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Research on the current control method of N-paralleled converter system for the high-power inductor tester

机译:大功率电感测试仪N并联变换器系统的电流控制方法研究

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This paper develops the N-paralleled converters with LCL filter system model and expands the virtual resistor control method for harmonic current control. Power electronic converter can be controlled as a current source. For some application the current source can be used to test the inductor characteristic, such as temperature rise, noise or vibration. While in some cases, several converters are connected in parallel to increase the output current amplitude. The N-paralleled converters with LCL output filter system presents complex resonances feature. And the output current of the system becomes out of control. This paper develops the closed-loop model of N-paralleled converters with the LCL filter system and reveals the output current amplification by analyzing the resonance feature of the system at first. Then the virtual resistor based current control method is expanded in the harmonic current control. For the application of N-paralleled converters with an LCL filter system to test the inductor characteristic, the amplitude of output harmonic current need be considered carefully. With the optimal virtual resistor value the output harmonic current can also be controlled well. Simulation and experimental results prove the validation of the system model and optimization for damping resistor value.
机译:本文开发了具有LCL滤波器系统模型的N并联转换器,并扩展了用于谐波电流控制的虚拟电阻器控制方法。功率电子转换器可以作为电流源进行控制。对于某些应用,电流源可用于测试电感器特性,例如温度上升,噪声或振动。在某些情况下,几个转换器并联连接以增加输出电流幅度。具有LCL输出滤波器系统的N并联转换器具有复杂的谐振功能。并且系统的输出电流变得失控。本文利用LCL滤波器系统开发了N并联转换器的闭环模型,并首先通过分析系统的谐振特性来揭示输出电流放大。然后,在谐波电流控制中扩展了基于虚拟电阻器的电流控制方法。对于具有LCL滤波器系统的N并联转换器在测试电感器特性方面的应用,需要仔细考虑输出谐波电流的幅度。使用最佳虚拟电阻器值,也可以很好地控制输出谐波电流。仿真和实验结果证明了系统模型的有效性和阻尼电阻值的优化。

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