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PLATform for Operation of distribution NEtworks

Leistungen

PlatOne Integrated Framework Prototype (v3)

All the PlatOne platforms will be integrated on the PlatOne framework prototype following the specification provided by T2.1 and T2.4. The PlatOne framework will be tested and delivered incrementally, following the iterative approach defined for the PlatOne framework implementation, in order to be used and validated during the pilots execution.

PlatOne Market platform (v1)

The PlatOne Market Platform implemented according to reference architecture and user requirements. The platform will be delivered incrementally, following the iterative approach defined for the PlatOne framework implementation.

PlatOne Integrated Framework Prototype (v1)

All the PlatOne platforms will be integrated on the PlatOne framework prototype following the specification provided by T2.1 and T2.4. The PlatOne framework will be tested and delivered incrementally, following the iterative approach defined for the PlatOne framework implementation, in order to be used and validated during the pilots execution.

PlatOne DSO Technical Platform (v1)

The PlatOne DSO Tehcnical Platform implemented according to reference architecture and user requirements. The platform will be delivered incrementally, following the iterative approach defined for the PlatOne framework implementation.

Delivering of technology (v1)

BlockChain Based Customer Access Platform and the connected Customer Database able to record, certify and publish to all the relevant market players the customer's flexibility action results

PlatOne Market platform (v3)

The PlatOne Market Platform implemented according to reference architecture and user requirements. The platform will be delivered incrementally, following the iterative approach defined for the PlatOne framework implementation.

PlatOne BlockChain Customer Access Layer (v3)

The PlatOne Blockchain Customer Access Layer implemented according to reference architecture and user requirements. The layer will include the DSO Common Access Interface and the Customer Data Archive. It will be delivered incrementally, following the iterative approach defined for the PlatOne framework implementation.

PlatOne DSO Technical Platform (v2)

The PlatOne DSO Tehcnical Platform implemented according to reference architecture and user requirements. The platform will be delivered incrementally, following the iterative approach defined for the PlatOne framework implementation.

PlatOne BlockChain Customer Access Layer (v2)

The PlatOne Blockchain Customer Access Layer implemented according to reference architecture and user requirements. The layer will include the DSO Common Access Interface and the Customer Data Archive. It will be delivered incrementally, following the iterative approach defined for the PlatOne framework implementation.

PlatOne BlockChain Customer Access Layer (v1)

The PlatOne Blockchain Customer Access Layer implemented according to reference architecture and user requirements. The layer will include the DSO Common Access Interface and the Customer Data Archive. It will be delivered incrementally, following the iterative approach defined for the PlatOne framework implementation.

PlatOne Market platform (v2)

The PlatOne Market Platform implemented according to reference architecture and user requirements. The platform will be delivered incrementally, following the iterative approach defined for the PlatOne framework implementation.

PlatOne DSO Technical Platform (v3)

The PlatOne DSO Tehcnical Platform implemented according to reference architecture and user requirements. The platform will be delivered incrementally, following the iterative approach defined for the PlatOne framework implementation.

PlatOne Integrated Framework Prototype (v2)

All the PlatOne platforms will be integrated on the PlatOne framework prototype following the specification provided by T2.1 and T2.4. The PlatOne framework will be tested and delivered incrementally, following the iterative approach defined for the PlatOne framework implementation, in order to be used and validated during the pilots execution.

Delivering of technology (v3)

Final version of the aggregator platform, i.e. the one that implements all the flexibility market functionalities, able to interface on one side the Market Place Platform and, on the other side, DSOs and Customers

Delivering of technology (v2)

The Result of the Deliverable 3.5 will be the DSO Platform, i.e. the SW (software) application running on the DSO grid control system, able to analyze the grid status and, on the basis of this evaluation, validate or emendate the flexibility action request coming from aggregators

Exploitation and Marketing Plan for the involvement of partners and future customers (v1)

This deliverable will provide an exploitation and marketing plan for future partners and customers being interested in the PlatOne solutions It will describe the major lessons learnt from trial implementations and partner collaboration taking into account the market policy and regulation situation in the EU to find the most promising environment for the further deployment

Report on first integration activity in the field

During Month 20 a first report will be issued concerning the integration activities of the deliverables released on month 18

Communication and Dissemination Plan (v2)

The purpose of this deliverable is to summarize and structure all communication and dissemination activities according to the development stage of the project It is a living document and will integrate the lessons learned of the communication activities It will also take into account all changes and improvements of the PlatOne project and adapt the communication and dissemination strategy accordingly It will be updated annually

Communication and Dissemination Plan (v1)

The purpose of this deliverable is to summarize and structure all communication and dissemination activities according to the development stage of the project It is a living document and will integrate the lessons learned of the communication activities. It will also take into account all changes and improvements of the PlatOne project and adapt the communication and dissemination strategy accordingly. It will be updated annually.

