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CORDIS - Risultati della ricerca dell’UE
CORDIS

Intelligent interconnection of prosumers in positive energy communities with twins of things for digital energy markets

CORDIS fornisce collegamenti ai risultati finali pubblici e alle pubblicazioni dei progetti ORIZZONTE.

I link ai risultati e alle pubblicazioni dei progetti del 7° PQ, così come i link ad alcuni tipi di risultati specifici come dataset e software, sono recuperati dinamicamente da .OpenAIRE .

Risultati finali

Social, ethical and cultural barriers to innovation (si apre in una nuova finestra)

The deliverable will be focused on the observed barriers for Demand Response in the different member states

Business opportunities validation (si apre in una nuova finestra)

This deliverable will validate the sectorial business analysis reports’ suitability and usefulness for the industrial partners that have to exploit the outputs of TwinERGY. The deliverable will include feedback from partners about how results match each company’s internal business plan.

Quality Assurance Plan (si apre in una nuova finestra)

Quality Assurance Plan will include all relevant quality assurance procedures and structures These quality assurance procedures will be applied to all internal and externa results and Deliverables Quality assurance will be the joint responsibility of all project partners at all levels

System's architecture (si apre in una nuova finestra)

This deliverable will develop an open secure and flexible customercentric architecture which will consider active buildings and cooperatives in condition of high renewables penetration increased electrical vehicles presence storage and DR For this one of the main tasks is to take as basis in a holistic concept the architectures already developed in H2020 projects such as NOBEL GRID or WiseGRID The architecture will be mapped on European SGAM framework This flexible architecture will consider also local neighbourhood transactions for energy delivery energy storage demand response and various energy services either aggregated

Pilot Quality assurance Guide (si apre in una nuova finestra)

A pilot Quality Assurance plan will be developed including all relevant quality assurance procedures and structures which must be followed throughout the pilot testing phase

Modules' Interoperability (si apre in una nuova finestra)

In this deliverable the technical developers will design the specifications of the different modules assuring their interoperability based on web services and highperformance middleware specifications that will operate to collect data from the different energy infrastructure and distributed resources in the network and transfers them efficiently and securely through the different modules

Regulatory Recommendations and Standardization (si apre in una nuova finestra)

This deliverable will be based on the work developed in task 12.3 and will befocused on the regulatory and standardization recommendations with the objective tofacilitate the development of Demand Response projects. The recommendations will bebased on an assessment of the barriers existing in the EU, with a focus on thoseregulations particularly affecting the development of the proposed business plans.

General Pilot Management Plan (si apre in una nuova finestra)

General Pilot Management Plan will include all information regarding pilot management local project manual for each one of the pilots efficient communication procedures economic management and reporting elaboration and inclusion of a Pilot Risk Management Plan

TwinERGY Pre-trial validation testing scenarios and results (si apre in una nuova finestra)

The purpose of this task is to integrate all components of the TwinERGY solution (namely the outputs of WP5, WP6 and WP7) and verify that they comply with the requirements and specifications set out in WP4 and the architecture design. Integration and system testing activities will be carried out to ensure problem-free functional operation. A detailed test plan (including test specifications/cases) will be generated and implemented to guarantee adequate testing coverage of the requirements/specifications. Extensive scalability testing will be performed to validate their operational capacity in large scale deployments. The capacity of the integrated system to fully cover the requirements of the project must be verified before validation activities commence.

TwinERGY - European Projects Innovation and Cooperation report (si apre in una nuova finestra)

This deliverable will report the actions taken and their outcomes, in relation to the adaptation and extension of results of existing projects (such as H2020 INTERRFACE and CoordiNET

Social, ethical and cultural barriers to innovation - Revision (si apre in una nuova finestra)

The deliverable will be a revision of D2.5 providing insight on the observed barriers for Demand Response based on the pilot demonstrations in the different member states.

