首页> 外文期刊>International journal of engineering research in Africa >Integration and Enhancement of Load Frequency Control Design for Diverse Sources Power System via DFIG Based Wind Power Generation and Interonnected via Parallel HVDC/EHVAC Tie-Lines
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Integration and Enhancement of Load Frequency Control Design for Diverse Sources Power System via DFIG Based Wind Power Generation and Interonnected via Parallel HVDC/EHVAC Tie-Lines

机译:通过基于DFIG的风力发电和通过并行HVDC / EHVAC系线与载波电力系统负载频率控制设计的集成与增强

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摘要

The present paper focus on the integration as well as contribution of doubly fed induction generator (DFIG) based wind turbines in load frequency control (LFC) of the modern electric power system in order to supply the quality as well as pollution free electric power to the modern power customers. In addition, the control areas are connected via HVDC tie-line parallel to EHVAC tie-line with diverse sources i.e. hydro, thermal and gas based power generations in interconnected power system areas. Efforts have been made to propose an optimal LFC design based on the feedback of few state variables which are accessible for the measurement and contains good information of the complete power system. The LFC design based on few states are implemented and the obtained results are presented to show the LFC enhancement with DFIG integration and DFIG integration with installation of parallel HVDC/EHVAC tie-lines between control areas. Atlast, the beauty and effectiveness of LFC based on few states are compared with LFC design depends on all system states under similar working conditions and the application results are presented.
机译:本文侧重于现代电力系统负载频率控制(LFC)中的双馈感应发电机(DFIG)风力涡轮机的一体化以及供应质量以及污染自由电力的贡献现代权力客户。另外,控制区域通过与EHVAC系线平行的HVDC系线连接,其具有不同的源极,即互连的电力系统区域中的水基,热和气体的电力。已经努力提出基于几个状态变量的反馈来提出最佳LFC设计,这些变量可用于测量并包含完整电力系统的良好信息。基于少量状态的LFC设计,并提出了所获得的结果,以显示LFC增强与DFIG集成和DFIG集成,与控制区域之间的并行HVDC / EHVAC系列的安装。基于少数州的LFC的美容和有效性与LFC设计相比,在类似的工作条件下取决于所有系统状态,并提出了申请结果。

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