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id="order" name="order"><option selected value="-announced_date_first">Announcement date (newest first)</option><option value="announced_date_first">Announcement date (oldest first)</option><option value="-submitted_date">Submission date (newest first)</option><option value="submitted_date">Submission date (oldest first)</option><option value="">Relevance</option></select> </span> </div> <div class="control"> <button class="button is-small is-link">Go</button> </div> </div> </form> </div> </div> <ol class="breathe-horizontal" start="1"> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2404.15796">arXiv:2404.15796</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2404.15796">pdf</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Systems and Control">eess.SY</span> </div> <div class="is-inline-block" style="margin-left: 0.5rem"> <div class="tags has-addons"> <span class="tag is-dark is-size-7">doi</span> <span class="tag is-light is-size-7"><a class="" href="https://doi.org/10.1007/s00502-020-00843-4">10.1007/s00502-020-00843-4 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> Achievements, Experiences, and Lessons Learned from the European Research Infrastructure ERIGrid related to the Validation of Power and Energy Systems </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/eess?searchtype=author&amp;query=Strasser%2C+T+I">T. I. Strasser</a>, <a href="/search/eess?searchtype=author&amp;query=de+Jong%2C+E+C+W">E. C. W. de Jong</a>, <a href="/search/eess?searchtype=author&amp;query=Sosnina%2C+M">M. Sosnina</a>, <a href="/search/eess?searchtype=author&amp;query=Rodriguez-Seco%2C+J+E">J. E. Rodriguez-Seco</a>, <a href="/search/eess?searchtype=author&amp;query=Kotsampopoulos%2C+P">P. Kotsampopoulos</a>, <a href="/search/eess?searchtype=author&amp;query=Babazadeh%2C+D">D. Babazadeh</a>, <a href="/search/eess?searchtype=author&amp;query=M%C3%A4ki%2C+K">K. M盲ki</a>, <a href="/search/eess?searchtype=author&amp;query=Bhandia%2C+R">R. Bhandia</a>, <a href="/search/eess?searchtype=author&amp;query=Brandl%2C+R">R. Brandl</a>, <a href="/search/eess?searchtype=author&amp;query=Sandroni%2C+C">C. Sandroni</a>, <a href="/search/eess?searchtype=author&amp;query=Heussen%2C+K">K. Heussen</a>, <a href="/search/eess?searchtype=author&amp;query=Coffele%2C+F">F. Coffele</a> </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="2404.15796v1-abstract-short" style="display: inline;"> Power system operation is of vital importance and must be developed far beyond today&#39;s practice to meet future needs. Almost all European countries are facing an abrupt and very important increase of renewables with intrinsically varying yields which are difficult to predict. In addition, an increase of new types of electric loads and a reduction of traditional production from bulk generation can&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2404.15796v1-abstract-full').style.display = 'inline'; document.getElementById('2404.15796v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2404.15796v1-abstract-full" style="display: none;"> Power system operation is of vital importance and must be developed far beyond today&#39;s practice to meet future needs. Almost all European countries are facing an abrupt and very important increase of renewables with intrinsically varying yields which are difficult to predict. In addition, an increase of new types of electric loads and a reduction of traditional production from bulk generation can be observed as well. Hence, the level of complexity of system operation steadily increases. Because of these developments, the traditional power system is being transformed into a smart grid. Previous and ongoing research has tended to focus on how specific aspects of smart grids can be developed and validated, but until now there exists no integrated approach for analysing and evaluating complex smart grid configurations. To tackle these research and development needs, a pan-European research infrastructure is realized in the ERIGrid project that supports the technology development as well as the roll out of smart grid technologies and solutions. This paper provides an overview of the main results of ERIGrid which have been achieved during the last four years. Also, experiences and lessons learned are discussed and an outlook to future research needs is provided. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2404.15796v1-abstract-full').style.display = 'none'; document.getElementById('2404.15796v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 24 April, 2024; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> April 2024. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Journal ref:</span> e &amp; i Elektrotechnik und Informationstechnik, 2020 </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/2304.03615">arXiv:2304.03615</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/2304.03615">pdf</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Systems and Control">eess.SY</span> </div> </div> <p class="title is-5 mathjax"> An investigation of factors affecting Fast-Interaction Converter-driven Stability in Microgrids </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/eess?searchtype=author&amp;query=Saridaki%2C+G">Georgia Saridaki</a>, <a href="/search/eess?searchtype=author&amp;query=Paspatis%2C+A+G">Alexandros G. Paspatis</a>, <a href="/search/eess?searchtype=author&amp;query=Kotsampopoulos%2C+P">Panos Kotsampopoulos</a>, <a href="/search/eess?searchtype=author&amp;query=Hatziargyriou%2C+N">Nikos Hatziargyriou</a> </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="2304.03615v1-abstract-short" style="display: inline;"> Massive integration of power electronic devices with multiple control schemes in a wide frequency range pose new challenges regarding systems stability and reliability. Interactions between the fast control loops or between the fast control loops and passive elements of the grid, have been reported in literature and have led to introducing a new type of stability: the Fast-Interaction Converter-dr&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2304.03615v1-abstract-full').style.display = 'inline'; document.getElementById('2304.03615v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="2304.03615v1-abstract-full" style="display: none;"> Massive integration of power electronic devices with multiple control schemes in a wide frequency range pose new challenges regarding systems stability and reliability. Interactions between the fast control loops or between the fast control loops and passive elements of the grid, have been reported in literature and have led to introducing a new type of stability: the Fast-Interaction Converter-driven Stability (FICDS). In this paper, factors affecting the FICDS, such as tuning controller parameters, line parameters, number of interconnected inverters, are explored in four microgrid topologies, operating in grid connected and islanded mode. With the use of an impedance based model which tracks the poles of the CDS transfer functions of each system, their stability has been assessed. The obtained results have been verified via time-domain simulations. Simulations from the islanded microgrid of Gaidouromantra in Greece showcase the impact of the control parameters on the operation of the system and indicate the need for further investigation. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('2304.03615v1-abstract-full').style.display = 'none'; document.getElementById('2304.03615v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 7 April, 2023; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> April 2023. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">Accepted for presentation to the International Conference on Power Systems Transients (IPST2023) which will be held Thessaloniki, Greece, June 12-15, 2023</span> </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/1812.09007">arXiv:1812.09007</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/1812.09007">pdf</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Systems and Control">eess.SY</span> </div> <div class="is-inline-block" style="margin-left: 0.5rem"> <div class="tags has-addons"> <span class="tag is-dark is-size-7">doi</span> <span class="tag is-light is-size-7"><a class="" href="https://doi.org/10.1109/CompEng.2018.8536223">10.1109/CompEng.2018.8536223 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> Advanced Testing Chain Supporting the Validation of Smart Grid Systems and Technologies </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/eess?searchtype=author&amp;query=Brandl%2C+R">Ron Brandl</a>, <a href="/search/eess?searchtype=author&amp;query=Kotsampopoulos%2C+P">Panos Kotsampopoulos</a>, <a href="/search/eess?searchtype=author&amp;query=Lauss%2C+G">Georg Lauss</a>, <a href="/search/eess?searchtype=author&amp;query=Maniatopoulos%2C+M">Marios