Business Models & Incentive Schema Definition (si apre in una nuova finestra)

In this deliverable existing business models from the energy sector will be reviewed and new ones will be proposed considering market potential of the TwinERGY technologies the results of incentive mechanisms as well as the resulting interactions between the market players

Project Management Plan-Revision 2 (si apre in una nuova finestra)

Second revision of Project Management Plan

Technical obstacles to innovation analysis (si apre in una nuova finestra)

This deliverable will focus on the landscaping of the barriers hindering the successful penetration of demand response business models and schemes prioritizing on the demonstration countries and contexts

Project Mangement Plan -Revision 1 (si apre in una nuova finestra)

First revision of the Project Management Plan

TwinERGY Common Information Model (si apre in una nuova finestra)

The deliverable consists in the high level domain model comprising the basic elements semantic concepts events relations and respective data models etc underlying the TwinERGY Project

Legal & Ethical Complience Guide (si apre in una nuova finestra)

The deliverable will produce an inventory of the main applicable high level regulatory andethical requirements identified under T121

TwinERGY - European Projects Innovation and Cooperation roadmap (si apre in una nuova finestra)

This deliverable will provide the plan on how to achieve the establishment of common approaches and participation to common discussion with other BRIDGE running projects to align strategies and activities of common interest

1st Legal & Ethical Compliance report (si apre in una nuova finestra)

This deliverable will provide an interim assessment of compliance with therequirements captured under D12.1.

Project Management Handbook (si apre in una nuova finestra)

project management report summarizing all the required knowledge for the good management of the project in terms of administrative forms financial aspects quality process etc

Citizen Learning activities/events and report (si apre in una nuova finestra)

The learning and information generated through 11.3 will be captured creatively and content/reports could be produced in the format of podcasts, videos and social media stories. These will shared within the wider dissemination activities and on the TwinERGY website.

Consumers Behavioural Analysis (si apre in una nuova finestra)

The task deliverables will consist of a deep analysis of the drivers and inhibitors of consumer behaviour change we will develop a tailormade conceptual model to understand the drivers and to promote consumer engagement in an energy market

Best practice guidelines for engaging citizens in the pilots and metrics for diversity and inclusion (si apre in una nuova finestra)

We will develop a framework for engaging citizens that includes guidelines around diversity and inclusion within the pilot projects and agreements re data governance principles best practice guidelines training materials and tools

Consumer Engagement plan (si apre in una nuova finestra)

Deliver the engagement plan to explain processes and behavioural change related to engagement process and which will govern the whole projectby adopting the EC recommendations for customer engagement projects

2nd European Workshop with stakeholders (si apre in una nuova finestra)

Report on the results of the Second European workshop targeting researchers, academics, business, energy regulators, local government and other interested stakeholders. Some of the contents of the report include feedback from participants, promotional materials and presentation used, lessons learned, imapct on media.

1st European Workshop with stakeholders (si apre in una nuova finestra)

This task will focus on engagement with citizens and the sharing of learning from the four pilot studies. The activities within the workshops will be codesigned with citizens, involve stakeholders and will generate creative content about the learning.

Pilot Demonstration Impact and Recommendations (si apre in una nuova finestra)

Analysis of the impacts of the solutions based on the data collected through demonstration and validation. Recommendations on how to readjust the modules designed as part of WP7 and provide additional input and validation of the business plans created as part of WP10.

Methodological Framework (si apre in una nuova finestra)

The deliverable will outline a methodological framework to evaluate business analysis methods suitable to implement the sectorial analysis eg including Problem Structuring Methods Group Model Building Business Model Canvass etc This review will facilitate the selection of the most useful and effective methods for the purpose Selected methods will be combined with the outcomes from previous analyses conducted in other EU projects and with results coming by our pilots and trials

Project Management Plan (si apre in una nuova finestra)

The deliverable will provide a detailed Project Management Plan with a Gantt chart and a Work Breakdown Structure WBS including a schedule per task responsible partner related subtasks related deliverables and dependencies on other tasks

Stakeholders analysis: KPIs, Scenarios and Use Case definition (si apre in una nuova finestra)

This task deliverables will be to perform the stakeholders analysis and to quantify the Key Performance Indicators KPIs to achieve the maximization of consumer engagement in an energy market This task will also deliver the UseCases UCs and scenarios development which will be the foundation for the pilot demonstrations

Consumer Engagement Handbook (si apre in una nuova finestra)

Report on the outcomes of pilots in terms consumer engagement: challenges, lessons learned ad recommendations.

