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首页> 外文期刊>Sustainable Energy Technologies and Assessments >Load frequency control for mini-hydropower system: A new approach based on self-tuning fuzzy proportional-derivative scheme
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Load frequency control for mini-hydropower system: A new approach based on self-tuning fuzzy proportional-derivative scheme

机译:小型水电系统负荷频率控制:一种基于自校正模糊比例微分方案的新方法

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摘要

This paper presents a new method for load frequency control (LFC) based on self-tuning fuzzy Proportional-Derivative method. Under dynamic frequency variations, the proportional-derivative (PD) gains will automatically tuned by the fuzzy rules in order to maintain frequency at nominal value. In this paper, the proposed controller was used to controls the frequency of a high-penetration mini-hydropower system. In the microgrid, both diesel generator and mini-hydropower system were designed to meet the demand at low stream flow. However, the diesel generator will be shut down if hydropower generation surpasses the consumer demand. The frequency was controlled by absorbing excess generation from hydropower system through secondary load bank. The system performance with the new control scheme was assessed by simulation under dynamic frequency variations. The simulation result shows the employment of the proposed load frequency controller demonstrates robust and high-performance frequency control compared to conventional fixed-gain PD controller.
机译:本文提出了一种基于自校正模糊比例微分法的负荷频率控制方法。在动态频率变化下,比例微分(PD)增益将通过模糊规则自动调整,以将频率保持在标称值。在本文中,所提出的控制器用于控制高渗透率小型水电系统的频率。在微电网中,柴油发电机和小型水力发电系统都被设计来满足低流量时的需求。但是,如果水力发电超过用户需求,柴油发电机将被关闭。通过吸收水电系统通过辅助负载组产生的多余电量来控制频率。在动态频率变化下,通过仿真评估了采用新控制方案的系统性能。仿真结果表明,与传统的固定增益PD控制器相比,所提出的负载频率控制器的使用展示了鲁棒且高性能的频率控制。

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