Report of optimal communication solutions between customer database and market players

The report delivered will be composed of: 1) the tecnichal specifications for the hardware 2) the cost-benefit analyses to select the communication channels and the appropiate protocol 3) the desciption of the system architecture to connect the stakeholders 4) Implementation of the use cases 5) Description of the Shared Customer Database 6) work progress status

Use Case 1 Demonstration Report

Use Case Demonstration Reports contain the relevant experience from use case demonstration Including lessons learned implication for future operation and evaluation based on project KPI

Final Report

Final report that wraps up the experience and learnings from the project, including implications for future operations, lessons learned, open issues and potential areas of further research.

Overview of regulatory aspects that impact the solutions tested in the demos in European countries

This deliverable will assess regulatory elements that will be relevant throughout the conduct of the project and its DEMOs It will provide a general overview of the regulatory framework in which the project is acting and allow the identification of regulatory recommendations to support the implementation of solutions identified and developed in the project

Use Case 3 and 4 Demonstration Report

Use Case Demonstration Reports contain the relevant experience from use case demonstration. Including lessons learned, implication for future operation and evaluation based on project KPI

Report on the analysis of the regulatory and legislative framework

The analysis will outline the national and European legislative and regulatory framework that concerns the three demonstrations. Moreover, gaps and obstacles in the regulation and legislation will be identified.

Communication and Dissemination Plan (v3)

The purpose of this deliverable is to summarize and structure all communication and dissemination activities according to the development stage of the project It is a living document and will integrate the lessons learned of the communication activities. It will also take into account all changes and improvements of the PlatOne project and adapt the communication and dissemination strategy accordingly. It will be updated annually.

Project KPIs definition and measurement methods

This deliverable will frame the definition of some common KPIs across DEMOs and their measurement methods that will be used to evaluate the project results. It will be developed in close cooperation with DEMO WPs as well as with Tasks 7.1 and 7.2.

Mesogeia demonstration: meta-analysis and lessons learned

This deliverable will provide an overall meta-analysis of the methodologies that were implemented in an all-encompassing context to draw conclusion on applicability. Moreover, it will provide the lessons-learned from the demonstration across all the topics studied.

Main findings and recommendations

This report will provide a comprehensive summary of the main contributions and final results obtained within the PlatOne CBA and SRA, with an emphasis on the work developed within the fourth and final year of the project. Firstly, a theoretical framework and a practical methodological approach will be developed before proceeding to the analysis itself. The core of this methodology corresponds to a simulation-based technical analysis which required classifying the different smart grid solutions attending to their specific goals. Furthermore, this report will present an extensive discussion on how non-technical boundary conditions, i.e. regulation and stakeholders’ perspectives, may affect the replication and upscaling of the PlatOne use cases. Lastly, this report will introduce some additional concluding remarks in order to highlight the future work that may help expand the analyses presented herein as well as the main barriers encountered whilst developing this work.

Mesogeia demonstration: report

The report will include a detailed description of the demonstration. The performance of the algorithms will be analyzed using the KPIs and any practical issues and experiences will be detailed.

Definition of data to be collected by the field to perform the analyses

This deliverable aims at describing the input that are necessary for performing the SRA and MCA-CBA, in close cooperation with WP1, 3, 4 and 5. These data are necessary to build the representative networks that will be used in the simulations will be defined and gathered during this task. The list of data will be agreed in close cooperation with the DSOs that participate to the consortium. These data will be used to create representative networks. A consistency check will be performed at month 28 between the KPIs calculated by the network models and the baseline value of project KPIs, calculated after the first release of the platform

Algorithm for optimal DER control

A method will be developed for optimal control of DERs with an emphasis on flexible loads in order to alleviate line and voltage limit violation problems within the distribution network Preferably indirect control methods such as dynamic tariffs will be used that emphasize on data privacy and transparency

Periodic report on lessons-learned (v4)

A periodic report will be conducted of the positive and negative developments with regard to the implementation of standard guidelines. The input for these reports will be coming from the three demonstrations and the success of the guidelines will be evaluated depending on both technical and nontechnical goals set for each demonstration.