IPR Roadmap (si apre in una nuova finestra)

In this document, the contours of intellectual property regime will be described. Defining their intellectual property rights, partners will cover both foreground and background.

Communication and Dissemination Plan (si apre in una nuova finestra)

Communication and Dissemination Plan documents activities across the lifetime of the project which all consortium partners contribute to The plan will ensure effective and inclusive dissemination across a diverse range of audiences

2nd Legal & Ethical Compliance report (si apre in una nuova finestra)

This deliverable will provide for the final assessment of compliance with the requirementscaptured under D12.1. The deliverable will constitute an update of D12.2. It will, also, point at potential future implications, relevant for the technical developments envisioned by TwinERGY.

Data Use License template (si apre in una nuova finestra)

This task will develop data use licenses with citizens The approachwill be fully compliant with research ethics procedures informed consent andGDPR legislation and will offer a creative way for consumers and energyinfrastructure stakeholders to codevelop a use license for personal data inrelation to energy usage

Report of TwinERGY Ecosystem and module Benchmarking on real life testing (si apre in una nuova finestra)

Report on the solutions used in real operational conditions for a period of 27 months in order to fine tune its functionalities and collect relevant data about operational impacts.

Business analysis / Exploitation potential plans (si apre in una nuova finestra)

This deliverable will provide a business plan by integrating on one hand, the results of several previous WPs and, on the other, including the analysis of market opportunities in those most relevant sectors for the project considering the reality of each organization.

TwinERGY Integrated Platform- Beta Release (si apre in una nuova finestra)

The deliverable will update and extend D53 by enriching the initial functionality and introducing open APIs providing access to external legacy systems and to third parties in general to selected features of the platform

Consumer and Neighborhood demand flexibility profiling Module (si apre in una nuova finestra)

Methodology for calculating and profiling the potential flexibility at micro and macro level based both on physicsdriven and datadriven modelling and simulation

Transactive Energy Module (si apre in una nuova finestra)

In this deliverable the integration of WECs transactive energy platform with the TwinERGY framework will be performed

Customer Deployment and Social Engagement Module (si apre in una nuova finestra)

This deliverable will provide a social network platform employing a social competition strategy designed to encourage demand response engagement and reduction in energy usage

Data Collection, Security, Storage & Management Services Bundles - Beta Release (si apre in una nuova finestra)

The deliverable focuses on the rapid prototyping and beta release of the TwinERGY Platform data collection security storage governance and management services

TwinERGY Integrated Data Management Platform - Alpha, Mock-ups Release (si apre in una nuova finestra)

The deliverable will consist in the alpha version with limited functionality of the Integrated TwinERGY platform

Demand flexibility models (si apre in una nuova finestra)

Estimation of the available deployable flexibility and its exploitation and dispatch features on each combination of load and demand response service based on modelling physicsdriven or datadriven tools

Electric Mobility as a Service Module (si apre in una nuova finestra)

This module will provide highvalue services to EV users such as minimum charging prices and maximum green electricity supply and different kind of grid services ETRA will design this tool in a modular manner and will integrate the module with the other ones taking into account their data exchanges need between them and the other tools of the project These developments will be based on web services and will follow an open approach providing a userfriendly interface The goal of this task is to develop a platform promoting eMaaS by supporting drivers finding the most suitable station to charge their EV while addressing issues of payment security and quality The suitability of the charging point will be specified based on factors such as dynamic pricing route cost to the station amount of the vehicles battery energy stock and energy that each provider can offer as well as arrival waitingcharging times The platform will also handle the booking parking process and payment utilizing smart contracts and blockchain technology The proposed solution combines cutting edge ICT blockchain and a userfriendly App for mobile devices in order to lead the way towards making emobility more accessible

Digital twin interconnected platform (si apre in una nuova finestra)

The setup of the individual buildings and communities Digital Twins in the cloud including the backend and frontend interconnections with the field and edge devices the interfaces and incorporation of the energy services and the APIs for interconnection with the Transactive Energy Platform

