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A novel control method for input output harmonic elimination of the PWM boost type rectifier under unbalanced operating conditions

机译:在不平衡工作条件下消除PWM升压型整流器输入输出谐波的新控制方法

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This paper presents a new control strategy to improve the performance of the PWM boost type rectifier when operating under an unbalanced supply. An analytical solution for harmonic elimination under unbalanced input voltages is obtained resulting in a smooth (constant) power flow from AC to DC side in spite of the unbalanced voltage condition. Based on the analysis of the open loop configuration, a closed loop control solution is proposed. Simulation results show excellent response and stable operation of the new rectifier control algorithm. A laboratory prototype has been designed to verify the discussions and analyses done in this paper. Theoretical and experimental results show excellent agreement. Elimination of the possibility of low order AC and DC side harmonics due to unbalance is expected to materially affect the cost of DC link capacitor and AC side filter. The proposed method will be particularly useful in applications where the large second harmonic at the DC link may have a severe impact on system stability of multiply connected converters on a common link.
机译:本文提出了一种新的控制策略,以在不平衡电源下工作时改善PWM升压型整流器的性能。尽管存在不平衡电压条件,但仍获得了一种用于在不平衡输入电压下消除谐波的解析解决方案,从而导致从交流侧到直流侧的功率流平稳(恒定)。在对开环配置进行分析的基础上,提出了一种闭环控制解决方案。仿真结果表明,该新型整流器控制算法具有出色的响应性和稳定的运行。设计了一个实验室原型来验证本文中的讨论和分析。理论和实验结果显示出极好的一致性。消除了由于不平衡而导致的低阶交流和直流侧谐波的可能性,预计会在实质上影响直流母线电容器和交流侧滤波器的成本。所提出的方法在DC链路处的大二次谐波可能严重影响公共链路上的多连接转换器的系统稳定性的应用中特别有用。

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