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An Adaptive Zone-Division-Based Automatic Voltage Control System With Applications in China

机译:基于自适应分区的自动电压控制系统在中国的应用

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The power industry in China has grown significantly over the past decade, spurring the adoption of system-wide automatic voltage control (AVC) technology to meet stricter requirements for security and economical power system operation. To cope with the rapidly developing and frequently changing Chinese power grid, an AVC scheme based on adaptive zone division is introduced in this paper. Logically, this type of system has a three-level hierarchical structure, but, here, both secondary voltage control (SVC) and tertiary voltage control (TVC) are implemented via software at the same control center. The control zones are no longer fixed but are reconfigured online and updated in accordance with variations in the grid structure. The technical details of these procedures are presented here. The implementation of TVC (which is based on an online reactive optimal power flow) and SVC are also discussed, together with some technical details on improvements to their reliability and robustness. Some results obtained from field-site applications based on similar-days testing rather than simulations are employed to evaluate the performance and improvements of the AVC system. This system has been installed at over 20 control centers in China.
机译:在过去的十年中,中国的电力行业取得了长足的发展,促使人们采用系统范围内的自动电压控制(AVC)技术来满足对安全性和经济性电力系统运行的更严格要求。为了适应快速发展和频繁变化的中国电网,本文提出了一种基于自适应区域划分的AVC方案。从逻辑上讲,这种类型的系统具有三级分层结构,但此处,次级电压控制(SVC)和三次电压控制(TVC)均通过同一控制中心的软件来实现。控制区域不再固定,而是根据网格结构的变化在线重新配置和更新。这些过程的技术细节在此处介绍。还讨论了TVC(基于在线无功最佳功率流)和SVC的实现,以及有关提高其可靠性和鲁棒性的一些技术细节。从现场应用获得的基于相似天测试而不是模拟的一些结果用于评估AVC系统的性能和改进。该系统已在中国20多个控制中心安装。

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