嵌入式发电小型电网分散控制的前景

G. Dudgeon, W. Leithead, J. O'Reilly, J. Mcdonald
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引用次数: 17

摘要

本文研究了由4台发电机组成的小型电网的控制问题。采用独立通道分析与设计(ICAD)对小信号动态特性和控制系统性能进行了评估。ICAD的动机是需要了解系统交互对控制设计任务和鲁棒性的影响。通过使用多变量结构函数明确地考虑了单个传输上的系统相互作用,这些函数虽然是标量,但封装了系统的多变量性质。这种方法的优势在于,非常成功的单输入单输出经典控制技术(如Nyquist/Bode)可以在不丢失多变量信息的情况下使用。对于示例网络,ICAD使各个控制器的设计能够相互独立地执行,并确定系统交互的影响不会损害网络的稳定性。因此,它潜在地为考虑嵌入式生成的大规模网络提供了一个强大的平台。最后,通过运行在PSS/E中的非线性动态仿真验证了ICAD网络控制分析与设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prospects for the decentralised control of small-scale power networks with embedded generation
The control of a small-scale power network incorporating four generators is investigated in this paper. The small-signal dynamic characteristics and control system performance are assessed using individual channel analysis and design (ICAD). ICAD is motivated through the need to understand the effect of system interaction on both the control design task and robustness. System interaction on individual transmissions is explicitly considered through the use of multivariable structure functions which, although scalar, encapsulate the multivariable nature of the system. The strength of such an approach is that highly successful single-input single-output classical control techniques such as Nyquist/Bode can be used without loss of multivariable information. For the example network, ICAD enables the design of the individual controllers to be performed independently of one another and determines that the effect of system interaction is not detrimental to network stability. It therefore potentially provides a strong platform for consideration of large-scale networks with embedded generation. Finally, the ICAD network control analysis and design is corroborated by nonlinear dynamic simulation running in PSS/E.
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