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Control of a three-phase AC/DC VIENNA converter based on the sliding mode loss-free resistor approach

机译:基于滑模无损电阻器方法的三相AC / DC VIENNA转换器的控制

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摘要

The three-phase VIENNA rectifier supplying a regulated DC bus in a micro-grid architecture is controlled in this study by means of a sliding-mode regulation loop, which imposes a loss-free resistor (LFR) behaviour in each phase for power factor correction. Assuming equal parameters per phase and that the intermediate node between the output capacitors of the DC link is the neutral point of the AC generator, the rectifier can then be modelled as a tetra-port LFR with three decoupled resistive input ports and one output port characterised by a power source representing the input power absorbed by the rectifier. After demonstrating that the resulting sliding dynamics are globally stable, the control is analogically executed, this only requiring an analogue multiplier, several operational amplifiers and some auxiliary digitally implemented logic circuitry. Experimental results for different power levels and frequencies supplied by a low-power wind generator are in perfect agreement with the theoretical predictions.
机译:在这项研究中,通过滑动模式调节环路来控制为微电网架构中的可调节DC总线供电的三相VIENNA整流器,该环路在各相中施加了无损耗电阻器(LFR)行为,以进行功率因数校正。假设每相参数相等,并且直流母线输出电容器之间的中间节点为交流发电机的中性点,则整流器可以建模为具有三个去耦电阻输入端口和一个输出端口的四端口LFR。通过电源表示整流器吸收的输入功率。在证明所产生的滑动动力学是全局稳定的之后,以模拟方式执行控制,这仅需要一个模拟乘法器,几个运算放大器和一些辅助数字实现的逻辑电路。低功率风力发电机提供的不同功率水平和频率的实验结果与理论预测完全吻合。

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