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Virtual grid flux oriented control method for front-end three phase boost type voltage source rectifier

机译:前端三相升压型电压源整流器的虚拟电网磁链定向控制方法

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This paper investigates a new approach to adapt the conventional voltage oriented control (VOC) for the front-end pulse width modulation (PWM) three-phase boost type voltage source rectifier that is applicable for low and medium power voltage source inverter (VSI) system applications. The usage of grid voltage sensors to determine the voltage angle for synchronization and voltage amplitude for the controller, are avoided by applying a grid virtual-flux (VF) concept. The virtual-flux method is used to extract the grid voltages from the converter switching states, dc output voltage, and line currents. Subsequently, virtual grid flux oriented control (VFOC) with the improvement of virtual-flux estimation method has been proposed in this work. The steady state as well as dynamic performances of the proposed system are presented and analyzed by means of the Matlab simulation. The PWM rectifier utilizing VFOC is able to produce adjustable output voltage, fix switching frequency, near unity power factor and low harmonic distortion of the line currents.
机译:本文研究了一种适用于低端和中功率电压源逆变器(VSI)系统的,将常规电压定向控制(VOC)应用于前端脉宽调制(PWM)三相升压型电压源整流器的新方法应用程序。通过应用电网虚拟通量(VF)概念,可以避免使用电网电压传感器来确定用于同步的电压角度和控制器的电压幅度。虚拟通量方法用于从转换器的开关状态,直流输出电压和线电流中提取电网电压。随后,随着虚拟通量估计方法的改进,提出了面向虚拟电网通量的控制(VFOC)。通过Matlab仿真,给出并分析了所提出系统的稳态和动态性能。利用VFOC的PWM整流器能够产生可调的输出电压,固定开关频率,接近统一的功率因数以及线路电流的低谐波失真。

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