31 Investigation of the Behaviour of a New Nanogrid Concept …
451
According to the measured results a small office for two persons could be supplied
by three PV panels and the usual battery could be extended with the batteries of the
office devices.
References
Blaabjerg F, Ionel DM (2017) Batteries and ultracapacitors for electric power systems with renewable energy sources. In: renewable energy devices and systems with simulations in MATLAB®
and ANSYS®, Boca Raton, FL, Taylor & Francis Group, 2017, pp. 320–334
Buchman A, Lung C (2018) State of charge and state of health estimation of lithium-ion batteries.
in: 2018 ieee 24 th international symposium for design and technology in electronic packaging
(SIITME) pp. 382–385. 2018 https://doi.org/10.1109/siitme.2018.8599196
Burmester D, Rayudu R, Seah W, Akinyele D (2017) A review of nanogrid topologies and
technologies. J Renew Sus Energy Rev 67:760–775. https://doi.org/10.1016/j.rser.2016.09.073
Cserép A, Halász Á, Iváncsy T, Tamus ZÁ (2017) A nanogrid concept for supplying ICT devices
to improve the energy efficiency of small offices. In: Second international conference on DC
microgrids (ICDCM), nuremburg, IEEE 2017, pp. 440–444. https://doi.org/10.1109/icdcm.2017.
8001082
Díaz NL, Wu D, Dragiˇ cevi´ c T, Vásquez JC, Guerrero JM (2015) Stored energy balance for distributed
PV-based active generators in an AC microgrid. In: 2015 IEEE power and energy society general
meeting, Denver, CO, pp. 1–5. https://doi.org/10.1109/pesgm.2015.7286330
Du W, Chen Z, Wang HF, Dunn R (2007) Energy storage systems applied in power system
stability control. In: 42nd international universities power engineering conference, Brighton,
2007, pp. 455–458. https://doi.org/10.1109/upec.2007.4468989
Hou Z-Y, Lou P-Y, Wang C (2017) State of charge, state of health, and state of function monitoring
for EV BMS. In: 2017 IEEE international conference on consumer electronics (ICCE), Las Vegas,
NV, pp. 310–311. https://doi.org/10.1109/icce.2017.7889332
Isikman AO, Yildirim SA, Altun C, Uludag S, Tavli B, Yldrm SA (2013) Optimized scheduling of
power in an Islanded microgrid with renewables and stored energy. Globecom 2013 workshop—
management of emerging networks and services (GC13 WS—MENS). Atlanta, USA, pp 861–866
Lujano-Rojas JM, Monteiro C, Dufo-López R, Bernal-Agustín JL (2012) Optimum load management strategy for wind/diesel/battery hybrid power systems. J Renew Energy 44:288–295. https://
doi.org/10.1016/j.renene.2012.01.097
Teleke S, Oehlerking L, Hong M (2014) Nanogrids with energy storage for future electricity grids.
In: IEEE PES T D conference and exposition. pp. 1–5 https://doi.org/10.1109/tdc.2014.6863235
Topan PA, Ramadan MN, Fathoni G, Cahyadi AI, Wahyunggoro O (2016) State of charge (SOC) and
state of health (SOH) estimation on lithium polymer battery via Kalman filter. In: 2nd international
conference on science and technology-computer (ICST), Yogyakarta, 2016, pp. 93–96. https://
doi.org/10.1109/icstc.2016.7877354
Vilathgamuwa DM, Jayasinghe SDG, Lee FC, Madawala UK (2011) A unique battery/supercapacitor direct integration scheme for hybrid electric vehicles. In: IECON 2011–37th Annual conference of the IEEE Industrial Electronics Society, Melbourne, VIC, 2011, pp. 3020–3025. https://
doi.org/10.1109/iecon.2011.6119791
Xia X, Wei Y (2016) Lithium-ion batteries State-of-charge estimation based on interactive multiplemodel Extended Kalman filter. In: 22nd international conference on automation and computing
(ICAC), Colchester, 2016, pp. 204–207. https://doi.org/10.1109/iconac.2016.7604919
451
According to the measured results a small office for two persons could be supplied
by three PV panels and the usual battery could be extended with the batteries of the
office devices.
