Integrated Energy Networks enabled by Digitalization Siemens AG 2015 siemens.com
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1 Prof. Dr.-Ing. Michael Weinhold, CTO Siemens Energy Management Berlin, 14. Dezember 2015 Integrated Energy Networks enabled by Digitalization siemens.com
2 The world of our customers is changing From centralized power and unidirectional grid Distributed Energy Systems to Decentral and Distributed Energy Systems and bidirectional balancing Transmission Distribution and Consumption 1 Changing generation mix 2 Generation capacity additions Distance from source to load Decentralization (public/private) Refurbishment/ upgrades Page 2
3 Technologies to master the Energy Transition: Increasing role of Power Electronics and Digitalization in all voltage levels Changing generation mix Generation capacity additions Distance from source to load Decentralization (public / private) Refurbishment / upgrades Interconnectors Network Control Systems Synthetic Inertia Transmission Grid Capacity additions Intelligent Distribution Grid Substation High Voltage DC Systems (HVDC) Flexible AC Transmission Systems (FACTS) Supergrids Active Network Mgmt., Microgrids, Nanogrids Distributed Energy Systems (DES) Energy Storage, Electrolyzers, Power-to-X Equipment with higher voltage ratings Cyber Security Solutions Resilience Page 3
4 Customer trends drive dramatic change in energy systems Affordability Availability Environment Renewables and conventional Forecasting Distributed energy Generation control HVDC/FACTS Electrification Agility in energy Automation Digitalization Grid stability Security Power to X MDM e-mobility Customer engagement HVDC/FACTS = High Voltage Direct Current/Flexible AC Transmission Systems MDM = Meter Data Management Page 4
5 Siemens lives up to future challenges with a comprehensive end-to-end portfolio Cloud enabled applications e.g. Data analytics Public cloud e.g. Home energy management applications Enterprise IT Enterprise service bus Grid control applications Spectrum Power platform communication transmission distribution Market driven applications EnergyIP platform consumption Cyber security Page 5
6 transmission: security, sustainability and cost-efficiency for the grid Cloud enabled applications e.g. Data analytics Enterprise New launch: IT DC Onshore Greater Grid Access Gabbard, UK Enterprise (Grid access service bus (FACTS e.g. Static solutions AC & DC) Var Compensator) Grid control applications Spectrum Power platform Cost reduction approx. 10 ct/kwh communication transmission SVC PLUS less dependent on existing network conditions distribution Bjæverskov, Denmark (FACTS: Synchronous Condenser) Providing 800 MVA short-circuit power Black Sea Network, Georgia (HVDC Classic) consumption Public cloud e.g. Home energy management applications Inelfe, France-Spain (HVDC PLUS, multilevel VSC technology) Cyber security Market driven applications Up to EnergyIP 350 MW platform Doubled energy defined eco-friendly exchange capacity power trading between France and Spain Page 6
7 France-Spain Interconnector: Power Electronics Page 7
8 France-Spain Interconnector: Converter using intelligent control software Page 8
9 Significant grid access cost reduction driven by paradigm shift: utilize decentralized intelligence of wind turbine inverters Current solution New solution Page 9
10 Grid control applications Cloud enabled applications e.g. Data analytics Public cloud e.g. Home energy management applications Enterprise IT Enterprise service bus Grid control applications Spectrum Power platform communication transmission distribution Market driven applications EnergyIP Advanced platform Control Center for PJM Interconnection, USA Cyber security Increased security and reliability of the grid consumption Practically uninterrupted power supply and grid control Page 10
11 Research project Dynamic Grid Control Center Challenge: Changing system dynamics More power electronics within the grid, less rotating mass Target: Autopilot and Master Power Control operation Controllable grid dynamics Self healing capabilities Partnering: 3 universities 4 TSOs SPECTRUM 7 2 scientific institutes PJM interconnection Page 11
12 Market driven applications Cloud enabled applications e.g. Data analytics Public cloud e.g. Home energy management applications Enterprise IT Enterprise service bus Grid control applications Spectrum EnergyIP Power 8 platform Statnett, Norway Peak communication avoidance Distributed optimization CO2 and cost avoidance transmission Allocation of grid losses and unaccounted energy distribution Market driven applications EnergyIP platform consumption Cyber security Page 12
13 Digitale Innovation in der Praxis, Statnett Elhub, Norway DSO Generation TSO Retailers 3 rd party and other entities EnergyIP 8 platform: Meter Data Management (MDM) application End-Point/ Metering Points Siemens EnergyIP MTM Market Player Entities Integration Market Transaction Management (MTM) Benefits: Peak avoidance Distributed optimization CO 2 and cost avoidance Wind Solar e-mobility End user DSO DSO: Distribution System Operators TSO: Transmission System Operators MTM: Market Transaction Management Allocation of grid losses and unaccounted energy Page 13
14 Active Network Management as an enabler for efficient and stable grid operation Active Network Management Cloud enabled applications e.g. Data analytics Public cloud e.g. Home energy management applications Enterprise IT Enterprise service bus Grid control applications Spectrum Power platform communication advanced distribution management Market driven applications EnergyIP platform Cyber security transmission distribution intelligent substation, battery storage, feeder automation, autom. ring main unit consumption Page 14
