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Solomon Abebe Asfaw
Solomon Abebe Asfaw
LUT Univerisity
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Titel
Zitiert von
Zitiert von
Jahr
Assessment of lithium criticality in the global energy transition and addressing policy gaps in transportation
P Greim, AA Solomon, C Breyer
Nature communications 11 (1), 4570, 2020
3892020
On the history and future of 100% renewable energy systems research
C Breyer, S Khalili, D Bogdanov, M Ram, AS Oyewo, A Aghahosseini, ...
IEEE Access 10, 78176-78218, 2022
3812022
The role of large-scale energy storage design and dispatch in the power grid: a study of very high grid penetration of variable renewable resources
AA Solomon, DM Kammen, D Callaway
Applied Energy 134, 75-89, 2014
2042014
Investigating the impact of wind–solar complementarities on energy storage requirement and the corresponding supply reliability criteria
AA Solomon, DM Kammen, D Callaway
Applied energy 168, 130-145, 2016
1572016
Smart grid standards: specifications, requirements, and technologies
T Sato, DM Kammen, B Duan, M Macuha, Z Zhou, J Wu, M Tariq, ...
John Wiley & Sons, 2015
1202015
Energy system transition pathways to meet the global electricity demand for ambitious climate targets and cost competitiveness
A Aghahosseini, AA Solomon, C Breyer, T Pregger, S Simon, P Strachan, ...
Applied energy 331, 120401, 2023
1142023
Current energy policies and possible transition scenarios adopting renewable energy: A case study for Bangladesh
A Gulagi, M Ram, AA Solomon, M Khan, C Breyer
Renewable Energy 155, 899-920, 2020
1042020
Curtailment-storage-penetration nexus in the energy transition
AA Solomon, D Bogdanov, C Breyer
Applied Energy 235, 1351-1368, 2019
822019
Appropriate storage for high-penetration grid-connected photovoltaic plants
AA Solomon, D Faiman, G Meron
Energy policy 40, 335-344, 2012
672012
Properties and uses of storage for enhancing the grid penetration of very large photovoltaic systems
AA Solomon, D Faiman, G Meron
Energy Policy 38 (9), 5208-5222, 2010
652010
How much energy storage is needed to incorporate very large intermittent renewables?
AA Solomon, M Child, U Caldera, C Breyer
Energy Procedia 135, 283-293, 2017
632017
An energy-based evaluation of the matching possibilities of very large photovoltaic plants to the electricity grid: Israel as a case study
AA Solomon, D Faiman, G Meron
Energy Policy 38 (10), 5457-5468, 2010
582010
Grid matching of large-scale wind energy conversion systems, alone and in tandem with large-scale photovoltaic systems: An Israeli case study
AA Solomon, D Faiman, G Meron
Energy Policy 38 (11), 7070-7081, 2010
552010
Just transition towards defossilised energy systems for developing economies: A case study of Ethiopia
AS Oyewo, AA Solomon, D Bogdanov, A Aghahosseini, TNO Mensah, ...
Renewable Energy 176, 346-365, 2021
462021
The effects on grid matching and ramping requirements, of single and distributed PV systems employing various fixed and sun-tracking technologies
AA Solomon, D Faiman, G Meron
Energy Policy 38 (10), 5469-5481, 2010
452010
Exploiting wind-solar resource complementarity to reduce energy storage need
AA Solomon, M Child, U Caldera, C Breyer
AIMS Energy 8 (5), 749-770, 2020
412020
Solar driven net zero emission electricity supply with negligible carbon cost: Israel as a case study for Sun Belt countries
AA Solomon, D Bogdanov, C Breyer
Energy 155, 87-104, 2018
402018
Evaluation of an onsite integrated hybrid PV-Wind power plant
D Ludwig, C Breyer, AA Solomon, R Seguin
AIMS Energy 8 (5), 988-1006, 2020
322020
Power system sensitivity to extreme hydrological conditions as studied using an integrated reservoir and power system dispatch model, the case of Ethiopia
AA Demissie, AA Solomon
Applied Energy 182, 442-463, 2016
322016
Review of critical materials for the energy transition, an analysis of global resources and production databases and the state of material circularity
V Lundaev, AA Solomon, T Le, A Lohrmann, C Breyer
Minerals Engineering 203, 108282, 2023
242023
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