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Analysis of the
optimum allocation of BESS for contingency support
J.
García-Villalobos, E. Torres, P. Eguía, A. Etxegarai
2018/04/20
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Abstract
Electronic household appliances are non-linear
loads and emit harmonics into the low voltage networks. Usually, these
loads are simply modelled by constant current source models, which only
represent the harmonic emission of the appliances for a single supply
voltage distortion, mostly sinusoidal conditions.
Measurements have shown that the harmonic currents emitted by electronic
devices can significantly depend on the circuit topology and the existing
supply voltage distortion. This paper studies the impact of supply voltage
distortion, which can be typically found in public low voltage networks
(so-called flat-top voltage waveform), on the harmonic current emission
of individual devices with
different circuit topologies as well as the impact of supply voltage distortion
on the harmonic summation of these devices.
| Published in: Renewable Energy
& Power Quality Journal (RE&PQJ, Nº. 16) |
| Pages: 704-709 |
Date of Publication: 2018/04/20 |
| ISSN: 2172-038X |
Date of Current Version:2018/03/23 |
| REF: 440-18 |
Issue Date: April 2018 |
| DOI:10.24084/repqj16.440 |
Publisher: EA4EPQ |
Authors and affiliations
J. García-Villalobos, E. Torres, P. Eguía,
A. Etxegarai
Department of Electrical Engineering. E.I. Bilbao, University of the Basque
Country UPV/EHU. Bilbao (Spain)
Key words
Energy storage, batteries, contingency support, PV self-consumption,
optimization
References
[1] IRENA, gElectricity storage and renewable: costs and markets
to 2030h, October 2016. [Online]. Available: http://www.irena.org/-/media/Files/IRENA/Agency/Publication/2017/Oct/IRENA_Electricity_Storage_Costs_2017.pdf
[2] G. Fitzgerald, J. Mandel, J. Morris, H. Touati, gThe economics
of battery energy storageh, 2015. [Online]. Available: https://www.rmi.org/wp-content/uploads/2017/03/RMI-TheEconomicsOfBatteryEnergyStorage-FullReport-FINAL.pdf
[2] H. Pand.i., Y. Wang, T. Qiu, Y. Dvorkin, D.S. Kirschen, gNear-Optimal
Method for Siting and Sizing of Distributed Storage in a Transmission
Networkh, IEEE Transactions on Power Systems, Vol. 30(5), pp.2288-2300,
September 2015.
[3] E. Reihani, M. Motalleb, R. Ghorbani, L.S. Saoud, gLoad peak
shaving and power smoothing of a distribution grid with high renewable
energy penetrationh, Renewable Energy, Vol. 86, pp. 1372-1379, 2016.
[4] Y. Zhang, S. Zhu, A.A. Chowdhury, gReliability Modeling and
Control Schemes of Composite Energy Storage and Wind Generation System
With Adequate Transmission Upgradesh, IEEE Transaction on Sustainable
Energy, Vol. 2(4), pp. 520-526, October 2011.
[5] S.R. Deeba, R. Sharma, T.K. Saha, D. Chakraborty, A. Thomas, gEvaluation
of technical and financial benefits of battery-based energy storage systems
in distribution networksh, IET Renewable Power Generation, Vol.
10(8), pp. 1149-1160, 2016.
[6] Y. Yang, H. Li, A. Aichhorn, J. Zheng, M. Greenleaf, gSizing
strategy of distributed battery storage system with high penetration of
photovoltaic for voltage regulation and peak load shavingh, IEEE
Transactions on Smart Grid, Vol. 5(2), pp. 982-991, March 2014.
[7] Ministerio de Industria, Energia y Turismo, gPlanificacion Energetica.
Plan de Desarrollo de la Red de Transporte de Energia Electrica 2015-2020h.
[Online]. Available: http://www.minetad.gob.es/energia/planificacion/Planificacionelectricidadygas/desarrollo20152020/Paginas/desarrollo.aspx
[8] Deloitte, gUn modelo de transporte descarbonizado para Espana
en 2050. Recomendaciones para la transicionh, Marzo 2017. [Online].
Available: https://www2.deloitte.com/es/es/pages/strategy/articles/medidas-descarbonizacion-transporte.html
[9] P. Eguia, E. Torres, J. Garcia-Villalobos, gGEDISPER . Distributed
generation impacts on power lossesh, 2016. [Online]. Available:
http://www.energiaysociedad.es/wp-content/uploads/2016/11/Final-Report-GEDISPER-EN-version-v0.compressed.pdf
[10] Lazard, gLazardfs Levelized Cost of Storage . Version
2.0h, December 2016. [Online]. Available: https://www.lazard.com/media/438042/lazard-levelized-cost-of-storage-v20.pdf

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