Maniatopoulos</a>, <a href="/search/eess?searchtype=author&amp;query=Nuschke%2C+M">Maria Nuschke</a>, <a href="/search/eess?searchtype=author&amp;query=Montoya%2C+J">Juan Montoya</a>, <a href="/search/eess?searchtype=author&amp;query=Strasser%2C+T">Thomas Strasser</a>, <a href="/search/eess?searchtype=author&amp;query=Strauss-Mincu%2C+D">Diana Strauss-Mincu</a> </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="1812.09007v1-abstract-short" style="display: inline;"> New testing and development procedures and methods are needed to address topics like power system stability, operation and control in the context of grid integration of rapidly developing smart grid technologies. In this context, individual testing of units and components has to be reconsidered and appropriate testing procedures and methods need to be described and implemented. This paper addresse&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1812.09007v1-abstract-full').style.display = 'inline'; document.getElementById('1812.09007v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="1812.09007v1-abstract-full" style="display: none;"> New testing and development procedures and methods are needed to address topics like power system stability, operation and control in the context of grid integration of rapidly developing smart grid technologies. In this context, individual testing of units and components has to be reconsidered and appropriate testing procedures and methods need to be described and implemented. This paper addresses these needs by proposing a holistic and enhanced testing methodology that integrates simulation/software- and hardware-based testing infrastructure. This approach presents the advantage of a testing environment, which is very close to f i eld testing, includes the grid dynamic behavior feedback and is risks-free for the power system, for the equipment under test and for the personnel executing the tests. Furthermore, this paper gives an overview of successful implementation of the proposed testing approach within different testing infrastructure available at the premises of different research institutes in Europe. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1812.09007v1-abstract-full').style.display = 'none'; document.getElementById('1812.09007v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 21 December, 2018; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> December 2018. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">2018 IEEE Workshop on Complexity in Engineering (COMPENG)</span> </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/1710.04131">arXiv:1710.04131</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/1710.04131">pdf</a>, <a href="https://arxiv.org/format/1710.04131">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Computers and Society">cs.CY</span> <span class="tag is-small is-grey tooltip is-tooltip-top" data-tooltip="Systems and Control">eess.SY</span> </div> <div class="is-inline-block" style="margin-left: 0.5rem"> <div class="tags has-addons"> <span class="tag is-dark is-size-7">doi</span> <span class="tag is-light is-size-7"><a class="" href="https://doi.org/10.1007/978-3-319-64635-0_15">10.1007/978-3-319-64635-0_15 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> Validating Intelligent Power and Energy Systems - A Discussion of Educational Needs </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/eess?searchtype=author&amp;query=Kotsampopoulos%2C+P">Panos Kotsampopoulos</a>, <a href="/search/eess?searchtype=author&amp;query=Hatziargyriou%2C+N">Nikos Hatziargyriou</a>, <a href="/search/eess?searchtype=author&amp;query=Strasser%2C+T+I">Thomas I. Strasser</a>, <a href="/search/eess?searchtype=author&amp;query=Moyo%2C+C">Cyndi Moyo</a>, <a href="/search/eess?searchtype=author&amp;query=Rohjans%2C+S">Sebastian Rohjans</a>, <a href="/search/eess?searchtype=author&amp;query=Steinbrink%2C+C">Cornelius Steinbrink</a>, <a href="/search/eess?searchtype=author&amp;query=Lehnhoff%2C+S">Sebastian Lehnhoff</a>, <a href="/search/eess?searchtype=author&amp;query=Palensky%2C+P">Peter Palensky</a>, <a href="/search/eess?searchtype=author&amp;query=van+der+Meer%2C+A+A">Arjen A. van der Meer</a>, <a href="/search/eess?searchtype=author&amp;query=Bondy%2C+D+E+M">Daniel Esteban Morales Bondy</a>, <a href="/search/eess?searchtype=author&amp;query=Heussen%2C+K">Kai Heussen</a>, <a href="/search/eess?searchtype=author&amp;query=Calin%2C+M">Mihai Calin</a>, <a