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Sliding mode harmonic compensation strategy for power quality improvement of a grid-connected inverter under distorted grid condition

机译:并网逆变器在畸变电网条件下提高电能质量的滑模谐波补偿策略

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摘要

A novel sliding mode harmonic compensation (SMHC) scheme is proposed for the enhanced power quality in distributed generation systems under distorted grid condition. The harmonic pollution caused by non-linear loads in electrical networks brings about distorted grid voltage, power losses and heating in electrical equipments. The proposed SMHC scheme is composed of a harmonic detector and a sliding mode harmonic current controller based on the integral sliding mode control. By using the fourth order band pass filter, the proposed harmonic detector can effectively extract harmonic components without phase delay. These harmonic components can be notably suppressed by adopting the sliding mode harmonic current controller with fast dynamic response. Whereas the conventional sliding mode schemes have been developed to control the entire current value, the proposed SMHC scheme controls only the harmonic components by dividing inverter voltage model into the fundamental and harmonic models. Since the fundamental component in charge of power flow is controlled by proportional-integral controller, the chattering can be quite reduced. The proposed scheme is a non-selective harmonic compensation, which reduces the computational burden than the conventional selective schemes. The validity of the proposed scheme is demonstrated through simulations and experiments using 2 kVA laboratory prototype grid-connected inverter.
机译:提出了一种新颖的滑模谐波补偿(SMHC)方案,以提高电网畸变情况下分布式发电系统的电能质量。电网中非线性负载引起的谐波污染会导致电网电压失真,功率损耗和电气设备发热。所提出的SMHC方案由谐波检测器和基于整体滑模控制的滑模谐波电流控制器组成。通过使用四阶带通滤波器,所提出的谐波检测器可以有效地提取谐波分量而没有相位延迟。通过采用具有快速动态响应的滑模谐波电流控制器,可以显着抑制这些谐波分量。尽管已开发出传统的滑模方案来控制整个电流值,但所提出的SMHC方案通过将逆变器电压模型分为基本模型和谐波模型来仅控制谐波分量。由于负责潮流的基本分量由比例积分控制器控制,因此可以大大减少抖动。所提出的方案是非选择性谐波补偿,与传统的选择性方案相比,它减少了计算负担。通过使用2 kVA实验室原型并网逆变器进行的仿真和实验证明了该方案的有效性。

著录项

  • 来源
    《Power Electronics, IET》 |2015年第8期|1461-1472|共12页
  • 作者

    Sung-Wook Kang; Kyeong-Hwa Kim;

  • 作者单位

    Dept. of Electr. & Inf. Eng., Seoul Nat. Univ. of Sci. & Technol., Seoul, South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 13:45:20

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