energy generation with no greenhouse gases
DESCRIPTION
ENERGY GENERATION WITH NO GREENHOUSE GASES. NATIONAL COMPETITIVE CLUSTER REGIONAL CLUSTER FOR INNOVATION AND SOCIALLY RESPONSIBLE ECONOIC DEVELOPMENT CORSICA CLUSTER OF EXCELLENCE. What is a competitiveness cluster ?. - PowerPoint PPT PresentationTRANSCRIPT
www.capenergies.fr
ENERGY GENERATION WITH NO GREENHOUSE GASES
NATIONAL COMPETITIVE CLUSTERREGIONAL CLUSTER FOR INNOVATION AND SOCIALLY RESPONSIBLE ECONOIC DEVELOPMENT CORSICA CLUSTER OF EXCELLENCE
www.capenergies.fr
What is a competitiveness cluster ?
A theme Members
Territories
facilitator
Energies with no greenhouse gases
PACAMONACOCORSICA
GUADELOUPEREUNION
Born of the industrial strategy in 2004 in France wich aimed at mobilizing the key factors of competitiveness, foremost among them the capacity for innovation.
Institutional partnersInstitutional partners
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Territories
MembersA theme
How does the cluster work ?
Innovative projects
development
Innovative projects
development
Competitiveness and Growth
Competitiveness and Growth
Attractiveness and jobs
Attractiveness and jobs
Analysis of industry sectors
• 370 certified projects• 180 financed projects• 190 million € of aid• 20 projects
« Investissements d’avenir »
170 companies accompanied
• Fundraising• Industrialization• Industrial Property• Management skills• CSR• Market Access • Access to international• Trade promotion
• Regional plans• Strategic projects (PREMIO,
Myrte, Nice Grid ...)• Territories development : Val
de Durance, Plaine du Var…
www.capenergies.fr
ENERGY GENERATION WITH NO GREENHOUSE GASES
NATIONAL COMPETITIVE CLUSTERREGIONAL CLUSTER FOR INNOVATION AND SOCIALLY RESPONSIBLE ECONOIC DEVELOPMENT CORSICA CLUSTER OF EXCELLENCE
www.capenergies.fr
PREMIODistributed generation, Renewable Energies
& Load Managment through an integrated and optimized sort of a way
Achieving low cost metering that can Accurately analyse the Grid and
provide Quality of service
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Project goal
« The project aims to implement in the PACA region an innovative
and replicable local energy architecture (VPP) optimizing the
integration of Distributed Generation and storage, dynamic load
control and energy efficiency initiatives to relieve stress on the
local electrical power grid (reduce peak load) while reducing CO2
within the territory »
Budget : 8M€
2,5 M€ funding by PACA region
Phase 1 : Studies (2008 – mid2009)
Phase 2 : Operating phase
Installation : 01/2009 to 07/2009
Exploitation : summer 2009 to winter 2011
Results : spring 2011
Prolongation : 2012
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Objectives of the demonstration project
• To develop and test a VPP at the distribution system level use of existing Distributed Resource technologiescommunication with a Control Unit requests for load reduction are based on local load peak and national CO2
emissions
• To identify weakness and strengths of the existing Distributed Resource technologies and requirements when integrated into this VPP
• To learn lessons during the: Development of the architectureInstallation of equipmentAssessment of resultsRecruitment of customers Improvement of demand response acceptability
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PREMIO: An open field laboratory on SG
One of the 1st field attempt in
France on SG demonstration
A DSM project: Demand
Response + energy efficiency
An open « field laboratory » A tool located at the end of
the supply chain dedicated to relieve local constraints
Territorial approach and
strong integration of local
stakeholders
Optimization of DG, storage
and use of curtailable loads SG: Smart GridsDSM: Demand-Side-ManagementDG: Distributed Generation
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9
Demand Side Management « in two steps »
Reference situation “before PREMIO” Technology
- Electric heating- Cooling unit- Heat pump- Street lighting- …
Addition of PREMIO equipmentFor an optimization at the individual level
Energy efficiency
