Load Sharing of Wind Based Microgrid in Autonomous Operation
Author(s) -
Aarti Gupta,
D. K. Jain,
Surender Dahiya
Publication year - 2014
Publication title -
journal of wind energy
Language(s) - English
Resource type - Journals
eISSN - 2356-7732
pISSN - 2314-6249
DOI - 10.1155/2014/653864
Subject(s) - microgrid , voltage droop , converters , computer science , synchronization (alternating current) , voltage source , renewable energy , wind power , exploit , control theory (sociology) , grid , voltage , control (management) , engineering , electrical engineering , telecommunications , channel (broadcasting) , geometry , computer security , mathematics , artificial intelligence
Autonomous wind energy conversion systems sharing a common load consist of a number of voltage source converters operating in parallel. A suitable control system should ensure desired load sharing among these as a number of these sources operating in parallel are required to meet the load demand and load excursions should not lead to instability of the system. In absence of the grid there is no reference angle for synchronization. Hence, a control scheme for parallel-connected three-phase converters incorporating the desirable features needs to be developed in order to exploit the renewable energy sources, which are intermittent in nature as effectively as possible in case of an autonomous microgrid. A simple and effective droop control strategy without the use of conventional αβ technique incorporating only dq components has been proposed for load sharing among wind energy conversion systems connected by back to back voltage source converters in autonomous operation. The need for communication link should also be avoided, hence reducing the system cost. The system is modelled using Matlab and the control is authenticated by simulation results
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