D1.1 General Functional Requirements and specifications of joint activities in the Demonstrators

This document will compile the architectures of the various DEMOs and their use cases in order to describe and classify the use cases by: scope, solutions adopted, level of description, topology of the solution, standardized actors/system involved. DSO operation specifications will also be defined for each project areas. These inputs will foster scalability and replicability, in interaction with WPs 6 and 7.

Solution Design and Technical Specifications

Describes the technical design of the field test site including specifications of hardware, software, SLD and IT-components

Intermediate report on the stakeholders engagement, exploitation, dissemination, communication and standardization activities

This deliverable is a comprehensive intermediate report and assessment of the measures taken to raise awareness and create impact with the preliminary project results taking into account the intermediate KPI values

Periodic report on lessons-learned (v3)

A periodic report will be conducted of the positive and negative developments with regard to the implementation of standard guidelines. The input for these reports will be coming from the three demonstrations and the success of the guidelines will be evaluated depending on both technical and nontechnical goals set for each demonstration.

State estimation tool

This tool will make use of forecasting techniques for the customer load and intermittent DERs. Its aim is to enhance the observability and automation in the network necessary for implementing complex control methods.

Specification of the interoperability and standard communication protocols (v1)

This deliverable will define the intraplatform interoperability mechanisms and standard communication protocols necessaries for the PlatOne framework implementation In addition it will report the specification for data interoperability with an highly focus on security and privacy best practices

Definition of Use Case algorithms

Gives a detailed overview ov er the use case algorithms to be implemented and tested during field test phase. Including motivations and reasoning behind use case design.

Report on second integration activity in the field

On Month 40 it wiil be delivered a second report on the integration activities implemented with the aim to have all the system components working properly according to market rules.

CBA methodology

This deliverable provides an overview of the methodologies that will be applied to perform the major tasks of WP7 Cost benefit Analysis This analysis will complement the scalability and replicability analysis for elaborating general conclusions from the experiences in the 3 project demos

Report on solutions and recommendations for the roll-out of the designed solutions

The recommendations and solutions will be in the form of policy and new/complementary regulatory frameworks. The overarching goal is that the practical realization of the solutions proposed in PlatONE, will be rolled-out, viable to be implemented in different context, and scalable.

Periodic report on lessons-learned (v2)

A periodic report will be conducted of the positive and negative developments with regard to the implementation of standard guidelines The input for these reports will be coming from the three demonstrations and the success of the guidelines will be evaluated depending on both technical and nontechnical goals set for each demonstration

Report on main results achieved in the field test

"This Deliverable will be a ""Key Document"": it will describe a complete comparison between the initial PlatONE Goals and the final results achieved, outlining the real and measured tecchnological innovation, process quality optimizations, global energy market efficiency enhancements. The results of the field test of the WP3 will be gathered, evaluated and validated. The output of the evaluation process of the scientific results will be reported and disseminated in an open access report, which will be shared with the scientific communities ans sector stakeholders through dedicated dissemination activities."

Communication and Dissemination Plan (first draft)

The purpose of this deliverable is to summarize and structure all communication and dissemination activities according to the development stage of the project It is a living document and will integrate the lessons learned of the communication activities. It will also take into account all changes and improvements of the PlatOne project and adapt the communication and dissemination strategy accordingly. It will be updated annually.

Report on the analysis of most relevant standards

This report will be a product of the investigation conducted in task 6.1. It will analyze the standardization ecosystem and will provide the input of D6.2

Report on lessons-learned from the customer engagement methodologies

The report will analyze the outcomes of the customer engagement phase of the demonstration. It will focus on identifying the best methodologies and practices.

Detailed Use Case Descriptions

Gives a detailed overview over the use cases to be tested and demonstrated, including motivation, KPI and expected result and impact on future operations.

Replicability at International level - application to Canada

This report evaluates the extent to which the technical SRA rules presented in previous WP7 reports would be applicable to contexts with different technical and regulatory boundary conditions. The cases of Canada has been selected since this Country is active in the areas of renewable energy and smart grids. Furthermore, network characteristic and regulatory context in This region are noticeably different from the EU, thus enabling a wider and more comprehensive SRA analysis.

