Flexitranstore Special Session in the 21st International Symposium on High Voltage Engineering (ISH 2019)
This open access book comprises 10 high-level papers on research and innovation within the Flexitranstore Project that were presented at the FLEXITRANSTORE special session organized as part of the 21st International Symposium on High Voltage Engineering. FLEXITRANSTORE (An Integrated Platform for In...
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| Hlavní autori: | , |
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| Médium: | E-kniha |
| Jazyk: | English |
| Vydavateľské údaje: |
Netherlands
Springer Nature
2020
Springer International Publishing AG |
| Vydanie: | 1 |
| Edícia: | Lecture Notes in Electrical Engineering |
| Predmet: | |
| ISBN: | 9783030378189, 3030378187, 3030378179, 9783030378172 |
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| Abstract | This open access book comprises 10 high-level papers on research and innovation within the Flexitranstore Project that were presented at the FLEXITRANSTORE special session organized as part of the 21st International Symposium on High Voltage Engineering. FLEXITRANSTORE (An Integrated Platform for Increased FLEXIbility in smart TRANSmission grids with STORage Entities and large penetration of Renewable Energy Sources) aims to contribute to the development of a pan-European transmission network with high flexibility and high interconnection levels. This will facilitate the transformation of the current energy production mix by hosting an increasing share of renewable energy sources. Novel smart grid technologies, control and storage methods, and new market approaches will be developed, installed, demonstrated, and tested introducing flexibility to the European power system. FLEXITRANSTORE is developing a next-generation Flexible Energy Grid (FEG) that will be integrated into the European Internal Energy Market (IEM) through the valorization of flexibility services. This FEG addresses the capabilities of a power system to maintain continuous service in the face of rapid and large swings in supply or demand. As such, a wholesale market infrastructure and new business models within this integrated FEG must be upgraded for network players, and offer incentives for new ones to join, while at the same time demonstrating new business perspectives for cross-border resource management and energy trading. |
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| AbstractList | This open access book comprises 10 high-level papers on research and innovation within the Flexitranstore Project that were presented at the FLEXITRANSTORE special session organized as part of the 21st International Symposium on High Voltage Engineering. FLEXITRANSTORE (An Integrated Platform for Increased FLEXIbility in smart TRANSmission grids with STORage Entities and large penetration of Renewable Energy Sources) aims to contribute to the development of a pan-European transmission network with high flexibility and high interconnection levels. This will facilitate the transformation of the current energy production mix by hosting an increasing share of renewable energy sources. Novel smart grid technologies, control and storage methods, and new market approaches will be developed, installed, demonstrated, and tested introducing flexibility to the European power system. FLEXITRANSTORE is developing a next-generation Flexible Energy Grid (FEG) that will be integrated into the European Internal Energy Market (IEM) through the valorization of flexibility services. This FEG addresses the capabilities of a power system to maintain continuous service in the face of rapid and large swings in supply or demand. As such, a wholesale market infrastructure and new business models within this integrated FEG must be upgraded for network players, and offer incentives for new ones to join, while at the same time demonstrating new business perspectives for cross-border resource management and energy trading. |
| Author | Németh, Bálint Ekonomou, Lambros |
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| Editor | Ekonomou, Lambros Németh, Bálint |
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| Notes | Electronic reproduction. Dordrecht: Springer, 2020. Requires the Libby app or a modern web browser. |
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| PageCount | 122 |
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| Snippet | This open access book comprises 10 high-level papers on research and innovation within the Flexitranstore Project that were presented at the FLEXITRANSTORE... |
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| Subtitle | Special Session in the 21st International Symposium on High Voltage Engineering (ISH 2019) |