href="/search/eess?searchtype=author&amp;query=Khavari%2C+A">Ata Khavari</a>, <a href="/search/eess?searchtype=author&amp;query=Sosnina%2C+M">Maria Sosnina</a>, <a href="/search/eess?searchtype=author&amp;query=Rodriguez%2C+J+E">J. Emilio Rodriguez</a>, <a href="/search/eess?searchtype=author&amp;query=Burt%2C+G+M">Graeme M. Burt</a> </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="1710.04131v1-abstract-short" style="display: inline;"> Traditional power systems education and training is flanked by the demand for coping with the rising complexity of energy systems, like the integration of renewable and distributed generation, communication, control and information technology. A broad understanding of these topics by the current/future researchers and engineers is becoming more and more necessary. This paper identifies educational&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1710.04131v1-abstract-full').style.display = 'inline'; document.getElementById('1710.04131v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="1710.04131v1-abstract-full" style="display: none;"> Traditional power systems education and training is flanked by the demand for coping with the rising complexity of energy systems, like the integration of renewable and distributed generation, communication, control and information technology. A broad understanding of these topics by the current/future researchers and engineers is becoming more and more necessary. This paper identifies educational and training needs addressing the higher complexity of intelligent energy systems. Education needs and requirements are discussed, such as the development of systems-oriented skills and cross-disciplinary learning. Education and training possibilities and necessary tools are described focusing on classroom but also on laboratory-based learning methods. In this context, experiences of using notebooks, co-simulation approaches, hardware-in-the-loop methods and remote labs experiments are discussed. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1710.04131v1-abstract-full').style.display = 'none'; document.getElementById('1710.04131v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 6 October, 2017; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> October 2017. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">8th International Conference on Industrial Applications of Holonic and Multi-Agent Systems (HoloMAS 2017)</span> </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/1710.02315">arXiv:1710.02315</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/1710.02315">pdf</a>, <a href="https://arxiv.org/format/1710.02315">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Systems and Control">eess.SY</span> </div> <div class="is-inline-block" style="margin-left: 0.5rem"> <div class="tags has-addons"> <span class="tag is-dark is-size-7">doi</span> <span class="tag is-light is-size-7"><a class="" href="https://doi.org/10.1007/978-3-319-64635-0_13">10.1007/978-3-319-64635-0_13 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> Simulation-based Validation of Smart Grids - Status Quo and Future Research Trends </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/eess?searchtype=author&amp;query=Steinbrink%2C+C">Cornelius Steinbrink</a>, <a href="/search/eess?searchtype=author&amp;query=Lehnhoff%2C+S">Sebastian Lehnhoff</a>, <a href="/search/eess?searchtype=author&amp;query=Rohjans%2C+S">Sebastian Rohjans</a>, <a href="/search/eess?searchtype=author&amp;query=Strasser%2C+T+I">Thomas I. Strasser</a>, <a href="/search/eess?searchtype=author&amp;query=Widl%2C+E">Edmund Widl</a>, <a href="/search/eess?searchtype=author&amp;query=Moyo%2C+C">Cyndi Moyo</a>, <a href="/search/eess?searchtype=author&amp;query=Lauss%2C+G">Georg Lauss</a>, <a href="/search/eess?searchtype=author&amp;query=Lehfuss%2C+F">Felix Lehfuss</a>, <a href="/search/eess?searchtype=author&amp;query=Faschang%2C+M">Mario Faschang</a>, <a href="/search/eess?searchtype=author&amp;query=Palensky%2C+P">Peter Palensky</a>, <a href="/search/eess?searchtype=author&amp;query=van+der+Meer%2C+A+A">Arjen A. van der Meer</a>, <a href="/search/eess?searchtype=author&amp;query=Heussen%2C+K">Kai Heussen</a>, <a href="/search/eess?searchtype=author&amp;query=Gehrke%2C+O">Oliver Gehrke</a>, <a href="/search/eess?searchtype=author&amp;query=Guillo-Sansano%2C+E">Efren Guillo-Sansano</a>, <a href="/search/eess?searchtype=author&amp;query=Syed%2C+M+H">Mazheruddin