2018
DOI: 10.3390/en11123394
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Method for the Energy Storage Configuration of Wind Power Plants with Energy Storage Systems used for Black-Start

Abstract: With the increasing participation of wind generation in the power system, a wind power plant (WPP) with an energy storage system (ESS) has become one of the options available for a black-start power source. In this article, a method for the energy storage configuration used for black-start is proposed. First, the energy storage capacity for starting a single turbine was determined. Then, a hierarchical planning model was established. This model did not consider the starting efficiency of the WPP, but it did co… Show more

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Cited by 41 publications
(27 citation statements)
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References 32 publications
(71 reference statements)
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“…Black start is an interesting option for the ESS but even more so for hybrid facilities comprised of an ESS and a generator. Li et al [84] presented a method of configuring an ESS combined with a wind power plant for the purpose of establishing the voltage and frequency for starting-up thermal power plants. Large shares of RES installed in distribution grids can cause nodal voltages to increase or flicker.…”
Section: Ancillary Servicesmentioning
confidence: 99%
“…Black start is an interesting option for the ESS but even more so for hybrid facilities comprised of an ESS and a generator. Li et al [84] presented a method of configuring an ESS combined with a wind power plant for the purpose of establishing the voltage and frequency for starting-up thermal power plants. Large shares of RES installed in distribution grids can cause nodal voltages to increase or flicker.…”
Section: Ancillary Servicesmentioning
confidence: 99%
“…Further, the capacity and response speed of traditional generation can hardly meet the frequency regulation demand with high penetration of wind power. [4][5][6] Therefore, in order to maintain frequency stability of the power system, new auxiliary measures should be extended.…”
Section: Introductionmentioning
confidence: 99%
“…In the practical application of batteries, the state of charge of batteries is generally between 30% and 70% [15]. Therefore, lead-carbon batteries with the high specific capacity of lead-acid batteries and large charge capacity of capacitors have superior high-power input and output [16], [17].…”
Section: Introductionmentioning
confidence: 99%