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New Parameter-Insensitive Observer-based Control Methods for Combined Source Voltage Harmonics and Unbalance Disturbances in PWM Voltage-Source Converters

机译:基于PWM电压源转换器中组合源电压谐波和不平衡干扰的新参数不敏感观察者控制方法

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In this paper, computationally-efficient sinusoidal disturbance estimation and elimination methods are introduced into the control of an active front end (AFE) voltage-source converter (VSC) to achieve effective disturbance rejection in high-power systems with slower PWM switching frequencies (e.g., 5 kHz) and limited current controller bandwidth. Since the active rectifier is in series with the source and the load, there is no need to add additional hardware for harmonic elimination. The input positive- and negative-sequence voltages are extracted using the new observer methods and negative-sequence currents are injected to eliminate the dc link 120Hz ripple. The observer-based disturbance rejection methods are proven to be very effective when all three types of disturbances (input voltage harmonics, unbalance, and inductor unbalance) co-exist simultaneously, even under input inductance variations of 30%. Simulation results are verified experimentally using a 15 hp adjustable-speed drive (ASD) system that includes an AFE-VSC coupled to a dSpace controller.
机译:在本文中,将计算有效的正弦扰动估计和消除方法引入了有效前端(AFE)电压源转换器(VSC)的控制,以实现具有较慢的PWM开关频率的高功率系统中的有效扰动抑制(例如, ,5 kHz)和有限的电流控制器带宽。由于主动整流器与源和负载串联,因此不需要为谐波消除添加额外的硬件。使用新的观察者方法提取输入正和负序电压,并注入负序电流以消除DC链路120Hz纹波。当同时共存的所有三种干扰(输入电压谐波,不平衡和电感器不平衡)时,证明基于观察者的扰动抑制方法非常有效,即使在输入电感变化为30%。使用15 HP可调节速度驱动器(ASD)系统进行实验验证仿真结果,该系统包括耦合到DSPACE控制器的AFE-VSC。

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