Report of customer involvement

The delivered report will explain the methodology used in customer sensibilization on the decarbonization / flexibility matters, the customer's answers/response to the Aggregator Offers, the actual results in terms of customer satisfaction; implementation of the use cases and of the relevant customer engagement and envolvement activities; work progress status

Report on twin projects coordination Workshops

PlatOne is not the only project selected in the framework of this ES-1 “Flexibility and retail market options for the distribution grid” call. Several workshops will be held in order to foster cooperation between PlatOne and its twin projects, the final goal being the overall maximisation of solutions developed at EU level. This Deliverable will report on these workshops in order to fulfil this objective.

Report on Workshops on customer engagement

In order to maximise the involvement of customers, several workshop will be organised throughout the project to promote customer engagement. Deliverable 1.5 will report on the conduct of these workshops and identify the main outcomes of the discussions as well as recommendations to other tasks of the project.

Report on standard guidelines for each demonstration

This report will identify the standards that are to be employed in PlatONE. There will be guidelines for each demonstration as how to integrate those standards.

Summary of PlatOne contribution to Bridge WGs

This deliverable will describe the contributions of the PlatOne consortium to all Bridge Working groups, task forces, , fair presences, newsletters and other publications.

Report on the definitions of KPIs and UCs

A thorough report on the KPIs that will be used for measuring the success of the methodology implemented in the demo. In addition, a description of the Use Cases that will be developed to cover a wide range of scenarios related to providing ancillary and network related services

Exploitation and Marketing Plan for the involvement of partners and future customers (v2)

This deliverable will provide an exploitation and marketing plan for future partners and customers being interested in the PlatOne solutions. It will describe the major lessons learnt from trial implementations and partner collaboration, taking into account the market, policy and regulation situation in the EU to find the most promising environment for the further deployment.

Ex-ante qualitative evaluation

A qualitative cost-benefit analysis of the proposed standard implementation will be performed. Given the defined KPIs and UCs of each demonstration, the benefits occurring from the use of said standards will be listed.

PlatOne Platform requirements and reference architecture (v1)

The report of all the functional and non-functional requirements and the reference architecture that will be the base for the implementation of PlatOne Platform.

Periodic report on lessons-learned (v1)

A periodic report will be conducted of the positive and negative developments with regard to the implementation of standard guidelines. The input for these reports will be coming from the three demonstrations and the success of the guidelines will be evaluated depending on both technical and nontechnical goals set for each demonstration.

Algorithm for ancillary services

A method will be developed for providing ancillary services using flexibility of the customer load in order to provide frequency services for the transmission system The flexible load will be aggregated to articipate in the balancing market and provide Frequency Containment Reserve in a cost optimal manner

Methodology for SRA

This deliverable provides an overview of the methodologies that will be applied to perform the major tasks of WP7 scalability and replicability analysis This analysis will complement the CBA analysis for elaborating general conclusions from the experiences in the 3 project demos The methodology proposed for technical SRA will be presented in this document together with the selection of use cases relevant for technical SRA and the specific application of the technical SRA methodology to each of these use cases The technical impact of the PlatOne use cases will be assessed based on simulation of the implemented solutions on representative networks to compute a set of Key Performance Indicators and other metrics under different technical boundary conditionsThe practical implementation of the technical SRA methodologies developed for the use cases is described in detail introducing the models assumptions and parameters that will be used and considered for simulation

Use Case 2 Demonstration Report

Use Case Demonstration Reports contain the relevant experience from use case demonstration Including lessons learned implication for future operation and evaluation based on project KPI

PlatOne Platform requirements and reference architecture (v2)

The report of all the functional and nonfunctional requirements and the reference architecture that will be the base for the implementation of PlatOne Platform

Specification of the interoperability and standard communication protocols (v2)

This deliverable will define the intra-platform interoperability mechanisms and standard communication protocols necessaries for the PlatOne framework implementation. In addition it will report the specification for data interoperability, with an highly focus on security and privacy best practices.

Data Management Plan (initial release)

The Data Management Plan will detail how these data will be processed and shared to support Open Research during the project’s development and after the project’s conclusion.

Data Management Plan (final)

The Data Management Plan will detail how these data will be processed and shared to support Open Research during the project’s development and after the project’s conclusion.

High quality videos explaining the approaches in the 3 trials

This deliverable will describe the general considerations the marketing message creation and the tendering process of the 3 trial videos showing the similarities as well as the uniqueness of the 3 approaches

Website with interactive community platform

This deliverable will describe the structure and the functionalities of the website including the interactive community platform. It will further detail the digital implementation strategy with the project website as key element.

