ingenuity for life – wind power morten pilgaard rasmussen
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Ingenuity for Life –Wind PowerMorten Pilgaard RasmussenRestricted © Siemens AG 2016
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Cost improvement drives further competitiveness of wind and enables further market growth
Source: IEA World Energy Outlook 2015, New Policies scenario
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“Consolidation in the wind power sector will be a key theme in the wind turbine manufacturing segment over the next few years” – BMI Research
Source: ...Source: ...Source: BMI Research http://www.bmiresearch.com/news-and-views/wind-market-consolidation-to-boost-global-competitiveness
Increasing Global Footprint
Lowering Cost
Fending Off Competition From China
Consolidation
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Time to Market pressure requires strong product platforms
Modularization enables longer platform lifetime and larger volume
Same Nacelle, Generator and HubLarger rotor for IEC III
SWT-3.3-130
Smaller rotor for IEC I
Onshore Direct Drive
8 MW7 MW6 MW
Same rotor for further developed machine
Different rotors with same nacelle, generator and hub
Offshore Direct Drive
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Integrated solutions for the wind farm development projects
Nissum Bredning Vind wind farm
Cost-efficient gravity jacket foundation solution
Further innovations in terms of tower and controller settings
New 66 kV voltage solution including a new transformer, cable and switchgear systems
SWT-7.0-154
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WF-APO – Adaptive Power Optimization on Wind farm
WF Application executer platform. Setup sketch.
Park 1 control:…
…..
Park X control:
Report
APO
Machine learning Configuration
Data
Data
Continuously update configuration
Logging data
Local turbine safeguard:-loads-noise-RPM
(Yaw)Wind Farm
Back office
….
Digitalization 2020
….
….
(+ Pitch)
(+ Speed)(+ weather data)
(+ ……….)
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Energy storage facilitates the integration of infrastructures and energy carriers
Application cases by location of storageCentral
Large UtilitiesDistributed
Small utilities, municipalities, industry – prosumer
Pumped storage H2 / Chemicals Battery Thermal
Electricity Electricity H2 Fuel for car
H2/Methane(gas grid)
Electricity Heat
Grid stability, self-supply,
electro-mobility
Power-to-gasPower-to-chemicals
Grid balancing and stability
Power-to-heat
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The challenges for the integration of Wind Power
Depending on region integration of variable generation may face different challenges: m
ssec
min
hours
Energy Storage enables significantly increased Wind Penetration levels
Grid constraints and resulting curtailment of wind generation
Avoidance of forecasting errors for improved direct marketing
Output smoothening of wind power and ramp rate control
At high shares of inverter connected generation system stability will be affected due to lack of inertia
Power system stability: Integration of renewables may lead to violations of grid codes in „weak grid situations“ (frequency and voltage)
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Vision for future digital wind product and service
WTGs optimize & learn jointly
WTGs store energy
WTGs balance load vs. output
Security
WTGs request maintenance
Latest technology incl. cloud, VR …
Integrated enterprise
information system
Culture and organization
WTGs foresee wind condition
WTGs react on electricity price &
grid condition
Digital site evaluation
EPC
Extended scope offering
Flexible O&M offering
Yield based availability
Digital siting service
Electrical design service
Optimization options
Asset management
WTGs act in Digital Twin
Digital product features Digital service offerings
Key Enablers
Sustainable ecosystem
WTGs react on environment
condition
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Floating Turbines to conqeur deep water
The world’s first full-scale floating wind turbine The world’s largest floating wind farm
20152009
2.3 MW
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The Sustainable Power of Wind
Restricted © Siemens AG 2014 All rights reserved.
We make real what matters – clean energy for generations to come
www.siemens.com/windRestricted © Siemens AG 2016
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