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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Control-Induced Time-Scale Separation for Multiterminal High-Voltage Direct Current Systems Using Droop Control
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Control-Induced Time-Scale Separation for Multiterminal High-Voltage Direct Current Systems Using Droop Control

机译:使用DROOP控制的多星形高压直流系统进行控制诱导的时间尺度分离

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摘要

This paper introduces a control induced time-scale separation scheme for a multiterminal high-voltage direct current system used for large scale integration of renewable energy sources. The main idea is to provide a detailed theoretical analysis to the long stand practice that consists of the empirical design of two control loops for the terminals. Experience has shown that such loops, i.e., current and voltage control loops, when heuristically tuned, often display very different dynamics. In this paper, singular perturbation theory is applied to give explanation and fundamental analysis on why and how the two control loops work and how to achieve the timescale separation between various state variables. Mathematical analysis is also carried out to illustrate a clear tradeoff between system performance (actuator constraint) and the size of the region of attraction of the controller. Numerical simulations for a system with four terminals are presented to evaluate the system performance and illustrate the theoretical analysis.
机译:本文介绍了一种用于多态高压直流系统的控制诱导的时尺度分离方案,用于大规模集成可再生能源。主要思想是为长台实践提供详细的理论分析,该实践包括两个控制终端的两个控制回路的实证设计。经验表明,这种环路,即电流和电压控制循环,当启发式调谐时,通常会显示出非常不同的动态。在本文中,应用了奇异扰动理论,给出了解释和基本分析为什么以及如何实现各种状态变量之间的时间尺度分离。还执行了数学分析,以说明系统性能(执行器约束)之间的明确权衡和控制器的吸引区域的大小。提出了具有四个终端系统的系统数值模拟,以评估系统性能并说明理论分析。

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