Energy Storage for Modern Power System Operations 2021
DOI: 10.1002/9781119760375.ch10
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Inclusion of Energy Storage System with Renewable Energy Resources in Distribution Networks

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Cited by 2 publications
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“…BESS power is also considered to be 1 kW for 1 kWh capacity. In this analysis, the SOCmin$SO{C^{min}}$ and SOCmax$SO{C^{max}}$are considered equal to 0.1 and 1, respectively, as also proposed and applied in [33] and [40]. The proposed EMS can efficiently schedule the battery's operation within any SOCmin$SO{C^{min}}$ and SOCmax$SO{C^{max}}$selected, meaning that no special formulation is required for the application of also widely utilized thresholds of 0.2 and 0.8, respectively.…”
Section: Resultsmentioning
confidence: 99%
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“…BESS power is also considered to be 1 kW for 1 kWh capacity. In this analysis, the SOCmin$SO{C^{min}}$ and SOCmax$SO{C^{max}}$are considered equal to 0.1 and 1, respectively, as also proposed and applied in [33] and [40]. The proposed EMS can efficiently schedule the battery's operation within any SOCmin$SO{C^{min}}$ and SOCmax$SO{C^{max}}$selected, meaning that no special formulation is required for the application of also widely utilized thresholds of 0.2 and 0.8, respectively.…”
Section: Resultsmentioning
confidence: 99%
“…The roundtrip efficiency false(ηrnpfalse)$({\eta _{rnp}})$is calculated at the dc‐side of the BESS as the fraction of energy stored in the battery module that can be later retrieved and is typically provided by battery manufacturers. Assuming that the charging efficiency at the dc‐side is equal to the discharging efficiency at the dc‐side, their values can be derived as the square root of ηrnp${\eta _{rnp}}$[33]. The total efficiency of the BESS in charging and discharging mode, ηch${\eta _{ch}}$and ηdch${\eta _{dch}}$, is calculated using (7), based on the notation of Figure 2, where ηinv${\eta _{inv}}$is the inverter efficiency rate.…”
Section: Problem Formulationmentioning
confidence: 99%