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A Double-Modulation-Wave PWM With Reduced Dependency on Current Polarities for Dead-Time-Effect Elimination in Three-Level T-Type Converters

机译:一种双调制波PWM,其三级T型转换器中的死区效应消除依赖性降低

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摘要

No dead-time is contained in the existing dead-time elimination pulsewidth modulation (PWM) for three-phase three-level T-type converters, where complementary drive pulses are allocated alternatively according to polarities of output currents. Consequently, the dead-time effect can be inherently avoided. However, the dependency on current polarities seriously limits its widespread application. Wrong current polarities, e.g., in a dynamic process, will lead to the output-voltage disappearance, thus aggravating the possible "algebraic loop" issue and impairing the stability of the system. In this article, in order to reduce the dependency on current polarities while retaining the characteristic of dead-time-effect elimination, a double-modulation-wave PWM is proposed by modifying the dead-time elimination PWM. Two modulation waves with a magnitude difference are adopted for generating underlap periods between complementary drive pulses, which can avoid the shoot-through failure and no dead-time effect will be generated. And to further simplify the implementation process, the two modulation waves are decomposed by introducing a magnitude-adjustment factor related to the current polarity. Whereas it is also due to the employment of two modulation waves, extra issues of overmodulation, single drive pulses, and a shorter underlap period may occur, which are analyzed in detail and the negative effect can be avoided. Finally, the proposed PWM is experimentally verified, showing the effectiveness on harmonic suppression and the reduced dependency on current polarities.
机译:对于三相三级T型转换器的现有死区消除脉冲宽度调制(PWM)没有死区时间,其中根据输出电流的极性替代地分配互补驱动脉冲。因此,可以本质地避免死区时间效应。然而,对当前极性的依赖性严重限制了其广泛应用。错误的电流极性,例如,在动态过程中,将导致输出电压消失,从而加剧可能的“代数环路”问题并损害系统的稳定性。在本文中,为了减少对电流极性的依赖性,同时保持死区时间效应消除的特性,通过修改死区时间消除PWM来提出双调制波PWM。采用具有幅度差异的两个调制波来产生互补驱动脉冲之间的下划线周期,这可以避免射击失败,并且不会产生死区时间效果。为了进一步简化实现过程,通过引入与当前极性有关的大小调整因子来分解两个调制波。然而,也是由于两个调制波的就业,可能发生过调制,单个驱动脉冲和较短的下划线周期的额外问题,详细分析,并且可以避免负效应。最后,提出的PWM是通过实验验证的,显示对谐波抑制的有效性和对当前极性的降低依赖性。

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