rrent International ation activities for ESI anese Perspective
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1 Cu rrent International Cooper ation activities for ESI Jap anese Perspective November 17th, 2014 Asian workshop in Kyoto Kazu azuyu yuki Takad akada New Energy and Industrial Technology Development Organization (NEDO)
2 Contents 1. Introduction of NEDO 2. Ongoing Smart Community Projects 3. Summary
3 What is NEDO New Energy and industrial technology Development Organization NEDO is Japan s largest public R&D management organization. Following the two oil crises of the 1970s, the need for energy diversification increased. Against this backdrop, NEDO was established as a governmental organization in 1980 to promote the development and introduction of new energy technologies. Personnel Budget billion yen (FY2014) 3
4 NEDO s Science and TechnologyÌ Basic Research Technology Development Demonstration Renewable energy Energy conservation Electronics /ICT Materials/nanotech Energy storage Water treatment Smart community Environment/ clean coal Robotics Bio/medical 4
5 Demonstration Project in Japan (FY2000-FY2010) Established grid integration technologies for high penetration of Renewables. Large-scale PV plant (Wakkanai) Clustered PV System (Ota) Energy Storage for Wind Power (Tomamae) Microgrid (Hachinohe) Multiple Power Quality Microgrid (Sendai) 5
6 Contents 1. Introduction of NEDO 2. Ongoing Smart Community Projects 3. Summary
7 NEDO s Smar art Community Project ects in Over verseas Lyon (France) Smart city applications for re-developed urban area New Mexico (USA) Energy management for power systems with the large scale PVs Manchester (U.K.) Energy switching of heat consumption of households and aggregation of energy storage capability Malaga(Spain) Navigate EV drivers to charging stations efficiently considering with power system and solve traffic congestions Java (Indonesia) Supplying reliable quality electricity to industrial parks Maui (USA) Maximizing the use of renewable energy by managing EV charging 7
8 Dem emonst strat ation in NM Schema of US - Japan FormationÌ US partnersì The State of New Mexico,Ì The County of Los Alamos, LANL, SNL, PNM, UNM, Mesa delì SolÌ Opening LAC site on Sep. 2012Ì Japan NEDO,Ì TOSHIBA, Shimizu, Kyocera,Ì HITACHI, NGK, SHARP, NEC, Meidensha, Fuji Electric, Tokyo Gas, MHI,Ì Furukawa Electric, Furukawa Battery,Ì Cyber Defense, Itochu, CTC, Kandenko, NTT Facilities, AccentureÌ 8
9 Micro-grid demonstration in Los Alamos 9
10 Main Demonstration Contents in Los Alamos Feeder level Micro grid operationì Control Monitoring 900 houses participating Demand Response DemoÌ Result of demand curve Price Signal 10
11 Main Demonstration Contents in Los Alamos Auto Demand Response absorbing surplus energyì from renewable Send signal and receive result HEMS Control battery Utility EMS Battery Independent operation of smart houseì Send signal through PLC Transition to Independent operation of Smart house e Accident on the distribution network High-speed interception 11
12 Field test result/ Tie line scheduling control NAS battery Copyright Toshiba All rights reserved. 12
13 Micro-grid demonstration in Albuquerque 13
14 Main Demonstration Contents in Albuquerque Independent operation of Building BEMS Absorbing PV fluctuation by building equipmentì Co-operation of EMS BEMS 14
15 BEMS control results in islanded mode Shimizu Corporation 15
16 Hitachi, Ltd All rights reserved.
17 US Japan Collaboration Explore the sustainable way of life for future generations Integrate high levels of renewable energy Maintain safe and reliable power. Develop and demonstrate smart tech together The control of electric vehicle (EV) charging to manage Distributed Energy Resources. Hitachi, Ltd., All rights reserved. 17
18 Maui: The ideal demonstration site High cost of energy is driven by variable oil prices. Energy security effected by dependence on imported fuel. The rapid growth of intermittent renewable generation (wind and solar) negatively impacts grid operations and reliability. Advanced smart grid technologies can enhance grid stability and balance demand. Examples include management of electric water heaters, EV chargers and other home appliances. Hitachi, Ltd., All rights reserved. 18
19 What the project proposes? Renewables (Wind and Solar) friendly EV charging Reduce fossil fuel consumption and its dependency Mitigate investment cost for absorbing fluctuation by Renewables Charger EV G Hitachi, Ltd., All rights reserved. 19
20 Overall View of System Configuration Hitachi, Ltd., All rights reserved. 20
21 Geographical Locations of Devices in Maui Kapalua Kaanapali Lahaina Bulk Battery (Li-Ion) Kahului Wailuku Pukalani Server room DMS EVECC DLC DC Fast Chargers(Installed) Haiku DC Fast Chargers(Plan) Paia Makawao Wailua SVC Whole Maui Island : Normal Chargers 200 sets Micro-DMS 15 sets SmartPCS 10 sets Home Getaway 40 sets Home Battery 10 set Switch 12 sets Maalaea Kihei Wailea Kula Bulk Battery (Li-Ion) Bulk Battery (Lead Acid) Hana Hitachi, Ltd., All rights reserved. 21
22 System Operation Maximum Utilization of Renewable Energy Advanced load shift using project batteries Helps shift energy demand by integrating forecasts of renewable power generation with the operating schedule of the project s s batteries. Load Carve Forecast Power Generation Plan Renewable Power Generation Forecast Night Midnight Daytime Night Midnight Daytime Night Midnight Daytime The conventional load shift technology +Ì Advanced The conventional load shift technology RE forecasts added Hitachi, Ltd., All rights reserved. 22
23 System Operation Maximum Utilization of Renewable Energy Advanced load shift Helps shift energy demand by integrating forecasts of renewable power generation with the operating schedule of the project s s batteries. Supply Demand Supply Demand Balance Charging Discharging schedule Excess Start charging The Control Center Excess energy forecast graph g p h The charging is scheduled to start when the balance would have excess supply Hitachi, Ltd., All rights reserved. 23
24 System Operation Stable Supply of Electric Power Emergency demand and supply control マウイ島に最適なスマートグリッドへ Keeps the electric power system stable by controlling and helping to restore loss of balance between power supply and demand. When power generation of wind farm and PV decreased Cut off low priority load such as water heaters temporary. Emergency discharge battery and Shift a charge time zone of EV at another time. The Control Center Hitachi, Ltd., All rights reserved. 24
25 Support from Maui Residents Demonstration will be implemented by 200 EVs and 40 residential volunteers. Therefore, we have held various events to collaborate with Maui residents. JUMPSmartMaui project dedication Queen Ka'ahumanu Center Since September 2013, JUMPSmartMaui has held many events related to volunteer recruitment, including EV membership kick-off, EV parade in Maui Fair and orientations. Hitachi, Ltd., All rights reserved. 25
26 Schedule Operation Starts December 17 th, Feasibility Study System Design Volunteer Recruitment Equipment Installment Demonstration Operation Business Case Assessment Hitachi, Ltd., All rights reserved. 26
27 Use Case Hitachi, Ltd., All rights reserved. 27
28 Contents 1. Introduction of NEDO 2. Ongoing Smart Community Projects 3. Summary
29 Case Study development - Sendai Microgrid- 29
30 Summary NEDO has already decided to develop additional Case Studies with regard to the Smart Community projects after their completion. Look forward to sharing them through international relationship such as iiesi. 30
31 Mahalo!Ì 31
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