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A quantitative method to determine ICT delay requirements for wide-area power system damping controllers

机译:确定广域电力系统阻尼控制器ICT延迟要求的定量方法

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This paper presents a quantitative method to determine delay requirements of the information and communication technology (ICT) system supporting wide-area power oscillation damping (WAPOD) controllers. An allowable time delay for the ICT infrastructure named “equivalent time delay (ETD)” is defined. The ETD is calculated by numerically comparing the damping behavior of the system when local input signals (LI) and remote input signals (RI) are used in the damping controller. The use of a WAPOD is only justified when its response outperforms that of a controller using local inputs. Therefore, the total time delay in the control loop must be below the calculated ETD. As such, the ETD serves as a design criteria to determine ICT latency requirements. The selection of an effective RI signal can be carried out by considering the maximum delays (ETDs) of different wide-area measurements. A damping improvement ${rm ETD}^{x∼%}$ has been proposed using the same methodology indicating a minimum outperformance of the remote signals. The proposed method is demonstrated using the well-known Klein-Rogers-Kundur multi-machine power system and the Vietnamese power system model.
机译:本文提出了一种定量方法来确定支持广域功率振荡阻尼(WAPOD)控制器的信息和通信技术(ICT)系统的延迟要求。定义了称为“等效时间延迟(ETD)”的ICT基础设施的允许时间延迟。当在阻尼控制器中使用本地输入信号(LI)和远程输入信号(RI)时,通过数值比较系统的阻尼行为来计算ETD。仅当WAPOD的响应优于使用本地输入的控制器的响应时,才有理由使用WAPOD。因此,控制回路中的总时间延迟必须低于计算出的ETD。因此,ETD用作确定ICT延迟要求的设计标准。可以通过考虑不同广域测量的最大延迟(ETD)来选择有效的RI信号。已经提出了使用指示远程信号的最小性能的相同方法的阻尼改进$ {rm ETD} ^ {x〜%} $。使用著名的Klein-Rogers-Kundur多机电力系统和越南电力系统模型对提出的方法进行了演示。

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