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Modelling, Simulation and Fuzzy Self-tuning Control of D-STATCOM in a Single Machine Infinite Bus Power System

机译:单机无限总线电力系统D-STATCOM的建模,仿真和模糊自调整控制

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Background: In recent years, demand for electricity has increased considerably, while the expansion of generation and transmission has been very slow due to limited investment in resources and environmental restrictions. Methods: As a result, the power system becomes vulnerable to disturbances and instability. FACTS (Flexible AC Transmission Systems) technology has now been accepted as a potential solution to this problem. This paper deals with the modelling, simulation and fuzzy self-tuning control of a D-%%%STATCOM to enhance the stability and improve the critical fault clearing time (CCT) in a single machine infinite bus (SMIB). A detailed modelling of the D-STATCOM and comprehensive derivation of the fuzzy logic self-tuning control is presented. Results: The dynamic performance of the power system with the proposed control scheme is validated through in a simulation study carried out under Matlab/Simulink and SimPowerSystems toolbox. Conclusion: The results demonstrate a significant enhancement of the power system stability under the simulated fault conditions considered.
机译:背景:近年来,由于资源投资有限和环境限制,对电力的需求增长了很大增加,而发电和传播的扩张已经非常缓慢。方法:结果,电力系统变得容易受到干扰和不稳定性。事实(灵活的AC传输系统)技术现已被接受为此问题的潜在解决方案。本文涉及D - %%% STATCOM的建模,仿真和模糊自调整控制,以提高单机无限总线(SMIB)中的稳定性,提高关键故障清算时间(CCT)。提出了一种详细的D-Statcom和模糊逻辑自调整控制的全面推导的建模。结果:通过在Matlab / Simulink和SimPowersystems Toolbox下进行的仿真研究中,通过拟议控制方案进行动态性能。结论:结果表明,在考虑模拟的故障条件下的电力系统稳定性的显着提高。

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