شماره ركورد كنفرانس :
3788
عنوان مقاله :
Performance Analysis of Series SPOs in a DroopControlled DC Microgrid
عنوان به زبان ديگر :
Performance Analysis of Series SPOs in a DroopControlled DC Microgrid
پديدآورندگان :
Tavassoli Amirhossein ah.tavassoli91@gmail.com dept. Electrical engineering Shahid Beheshti University Tehran, Iran , Allahverdinejad , Babak babak.allahverdinejad@gmail.com dept. Electrical engineering Shahid Beheshti University Tehran, Iran , Rashidirad Nasim n_rashidirad@sbu.ac.ir dept. Electrical engineering Shahid Beheshti University Tehran, Iran , Hamzeh Mohsen mo_hamzeh@sbu.ac.ir dept. Electrical engineering Shahid Beheshti University Tehran, Iran
كليدواژه :
DC microgrid , distributed generation , droop method , photovoltaic , solar power optimizer.
عنوان كنفرانس :
هفتمين كنفرانس ملي شبكه هاي هوشمند انرژي 96
چكيده فارسي :
—In this paper, the performance of a photovoltaic
system equipped with solar power optimizers, as one of the
distributed generation units of a test microgrid has been
investigated. The power sharing in the test DC microgrid is
controlled through droop method. Since droop method leads to
output voltage deviations in distributed generation units, there is
a possibility that this voltage deviation eclipses the operation of
solar power optimizers. To address this point of uncertainty, a
simulated DC microgrid has been tested in MATLAB/Simulink
environment, which confirms that solar power optimizers
continue to operate properly
چكيده لاتين :
—In this paper, the performance of a photovoltaic
system equipped with solar power optimizers, as one of the
distributed generation units of a test microgrid has been
investigated. The power sharing in the test DC microgrid is
controlled through droop method. Since droop method leads to
output voltage deviations in distributed generation units, there is
a possibility that this voltage deviation eclipses the operation of
solar power optimizers. To address this point of uncertainty, a
simulated DC microgrid has been tested in MATLAB/Simulink
environment, which confirms that solar power optimizers
continue to operate properly