H. Syed</a>, <a href="/search/eess?searchtype=author&amp;query=Emhemed%2C+A">Abdullah Emhemed</a>, <a href="/search/eess?searchtype=author&amp;query=Brandl%2C+R">Ron Brandl</a>, <a href="/search/eess?searchtype=author&amp;query=Nguyen%2C+V+H">Van Hoa Nguyen</a>, <a href="/search/eess?searchtype=author&amp;query=Khavari%2C+A">Ata Khavari</a>, <a href="/search/eess?searchtype=author&amp;query=Tran%2C+Q+T">Quoc Tuan Tran</a>, <a href="/search/eess?searchtype=author&amp;query=Kotsampopoulos%2C+P">Panos Kotsampopoulos</a>, <a href="/search/eess?searchtype=author&amp;query=Hatziargyriou%2C+N">Nikos Hatziargyriou</a>, <a href="/search/eess?searchtype=author&amp;query=Akroud%2C+A">Akroud Akroud</a>, <a href="/search/eess?searchtype=author&amp;query=Rikos%2C+E">Evangelos Rikos</a>, <a href="/search/eess?searchtype=author&amp;query=Degefa%2C+M+Z">Merkebu Z. Degefa</a> </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="1710.02315v1-abstract-short" style="display: inline;"> Smart grid systems are characterized by high complexity due to interactions between a traditional passive network and active power electronic components, coupled using communication links. Additionally, automation and information technology plays an important role in order to operate and optimize such cyber-physical energy systems with a high(er) penetration of fluctuating renewable generation and&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1710.02315v1-abstract-full').style.display = 'inline'; document.getElementById('1710.02315v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="1710.02315v1-abstract-full" style="display: none;"> Smart grid systems are characterized by high complexity due to interactions between a traditional passive network and active power electronic components, coupled using communication links. Additionally, automation and information technology plays an important role in order to operate and optimize such cyber-physical energy systems with a high(er) penetration of fluctuating renewable generation and controllable loads. As a result of these developments the validation on the system level becomes much more important during the whole engineering and deployment process, today. In earlier development stages and for larger system configurations laboratory-based testing is not always an option. Due to recent developments, simulation-based approaches are now an appropriate tool to support the development, implementation, and roll-out of smart grid solutions. This paper discusses the current state of simulation-based approaches and outlines the necessary future research and development directions in the domain of power and energy systems. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1710.02315v1-abstract-full').style.display = 'none'; document.getElementById('1710.02315v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 6 October, 2017; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> October 2017. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">8th International Conference on Industrial Applications of Holonic and Multi-Agent Systems (HoloMAS 2017)</span> </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/1710.02312">arXiv:1710.02312</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/1710.02312">pdf</a>, <a href="https://arxiv.org/format/1710.02312">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Systems and Control">eess.SY</span> </div> <div class="is-inline-block" style="margin-left: 0.5rem"> <div class="tags has-addons"> <span class="tag is-dark is-size-7">doi</span> <span class="tag is-light is-size-7"><a class="" href="https://doi.org/10.1007/978-3-319-64635-0_12">10.1007/978-3-319-64635-0_12 <i class="fa fa-external-link" aria-hidden="true"></i></a></span> </div> </div> </div> <p class="title is-5 mathjax"> An Integrated Research Infrastructure for Validating Cyber-Physical Energy Systems </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/eess?searchtype=author&amp;query=Strasser%2C+T+I">Thomas I. Strasser</a>, <a href="/search/eess?searchtype=author&amp;query=Moyo%2C+C">Cyndi Moyo</a>, <a href="/search/eess?searchtype=author&amp;query=Br%C3%BCndlinger%2C+R">Roland Br眉ndlinger</a>, <a href="/search/eess?searchtype=author&amp;query=Lehnhoff%2C+S">Sebastian Lehnhoff</a>, <a href="/search/eess?searchtype=author&amp;query=Blank%2C+M">Marita Blank</a>, <a href="/search/eess?searchtype=author&amp;query=Palensky%2C+P">Peter Palensky</a>, <a