Samenvatting
With the integration of Intermitted Renewables Energy (I-RE) electricity production, capacity is shifting from central to decentral. So, the question is if it is also necessary to adjust the current load balancing system from a central to more decentral system. Therefore, an assessment is made on the overall effectiveness and costs of decentralized load balancing, using Flexible Renewable Energy (F-RE) in the shape of biogas, Demand Side Management (DSM), Power Curtailment (PC), and electricity Storage (ST) compared to increased grid capacity (GC). As a case, an average municipality in The Netherlands is supplied by 100% I-RE (wind and solar energy), which is dynamically modeled in the PowerPlan model using multiple scenarios including several combinations of balancing technologies. Results are expressed in yearly production mix, self-consumption, grid strain, Net Load Demand Signal, and added cost. Results indicate that in an optimized scenario, self-consumption of the municipality reaches a level of around 95%, the total hours per year production matches demand to over 90%, and overproduction can be curtailed without substantial losses lowering grid strain. In addition, the combination of balancing technologies also lowers the peak load to 60% of the current peak load in the municipality, thereby freeing up capacity for increased demand (e.g., electric heat pumps, electric cars) or additional I-RE production. The correct combination of F-RE and lowering I-RE production to 60%, ST, and PC are shown to be crucial. However, the direct use of DSM has proven ineffective without a larger flexible demand present in the municipality. In addition, the optimized scenario will require a substantial investment in installations and will increase the energy cost with 75% in the municipality (e.g., from 0.20€ to 0.35€ per kWh) compared to 50% (0.30€ per kWh) for GC. Within this context, solutions are also required on other levels of scale (e.g., on middle or high voltage side or meso and macro level) to ensure security of supply and/or to reduce overall costs.
| Vertaalde titel van de bijdrage | Lokale balancering van het elektriciteitsnet in een gemeente met hernieuwbare energiebronnen; analyse van de effectiviteit en kosten van decentrale balancering van de belasting door meerdere combinaties van technologieën te bekijken |
|---|---|
| Originele taal-2 | English |
| Aantal pagina's | 34 |
| Tijdschrift | Energies |
| Volume | 14 |
| Nummer van het tijdschrift | 16 |
| DOI's | |
| Status | Published - 11 aug. 2021 |
Duurzame ontwikkelingsdoelstellingen van de VN
Deze output draagt bij aan de volgende duurzame ontwikkelingsdoelstelling(en)
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SDG 07 – Betaalbare en schone energie
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SDG 09 – Industrie, innovatie en infrastructuur
Keywords
- beheer van de vraagzijde
- beperkingen
- biogas
- capaciteit en versterking van het energienetwerk
- decentrale balancering
- energieopslag
- hernieuwbare energie
- verschuiving van de belasting
Research Focus Areas Hanze University of Applied Sciences
- Energie
Research Focus Areas Research Centre or Centre of Expertise
- Systeemintegratie
Publinova thema's
- Techniek
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