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EASY-RES SIGNED

Enable Ancillary Services bY Renewable Energy Sources

Total Cost €

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EC-Contrib. €

0

Partnership

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 EASY-RES project word cloud

Explore the words cloud of the EASY-RES project. It provides you a very rough idea of what is the project "EASY-RES" about.

currents    faults    security    converter    models    generators    causing    levels    adopting    synchronous    aforementioned    penetration    dres    dispatchable    functionalities    independent    algorithms    designed    regulation    undertaken    capability    codes    centrally    inherent    res    reactive    interfaced    actions    sized    adaptable    modifications    sgs    suitably    ancillary    individual    primary    spinning    deviations    electric    optimally    tackle    dsos    secondary    largely    grid    segmentation    fault    voltage    replace    stakeholders    ride    benefits    volatility    contribution    forming    energy    electrical    small    prosumers    unified    infrastructure    suggested    properly    central    business    coordinated    renewable    ict    producers    stability    network    solutions    operate    tsos    reserves    services    transparent    smoothing    power    centralized    storage    clearing    sources    frequency    inertia    transients    similarly    inertial    conventional    damping    provision    sg    distributed   

Project "EASY-RES" data sheet

The following table provides information about the project.

Coordinator
ARISTOTELIO PANEPISTIMIO THESSALONIKIS 

Organization address
address: KEDEA BUILDING, TRITIS SEPTEMVRIOU, ARISTOTLE UNIV CAMPUS
city: THESSALONIKI
postcode: 54636
website: www.auth.gr

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country Greece [EL]
 Total cost 4˙562˙357 €
 EC max contribution 4˙562˙357 € (100%)
 Programme 1. H2020-EU.3.3.2. (Low-cost, low-carbon energy supply)
 Code Call H2020-LCE-2017-RES-RIA-TwoStage
 Funding Scheme RIA
 Starting year 2018
 Duration (year-month-day) from 2018-03-01   to  2021-06-30

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    ARISTOTELIO PANEPISTIMIO THESSALONIKIS EL (THESSALONIKI) coordinator 1˙058˙375.00
2    UNIVERSITAT PASSAU DE (PASSAU) participant 749˙762.00
3    UNIVERSIDAD DE SEVILLA ES (SEVILLA) participant 685˙437.00
4    TECHNISCHE UNIVERSITEIT DELFT NL (DELFT) participant 456˙500.00
5    UNIVERSITY OF LANCASTER UK (LANCASTER) participant 443˙267.00
6    FENECON GMBH DE (DEGGENDORF) participant 302˙127.00
7    GESHAFTSSTELLE ZENTRUM DIGITALISIERUNG BAYERN DE (GARCHING B MUNCHEN) participant 222˙262.00
8    ELEKTRO GORENJSKA PODJETJE ZA DISTRIBUCIJO ELEKTRICNE ENERGIJE DD SI (KRANJ) participant 179˙250.00
9    STADTWERK HASSFURT GMBH DE (HASSFURT) participant 176˙375.00
10    INDEPENDENT POWER TRANSMISSION OPERATOR SA EL (ATHENS) participant 152˙750.00
11    STADT LANDAU A.D. ISAR DE (LANDAU A.D.ISAR) participant 136˙250.00

