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Utilizing synchrophasor-based supplementary damping control signals in conventional generator excitation systems

机译:在常规发电机励磁系统中利用基于同步相量的补充阻尼控制信号

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摘要

A supplementary function of Excitation Control Systems (ECSs) for synchronous generators is that of a Power System Stabilizer (PSS). The PSS implementation in these ECSs only allows the use of a limited type of pre-defined local input measurements and built-in PSS algorithms. To adapt existing ECSs to take advantage of synchrophasors technology, this paper proposes and implements a prototype wide-area damping controller (WADC) that provides synchrophasor-based damping input signals to existing ECSs. The developed WADC comprise (i) a real-time mode estimation module, (ii) synchrophasor’s communication latency computation module, and (iii) phasor-based oscillation damping algorithm executing in a real-time hardware prototype controller. Through Real-Time Hardware-in-the-Loop (RT-HIL) simulations, it is demonstrated that synchrophasor-based damping signals from the WADC can be utilized together with a commercial ECS, thus providing new options for selection of the best feedback signal for oscillation damping.
机译:同步发电机励磁控制系统(ECS)的补充功能是电力系统稳定器(PSS)的功能。这些ECS中的PSS实施仅允许使用有限类型的预定义本地输入测量和内置PSS算法。为了使现有ECS能够利用同步相量技术,本文提出并实现了一个原型的广域阻尼控制器(WADC),该控制器为现有ECS提供基于同步相量的阻尼输入信号。开发的WADC包括(i)实时模式估计模块,(ii)同步相量的通信等待时间计算模块,以及(iii)在实时硬件原型控制器中执行的基于相量的振荡阻尼算法。通过实时在环硬件(RT-HIL)仿真,表明来自WADC的基于同步相量的阻尼信号可与商用ECS一起使用,从而为选择最佳反馈信号提供了新的选择用于振荡阻尼。

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