References
Blaabjerg F, Ionel DM (2017) Batteries and ultracapacitors for electric power systems with renewable energy sources. In: renewable energy devices and systems with simulations in MATLAB®
and ANSYS®, Boca Raton, FL, Taylor & Francis Group, 2017, pp. 320–334
Buchman A, Lung C (2018) State of charge and state of health estimation of lithium-ion batteries.
in: 2018 ieee 24 th international symposium for design and technology in electronic packaging
(SIITME) pp. 382–385. 2018 https://doi.org/10.1109/siitme.2018.8599196
Burmester D, Rayudu R, Seah W, Akinyele D (2017) A review of nanogrid topologies and
technologies. J Renew Sus Energy Rev 67:760–775. https://doi.org/10.1016/j.rser.2016.09.073
Cserép A, Halász Á, Iváncsy T, Tamus ZÁ (2017) A nanogrid concept for supplying ICT devices
to improve the energy efficiency of small offices. In: Second international conference on DC
microgrids (ICDCM), nuremburg, IEEE 2017, pp. 440–444. https://doi.org/10.1109/icdcm.2017.
8001082
Díaz NL, Wu D, Dragiˇ cevi´ c T, Vásquez JC, Guerrero JM (2015) Stored energy balance for distributed
PV-based active generators in an AC microgrid. In: 2015 IEEE power and energy society general
meeting, Denver, CO, pp. 1–5. https://doi.org/10.1109/pesgm.2015.7286330
Du W, Chen Z, Wang HF, Dunn R (2007) Energy storage systems applied in power system
stability control. In: 42nd international universities power engineering conference, Brighton,
2007, pp. 455–458. https://doi.org/10.1109/upec.2007.4468989
Hou Z-Y, Lou P-Y, Wang C (2017) State of charge, state of health, and state of function monitoring
for EV BMS. In: 2017 IEEE international conference on consumer electronics (ICCE), Las Vegas,
NV, pp. 310–311. https://doi.org/10.1109/icce.2017.7889332
Isikman AO, Yildirim SA, Altun C, Uludag S, Tavli B, Yldrm SA (2013) Optimized scheduling of
power in an Islanded microgrid with renewables and stored energy. Globecom 2013 workshop—
management of emerging networks and services (GC13 WS—MENS). Atlanta, USA, pp 861–866
Lujano-Rojas JM, Monteiro C, Dufo-López R, Bernal-Agustín JL (2012) Optimum load management strategy for wind/diesel/battery hybrid power systems. J Renew Energy 44:288–295. https://
doi.org/10.1016/j.renene.2012.01.097
Teleke S, Oehlerking L, Hong M (2014) Nanogrids with energy storage for future electricity grids.
In: IEEE PES T D conference and exposition. pp. 1–5 https://doi.org/10.1109/tdc.2014.6863235
Topan PA, Ramadan MN, Fathoni G, Cahyadi AI, Wahyunggoro O (2016) State of charge (SOC) and
state of health (SOH) estimation on lithium polymer battery via Kalman filter. In: 2nd international
conference on science and technology-computer (ICST), Yogyakarta, 2016, pp. 93–96. https://
doi.org/10.1109/icstc.2016.7877354
Vilathgamuwa DM, Jayasinghe SDG, Lee FC, Madawala UK (2011) A unique battery/supercapacitor direct integration scheme for hybrid electric vehicles. In: IECON 2011–37th Annual conference of the IEEE Industrial Electronics Society, Melbourne, VIC, 2011, pp. 3020–3025. https://
doi.org/10.1109/iecon.2011.6119791
Xia X, Wei Y (2016) Lithium-ion batteries State-of-charge estimation based on interactive multiplemodel Extended Kalman filter. In: 22nd international conference on automation and computing
(ICAC), Colchester, 2016, pp. 204–207. https://doi.org/10.1109/iconac.2016.7604919
