Technical challenges and R&D in the field of electricity supply systems
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1 Technical challenges and R&D in the field of Scientific officer of Projektträger Jülich at the Federal Ministry for the Environment, Nature Conservation and Nuclear Safety (BMU) 8 th Workshop of the International Feed-In Cooperation (IFIC)
2 background/ situation 1.Expansion of renewable energies (RE): increasing share in intermittent generation strong increase in RES-E (RE-sources in the electricity sector) in DE: Share RES-E in DE 2000: 6 % 2009: 16 % Goals in DE ( Energy Concept ): 2020: 35% 2030: 50% 2040: 65% 2050: 80% Anteil EE [%]
3 Development of installed capacity of RES-E in Germany Development inst. capacity RES-E in DE inst. capacity [GW] ca. 50 GW min. demand ca. 40 GW year ca. 80 GW max. demand: ca. 75 GW Fotovoltaik Wind Offshore Wind Onshore Biomasse Erdwärme Wasserkraft (Data source: Leitszenario 2009, p. 40) 3
4 Wind energy feed-in and demand on in DE Wind energy and demand on in DE Wind residual demand power [GW] time [15 Min.-values] Data source: BDEW, VE-T, RWE, E.ON, EnBW
5 Fluctuation of wind energy Change of feed-in of wind energy in 2008 in the control area of 50 Hertz (VE Transmission) Highest increase/ decrease within ¼ h Highest increase/ decrease within 60 min +485 MW -563 MW MW MW (Data source: Vattenfall Europe Transmission, 5
6 Electricity prices (EEX) electricity price spot market EEX hour price [ /MWh] hour price [ /MWh] Data source:
7 background/ situation 1. Expansion of RE: - increasing share of intermittent generation 2. Age structure of the electricity net and power plants necessity for modernisation, new investment cycle is due Chance to realise a modern energy system with a high share of RE IEA (2008): rare window of opportunity 7
8 The conventional electricity system fossil generation Demand orientated generation 110 kv 20/10 kv 0,4 kv
9 Future energy supply system RE-production fossil generation Virtual Demand-orientated power plants generation + generation-orientated demand 110 kv Electric vehicles 20/10 kv 0,4 kv Mini Grid Demand side management
10 Germany s Energy Concept aims: develop and implement an overall strategy for the period up to 2050 conventional sources of energy are continuously to be replaced by RE ambitious goals: e.g. 2050: 80% RES-E reduction of GHG: -40% until 2020, -80 to -95% until 2050 (compared to 1990) 10
11 Germany s Energy Concept : optimisation of the energy system improved integration of renewable energies into the energy supply system, e.g. a more demand-responsive generation of RE (e.g. the introduction of an optional market premium or a bonus for virtual power plants) qualitative and quantitative expansion of electricity grids (e.g. development of a concept for a target grid for 2050) the development and promotion of smart grids and storage technologies increase of R&D funding 11
12 BMU spending on R&D RE Mio. Euro 140 BMU spending on R&D RE since * plan * 12
13 R&D funding of the BMU R&D funding area: Optimisation of energy supply systems - since : new projects: ca. 40 Mio ongoing projects NTS 6% CSP 7% Sonstiges 14% PV 25% Geothermie 13% Optimierung Energiesysteme 10% Mittelverteilung 2009 Wind 25% 13
14 Aims of the R&D funding in the area Optimisation of energy supply systems General goal: solutions to achieve an energy system with a high share of RE, i.e. Demand-orientated feed-in, flexible generation, direct marketing of RE Flexible demand, demand side management Ancillary services by RE Avoiding/ removal of bottlenecks of the electricity networks 14
15 R&D focus Virtual power plants smart grids, demand side management Energy storage Network technology (e.g. transformer station) Use of electric vehicles for the integration of RE Further development of RE plants to provide ancillary services (e.g. power inverter) 15
16 E-Energy programme Funding programme of the federal government Cooperation of two ministries 6 Model regions (volume: 140 Mio. funding + own contribution) Nov Okt Goal: Optimisation of energy supply systems using information and communication technologies (ICT) Integration RE/ smart grids Accompanying research: monitoring, evaluation, dissemination, networking 16
17 electric vehicles Focus: using the battery for the integration of RE, e.g. - demand side management/ controlled charging - RE temporary storage, - ancillary services - Vehicle to Grid Electric cars (EVs) can contribute considerably : example: 1 Mio. EVs connected to the grid (~ 2% of all cars in DE): 5 GW (~ 5 nuclear power stations) (connected power EV: 5 kw) Storage capacity: 30 GWh (30 kwh per EV) 17
18 Further R&D projects (selection) Combination of PV+ storage virtual power plants (incl. ancillary services) Simulation of future energy systems Development of flexible transformer stations Underground pumped hydro Multifunctional PV inverters to provide ancillary services Development redoxflow-battery 18
19 Further information R&D annual report: pdf: order: Newsletter Homepage: Research at Research year book + CD with short descriptions of all funded projects, available at PTJ or BINE or 19
20 Further information Thank you for your attention! 20
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