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Autonomous wind—Hydro hybrid system using cage generators and battery storage

机译:使用笼式发电机和蓄电池的自主风力混合动力系统

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This paper deals with a new autonomous wind-hydro hybrid generation system consists of 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 medium loads. The proposed system consists of two back-to-back-connected pulse width modulation controlled insulated-gate-bipolar-transistor based voltage source converters (VSCs) with a efficient battery energy storage system at their dc link. The main purpose of the control algorithm for the VSCs are to acquire maximum power tracking (MPT) by rotor speed control of a wind turbine driven SCIG under varying wind speeds and control of the frequency and magnitude the of the load voltage. This wind hydro hybrid system has the ability of bidirectional reactive and active power flow, by which it controls the magnitude and the frequency for voltage. The proposed system using cage generators, MPT controller, and a voltage and a frequency controller are studied and simulated in MATLAB using Simulink and SimPower System toolboxes, and the proposed system are studied for various types of linear and nonlinear, under balanced and unbalanced conditions. The performance of the proposed system is presented to demonstrate its voltage and frequency control (VFC), harmonic elimination, and load balancing
机译:本文研究了一种新的自主式风水混合发电系统,该系统由一台由变速风力涡轮机驱动的鼠笼式感应发电机(SCIG)和由向三相四线供电的恒定功率水轮机驱动的另一台SCIG中等负载。拟议的系统由两个背靠背连接的脉宽调制控制的绝缘栅双极晶体管电压源转换器(VSC)组成,在它们的直流链路上具有高效的电池能量存储系统。 VSC的控制算法的主要目的是通过在变化的风速下控制风力涡轮机驱动的SCIG的转子速度并控制负载电压的频率和幅度来获得最大功率跟踪(MPT)。这种风水混合系统具有双向无功和有功潮流的能力,通过它可以控制电压的大小和频率。使用Simulink和SimPower系统工具箱在MATLAB中研究并仿真了使用笼式发电机,MPT控制器以及电压和频率控制器的拟议系统,并在平衡和不平衡条件下针对各种类型的线性和非线性系统研究了拟议的系统。提出系统的性能来证明其电压和频率控制(VFC),谐波消除和负载平衡

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