href="/search/eess?searchtype=author&amp;query=van+der+Meer%2C+A+A">Arjen A. van der Meer</a>, <a href="/search/eess?searchtype=author&amp;query=Heussen%2C+K">Kai Heussen</a>, <a href="/search/eess?searchtype=author&amp;query=Gehrke%2C+O">Oliver Gehrke</a>, <a href="/search/eess?searchtype=author&amp;query=Rodriguez%2C+J+E">J. Emilio Rodriguez</a>, <a href="/search/eess?searchtype=author&amp;query=Merino%2C+J">Julia Merino</a>, <a href="/search/eess?searchtype=author&amp;query=Sandroni%2C+C">Carlo Sandroni</a>, <a href="/search/eess?searchtype=author&amp;query=Verga%2C+M">Maurizio Verga</a>, <a href="/search/eess?searchtype=author&amp;query=Calin%2C+M">Mihai Calin</a>, <a href="/search/eess?searchtype=author&amp;query=Khavari%2C+A">Ata Khavari</a>, <a href="/search/eess?searchtype=author&amp;query=Sosnina%2C+M">Maria Sosnina</a>, <a href="/search/eess?searchtype=author&amp;query=de+Jong%2C+E">Erik de Jong</a>, <a href="/search/eess?searchtype=author&amp;query=Rohjans%2C+S">Sebastian Rohjans</a>, <a href="/search/eess?searchtype=author&amp;query=Kulmala%2C+A">Anna Kulmala</a>, <a href="/search/eess?searchtype=author&amp;query=M%C3%A4ki%2C+K">Kari M盲ki</a>, <a href="/search/eess?searchtype=author&amp;query=Brandl%2C+R">Ron Brandl</a>, <a href="/search/eess?searchtype=author&amp;query=Coffele%2C+F">Federico Coffele</a>, <a href="/search/eess?searchtype=author&amp;query=Burt%2C+G+M">Graeme M. Burt</a>, <a href="/search/eess?searchtype=author&amp;query=Kotsampopoulos%2C+P">Panos Kotsampopoulos</a>, <a href="/search/eess?searchtype=author&amp;query=Hatziargyriou%2C+N">Nikos Hatziargyriou</a> </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="1710.02312v1-abstract-short" style="display: inline;"> Renewables are key enablers in the plight to reduce greenhouse gas emissions and cope with anthropogenic global warming. The intermittent nature and limited storage capabilities of renewables culminate in new challenges that power system operators have to deal with in order to regulate power quality and ensure security of supply. At the same time, the increased availability of advanced automation&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1710.02312v1-abstract-full').style.display = 'inline'; document.getElementById('1710.02312v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="1710.02312v1-abstract-full" style="display: none;"> Renewables are key enablers in the plight to reduce greenhouse gas emissions and cope with anthropogenic global warming. The intermittent nature and limited storage capabilities of renewables culminate in new challenges that power system operators have to deal with in order to regulate power quality and ensure security of supply. At the same time, the increased availability of advanced automation and communication technologies provides new opportunities for the derivation of intelligent solutions to tackle the challenges. Previous work has shown various new methods of operating highly interconnected power grids, and their corresponding components, in a more effective way. As a consequence of these developments, the traditional power system is being transformed into a cyber-physical energy system, a smart grid. Previous and ongoing research have tended to mainly focus on how specific aspects of smart grids can be validated, but until there exists no integrated approach for the analysis and evaluation of complex cyber-physical systems configurations. This paper introduces integrated research infrastructure that provides methods and tools for validating smart grid systems in a holistic, cyber-physical manner. The corresponding concepts are currently being developed further in the European project ERIGrid. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1710.02312v1-abstract-full').style.display = 'none'; document.getElementById('1710.02312v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 6 October, 2017; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> October 2017. