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Impact of Variable Time Delay on Oscillatory Stability in Power System with Wind and Solar Farms using Wide Area Damping Control

机译:广域阻尼控制随风和太阳能电池电力系统振荡稳定性的影响

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Renewable energy sources such as wind and solar farms have increasingly participated in modern power grids in order to supply inflated demands. In addition, wind and solar farms equipped with the wide area damping controller (WADC) can be adopted to enhance an oscillatory stability. However, the time delay in the communication of input and output signals of the WADC is an unavoidable problem. In previous works, the time delay is assumed to be a fixed value. In fact, the time delay may be variable in both input and output sides of the WADC. Such type of delay is defined as variable time delay. This paper focuses on the impact analysis of variable time delay on an oscillatory stability in wind and solar farms equipped with WADC. The new mathematical model of the power system with wind and solar farms with WADC including variable time delay is formulated. The technique for analyzing the influence of variable time delay is presented. Small signal and transient stability analysis results in an IEEE 50-machine 145-bus signify that the variable time delay significantly affects the damping performance of WADC. In the worst case, it may bring about the system instability.
机译:风和太阳能农场等可再生能源越来越多地参与现代电网,以供应膨胀的需求。此外,还可以采用配备有广域阻尼控制器(WADC)的风和太阳能电池来增强振荡稳定性。然而,WADC的输入和输出信号的通信的时间延迟是一个不可避免的问题。在以前的作品中,假定时间延迟是固定值。实际上,WADC的输入和输出侧中的时间延迟可能是可变的。这种类型的延迟被定义为可变时滞。本文侧重于可变时滞对瓦径的风电场振荡稳定性的影响分析。配制了带有WADC的风电场的电力系统的新数学模型,包括可变时间延迟。提出了用于分析可变时滞的影响的技术。小信号和瞬态稳定性分析结果在IEEE 50机器145总线中表示可变时间延迟显着影响WADC的阻尼性能。在最坏的情况下,它可能会带来系统不稳定。

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