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Wide-Area Damping Controller for Power System Interarea Oscillations: A Networked Predictive Control Approach

机译:电力系统区域振荡的广域阻尼控制器:一种网络预测控制方法

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摘要

Wide-area damping controller (WADC) requires communication networks to transmit remote signals. The usage of communication networks will introduce time delays into the control loop of the WADC. Ignoring this time delay would deteriorate the damping performance provided by the WADC or even cause the whole system instability. This paper employs networked predictive control (NPC) to design a WADC for the generator exciter to enhance the damping of interarea oscillations in a large-scale power system. The NPC incorporates with a generalized predictive control (GPC) to generate optimal control predictions, and a network delay compensator to detect and compensate both constant and random delays. Moreover, model identification is used to obtain an equivalent reduced-order model of the large-scale power system and deal with the model uncertainties and variation of operating conditions. Case studies are based on the New England 10-machine 39-bus system. Effectiveness of the proposed WADC is verified by simulation studies and compared with a conventional WADC and a GPC-based WADC without delay compensation.
机译:广域阻尼控制器(WADC)需要通信网络来传输远程信号。通信网络的使用将在WADC的控制环路中引入时间延迟。忽略此时间延迟会降低WADC提供的阻尼性能,甚至会导致整个系统不稳定。本文采用网络预测控制(NPC)为发电机励磁机设计WADC,以增强大型电力系统中区域间振荡的阻尼。 NPC集成了一个通用预测控制(GPC)以生成最佳控制预测,以及一个网络延迟补偿器,用于检测和补偿恒定和随机延迟。此外,模型辨识用于获得大型电力系统的等效降阶模型,并处理模型不确定性和运行条件的变化。案例研究基于新英格兰的10机39总线系统。通过仿真研究验证了所提出的WADC的有效性,并与常规WADC和基于GPC的WADC进行了比较,而没有延迟补偿。

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