首页> 外文会议>2013 IEEE International Multi Conference on Automation, Computing, Control, Communication and Compressed Sensing >Voltage and frequency control of wind hydro hybrid system in isolated locations using cage generators
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Voltage and frequency control of wind hydro hybrid system in isolated locations using cage generators

机译:使用笼式发电机在偏远地区的风电混合系统的电压和频率控制

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This paper presents a voltage and frequency control of wind-hydro hybrid system in isolated locations in which one squirrel cage induction generator (SCIG) driven by a variable speed wind turbine and another SCIG driven by a constant power hydro turbine feeding three phase four wire local loads. The system mainly uses a rectifier and a pulse width modulation controlled insulated-gate-bipolar-transistor-based voltage-source converters (VSCs) with a battery energy storage system at their dc link. The main objectives of the rectifier is to convert the ac power generated by the wind system to dc and the control algorithm for the VSC is the control of the magnitude and the frequency of the load voltage. This system has the capability of bidirectional active- and reactive-power flow, by which it controls the magnitude and the frequency of the load voltage. Here pitch angle control is used to achieve maximum power tracking(MPT). In this paper wind turbine, hydro turbine, MPT controller, and a voltage and frequency controller are modeled and simulated in MATLAB using Simulink and Sim Power System set toolboxes, and different aspects of the proposed system are studied for various types of loads, and under varying wind-speed conditions. The performance of the proposed system is presented to demonstrate its capability of MPT, voltage and frequency control (VFC), harmonic elimination, and load balancing.
机译:本文提出了在偏远地区的风水混合系统的电压和频率控制,其中一台由变速风力涡轮机驱动的鼠笼式感应发电机(SCIG),另一台由三相四线局部供电的恒功率水轮机驱动的SCIG负载。该系统主要使用整流器和基于脉宽调制控制的绝缘栅双极晶体管基电压源转换器(VSC),在其直流链路处具有电池储能系统。整流器的主要目标是将风力系统产生的交流电转换为直流电,而VSC的控制算法是控制负载电压的幅度和频率。该系统具有双向有功和无功功率流的能力,通过它可以控制负载电压的大小和频率。这里,俯仰角控制用于实现最大功率跟踪(MPT)。在本文中,使用Simulink和Sim Power System set工具箱在MATLAB中对风力涡轮机,水轮机,MPT控制器以及电压和频率控制器进行了建模和仿真,并针对各种类型的负载研究了所建议系统的各个方面,并在变化的风速条件。提出的系统性能证明了其MPT,电压和频率控制(VFC),谐波消除和负载平衡的能力。

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