调制滤波补偿方案在并网农村混合风/潮汐能转换方案中的应用

T. Aboul-Seoud, A. Sharaf
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引用次数: 5

摘要

可再生能源是一种廉价、清洁和丰富的能源,既可以为孤立的负荷供电,也可以为并网负荷供电。风能和潮汐能是两种流行的可再生能源。随着潮汐或风速的持续变化,输出功率的变化会导致显著的电能质量问题。本文研究了一个电网,该网络呈现农村负荷,例如一个小村庄,由连接到弱电网的混合风力/潮汐涡轮机供电。通过仿真说明了潮汐和风速的变化对电能质量的影响。在网络中引入调制功率滤波补偿器(MPFC)后,电能质量得到了显著改善。所提出的MPFC是一种廉价且鲁棒的基于FACTS的器件。它通过一个三环动态误差驱动PI控制器进行控制。通过对有MPFC和没有MPFC的网络仿真结果的比较,证明了该方案能够引入显著的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Utilization of the Modulated Power Filter Compensator scheme for a grid connected rural hybrid wind/tidal energy conversion scheme
Renewable energy is a cheap, clean and abundant source of energy that can be used to feed isolated loads as well as grid connected ones. Wind energy and tidal energy are two popular forms of renewable energy. The variation of output power with the continuous variation of tides or wind speed can cause significant power quality issues. This paper studies a network presenting a rural load, such as a small village, fed from a hybrid wind/tidal turbines that are connected to a weak grid. The effect of the variation in tides and wind speed on the power quality is illustrated via simulation. The introduction of the Modulated Power Filter Compensator (MPFC) to the network establishes a significant improvement to the power quality. The proposed MPFC is a cheap and robust FACTS based device. It is controlled via a tri-loop dynamic error-driven PI controller. This scheme proved its ability to introduce a significant improvement which is illustrated via comparing the simulation results of the studied network with and without the MPFC.
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