| TableOfContents | Acknowledgments -- References -- Zero Renewable Incentive Analysis for Flexibility Study of a Grid -- Abstract -- 1 Introduction -- 2 Assumptions and Structure -- 2.1 Reserve -- 2.2 Flexibility Index -- 3 Modelling -- 3.1 Mathematical Formulation -- 3.2 Case Studies -- 3.3 Input Data -- 4 Results -- 5 Conclusions -- Acknowledgments -- References -- Conflict of Interests Between SPC-Based BESS and UFLS Scheme Frequency Responses -- Abstract -- 1 Introduction -- 2 Impact of BESS Inertia and Droop Characteristic on Frequency Response -- 2.1 Unified Discretized System Frequency Response -- 2.2 System Acceleration Behaviour -- 2.3 BESS as a State Feedback Controller -- 2.4 Discussion on BESS Frequency Response -- 3 Response-Driven UFLS as a Non-linear State Feedback Controller -- 3.1 Discussion on UFLS and BESS Mutual Effect -- 4 Studied System -- 4.1 System Modelling and Characteristics -- 4.2 Conflict of Interests -- 5 Conclusion -- Acknowledgments -- References -- Power System Studies in the Clean Energy Era: From Capacity to Flexibility Adequacy Through Research and Innovation -- Abstract -- 1 Introduction -- 2 The Need for Flexibility Assessment -- 3 Flexibility Research and Innovation in the Horizon 2020 Context: The FLEXITRANSTORE Project -- 4 Stakeholders' Opinion on Flexibility Challenges: Where We Are Today and Future Prospects-Aspirations -- 5 Conclusions -- Acknowledgment -- References -- Battery Energy Storage System Integration in a Combined Cycle Power Plant for the Purpose of the Angular and Voltage Stability -- Abstract -- 1 Introduction -- 2 Hybrid System -- 2.1 Combined Cycles Gas Turbine -- 2.2 Battery Energy Storage System -- 3 Angular and Voltage Stability Services -- 3.1 QE1: Transient Angular Stability -- 3.2 QE2: Small-Signal Stability -- 3.3 QE3: Voltage Regulation -- 3.4 QE4: Disturbances Reduction 4 Sizing and Benefit of the Solution -- 5 Conclusions -- Acknowledgment -- References -- Synchrophasor Based Monitoring System for Grid Interactive Energy Storage System Control -- Abstract -- 1 Introduction -- 2 Synchrophasor Measurements Integration into Control -- 2.1 Synchrophasor Measurement Technologies -- 2.2 General Structure of SMT Integration into GI-ESS Control -- 2.3 Proposed WAMS-Based Solution for Monitoring System -- 3 WAMS-Based Power Oscillation Damping -- 4 Simulation and Results -- 5 Conclusion -- References -- Icing Analysis of Kleče-Logatec Transmission Line with Two-Level Icing Model -- Abstract -- 1 Introduction -- 2 BME's Ice Prediction Model -- 3 Ice Detection System of OTLM -- 3.1 Development of OTLM Line Monitoring Sensor -- 3.2 OTLM's Ice Detection Function -- 4 Two-Level Icing Model -- 5 Case Studies -- 5.1 20 November 2018 -- 5.2 18 January 2019 -- 5.3 Summary of Case Studies -- 6 Conclusion -- Acknowledgements -- References Intro -- Contents -- Assessing the Operational Flexibility in Power Systems with Energy Storage Integration -- Abstract -- 1 Introduction -- 2 Flexibility Index Calculation -- 3 Unit Commitment Formulation -- 3.1 Objective Function -- 3.2 Constraints -- 4 Upward and Downward Flexibility -- 5 Simulation Results -- 6 Conclusions -- Acknowledgments -- References -- Enabling Flexibility Through Wholesale Market Changes - A European Case Study -- Abstract -- 1 Introduction -- 2 Market Requirements and Options for Flexiblity -- 3 Flexibility in Ancillary Services Markets -- 3.1 Market Design Space -- 3.2 Analysis of Settings in European Markets -- 3.3 Possible Changes: Ancillary Services Markets -- 4 Flexibility in Balancing Markets -- 4.1 Market Design Space -- 4.2 Possible Changes: Balancing Markets -- 5 Flexibility in Intraday Markets -- 5.1 Proposed Changes: Intraday Markets -- 6 Conclusions -- Acknowledgments -- References -- Increasing the Flexibility of Continuous Intraday Markets in Europe -- Abstract -- 1 Introduction -- 2 Increasing Market Flexibility -- 2.1 Focusing on the Intraday Market -- 2.2 The Connection of Market Flexibility and Liquidity -- 2.3 Increasing Market Liquidity and Thus Flexibility -- 3 Flexibility Product Development -- 3.1 The Review of Current Intraday Markets -- 3.2 Flexibility Products on the Day-Ahead Market -- 3.3 NEW Flexibility Product Suggestions for the Intraday Market -- 4 Conclusions -- Acknowledgments -- References -- An Improved Flexibility Metric Based on Kernel Density Estimators Applied on the Greek Power System -- Abstract -- 1 Introduction -- 2 Preliminaries in Flexibility -- 2.1 Net Load Ramps -- 2.2 Available Resource Flexibility -- 2.3 System Flexibility -- 3 Flexibility Metrics -- 3.1 IRRE -- 3.2 The Proposed Metric -- 4 Unit Commitment Problem Formulation -- 5 Results -- 6 Conclusions |
| Title | Flexitranstore |
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