European Guide to Smart Energy System Testing [electronic resource] : The ERIGrid 2.0 Approach for Evaluating Complex Smart Energy System Configurations / edited by Thomas I. Strasser, Mihai Calin, Leonard Enrique Ramos Perez.

Інтелектуальна відповідальність: Вид матеріалу: Текст Серія: SpringerBriefs in EnergyПублікація: Cham : Springer Nature Switzerland : Imprint: Springer, 2025Видання: 1st ed. 2025Опис: XV, 132 p. 55 illus., 52 illus. in color. online resourceТип вмісту:
  • text
Тип засобу:
  • computer
Тип носія:
  • online resource
ISBN:
  • 9783031994517
Тематика(и): Додаткові фізичні формати: Printed edition:: Немає назви; Printed edition:: Немає назвиДесяткова класифікація Дьюї:
  • 333.79 23
Класифікація Бібліотеки Конгресу:
  • HD9502-9502.5
Електронне місцезнаходження та доступ:
Вміст:
Towards energy system validation -- Holistic smart energy system validation -- Enhanced validation methods and benchmark -- Extended Co-simulation approaches -- Improved hardware-in-the-loop-based testing -- Laboratory infrastructure integration and automation -- Sector coupling and multi-domain systems validation -- Experiences with smart system integration and validation -- Education needs, methods and tools -- Standardisation, policies and interoperability -- Summary and future directions.
У: Springer Nature eBookЗведення: This open access book is a logical follow-up to European Guide to Power System Testing: The ERIGrid Holistic Approach for Evaluating Complex Smart Grid Configurations. Renewables are pivotal for reducing greenhouse gas emissions and combating global warming. However, their intermittent nature and limited storage capabilities present challenges for power system operators in maintaining power quality and ensuring the security of supply. Meanwhile, advancements in automation and communication technologies provide opportunities for developing intelligent solutions, transforming traditional power systems into Cyber-Physical Energy Systems (CPES). Despite progress, there is a growing need for integrated approaches to evaluate and validate these increasingly complex systems. The ERIGrid 2.0 project addressed this by focusing on the validation and testing of smart grids. The book includes validation scenarios, advanced simulation tools (e.g., co-simulation, real-time simulation, hardware-in-the-loop), and practical test cases. It highlights sector coupling and multi-energy systems as well as RI integration while addressing educational needs to support researchers, industry professionals, policymakers, infrastructure operators, and educators. By bridging smart grids and smart energy systems, ERIGrid 2.0 facilitates the deployment of innovative, sustainable energy solutions, accelerating the transition to resilient and integrated energy systems across Europe.
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Towards energy system validation -- Holistic smart energy system validation -- Enhanced validation methods and benchmark -- Extended Co-simulation approaches -- Improved hardware-in-the-loop-based testing -- Laboratory infrastructure integration and automation -- Sector coupling and multi-domain systems validation -- Experiences with smart system integration and validation -- Education needs, methods and tools -- Standardisation, policies and interoperability -- Summary and future directions.

Open Access

This open access book is a logical follow-up to European Guide to Power System Testing: The ERIGrid Holistic Approach for Evaluating Complex Smart Grid Configurations. Renewables are pivotal for reducing greenhouse gas emissions and combating global warming. However, their intermittent nature and limited storage capabilities present challenges for power system operators in maintaining power quality and ensuring the security of supply. Meanwhile, advancements in automation and communication technologies provide opportunities for developing intelligent solutions, transforming traditional power systems into Cyber-Physical Energy Systems (CPES). Despite progress, there is a growing need for integrated approaches to evaluate and validate these increasingly complex systems. The ERIGrid 2.0 project addressed this by focusing on the validation and testing of smart grids. The book includes validation scenarios, advanced simulation tools (e.g., co-simulation, real-time simulation, hardware-in-the-loop), and practical test cases. It highlights sector coupling and multi-energy systems as well as RI integration while addressing educational needs to support researchers, industry professionals, policymakers, infrastructure operators, and educators. By bridging smart grids and smart energy systems, ERIGrid 2.0 facilitates the deployment of innovative, sustainable energy solutions, accelerating the transition to resilient and integrated energy systems across Europe.

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