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首页> 外文期刊>Transactions of the Institute of Measurement and Control >Nonlinear generator excitation and superconducting magnetic energy storage control for transient stability enhancement via immersion and invariance
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Nonlinear generator excitation and superconducting magnetic energy storage control for transient stability enhancement via immersion and invariance

机译:非线性发电机励磁和超导磁能存储控制,可通过沉浸和不变来增强瞬态稳定性

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摘要

This paper focuses on the design of nonlinear coordinated generator excitation and superconducting magnetic energy storage (SMES) control to enhance the transient stability of an electrical power system. An immersion and invariance (I&I) nonlinear control design technique is used to achieve power angle stability and frequency and voltage regulation, and to ensure that the closed-loop system is asymptotically stable. The main contributions of this paper are: (1) use of a generator excitation and SMES combination to improve transient stability, (2) demonstrating the applicability of nonlinear control theory (particularly the I&I methodology) for the design of a stabilizing (state) feedback controller in a single machine infinite bus system to enhance transient system performance and (3) developing a methodology that can employ the additional degree of freedom in power systems that include the combined excitation and SMES and advanced nonlinear control in a way that can further improve the dynamic transient performance of the system. In order to show the effectiveness of the proposed controller design, numerical simulation results are provided to illustrate the performance in maintaining stability and simultaneously achieving improvements in voltage regulation during small and large disturbances, and to show that our proposed nonlinear controller has more advantages by comparing it with the control performance of two existing nonlinear controllers and a conventional linear controller, in particular, feedback linearizing and coordinated passivation controllers, and a power system stabilizer (PSS), respectively.
机译:本文着重于设计非线性协调发电机励磁和超导磁能存储(SMES)控制,以增强电力系统的暂态稳定性。使用浸入式和不变性(I&I)非线性控制设计技术来实现功率角稳定性以及频率和电压调节,并确保闭环系统渐近稳定。本文的主要贡献是:(1)使用发电机励磁和SMES组合来提高暂态稳定性,(2)证明了非线性控制理论(尤其是I&I方法)在稳定(状态)反馈设计中的适用性单机无限总线系统中的控制器,以增强瞬态系统性能;(3)开发一种可以在电力系统中采用额外自由度的方法,其中包括励磁和SMES的组合以及先进的非线性控制,从而可以进一步改善系统的动态瞬态性能。为了显示所提出的控制器设计的有效性,提供了数值仿真结果,以说明在小和大扰动下保持稳定性并同时实现电压调节方面的改进的性能,并且通过比较表明,我们提出的非线性控制器具有更多的优势。它具有两个现有的非线性控制器和一个常规的线性控制器(特别是反馈线性化和协调钝化控制器)以及电力系统稳定器(PSS)的控制性能。

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