Simulation-based Validation of Smart Grids - Status Quo and Future Research Trends
Abstract
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.
Keywords
Cite
@article{arxiv.1710.02315,
title = {Simulation-based Validation of Smart Grids - Status Quo and Future Research Trends},
author = {Cornelius Steinbrink and Sebastian Lehnhoff and Sebastian Rohjans and Thomas I. Strasser and Edmund Widl and Cyndi Moyo and Georg Lauss and Felix Lehfuss and Mario Faschang and Peter Palensky and Arjen A. van der Meer and Kai Heussen and Oliver Gehrke and Efren Guillo-Sansano and Mazheruddin H. Syed and Abdullah Emhemed and Ron Brandl and Van Hoa Nguyen and Ata Khavari and Quoc Tuan Tran and Panos Kotsampopoulos and Nikos Hatziargyriou and Akroud Akroud and Evangelos Rikos and Merkebu Z. Degefa},
journal= {arXiv preprint arXiv:1710.02315},
year = {2017}
}
Comments
8th International Conference on Industrial Applications of Holonic and Multi-Agent Systems (HoloMAS 2017)