This work explores the allocation question of battery energy storage systems (BESS) in distribution systems for their voltage mitigation support in integrating high penetration solar photovoltaics (PV...
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An appropriately dimensioned and strategically located energy storage system has the potential to effectively address peak energy demand, optimize the addition of renewable and distributed energy sources, assist in managing the power quality and reduce the expenses associated with expanding distribution networks.
The transmission of both reactive and active power between the inverter terminal and the bus may be managed by regulating the AC voltage that the inverter derives. Consequently, the bus voltage and inverter terminal voltage magnitudes and angles determine how much active and reactive energy an ESS may create or consume.
Fig 6 shows the bus voltage for three cases: first, without installing ESSs; second, after installing the ESSs via ALO optimization algorithm and third, the voltage profile acquired by the implemented (DO) technique. The analysis of Fig 6 reveals that the installation of (ESS) has a positive effect on the voltage profile of the network.
Considering the analysis presented above, it is possible to conceptualize ESSs as either generators or regulated loads due to their ability to store energy during the charging process and subsequently release it during discharge. The load level has an impact on the charging/discharging process.
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