带多波段稳定器的可再生嵌入式交流微电网可控性分析

Dhairya Gaur, Mahendra Bhadu, S.K. Bansal, J.K. Gaur
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引用次数: 0

摘要

由于工业化和全球生活水平的提高,传统能源的枯竭和对电力的需求不断增加,导致需要对传统电网进行改造。微电网概念作为一种将可再生能源整合到主电网中的解决方案而出现。本文研究了一个由太阳能、风能、水力和柴油电站组成的交流微电网,并研究了各种电力系统稳定器(pss)对柴油和水力发电厂静极同步发电机的影响。使用并网交流微电网比较了不同PSS的有效性,包括- PSS, ΔPa-PSS和多频段PSS。仿真结果表明,即使存在高斯噪声和彩色噪声,多波段PSS在消除机电振荡方面也优于传统的PSS。pss在管理各种分布式电源的潮流和提高电力系统稳定性方面具有重要作用。利用MATLAB/SIMULINK软件进行仿真。
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Controllability analysis of renewable embedded AC microgrid with multi-band stabilizers
The depletion of conventional energy sources and the increasing demand for electricity due to industrialization and rising global living standards has led to the need for a transformation of the traditional power grid. The microgrid concept has emerged as a solution that integrates renewable energy sources into the main grid. This paper examines an AC microgrid consisting of solar, wind, hydro, and diesel power stations, and investigates the effect of various power system stabilisers (PSSs) on the silent-pole synchronous generator of the diesel and hydro power plant. The effectiveness of different PSSs, including - PSS, ΔPa-PSS, and Multi-band PSS, is compared using a grid-connected AC microgrid. The simulation results show that Multiband PSS performs better than conventional PSSs in eliminating electromechanical oscillation, even in the presence of Gaussian and colored noise. PSSs are useful in managing the power flow of various DERs and improving power system stability. The simulation is conducted using the MATLAB/SIMULINK software.
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