Veröffentlichungen

A Ready-To-Use Framework for Harvesting Flexibility Using State Estimation and Use-of-System Tariffs: Insights from the H2020 Platone Project

Autoren: Panagiotis Pediaditis , Themistoklis Xygkis, George Korres, Nikos Hatziargyriou
Veröffentlicht in: 2023 International Conference on Smart Energy Systems and Technologies (SEST), Ausgabe 04-06 September 2023, 2023, Seite(n) 1-6, ISBN 979-8-3503-9790-1
Herausgeber: IEEE
DOI: 10.1109/sest57387.2023.10257441

Global Sensitivity Analysis of State Estimation for Power Distribution Systems

Autoren: Mirko Ginocchi, Riccardo Scalabrin , Gianmarco Cocchi, Sergio Toscani, Ferdinanda Ponci, ntonello Monti
Veröffentlicht in: 2023 IEEE International Instrumentation and Measurement Technology Conference (I2MTC), Ausgabe 22-25 May 2023, 2023, Seite(n) 1-6, ISBN 978-1-6654-5383-7
Herausgeber: IEEE
DOI: 10.1109/i2mtc53148.2023.10175918

Optimal Meter Placement for Distribution System State Estimation: A Global Sensitivity Analysis-based Framework

Autoren: Mirko Ginocchi, David Pacheco, Marco Pau, Ferdinanda Ponci, Antonello Monti
Veröffentlicht in: 2023 IEEE 13th International Workshop on Applied Measurements for Power Systems (AMPS), Ausgabe 27-29 September 2023, 2023, Seite(n) 01-06, ISBN 979-8-3503-1240-9
Herausgeber: IEEE
DOI: 10.1109/amps59207.2023.10297177

Requirements For Large Scale Battery Storages In LowVoltage Grids - Lessons Learned From A Smart Grid Project

Autoren: Navreet Dult, Benjamin Petters
Veröffentlicht in: 27th International Conference on Electricity Distribution (CIRED 2023), Ausgabe 12-15 June 2023, 2023, Seite(n) 2817-2821, ISBN 978-1-83953-855-1
Herausgeber: IET
DOI: 10.1049/icp.2023.1043

Synergies between Distribution Use-of-System Tariffs and Local Flexibility Market

Autoren: Panagiotis Pediaditis, Charalampos Ziras, Dimitrios Papadaskalopoulos, Nikos D. Hatziargyriou
Veröffentlicht in: 2022 International Conference on Smart Energy Systems and Technologies (SEST), Ausgabe 05-07 September 2022, 2022, Seite(n) 1-6, ISBN 978-1-6654-0557-7
Herausgeber: IEEE
DOI: 10.1109/sest53650.2022.9898437

A Blockchain Based Platform for Network Flexibility Management in Power Distribution: A Real Application Scenario

Autoren: Ferdinando Bosco, Vincenzo Croce, Francesco Nucci, Gabriele Fedele, Antonio Vito Mantine, Olivia Cicala, Ercole De Luca, Alessandro Chelli, Mattia Alfieri
Veröffentlicht in: 2022 Workshop on Blockchain for Renewables Integration (BLORIN), Ausgabe 02-03 September 2022, 2022, Seite(n) 1-6, ISBN 978-1-6654-7249-4
Herausgeber: IEEE
DOI: 10.1109/blorin54731.2022.10027938

Optimal Management of Flexibility Services at LV Distribution Grid Level

Autoren: Riccardo NEBULONI, Valentin ILEA, Alberto BERIZZI), Cristian BOVO, Carlo ARRIGONI, Franco CORTI, Brunella Conte
Veröffentlicht in: 27th International Conference on Electricity Distribution (CIRED 2023), Ausgabe 12-15 June 2023, 2023, Seite(n) 2034-2038, ISBN 978-1-83953-855-1
Herausgeber: IET
DOI: 10.1049/icp.2023.1156

Innovative solutions to unlock grid flexibility enabled by EV charging stations: the areti experience in the platone project

Autoren: Ilaria Losa, Mirko Ginocchi, Ercole de Luca, Gabriele Fedele, Olivia Cicala
Veröffentlicht in: CIRED Porto Workshop 2022: E-mobility and power distribution systems, Ausgabe 02-03 June 2022, 2022, Seite(n) 18-22, ISBN 978-1-83953-705-9
Herausgeber: IET
DOI: 10.1049/icp.2022.0653