Risk Management and event handling Module (si apre in una nuova finestra)

Delivery of the TwinERGY Risk Management and Event Handling Module Delivery of a Module handbook for the integration of the 2 submodules and of thee module within the platform

System dynamics models (si apre in una nuova finestra)

The deliverable will explore Energy Systems modelling utilizing System Dynamics as a core technique Multiple stakeholders will be able to engage in a process of collaborative modelbuilding where causal loop mapping and stocks flows modelling will provide both the qualitative and quantitative means for developing rich insights into the future energy marketplace These models will be codified in TwinERGY platform so that real world scenarios can be built and insights into the impact of emerging technologies can be developed Alongside these exploration of interdependencies and the impact of unintended consequences will be explored through a collection of Viable System Models VSM and matrixbased tools such as N2 charts and the QFD approach the house of quality These enable the identification of scenarios where cascading effects of changes at localcomponent level may compromise the ability of the whole system to function and deliver as expected

RES integration and DER management Module (si apre in una nuova finestra)

Design and development of a network forecast and control unit module by integrating realtime signals for flexible generators and loads to increase the share of distributed renewable energy

Customer digital twin (si apre in una nuova finestra)

Design and development of CDT Customer Digital Twin which aims at the prediction and optimization of energy consumption based on massive cumulative realtime realworld data measurements across an array of dimensions

Home & Tertiary real-time Energy Monitoring Module (si apre in una nuova finestra)

Delivery of the TwinERGY Home Tertiary realtime Energy Monitoring Module and of the respective Web and Mobile application Delivery of a Module handbook for the user interfaces and for the module integration with other tools

Data Collection, Security, Storage & Management Services Bundles - Release 1.00 (si apre in una nuova finestra)

The deliverable will consist in a more mature and feature-rich version of D5.2.

Data Management Plan (si apre in una nuova finestra)

A report which outlines how TwinERGY data will be handled both during the lifespan of the project and after, covering all aspects of data management, from metadata generation and data preservation, as well as any claims to intellectual property rights.

TwinERGY integrated solution (si apre in una nuova finestra)

The output of Task 8.3 will be tested in real-life conditions in the pilot sites. With the feedback provided in that stage, the technical developers of TwinERGY will refine its individual modules and will also refine the integration of them. Thus, the output of this task will be a complete and mature TwinERGY solution ready to be demonstrated in the pilot sites in order to start collecting data valuable for the assessment of the project.

Consumer well-being module (si apre in una nuova finestra)

Delivery of the comfort / well-being module comprising the development of the extended low cost, long autonomy wearable wireless device to monitor and acquire physiological signals and extract the various vital signs after suitable processing (such as heart rate, breathing rate, body temperature, sweating index, etc) and transmit them wirelessly to the platform utilising low consumption communications protocols.

TwinERGY connectors to distributed smart grid assets and respective APIs (si apre in una nuova finestra)

The aim of T8.1 is to smooth and seamless integration of the TwinERGY solution with the wealth of the underlying components in a Smart Grid setup. In this context and under this premise, this task will develop a set of connectors/ wrappers that will ensure connectivity, communication and information exchange and flows from distributed assets, resources and systems (e.g. RES inverters, battery inverters, EV chargers and building systems/ devices via gateways). Such wrappers will be responsible for populating the TwinERGY Common Information Model with actual data for the different smart grid instances and components. Moreover the developed wrappers and respective APIs will enable the ingestion of real-time (data in motion) and batch data (data at rest) to the TwinERGY Core Data Management Platform in a semantically interoperable manner, through mapping between the distributed APIs described above to the Open API (and CIM) residing in the CDMP, thus allowing data feeds to the upstream analytics engines and end-users applications offered by TwinERGY.

TwinERGY Integrated Data Management Platform- Release 1.00 (si apre in una nuova finestra)

The deliverable will consist in a more mature and feature-rich version of D5.4

TwinERGY Integrated Data Management Platform- Release 2.00 (si apre in una nuova finestra)

The deliverable will update D5.6 and will provide the final version of the Integrated TwinERGY Data Management Platform and Open APIs.

