...
首页> 外文期刊>Journal of Circuits, Systems, and Computers >Soft Computing Technique-Based Voltage/Frequency Controller for a Self-Excited Induction Generator-Based Microgrid
【24h】

Soft Computing Technique-Based Voltage/Frequency Controller for a Self-Excited Induction Generator-Based Microgrid

机译:基于软计算技术的自激感应发电机微电网电压/频率控制器

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Microgrids (MGs) are small scale energy unit networks that can offer an adequate energy supply to cover local demand by incorporating renewable energy and storage technologies. The system capacity is generally between several kW to several MW. They work in terms of low voltage (LV) level or medium voltage (MV) level. They can also be connected/disconnected from main grid whenever it is necessary. This paper presents a comparison of two soft computing (SC) techniques fuzzy logic (FL)/artificial neural network (ANN) over a conventional proportional integral (PI)-based voltage frequency controllers used for improving the performance of MG under islanding mode. Microgrid is formed by using three 7.5 kW, four pole, 50 Hz, self-excited induction generators (SEIGs) driven by small hydro turbine feeding three-phase four-wire consumer load. The proposed topology functions excellently in maintaining phase angle, voltage and frequency (VF) regulation of the micro sources (MSs) in islanded mode as well as in resynchronization when one of the MSs is turned off due to fault or unavailability of resources. The conventional PI controller is replaced by a controller based on SC techniques, as it has disadvantages like explicit description of mathematical model, affected by variations in consumer loads and sources, thus the proposed SC techniques enhance the performance of VF controller. A comparative analysis of PI/FL/ANN controller is also carried out to highlight the superiority of AI controller. The performance of controller with proposed configuration is verified for balanced/unbalanced non-linear load. Microgrid and control schemes are simulated in MATLAB Sim Power Systems environment.
机译:微电网(MG)是小规模的能源单位网络,通过结合可再生能源和存储技术,可以提供足够的能源以满足当地需求。系统容量通常在几千瓦到几兆瓦之间。它们以低压(LV)电平或中压(MV)电平工作。它们也可以在需要时与主电网连接/断开。本文介绍了两种软计算(SC)技术,模糊逻辑(FL)/人工神经网络(ANN)与基于常规比例积分(PI)的电压频率控制器的比较,该电压控制器用于改善孤岛模式下的MG性能。微电网是由三台7.5 kW,四极,50 Hz的自励感应发电机(SEIG)组成的,该发电机由小型水轮机驱动,为三相四线用户负载供电。所提出的拓扑在维持孤岛模式下的微源(MS)的相角,电压和频率(VF)调节以及当由于故障或资源不可用而关闭其中一个MS时的重新同步方面具有出色的功能。传统的PI控制器被基于SC技术的控制器所取代,因为它具有诸如明确描述数学模型,受用户负载和源变化影响的缺点,因此,所提出的SC技术可增强VF控制器的性能。还对PI / FL / ANN控制器进行了比较分析,以突出AI控制器的优越性。针对平衡/不平衡非线性负载,验证了具有建议配置的控制器的性能。在MATLAB Sim Power Systems环境中模拟了微电网和控制方案。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号