
Standardization in Smart Grids by Mathias Uslar
The first successful finished Smart Grid Prototype Projects deliver new requirements and best practices to meet them. These solutions will be the base for the upcoming norms and standards in the near future.
This domain is not only part of one Standard developing Organization (SDO), but also of many different organizations like ITU, ISO, IEC and additionally for the electro mobility part the SAE. This results in many standards which are based on different aspects. Furthermore the European mirror organizations (ETSI,CEN, CENELEC) as well as the German mirror groups of these groups are involved, which are delivering further rules and adaption for the local market. Because of this diversity of organizations involved, it is difficult for the local companies (which includes energy utility, manufacturer and software producer specialized on integration) to identify the relevant trends, standardization groups and technologies necessary.
With the EU Mandate M490 to CEN/CNELEC and TESI and the Commission being a driving force (e.g. ftp://ftp.cencenelec.eu/CENELEC/Smartgrid/SmartGridFinalReport.pdf and http://www.cenelec.eu/aboutcenelec/whatwedo/technologysectors/smartgrids.html) standardization becomes more and more important – but it’s complex and not easy to be understood. Here at OFFIS, we provide training but we are always asked for textbooks on our tranings. Based on our modules for the SG tranings, we would estimate the following chapters to be relevant to SG stakeholders in standardization (roughly 16-20 pages per chapter).
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Regulation of the Power Sector
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Transformer Condition Control
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Distribution System Operation: Flexibility Services
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Converter Topologies for Resonant Wireless Power Transfer
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AC Motor Control Loop Design
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Optimal Power Flow Methods for DC Networks
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Protection of Electrical Power Transmission Systems
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Power Systems Cybersecurity
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Advanced Electrical Drives
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Fault Analysis and Protection System Design for DC Grids
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Applications of Artificial Intelligence in Planning and Operation of Smart Grids
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Digital Protective Schemes for Power Transformer
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Series-Parallel Converter-Based Microgrids
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Distributed Control and Optimization of Networked Microgrids
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Advanced Control and Protection of Modular Uninterruptible Power Supply Systems
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Energy Systems Transition
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High Voltage Measurement Techniques
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Whole Energy Systems
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Reliability of Power Systems
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More-Electronics Power Systems: Power Quality and Stability
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Wide Area Power Systems Stability, Protection, and Security
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Conducted Electromagnetic Interference (EMI) in Smart Grids
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Power Theories for Improved Power Quality
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Sustainable and Safe Nuclear Fission Energy
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Power System Modelling and Scripting
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The Common Information Model CIM
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Flexible AC Transmission Systems: Modelling and Control
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Smart Power Grids 2011
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Monitoring, Control and Protection of Interconnected Power Systems
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High Performance AC Drives
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Control Techniques for Power Converters with Integrated Circuit
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Three-phase AC-AC Power Converters Based on Matrix Converter Topology
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Intelligent Systems and Signal Processing in Power Engineering
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Vector Control of Induction Machines
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Microgrid Architectures, Control and Protection Methods
| SKU | Unavailable |
| ISBN 13 | 9783642349157 |
| ISBN 10 | 3642349153 |
| Title | Standardization in Smart Grids |
| Author | Mathias Uslar |
| Series | Power Systems |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Springer |
| Year published | 2013-01-02 |
| Number of pages | 250 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |


