15 Active Network Management Grand Unified Scheme Northern Power Grid (NPG), United Kingdom Solution Integration of battery storage, enhanced voltage control, demand response, and realtime thermal rating in a closed loop wide area communication Benefits Efficient and stable grid operation Prosumers as active participants offering load flexibility Page 15
16 Microgrid as an enabler for ancillary services from the distribution grid Microgrid Cloud enabled applications e.g. Data analytics Public cloud e.g. Home energy management applications Enterprise IT Enterprise service bus Grid control applications Spectrum Power platform communication transmission distribution microgrid controller, battery storage Market driven applications EnergyIP platform microgrid manager consumption smart grid unit Cyber security Page 16
17 Digitalization optimizes investments of New Brunswick (NB) Power, Canada Gas-fired Peaker Plant (underutilized) Grid control system Energy exchange Billing Industrial Decentralized generation and consumer load bundled on a virtual platform To be used as a flexible single power plant e-mobility DEMS DRMS Benefits: Residential Optimization of investments Decentralized Generation Onshore Wind DEMS: Decentralized Energy Management System Commercial DRMS: Demand Response Management System New business model makes NB Power fit for the future CO 2 reduction Page 17
18 Microgrid IREN2 research project in Wildpoldsried, Germany Solution Combining micro grid and VPP to form a topological power plant, which can be operated in island mode Benefits Stable and economically optimized grid operation Black start capability Profitable use of renewable resources Ancillary services from the distribution grid Page 18
19 Distributed Energy System as an enabler for increased energy efficiency and flexibility Distributed Energy System Cloud enabled applications e.g. Data analytics, VPP/DR portal Public cloud e.g. Home energy management applications Enterprise IT Enterprise service bus Grid control applications Spectrum Power platform communication transmission distribution Market driven applications EnergyIP platform DR, VPP, MDM consumption smart grid unit, smart meter, building management system Cyber security Page 19
20 Distributed Energy Systems Aspern (Vienna), Austria Solution Combination of smart buildings, smart grid and smart markets using data analytics and ICT Benefits Integration of shareholders into one electric ecosystem: Buildings: Optimized energy costs and consumption Distribution grid: Market facilitator and reliable energy supply Energy market: Flexibility becomes available schreinerkastler.at wien 3420 Page 20
21 Energiepark Mainz Project scope and key facts Location: Mainz-Hechtsheim (DE) 3 high performance electrolysis systems, peak power of 2 MW el. each (6 MW peak) Highly dynamic operation over broad load range (ramp speed 10% per sec.) First Electrolyzer delivered mid of march Plant commissioned in July 2015 Page 21
22 How will the energy system develop in such a fast-paced environment? Page 22
23 Vision of the Future: The energy cell concept Digitalization Cell 1 Cell 2 Cell 3 Cell 4 Electricity grid / Supergrid Cell 5 Gas grid Cells negotiate energy exchange among themselves (peer-to-peer) Energy cell can be Community Factory Power plant Dedicated storage Facility Energy cell contains Power generation Thermal and gas grids Energy storage Power-to-X (-value) Dispatchable Loads ICT, self-organization self-healing intelligence resiliency Page 23
24 Danke! siemens.com
25 Disclaimer This document contains forward-looking statements and information that is, statements related to future, not past, events. These statements may be identified either orally or in writing by words as expects, anticipates, intends, plans, believes, seeks, estimates, will or words of similar meaning. Such statements are based on our current expectations and certain assumptions, and are, therefore, subject to certain risks and uncertainties. A variety of factors, many of which are beyond Siemens control, affect its operations, performance, business strategy and results and could cause the actual results, performance or achievements of Siemens worldwide to be materially different from any future results, performance or achievements that may be expressed or implied by such forward-looking statements. For us, particular uncertainties arise, among others, from changes in general economic and business conditions, changes in currency exchange rates and interest rates, introduction of competing products or technologies by other companies, lack of acceptance of new products or services by customers targeted by Siemens worldwide, changes in business strategy and various other factors. More detailed information about certain of these factors is contained in Siemens filings with the SEC, which are available on the Siemens website, and on the SEC s website, Should one or more of these risks or uncertainties materialize, or should underlying assumptions prove incorrect, actual results may vary materially from those described in the relevant forward-looking statement as anticipated, believed, estimated, expected, intended, planned or projected. Siemens does not intend or assume any obligation to update or revise these forward-looking statements in light of developments which differ from those anticipated. Trademarks mentioned in this document are the property of Siemens AG, it's affiliates or their respective owners. Page 25
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