Map

 Project objective

The stability and security of the traditional electrical power systems is largely based on the inherent properties of synchronous generators (SGs). Such properties are: the grid-forming capability, the inertia, the damping of transients, and the provision of large currents during faults. The growing penetration of converter-interfaced (thus inertia-less) Distributed Renewable Energy Sources (DRES) will eventually replace dispatchable SGs and increase power volatility, causing large frequency deviations and voltage regulation problems. The increase of SG spinning reserves, the grid reinforcement and the use of central electric energy storage systems are some solutions proposed to tackle this problem. However, due to their centralized approach and high cost, these actions can be undertaken only centrally by TSOs and DSOs. By adopting a unified bottom-up approach, EASY-RES will develop novel control algorithms for all converter-interfaced DRES, to enable them to operate similarly to conventional SGs, providing to the grid inertia, damping of transients, reactive power, fault ride through and fault-clearing capabilities, and adaptable response to primary and secondary frequency control. These new functionalities will be transparent to all grid voltage levels. The EASY-RES approach is based on the distribution network segmentation into small Individual Control Areas, where the DRES and properly sized storage systems will be optimally coordinated via suitably designed ICT infrastructure to provide Ancillary Services (AS) such as inertial response, reactive power support, power smoothing, and contribution to fault-clearing in a bottom-up approach: prosumers and independent RES producers to DSOs, and DSOs to TSOs. By evaluating the costs and benefits of the developed functionalities, viable business models will be developed for the aforementioned stakeholders. Finally, modifications to the existing grid codes will be suggested for the implementation of the developed AS.

 Deliverables

List of deliverables.
D1.2 Report on the Definition of the Converter Reactive Power Capability Documents, reports 2020-03-06 18:42:11
D7.6 Report on the 1st period of dissemination Documents, reports 2020-03-06 18:42:11
D2.2 1st Report on the Electric and thermal dynamic modelling of DRES/BESS Documents, reports 2020-03-06 18:42:11
D3.2 1st Report on methodologies regarding the reaction of DRES and storage systems during faults Documents, reports 2020-03-06 18:42:11
D8.4 Second Version of Risk Analysis Documents, reports 2020-03-06 18:42:11
D4.1 Report on Initial ICT Architecture Documents, reports 2020-03-06 18:42:11
D3.3 1st Report on the methodology for detection of fault type and proximity Documents, reports 2020-03-06 18:42:11
D5.2 Report presenting the Portfolio of AS Documents, reports 2020-03-06 18:42:11
D7.1 Dissemination and Communication Plan Documents, reports 2020-03-06 18:42:11
D7.5 Press releases Websites, patent fillings, videos etc. 2020-03-06 18:42:11
D5.1 Report Reviewing the Current Market Regulatory Framework Documents, reports 2020-03-06 18:42:11
D8.2 First Version of Risk Analysis Documents, reports 2020-03-06 18:42:11
D2.1 Description of the metrics developed with respect to transient and dynamics response and report on the Review of the respective Current Grid Codes Documents, reports 2020-03-06 18:42:11
D3.1 Report on the work done in T3.1 Documents, reports 2020-03-06 18:42:11
D7.4 Project Leaflet Websites, patent fillings, videos etc. 2020-03-06 18:42:11
D1.1 Description of the metrics developed for the Quasi-Steady-State Operation and report on the Review of the respective Current Grid Codes Documents, reports 2020-03-06 18:42:11
D7.3 Project presentation and scientific articles Documents, reports 2020-03-06 18:42:11
D7.2 Project website Websites, patent fillings, videos etc. 2020-03-06 18:42:11

Take a look to the deliverables list in detail:  detailed list of EASY-RES deliverables.

 Publications

year authors and title journal last update
List of publications.
2019 Georgios C. Kryonidis, Charis S. Demoulias, Grigoris K. Papagiannis
A Two-Stage Solution to the Bi-Objective Optimal Voltage Regulation Problem
published pages: 1-1, ISSN: 1949-3029, DOI: 10.1109/TSTE.2019.2914063
IEEE Transactions on Sustainable Energy 2020-03-06
2019 Kyriaki-Nefeli D. Malamaki, Charis S. Demoulias
Estimation of additional PV Converter Losses operating under PF≠1 based on Manufacturer\'s Data at PF=1
published pages: 1-1, ISSN: 0885-8969, DOI: 10.1109/tec.2019.2893065
IEEE Transactions on Energy Conversion 2020-03-06
2019 Georgios C. Kryonidis, Charis S. Demoulias, Grigoris K. Papagiannis
A new voltage control scheme for active medium-voltage (MV) networks
published pages: 53-64, ISSN: 0378-7796, DOI: 10.1016/j.epsr.2018.12.014
Electric Power Systems Research 169 2020-03-06

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