Data Collection, Security, Storage & Management Services Bundles - Release 2.00 5 (si apre in una nuova finestra)

The deliverable will update D5.5 and will provide the final version of the TwinERGY Platform core services for data collection, security, storage, governance and management

TwinERGY system final version (si apre in una nuova finestra)

Revision of the deliverable D8.3 covering final refinements being carried out in the integrated system due to the testing of the real-life conditions in the pilot sites.

Communication guidelines, website, social media (si apre in una nuova finestra)

Creation of all communication materials and guildeines on how to use: website, social media account, mailchimp account, logos, visual identify, deliverable templates.

Energy Futures Videos (si apre in una nuova finestra)

Videos produced as part of T11.4 . They include stories from pilot implementation, interviews with experts and reflections on desirable futures on energy management.

Pubblicazioni

Local Energy Market-Consumer Digital Twin Coordination for Optimal Energy Price Discovery under Thermal Comfort Constraints (si apre in una nuova finestra)

Autori: Nikos Andriopoulos,Konstantinos Plakas,Christos Mountzouris,John Gialelis,Alexios Birbas,Stylianos Karatzas andAlex Papalexopoulos
Pubblicato in: WEV Journal, Numero monthly, 2022, ISSN 2032-6653
Editore: WEV
DOI: 10.3390/app13031798

Development of a Multi-Asset Risk Assessment Algorithm in the Context of Home Energy Management (si apre in una nuova finestra)

Autori: Davide Ottonello,Alessandro Fermi, Daniele Ravizza, Marco Barbagelata, Stylianos Karatzas ,Athanasios Chassiakos, andAntonis Papamanolis
Pubblicato in: Buildings, Numero monthly, 2023, ISSN 2075-5309
Editore: Buildings
DOI: 10.3390/buildings13020428

Design and Evaluation of a Micro-Grid Energy Management Scheme Focusing on the Integration of Electric Vehicles (si apre in una nuova finestra)

Autori: Anastasios I. Karameros University of Patras Athanasios Chassiakos University of Patras Stylianos Karatzas University of Cambridge
Pubblicato in: Journal of Sustainable Development of Energy Water and Environment Systems, Numero monthly, 2022, ISSN 1848-9257
Editore: Journal of Sustainable Development of Energy Water and Environment Systems
DOI: 10.13044/j.sdewes.d9.0413

SGAM-Based Analysis for the Capacity Optimization of Smart Grids Utilizing e-Mobility: The Use Case of Booking a Charge Session (si apre in una nuova finestra)

Autori: Moisés Antón García ETRA I+D Ana Isabel Martínez García ETRA I+D Stylianos Karatzas University of Cambridge Athanasios Chassiakos University of Patras
Pubblicato in: Energies, 2023, ISSN 1996-1073
Editore: Multidisciplinary Digital Publishing Institute (MDPI)
DOI: 10.3390/en16052489

The Impact of Sustainable Technologies in the Perceived Well-being: The Role of Intrinsic Motivations (si apre in una nuova finestra)

Autori: Catarina Neves, Tiago Oliveira, Stylianos Karatzas
Pubblicato in: International Journal of Human-Computer Interaction, 2023, ISSN 1044-7318
Editore: Lawrence Erlbaum Associates Inc.
DOI: 10.1080/10447318.2023.2202549

Development of a Business-Process-Oriented Energy Management System for Buildings

Autori: Stylianos Karatzas (University of Patras, Greece), Ath P. Chasiakos (University of Patras, Greece), Theo Tryfonas (University of Bristol, UK) and Anastasios Ioannis Karameros (University of Patras, Greece)
Pubblicato in: International Journal of Digital Innovation in the Built Environment, 2021, ISSN 2642-2263
Editore: IGI Global

Smart Tool Development for Customized Charging Services to EV Users (si apre in una nuova finestra)

Autori: Alberto Zambrano Galbis , Moisés Antón García , Ana Isabel Martínez García , Stylianos Karatzas Athanasios Chassiakos, , Vasiliki Lazari and Olympia Ageli
Pubblicato in: World Electric Vehicle, Numero monthly, 2022, ISSN 2032-6653
Editore: World Electric Vehicle Journal
DOI: 10.3390/wevj13080145

