The Integration of Renewable Energy Sources Into the Distribution Grid
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1 The Integration of Renewable Energy Sources Into the Distribution Grid Türk-Alman Enerji İnovasyon Forumu ve 21 Kasım 2013 tarihlerinde Berlin de Dipl. Ing. H. Loew German Renewable Energy Federation (BEE)
2 Share of RES in Germany s energy production, historical growth and forecast 90% 80% 70% 60% 50% Percentage of RES in the gross electricity generation 50% Forecast: Federal Government s "Energy Concept " 65% 80% 40% 30% 20% 10% % ~25% 23% 20% 14% 15% 16% 17% 12% 7% 7% 8% 8% 9% 10% 35% * Source: BEE
3 Retrospect Important factors for the rapid growth of renewables have been: Germany s strong grid infrastructure Sufficient qualified workers (installers, electricians, ) High share of back-up capacity/balancing energy The German Renewable Energy Sources Act (EEG)
4
5 How RES change the system of electrical power supply historical -> RES-based Power flow: top-down -> bottom-up Power plants: centralized -> decentralized Production: load-based production -> supplybased production Price: fuel-based market price -> no marginal cost
6 Current situation in Germany Regulation has to be adapted to incentivize: Reinforcement of transmission grid/vc HGÜ Net metering Innovative solutions Reinforcement Demand-side management Ancillary services Source: AEE
7 Future electrical power supply A high share of decentralized power production will put DSOs in charge for system security! HöS HS M G M G MS A horizontal power flow will result from a flexible power supply system. Connected electricity and mobility market via e- vehicles M G M G NS Connected heat and electricity market via CHP, heat pumps, heating cartridges Figure reproduced with the permission of Dr. Roland Hermes, RWE
8 Timeline of the need for flexibility options RES 22% 47% 79% ca. 100% ca. 120% DSM Industry DSM hausehold, commerce Power to heat Curtailment Wind & PV Adjusted operation biogas and biomasse plants Adjusted use of biomethan (via gas distribution system) Flexible use of conventional power plants Aditional flexibilisation of existing power plants by Retrofit New fossil power plants CHP driven by power demand pumped storage power stations Pumpspeicher compressed air storage (?) Battery Storages Power to Gas (H 2 ) Power to Gas (CH 4 ) Source: BEE
9 Thank you for your attention! Bundesverband Erneuerbare Energie e. V. German Renewable Energy Federation Reinhardtstraße Berlin Fon 030 / Fax 030 /
10 Back-up Session 2
11 Market design To compensate for the fluctuations of wind and PV in the near future, flexible gas power plants, storage and balancing RES are needed, but with the current market design, they will not get the necessary economic incentives. In the mid-term, flexible balancing power plants and storage are needed to compensate for the fluctuating RES. balancing the fluctuation Currently investors are not getting sufficient incentives to build additional power plants. Specific calls for new generation capacity and stable incentives can solve this problem. missing-moneyproblem capacity mechanisms
12 The BEE Platform System Transformation Source: BEE
13 Residuallast Auf dem Weg zum angebotsabhängigen Verbrauch Mit Zunahme volatiler Erzeugung steigen die Anforderungen an die Flexibilität des Systems. Residuallast = Verbraucherlast minus Erzeugung aus Erneuerbaren Energien P max Positiver Gradient Negativer Gradient Dauer Stromüberschuss Stromdefizit Dauer Stromdefizit Stromüberschuss Source: BEE
14 Systemdienstleistungen Frequenzstabilität Spannungsstabilität Überlastung Regelenergie Last und Erzeugungsmanagement Netzausbau, Blindstrom, RONT, Last/Erzeugungsmanagement Last/Erzeugungsmanagement Systemsicherheit Verhalten im Fehlerfall Inselbildung Blind/Kurzschlussstrom Statische Abregelung, intelligente Konzepte möglich Schwarzstartfähigkeit Intelligente Konzepte möglich Kapazitätsreserve Lastmanagement
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