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首页> 外文期刊>Sustainable Energy, IEEE Transactions on >A Set-Membership Affine Projection Algorithm-Based Adaptive-Controlled SMES Units for Wind Farms Output Power Smoothing
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A Set-Membership Affine Projection Algorithm-Based Adaptive-Controlled SMES Units for Wind Farms Output Power Smoothing

机译:基于集成员身份仿射投影算法的风电场输出功率平滑自适应控制SMES单元

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摘要

This paper presents a novel adaptive control scheme of the superconducting magnetic energy storage (SMES) units with the purpose of smoothing the wind farms’ output power. The adaptive control scheme is based on the set-membership affine projection algorithm (SMAPA), which provides a faster convergence and less computational complexity than the normalized least-mean-square algorithm. In this study, two grid-connected fixed-speed wind farms are considered. The control strategy of the SMES units is based on a pulse width modulation (PWM) voltage source converter (VSC) and a dc–dc converter. The VSC and dc–dc converter is used to control the reactive and active power exchange with the power system, respectively. The SMAPA-based adaptive proportional–integral (PI) controllers are utilized to control both converters. For realistic responses, real wind speed data extracted from Hokkaido Island, Japan, and two-mass drive train model of the wind turbine generator system are used in the analyses. Also, a real 10 MVA SMES unit that was installed at a power plant in Kameyama, Japan, is connected to the point of common coupling of the wind farms. The validity of the proposed control scheme is verified by the simulation results, which are performed using PSCAD/EMTDC environment. With the SMAPA-based adaptive-controlled SMES units, the wind farms’ output power can be smoothed easily avoiding huge effort for fine tuning the controllers’ parameters.
机译:本文提出了一种超导磁能存储(SMES)单元的新型自适应控制方案,其目的是使风电场的输出功率平稳。自适应控制方案基于集合成员仿射投影算法(SMAPA),与归一化最小均方算法相比,该算法提供更快的收敛速度和更低的计算复杂度。在这项研究中,考虑了两个并网的定速风电场。 SMES单元的控制策略基于脉冲宽度调制(PWM)电压源转换器(VSC)和dc-dc转换器。 VSC和dc-dc转换器分别用于控制与电源系统的无功和有功功率交换。基于SMAPA的自适应比例积分(PI)控制器用于控制两个转换器。为了获得真实的响应,分析中使用了从日本北海道岛提取的真实风速数据以及风力发电机系统的两质量传动系模型。另外,安装在日本龟山市一家发电厂的实际10 MVA SMES装置与风电场的公共耦合点相连。仿真结果验证了所提出控制方案的有效性。仿真结果是在PSCAD / EMTDC环境下进行的。借助基于SMAPA的自适应控制SMES单元,可以轻松平滑风电场的输出功率,而无需花费大量精力来微调控制器的参数。

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