2020
DOI: 10.1016/j.est.2019.101127
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An adaptive droop-based control strategy for fuel cell-battery hybrid energy storage system to support primary frequency in stand-alone microgrids

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Cited by 50 publications
(21 citation statements)
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“…Frequency variations caused by high perception of renewable energy resources in detached micro grids compromise over stable operation. 115 EROEI of fossil fuels is still higher than renewables. Successful energy transition by 2030 requires $14 trillion (16% of global GDP) on solar and wind power sectors and may be $10 billion on batteries.…”
Section: Recurrent Renewable Energy Resourcesmentioning
confidence: 99%
See 1 more Smart Citation
“…Frequency variations caused by high perception of renewable energy resources in detached micro grids compromise over stable operation. 115 EROEI of fossil fuels is still higher than renewables. Successful energy transition by 2030 requires $14 trillion (16% of global GDP) on solar and wind power sectors and may be $10 billion on batteries.…”
Section: Recurrent Renewable Energy Resourcesmentioning
confidence: 99%
“…The fifth obstacle is finance and lack of investments without reasonable profits. Frequency variations caused by high perception of renewable energy resources in detached micro grids compromise over stable operation 115 . EROEI of fossil fuels is still higher than renewables.…”
Section: Recurrent Renewable Energy Resourcesmentioning
confidence: 99%
“…The system stability was analysed and improved using Monte Carlo and the adaptive droop approach. 11 The DCMG system presented using PV and battery for a rural location. The environmental objectives like damage to human health (DHH), damage to ecosystem (DE), and damage to resources (DR) evaluated to improve MG system performance.…”
Section: Off-gridmentioning
confidence: 99%
“…The suggested strategy has prioritized power-sharing between FC and battery source, which ultimately regulated primary frequency in hybrid storage systems efficiently. 11 The frequency-based economic control strategy is presented for the DCMG system. It minimized total generation costs and provided an accurate load sharing for DCMG.…”
Section: Primary Frequency Regulationmentioning
confidence: 99%
“…Another scheme where the present proposal can be used is for wide-area monitoring and control applications with variations up to 40 to 80 Hz as the one proposed in References [43,44]. Also, the wide frequency deviations occur with the high penetration of renewable energy resources in microgrids and compromise their stable operation, that is when battery energy storages are used to regulate frequency fluctuations, the battery should be charged and discharged constantly to compensate power imbalances [45]; a similar application is in wind energy storage systems [46,47]. These types of applications require accurate phasor and frequency information from multiple synchronized devices to provide a valid measurement of the dynamic behavior of the systems.…”
Section: Applications Related To Wide Frequency Deviationsmentioning
confidence: 99%