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Improved Virtual Flux-Direct Power Control for PWM Rectifier Based on Second-Order Generalized Integrators

机译:基于二阶广义积分器的PWM整流器改进的虚拟磁通直接功率控制

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The AC-DC conversion system in the power system use generally the diode-bridge based rectifiers that cannot be reversible and causes high current distortion. Besides, they reduce the power factor and energy quality. recently, the application of three-phase pulse width modulation (PWM) rectifier has been risen quickly due to breakthrough advancement in the power devices. This converter is widely used in many applications such as electrical drives and renewable energy conversion systems. It offers plenty of advantages, mainly sinusoidal input currents and minimized harmonic distortion and unity power factor. This work presents an improved sensorless control for performance enhancement purpose of the PWM-rectifier. The proposed control strategy uses the virtual flux principle with second-order generalized integrator (SOGI) in order to overcome the accompanying drawbacks of using pure integrator of low-pass filters for estimation. The integration of improved virtual flux estimator with direct power control saves the cost of using many voltage sensors which can increase the reliability and effectivity of the control system. The different proposed approaches have been investigated through simulation using MATLAB/Simulink software.
机译:电力系统中的AC-DC转换系统通常使用基于二极管桥的整流器,这些整流器是不可逆的,并且会引起高电流失真。此外,它们降低了功率因数和能源质量。近来,由于功率器件的突破性进展,三相脉冲宽度调制(PWM)整流器的应用已迅速增加。该转换器广泛用于许多应用中,例如电力驱动和可再生能源转换系统。它具有很多优势,主要是正弦输入电流,并且谐波失真和单位功率因数最小。这项工作提出了一种改进的无传感器控制,以提高PWM整流器的性能。所提出的控制策略使用带有二阶广义积分器(SOGI)的虚拟通量原理,以克服使用低通滤波器的纯积分器进行估计所带来的缺点。改进的虚拟磁通估算器与直接功率控制的集成节省了使用许多电压传感器的成本,这可以提高控制系统的可靠性和有效性。通过使用MATLAB / Simulink软件进行仿真,研究了提出的不同方法。

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