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Research on Digital Control Design of High Power Middle Frequency 400Hz Inverter Power

机译:高功率中频的数字控制设计研究400Hz逆变功率

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The device switching frequency is low and the output voltage fundamental frequency is high in high power middle frequency 400Hz/115V inverters, so the control bandwidth is limited and it is hard to promise a good waveform quality. The delay induced by the implementation of sampling, computing and PWM during digital control has bad impact on the system transient and steady state performances. In this paper, the cascaded topology with two H-Bridge units which can get a higher equivalent switching frequency and reduce harmonic content in output voltage and P+resonant controller which can eliminate steady state error were adopted in a single-phase inverter. The delay resulting from the processes of sampling, computing and digital PWM was analyzed. The control parameters were designed in the continuous domain design by introduced an equivalent time delay. Finally, the discrete simulation on a single-phase 100kVA, 400Hz/115V inverter model was presented, and the simulation verified the effectiveness of the proposed scheme.
机译:设备开关频率低,高功率中频400Hz / 115V逆变器的输出电压基波频率高,因此控制带宽有限,很难承诺良好的波形质量。在数字控制期间实施采样,计算和PWM引起的延迟对系统瞬态和稳态性能的影响不佳。在本文中,在单相逆变器中采用了一种可以获得更高的等效开关单元的级联拓扑,其可以获得更高的等效开关频率并减少输出电压和P +谐振控制器中的谐波含量。分析了采样,计算和数字PWM过程产生的延迟。通过引入等效的时间延迟,在连续域设计中设计了控制参数。最后,提出了单相100kVA,400Hz / 115V逆变器模型的离散模拟,仿真验证了所提出的方案的有效性。

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