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首页> 外文期刊>Canadian journal of electrical and computer engineering >Sag and Flicker Reduction Using Hysteresis-Fuzzy Control-Based SMES Unit
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Sag and Flicker Reduction Using Hysteresis-Fuzzy Control-Based SMES Unit

机译:使用基于磁滞-模糊控制的SMES单元降低凹陷和闪烁

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摘要

The issue of power quality is one of the prominent factors in determining the reliability of power systems. It is inevitable to consider power quality issues and include appropriate mitigation techniques in the design of any future power system project construction. Voltage sag and flicker are the two most common short disturbance types of power quality issues that frequently occur in power systems. A widely accepted mitigation strategy to enhance the power quality of disturbed networks is by connecting a flexible ac transmission system. In this paper, a superconducting magnetic energy storage (SMES) unit along with hysteresis-fuzzy controller to suppress the severe impacts of voltage sag and flicker events on the power quality of a power system is proposed, implemented, and tested. The proposed SMES configuration with hysteresis current control and fuzzy logic controller is effective, simple, and easy to implement. Simulation results show the ability of the proposed SMES controller in compensating sag and/or flicker distortions.
机译:电能质量问题是确定电力系统可靠性的重要因素之一。不可避免地要考虑电能质量问题,并在未来任何电力系统项目建设的设计中包括适当的缓解技术。电压骤降​​和闪烁是电力系统中经常发生的两种最常见的短时干扰类型的电能质量问题。一种广泛接受的缓解策略是通过连接灵活的交流传输系统来提高受干扰网络的电能质量。本文提出,实施和测试了一种超导磁储能(SMES)单元以及一个磁滞模糊控制器来抑制电压骤降和闪烁事件对电力系统的电能质量的严重影响。所提出的带有磁滞电流控制和模糊逻辑控制器的SMES配置是有效,简单且易于实现的。仿真结果表明,所提出的SMES控制器具有补偿垂度和/或闪烁失真的能力。

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