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Controller HIL testing of real-time distributed frequency control for future power systems

机译:未来电力系统实时分布式频率控制的控制器HIL测试

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摘要

With the evolution of power system components and structures driven mainly by renewable energy technologies, reliability of the network could be compromised with traditional control methodologies. Therefore, it is crucial to thoroughly validate and test future power system control concepts before deployment. In this paper, a Controller Hardware in the Loop (CHIL) simulation for a real-time distributed control algorithm concept developed within the ELECTRA IRP project is performed. CHIL allows exploration of many real-world issues such as noise, randomness of event timings, and hardware design issues that are often not present on a simulation-only system. Octave has been used as the programming language of the controller in order to facilitate the transition between software simulation and real-time control testing. The distributed controller achieved frequency restoration with a collaborative response between different controllers very fast after the unbalanced area is located.
机译:随着主要由可再生能源技术驱动的电力系统组件和结构的发展,网络的可靠性可能会受到传统控制方法的损害。因此,在部署之前彻底验证和测试未来的电力系统控制概念至关重要。在本文中,针对ELECTRA IRP项目开发的实时分布式控制算法概念,进行了控制器硬件在环(CHIL)仿真。 CHIL允许探索许多现实世界中的问题,例如噪声,事件定时的随机性以及通常在纯仿真系统中不存在的硬件设计问题。 Octave已被用作控制器的编程语言,以促进软件仿真和实时控制测试之间的转换。定位不平衡区域后,分布式控制器可以通过不同控制器之间的协作响应快速恢复频率。

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