned purpose and its performance is compared with the proposed adaptive controller. For meeting more load demands, the solar array is integrated with the wind turbine. In addition, the microturbine and the battery storage are combined with the wind and solar power generation system as a backup to satisfy the load demand under all conditions. rvisory controller is designed in order to manage energy between the maximum energy captured from the wind turbine/solar arrays, and consumed energies of the load, dump load, battery state of charge (SOC), and generated energy by the microturbine. Dynamic modeling and simulation are accomplished using MATLAB Simulink™ 7.2.
Keywords :
Microturbine , Wind turbine , Solar Array , supervisory control , Adaptive control , Indirect space vector control
Journal title :
Applied Energy
Serial Year :
2010
Journal title :
Applied Energy
Record number :
1604362
Link To Document :
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