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Hardware and Control Implementation of Electric Springs for Stabilizing Future Smart Grid With Intermittent Renewable Energy Sources

机译:间歇性可再生能源稳定未来智能电网的电弹簧硬件和控制实现

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摘要

In this paper, the details of practical circuit and control implementation of an electric spring for reactive power compensation and voltage regulation of the ac mains are presented. With Hooke's law published three centuries ago, power electronics-based reactive power controllers are turned into electric springs (ESs) for regulating the ac mains of a power grid. The proposed ES has inherent advantages of: 1) ensuring dynamic load demand to follow intermittent power generation; and 2) being able to regulate the voltage in the distribution network of the power grid where numerous small-scale intermittent renewable power sources are connected. Therefore, it offers a solution to solve the voltage fluctuation problems for future power grids with substantial penetration of intermittent renewable energy sources without relying on information and communication technology. The proof-of-concept hardware is successfully built and demonstrated in a 10-kVA power system fed by wind energy for improving power system stability. The ES is found to be effective in supporting the mains voltage, despite the fluctuations caused by the intermittent nature of wind power.
机译:在本文中,详细介绍了用于无功功率补偿和交流电源电压调节的电弹簧的实际电路和控制实现。随着三个世纪前胡克定律的发布,基于电力电子技术的无功功率控制器被转变为用于调节电网交流电源的电弹簧(ES)。拟议的ES具有以下固有优点:1)确保动态负荷需求跟随间歇性发电; 2)能够调节连接了许多小型间歇性可再生电源的电网配电网络中的电压。因此,它提供了一种解决方案,可解决间歇性可再生能源大量渗透的未来电网的电压波动问题,而无需依赖信息和通信技术。概念验证硬件已成功构建并在由风能供电的10 kVA电力系统中进行了演示,以提高电力系统的稳定性。尽管风电的间歇性引起了波动,但ES仍可有效地支持电网电压。

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