Power plants, Renewables, Grids: Towards the Smart Energy World
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1 Power plants, Renewables, Grids: Towards the Smart Energy World Wolfram Münch EnBW Energie Baden-Württemberg AG Research and Innovation Ljubljana, 27 October 2011
2 Energy infrastructure today Power generation Very high voltage grid Large power plants energy flowing from high to low voltage system Low voltage grid No smart grids necessary Utility/ TSO No e-mobility services available No interoperable billing (roaming) among different utilities
3 New challenges in grid planning, operation and regulation Increase of wind power in Northern Germany Higher loading of networks has a strong impact on network control Intermittent generation increases demand of control and reserve power 10 Wind W power indeinspeisung generation vom in GW Std. Quelle: ISET, IWET Areal spreading of installed capacity of wind power plants Quelle: ISET, IWET; Aug 2007
4 Intermittent generation and operational availability Wind power Nach Prof. Hartkopf, TU Darmstadt Annual load duration curve of wind power Nach: Prof. Hartkopf, TU Darmstadt Nach Prof. Hartkopf, TU Darmstadt
5 New paradigms in running energy systems Power 2010 Power 20XX Consumption Consumption Conventional Power plants Renewable Energy Renewable Energy t = 24h t = 24h Yesterday: Consumption is always larger than renewables Soon: More renewable power generation than consumption
6 Strong Increase in PV- Production in Baden-Württemberg EnBW grid 2010 in selected areas PV- Production Marktoffingen: 3,4 kw/person Rot am See: 2,1 kw/person Demand 1 kw/person Quelle: Palm, EnBW-ODR
7 New challenges for the grid CHP, heat pumps Decentralized Generation/ virtual power plants Renewable Energies Energy trading Storage Electric cars Large power plants More transmission of electricity Quellen: (Stand: )
8 The energy infrastructure of tomorrow Smart grid" integrates renewables and electromobility Power generation Transportation grid "Smart home" concepts incl. integration of e-mobility Distribution grid Intelligent charging management, ICT infrastructure and billing systems Intelligent and standardized charging infrastructure Charging station Smart home Telematic services EV Utility/ TSO escooter Integrated e-mobility services
9 Rubrik / Kapitel Electromobility needs an intelligent infrastructure E-mobility will promote change with challenges for energy logistics. E-mobility increases power demand: E-Vehicles until 2020 (Goal National development plan E-mobility of the German government) 9 Number Percentage of total stock Specific power kw Installed Charging capacity Pieces % kw MW 1 Mio Possible scenario about 4,5 Mio ca Installed Peak Power in Germany ca MW Minimum load in Germany ca MW The integrated control of power demand is an attractive solution the smart meter is the technological basis Solutions without load shifting will involuntarily lead to an inefficient extension of grids or production capacities and may cause unavailability of supply. Quelle: EnBW Berechnungen
10 Virtual Power plant our solution Automatic control virtual power plant: electricity price signal at the plug X Quelle:
11 MEREGIO-concept EnBW IT PV Companies Internet- Portal EV Smart metering µchp, heat storage Home appliances
12 New approach to the future energy markets Electrical Engineering smart meter hybrid generation household device automation grid technology Energy Market decentralized trading price signals at the socket services for additional benefit ancillary services Information and Communication Technology real-time data acquisition safety & security control and accounting transactions with legal certainty 12
13 Project Minimum Emission Regions (MEREGIO) All energy services (both technically and commercially) Trading platform for energy products, system services and value-added services Increase energy efficiency and more local renewables by direct interaction of energy users and local generators via trading platform Assessment of local climate gas emissions
14 Pilot regions in Baden and Württemberg 1000 participants (800 consumers and 200 generators) Focus on private customers and small-/medium-sized companies Local power production (PV- panels, µchp, wind turbines, small hydropower, etc.) Physical and virtual integration of participants Most participants are in the same low- or medium-voltage system Integration of all participants into virtual networks Latest IT equipment Remote readout, intelligent multi-utility meters Devices for Demand Side and Demand Response Management (switchable sockets amongst others) Additional secondary technology at local distribution grid stations
15 E-Energy market place and new services Trading platform for generators, end customers and intermediates Trade with Electric energy (active power) System services (e. g. reactive power, control energy) Additional value-added services (e. g. energy management, energy efficiency consultation) Pricing mechanisms (e. g. auctions or OTC/ negotiation) Increasing transparency Long- and short-term trading Creating financial incentives for spontaneous response to varying supply and demand Assessing regional climate impact, More local renewables
16 New Technologies and Methods for the smart energy future Energy market CO 2 -Bilanz Energy supplier Smart energy platform Smart Grid Retail grid operator Smart Meter Energiekunde IP-Router (DSL, Kabel-TV) hausinterne Datenleitung Commercial customers Smart Appliance Private Consumer Electrical storage Electric car µchp Smart Storage Renewables Decentralised Generation
17 Smart grids and technologies result in new products Products/Tariffs New tariffs for private recharging Load levelling products to stabilize the grid New products for operation in isolated network Technical Options Public charging infrastructure Battery products Battery exchange systems H 2 Commercial Options Operator Financial investor Car-Sharing etc.
18 Large share of renewable production needs long term storage: Hydrogen economy? Long term storage in the gas grid available capacity of underground chambers can store 8-times the electrical energy of tot. German wind production in 2008 ( 100 days storage ) H 2 production from renewable electricity (1 kwh electricity -> 0,7 kwh H 2 ) Increase H 2 concentration to 15% by volume in the grid is possible without major technical changes Technology exists, the challenges are Today, electrolysers are uneconomical in intermittent operation For mobile applications: infrastructure/cars not available
19 Large share of renewable production needs long term storage: Hydrogen economy H 2 can be the storage medium for the all electric society Hydrogen for mobile application ca. 15 Mio t H 2 are needed to replace fossil fuels approx MW Wind Off-Shore farms necessary Substitution of natural gas in home heating by electricity/h 2 approx MW Wind Off-Shore farms necessary Technology exists, but no market model!
20 Power plants, Renewables, Grids: Towards the Smart Energy World A large share of intermittent renewable electricity production and battery electric vehicles need changes in the stationary energy system The grid needs to be improved on all voltage levels Smart Grid -systems are the basis for more energy efficiency and new products, i.e., electromobility H 2 as storage for the stationary system (gas, electricity) may be a technical option even though uneconomical today H 2 as substitute for fossil fuels may help to decarbonize the economy Integrating electric vehicles and a large share of renewable energy is economically more challenging than technically.
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