基于仿真的智能电网验证——现状与未来研究趋势
系统与控制
2017-10-09 v1
摘要
智能电网系统由于传统被动网络与主动电力电子元件通过通信链路耦合而具有高复杂性。此外,自动化和信息技术对操作和优化此类具有较高波动可再生能源和可控制负荷渗透率的信息物理能源系统起着重要作用。这些发展的结果是,系统级验证在当今整个工程和部署过程中变得更加重要。在早期开发阶段和较大系统配置下,基于实验室的测试并不总是可行。由于近期发展,基于仿真的方法现在是支持智能电网解决方案开发、实施和推广的合适工具。本文讨论基于仿真方法的当前状态,并概述电力与能源系统领域必要的未来研究和发展方向。
引用
@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}
}
备注
8th International Conference on Industrial Applications of Holonic and Multi-Agent Systems (HoloMAS 2017)