软件
计算机科学
工程类
电气工程
控制工程
操作系统
作者
Zimin Jiang,Peng Zhang,Yifan Zhou,Łukasz Kocewiak,Divya Kurthakoti Chandrashekhara,Marie-Lou Picherit,Zefan Tang,Kenneth B. Bowes,Guangya Yang
标识
DOI:10.1109/tpwrs.2024.3444701
摘要
Synchronous condensers (SCs) play important roles in integrating wind energy into relatively weak power grids. However, the design of SCs usually depends on specific application requirements and may not be adaptive enough to the frequently-changing grid conditions caused by the transition from conventional to renewable power generation. This paper devises a software-defined virtual synchronous condenser (SDViSC) method to address the challenges. Our contributions are fourfold: 1) design of a virtual synchronous condenser (ViSC) to enable full converter wind turbines to provide built-in SC functionalities; 2) engineering SDViSCs to transfer hardware-based ViSC controllers into software services, where a Tustin transformation-based software-defined control algorithm guarantees accurate tracking of fast dynamics under limited communication bandwidth; 3) a software-defined networking-enhanced SDViSC communication scheme to allow enhanced communication reliability and reduced communication bandwidth occupation; and 4) Prototype of SDViSC on our real-time, cyber-in-the-loop digital twin of large-wind-farm in an RTDS environment. Extensive test results validate the excellent performance of SDViSC to support reliable and resilient operations of wind farms under various physical and cyber conditions.
科研通智能强力驱动
Strongly Powered by AbleSci AI