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">8th International Conference on Industrial Applications of Holonic and Multi-Agent Systems (HoloMAS 2017)</span> </p> </li> <li class="arxiv-result"> <div class="is-marginless"> <p class="list-title is-inline-block"><a href="https://arxiv.org/abs/1710.02306">arXiv:1710.02306</a> <span>&nbsp;[<a href="https://arxiv.org/pdf/1710.02306">pdf</a>, <a href="https://arxiv.org/format/1710.02306">other</a>]&nbsp;</span> </p> <div class="tags is-inline-block"> <span class="tag is-small is-link tooltip is-tooltip-top" data-tooltip="Systems and Control">eess.SY</span> </div> </div> <p class="title is-5 mathjax"> Real-Time Simulation and Hardware-in-the-Loop Approaches for Integrating Renewable Energy Sources into Smart Grids: Challenges &amp; Actions </p> <p class="authors"> <span class="search-hit">Authors:</span> <a href="/search/eess?searchtype=author&amp;query=Nguyen%2C+V+H">Van Hoa Nguyen</a>, <a href="/search/eess?searchtype=author&amp;query=Besanger%2C+Y">Yvon Besanger</a>, <a href="/search/eess?searchtype=author&amp;query=Tran%2C+Q+T">Quoc Tuan Tran</a>, <a href="/search/eess?searchtype=author&amp;query=Nguyen%2C+T+L">Tung Lam Nguyen</a>, <a href="/search/eess?searchtype=author&amp;query=Boudinet%2C+C">Cederic Boudinet</a>, <a href="/search/eess?searchtype=author&amp;query=Brandl%2C+R">Ron Brandl</a>, <a href="/search/eess?searchtype=author&amp;query=Marten%2C+F">Frank Marten</a>, <a href="/search/eess?searchtype=author&amp;query=Markou%2C+A">Achilleas Markou</a>, <a href="/search/eess?searchtype=author&amp;query=Kotsampopoulos%2C+P">Panos Kotsampopoulos</a>, <a href="/search/eess?searchtype=author&amp;query=van+der+Meer%2C+A+A">Arjen A. van der Meer</a>, <a href="/search/eess?searchtype=author&amp;query=Guillo-Sansano%2C+E">Effren Guillo-Sansano</a>, <a href="/search/eess?searchtype=author&amp;query=Lauss%2C+G">Georg Lauss</a>, <a href="/search/eess?searchtype=author&amp;query=Strasser%2C+T+I">Thomas I. Strasser</a>, <a href="/search/eess?searchtype=author&amp;query=Heussen%2C+K">Kai Heussen</a> </p> <p class="abstract mathjax"> <span class="has-text-black-bis has-text-weight-semibold">Abstract</span>: <span class="abstract-short has-text-grey-dark mathjax" id="1710.02306v1-abstract-short" style="display: inline;"> The integration of distributed renewable energy sources and the multi-domain behaviours inside the cyber-physical energy system (smart grids) draws up major challenges. Their validation and roll out requires careful assessment, in term of modelling, simulation and testing. The traditional approach focusing on a particular object, actual hardware or a detailed model, while drastically simplifying t&hellip; <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1710.02306v1-abstract-full').style.display = 'inline'; document.getElementById('1710.02306v1-abstract-short').style.display = 'none';">&#9661; More</a> </span> <span class="abstract-full has-text-grey-dark mathjax" id="1710.02306v1-abstract-full" style="display: none;"> The integration of distributed renewable energy sources and the multi-domain behaviours inside the cyber-physical energy system (smart grids) draws up major challenges. Their validation and roll out requires careful assessment, in term of modelling, simulation and testing. The traditional approach focusing on a particular object, actual hardware or a detailed model, while drastically simplifying the remainder of the system under test, is no longer sufficient. Real-time simulation and Hardware-in-the-Loop (HIL) techniques emerge as indispensable tools for validating the behaviour of renewable sources as well as their impact/interaction to with the cyber-physical energy system. This paper aims to provide an overview of the present status-quo of real-time and HIL approaches used for smart grids and their readiness for cyber-physical experiments. We investigate the current limitations of HIL techniques and point out necessary future developments. Subsequently, the paper highlights challenges that need specific attention as well as ongoing actions and further research directions. <a class="is-size-7" style="white-space: nowrap;" onclick="document.getElementById('1710.02306v1-abstract-full').style.display = 'none'; document.getElementById('1710.02306v1-abstract-short').style.display = 'inline';">&#9651; Less</a> </span> </p> <p class="is-size-7"><span class="has-text-black-bis has-text-weight-semibold">Submitted</span> 6 October, 2017; <span class="has-text-black-bis has-text-weight-semibold">originally announced</span> October 2017. </p> <p class="comments is-size-7"> <span class="has-text-black-bis has-text-weight-semibold">Comments:</span> <span class="has-text-grey-dark mathjax">IEEE PES Innovative Smart Grid Technologies ISGT Asia 2017</span> </p> </li> </ol> <div class="is-hidden-tablet"> <!-- feedback for mobile only --> <span class="help" style="display: inline-block;"><a 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