Control of energy Permanent impact on power
Economical gain
Additional PREMIO equipment
Technology
- PULSSI- Cooling storage- Heat storage- LED street lighting- Solar DHW- …
1
PREMIO Control Unit
Equipment PREMIO
Technology
2
Addition of the PREMIO Control UnitFor a global optimization, at the upstream operator’s level
Dynamic load/generation control Control of power
potential impact on the energy
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10
Transformer
Low voltage distribution system (230/400 V)
Control Unit
Communication network
Generation/storageunities
Tertiary Residential
Street lighting
Basic architecture PREMIOBasic architecture PREMIOUpstream operator*
* In the demonstration project, the signal will be simulated
Ag
gre
gate
d p
ote
nti
al of
p
ow
er
flexib
ilit
y (
volu
me
& p
rice)
RequestJ-1
Request J
Direct load control in PREMIO
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11
Technologies
1. Load shedding boxes for houses and apartments (PULSSI)2. Load shedding modules for residential and small tertiary
buildings (optilesteur)3. Dimming of LED based public lighting• Thermal loads at residential level: Heating and domestic hot
water • Electrical appliances, such as washers and dryers for load
shifting purposes. Load are installed in few businesses such as Laundries and Laundromats4. Individual electric storage units coupled to PV panels (MICROSCOPE)Thermal Storage technologies
5. Hot water tank coupled to a heat pump (PAC-EDF)6. Solar heat pump along with hot water storage (GIORDANO)7. Thermal storage for industrial & tertiary cooling applications
(CRISTOPIA)Distributed Generation8. Electricity generation unit with solar thermal storage
(SAED)
Load Curtailing
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Control Unit main functions
• Optimize Aggregated Capacity for Load Reduction according to Critical Periods
• Dispatches upstream operator requests into optimal generation/ load reduction profiles
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Social acceptability and Premio/ Put back the end users at the heart of the project
1/ A lot of demands from « hébergeurs » in order to follow the project and to be involved (results, …)
2/ Goal => make the « hebergeurs » project’s patners !
3/ Opening the public web site Premio http://www.projetpremio.fr
Social acceptability and Premio
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Social acceptability and Premio/ Put back the end user at the heart of the project
4/ Organization of social events (information evenings, meetings, open days, inauguration ….)
5/ Organization of schools pedagogic actions
Social acceptability and Premio
www.capenergies.fr
ENERGY GENERATION WITH NO GREENHOUSE GASES
NATIONAL COMPETITIVE CLUSTERREGIONAL CLUSTER FOR INNOVATION AND SOCIALLY RESPONSIBLE ECONOIC DEVELOPMENT CORSICA CLUSTER OF EXCELLENCE
www.capenergies.fr
Result and Orientations
• The value created need to minimize the price of equipmentIntroduction on new TIC actorsNecessity of smart meterAnalysis of the value of the big data coming from the experimentEvolution of the contractual market for flexibility
• Relation to the customer is essentialIntroduction of expert in residential customer behavior, ergonomist,Simplify the message and the services in direction of customers
• The territory and the collectivity has a major roleIn educationIn developing the vision on a territory
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Evolution
• A new project is on building
The territory is the town of Frejus
The utilities are coming from TIC and Energy Sectors
The objectives are :
offering services to residential customers
energy is not only electricity
the business model on work is mixing old energy world and TIC world
• The result will be a territory withA more efficiency consumption of energyAn energy mix with more renewableA bigger sensibilisation of the population about these subjects
www.capenergies.fr
ENERGY GENERATION WITH NO GREENHOUSE GASES
NATIONAL COMPETITIVE CLUSTERREGIONAL CLUSTER FOR INNOVATION AND SOCIALLY RESPONSIBLE ECONOIC DEVELOPMENT CORSICA CLUSTER OF EXCELLENCE