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Measurement and Modeling of Delays in Wide-Area Closed-Loop Control Systems

机译:广域闭环控制系统中延迟的测量和建模

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This paper aims to study the measurement and modeling methods for delays in wide-area closed-loop control systems (WACS). The delays are classified into communication delays and operational delays based on the information flow of WACS. For communication delays, an affine evaluation model is proposed based on previous studies, and this model is verified by the measured communication delays of the Guizhou Power Grid in Southwest China. For operational delays, a real-time digital simulator (RTDS) hardware-in-the-loop measurement method is developed, and the measured operational delays are obtained and analyzed. Finally, an estimation method for the closed-loop delay in actual WACS is proposed, in which the uplink and downlink communication delays are modeled as constants and the operational delay is modeled as a normal distribution. Consequently, the closed-loop delay follows a normal distribution with the calculated parameters by combining the communication delays and operational delay. The measurement results and analysis presented in this paper are important for the development and applications of WACS.
机译:本文旨在研究广域闭环控制系统(WACS)的延迟测量和建模方法。根据WACS的信息流,将延迟分为通信延迟和操作延迟。对于通信延迟,在先前研究的基础上提出了一种仿射评估模型,并通过对中国西南地区贵州电网的通信延迟进行了实测验证。对于操作延迟,开发了一种实时数字仿真器(RTDS)硬件在环测量方法,并获得了测量的操作延迟并进行了分析。最后,提出了一种针对实际WACS中闭环延迟的估计方法,其中将上行链路和下行链路通信延迟建模为常数,将操作延迟建模为正态分布。因此,通过组合通信延迟和操作延迟,闭环延迟遵循具有计算出的参数的正态分布。本文介绍的测量结果和分析对于WACS的开发和应用具有重要意义。

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