Sense (and) the city: From Internet of Things sensors and open data platforms to urban observatories (si apre in una nuova finestra)

Autori: Vijay Kumar, Sam Gunner, Maria Pregnolato, Patrick Tully, Nektarios Georgalas, George Oikonomou, Stylianos Karatzas, Theo Tryfonas
Pubblicato in: IET Smart Cities, 2024, ISSN 2631-7680
Editore: Wiley
DOI: 10.1049/smc2.12081

Citizens’ participation in local energy communities: the role of technology as a stimulus (si apre in una nuova finestra)

Autori: Catarina Neves, Tiago Oliveira, Saone Sarker
Pubblicato in: EUROPEAN JOURNAL OF INFORMATION SYSTEMS, 2024, ISSN 0960-085X
Editore: Palgrave Macmillan Ltd.
DOI: 10.1080/0960085x.2024.2302426

Determining occupant's Thermal Comfort and Well-Being towards facilitating energy demand management utilizing a low-cost wearable device (si apre in una nuova finestra)

Autori: John, Gialelis University of Patras gialelis@ece.upatras.gr Maria, Krizea University of Patras mkrizea@ece.upatras.gr Grigoris, Protopsaltis University of Patras greproto@gmail.com Christos, Mountzouris University of Patras chrismountzou@gmail.com Tasos, Kladas University of Patras up1079091@upatras.gr Gerasimos, Theodorou University of Patras gtheodorou@upatras.gr Stylianos, Karatzas University o
Pubblicato in: Conference: PETRA '22: The15th International Conference on PErvasive Technologies Related to Assistive Environments, Numero yearly, 2022
Editore: Reserach Gate
DOI: 10.1145/3529190.3534747

Causal Loop Mapping of Emerging Energy Systems in Project TwinERGY: Towards Consumer Engagement with Group Model Building (si apre in una nuova finestra)

Autori: Theo Tryfonas Sam Gunner Ulas Baran Baloglu BBC Patrick Tully
Pubblicato in: Conference: PETRA '22: The15th International Conference on PErvasive Technologies Related to Assistive Environments, 2022
Editore: Conference: PETRA '22: The15th International Conference on PErvasive Technologies Related to Assistive Environments
DOI: 10.1145/3529190.3534763

A multilevel demand response profiling and modeling solution enabled by digital twins integration (si apre in una nuova finestra)

Autori: Christos Mountzouris Christos Mountzouris This person is not on ResearchGate, or hasn't claimed this research yet. Stylianos Karatzas University of Cambridge Grigorios Protopsaltis John Gialelis University of Patras
Pubblicato in: 2023 European Conference on Computing in Construction 40th International CIB W78 Conference Heraklion, Crete, Greece, Numero yearly, 2023
Editore: Reserach Gate
DOI: 10.35490/ec3.2023.312

DRIVERS AND OUTCOMES OF SUSTAINABLE TECHNOLOGIES: A MIXED-METHODS STUDY OF 4 EU COUNTRIES

Autori: Catarina Neves, Tiago Oliveira Universidade NOVA de Lisboa
Pubblicato in: ECIS 2023, Numero yearly, 2023
Editore: AIS e Library

A multi-level Digital Twin for optimising demand response at the local level without compromising the well-being of consumers

Autori: Stylianos Karatzas (University of Cambridge) Niall Byrne Athanasios Chassiakos (University of Patras) David Sweeney
Pubblicato in: Conference: ICCEPM 2022: The 9th International Conference on Construction Engineering and Project ManagementAt: Las Vegas, Nevada, USA., 2022
Editore: Conference: ICCEPM 2022: The 9th International Conference on Construction Engineering and Project ManagementAt: Las Vegas, Nevada, USA.

Diritti di proprietà intellettuale

TwinEV Module

Numero candidatura/pubblicazione: N/A N/A
Data: 1643-02-10
Candidato/i: ETRA INVESTIGACION Y DESARROLLO SA

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