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Dead Time Effect on the Double-Loop Control Strategy for a Boost Inverter

机译:死区时间对升压逆变器双环路控制策略的影响

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The boost inverter topology achieves both boosting and inversion in a single stage. Various controllers have been implemented on boost inverters to obtain stable operation. However, the double-loop control strategy is the most appropriate because it provides good performance under nonlinear loads, abrupt load variations, and transient short-circuit conditions. The double-loop control strategy was introduced with proportional integral (PI) controllers used in each loop. Recently, with the widespread use of proportional resonant (PR) controllers, the PI controllers were replaced with the PR controllers to achieve zero steady-state error for the ac components of the reference. However, during the implementation of the PR controllers, a significant dc offset in the output voltage of the boost inverter was observed. Furthermore, the output voltages of the boost converters showed a clipping effect. In this paper, it is shown that the dc offset and the clipping of the boost converters are attributed to the dead time and parameter mismatch between the boost converters. A new controller is proposed to reduce the dc offset and clipping effect. The improved performance of the proposed controller is demonstrated with experimental results on a boost inverter prototype.
机译:升压逆变器拓扑可在单个阶段同时实现升压和逆变。在升压型逆变器上已实现了各种控制器,以实现稳定的运行。但是,双环控制策略是最合适的,因为它在非线性负载,突变负载变化和瞬态短路条件下均具有良好的性能。引入了双回路控制策略,并在每个回路中使用了比例积分(PI)控制器。近来,随着比例谐振(PR)控制器的广泛使用,PI控制器被PR控制器取代,以实现基准交流分量的零稳态误差。但是,在实施PR控制器期间,观察到升压逆变器的输出电压中存在明显的dc偏移。此外,升压转换器的输出电压表现出削波效应。本文表明,升压转换器的直流失调和削波归因于空载时间和升压转换器之间的参数失配。提出了一种新的控制器来减少直流偏移和削波效应。在升压逆变器原型上的实验结果证明了所提出控制器的改进性能。

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