Innovative solutions to enable flexibility and retail markets in distribution grids: the Platone approach

Autoren: Ilaria Losa, Antonello Monti, Vincenzo Croce, Ercole de Luca, Dimitris Stratogiannis, Benjamin-Georg Petters
Veröffentlicht in: CIRED 2020 Berlin Workshop, Ausgabe 22.-23.09.2020, 2020, Seite(n) pp. 592-595, ISBN 978-1-83953-214-6
Herausgeber: IET
DOI: 10.1049/oap-cired.2021.0124

Balancing PV Generation In Low Voltage Grids With Limited Data

Autoren: Christoph Jätz, Benjamin Petters, Navreet Dult, Amir Ahmadifar, Antonello Monti
Veröffentlicht in: 27th International Conference on Electricity Distribution (CIRED 2023), Ausgabe 12-15 June 2023, 2023, Seite(n) 1255-1259, ISBN 978-1-83953-855-1
Herausgeber: IET
DOI: 10.1049/icp.2023.0690

PLATONE: TOWARDS A NEW OPEN DSO PLATFORM FOR DIGITAL SMART GRID SERVICES AND OPERATION

Autoren: Ilaria Losa, Antonello Monti, Mirko Ginocchi, Vincenzo Croce; Ferdinando Bosco, Ercole de Luca, Gabriele Fedele, Dimitris Stratogiannis, Benjamin Petters
Veröffentlicht in: CIRED 2021, Ausgabe 20.-23.09.2021, 2021
Herausgeber: CIRED

Innovative digital solutions that enable local energy communities to provide flexibility services to the DSO: the Avacon approach

Autoren: Ilaria Losa; Benjamin Georg Peters; Navreet Dult
Veröffentlicht in: 27th International Conference on Electricity Distribution (CIRED 2023), Ausgabe 12-15 June 2023, 2023, Seite(n) 6-10, ISBN 978-1-83953-855-1
Herausgeber: IET
DOI: 10.1049/icp.2023.0230

The Role of Open-Source Software in the Energy Sector

Autoren: Jonathan Klimt, Niklas Eiling, Felix Wege, Jonas Baude, Antonello Monti
Veröffentlicht in: Energies, Ausgabe vol. 16, 2023, 2023, ISSN 1996-1073
Herausgeber: Multidisciplinary Digital Publishing Institute (MDPI)
DOI: 10.3390/en16165855

pymfm—A Python framework for microgrid flexibility management

Autoren: Amir Ahmadifar, Erdem Gümrükcü, Aytug Yavuzer, Florian oppermann, Antonello Monti
Veröffentlicht in: Software Impacts, Ausgabe vol. 19, 2024, 2024, Seite(n) 100603, ISSN 2665-9638
Herausgeber: Elsevier
DOI: 10.1016/j.simpa.2023.100603

Bilevel Optimization Model for the Design of Distribution Use-of-System Tariffs

Autoren: P. Pediaditis, D. Papadaskalopoulos, A. Papavasiliou and N. Hatziargyriou
Veröffentlicht in: IEEE, Ausgabe vol. 9, 2021, 2021, Seite(n) 132928-132939, ISSN 2169-3536
Herausgeber: Institute of Electrical and Electronics Engineers Inc.
DOI: 10.1109/access.2021.3114768

Development of an Energy Management System for a Renewable Energy Community and Performance Analysis via Global Sensitivity Analysis

Autoren: Amir Ahmadifar, Mirko Ginocchi, Megha Shyam Golla, Ferdinanda Ponci, Antonello Monti
Veröffentlicht in: IEEE Access, Ausgabe Vol. 11, 2023, 2023, Seite(n) 4131 - 4154, ISSN 2169-3536
Herausgeber: Institute of Electrical and Electronics Engineers Inc.
DOI: 10.1109/access.2023.3235590

A Service Oriented Architecture for the Digitalization and Automation of Distribution Grids

Autoren: M. Pau, M. Mirz, J. Dinkelbach, P. McKeever, F. Ponci and A. Monti
Veröffentlicht in: IEEE, Ausgabe vol. 10, 2022, 2022, Seite(n) 37050-37063, ISSN 2169-3536
Herausgeber: Institute of Electrical and Electronics Engineers Inc.
DOI: 10.1109/access.2022.3164393

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