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Real-time simulation and hardware-in-the-loop approaches for integrating renewable energy sources into smart grids  : challenges actions

机译:将可再生能源整合到智能电网中的实时仿真和硬件在环方法:挑战与行动

摘要

The integration of distributed renewable energy sources and the multi-domain behaviours inside the cyber-physical energy system (smart grids) draws up major challenges. Their validation and roll out requires careful assessment, in term of modelling, simulation and testing. The traditional approach focusing on a particular object, actual hardware or a detailed model, while drastically simplifying the remainder of the system under test, is no longer sufficient. Real-time simulation and Hardware-in-the-Loop (HIL) techniques emerge as indispensable tools for validating the behaviour of renewable sources as well as their impact/interaction to with the cyber-physical energy system. This paper aims to provide an overview of the present status-quo of real-time and HIL approaches used for smart grids and their readiness for cyber-physical experiments. We investigate the current limitations of HIL techniques and point out necessary future developments. Subsequently, the paper highlights challenges that need specific attention as well as ongoing actions and further research directions.
机译:分布式可再生能源与网络物理能源系统(智能电网)内部的多域行为的集成提出了重大挑战。他们的验证和推出需要在建模,仿真和测试方面进行仔细评估。集中于特定对象,实际硬件或详细模型的传统方法虽然大大简化了被测系统的其余部分,但已不再足够。实时仿真和硬件在环(HIL)技术是不可或缺的工具,可用于验证可再生资源的行为及其对网络物理能源系统的影响/相互作用。本文旨在概述用于智能电网的实时和HIL方法的现状以及它们对网络物理实验的准备情况。我们调查了HIL技术的当前局限性,并指出了必要的未来发展。随后,本文重点介绍了需要特别关注的挑战以及正在进行的行动和进一步的研究方向。

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