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Active damping control strategy of matrix converter via modifying input reference currents

机译:通过修改输入参考电流的矩阵转换器的主动阻尼控制策略

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摘要

The matrix converter (MC) with an LC filter at source side suffers from system instability, thereby requiring damping control. To improve system stability, this paper proposes a novel active damping control strategy. First, the method of generating space vector modulation signals is improved, in order to make the amplitude and phase angle of input currents directly controllable without affecting the priority of output voltage control. Then, the proposed strategy, which is realized by injecting damping signals into input reference currents, is presented. In this way, the proposed strategy can suppress the oscillations in source currents directly. Besides, it is effective with source voltages or capacitor voltages sampled for modulation, regardless of the operation mode of MC. Furthermore, it is applicable to most of existing modulation algorithms. Finally, experimental results of four-quadrant operation on a 2.4-kW prototype illustrate that, under the condition of the same parameters, the proposed active damping control strategy performs better than passive damping control in filtering and the same in damping at source side, without sacrificing the driving performance at output side.
机译:在源侧带有LC滤波器的矩阵转换器(MC)存在系统不稳定的问题,因此需要进行阻尼控制。为了提高系统稳定性,本文提出了一种新颖的主动阻尼控制策略。首先,改进了产生空间矢量调制信号的方法,以使输入电流的幅度和相位角可直接控制而不影响输出电压控制的优先级。然后,提出了所提出的策略,该策略是通过将阻尼信号注入输入参考电流来实现的。这样,所提出的策略可以直接抑制源电流的振荡。此外,无论MC的工作模式如何,它对采样的电源电压或电容器电压均有效,以进行调制。此外,它适用于大多数现有的调制算法。最后,在2.4 kW原型机上四象限运行的实验结果表明,在相同参数的条件下,所提出的主动阻尼控制策略在滤波方面的效果优于被动阻尼控制,而在源侧的阻尼效果则优于被动阻尼控制。牺牲输出侧的驱动性能。

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